Generated by All in One SEO v5.0.0.1, this is an llms.txt file, used by LLMs to index the site. # FIBERSTAMP Co-Packaged Optics (CPO) ## Sitemaps - [XML Sitemap](https://www.fiberstamp.com/sitemap.xml): Contains all public & indexable URLs for this website. ## Posts - [FIBERSTAMP Launches Visual 800G CHECKER to Simplify Data Center Operations](https://www.fiberstamp.com/product-news-15302.html) - —Featuring an Integrated 10.1-inch Industrial Touchscreen and Removable Battery for True Standalone 800G/400G/200G PAM4 BER TestingSingapore, August 4 , 2026 FIBERSTAMP today announced the launch of the Visual 800G CHECKER, an enhanced version of its portable 800G/400G/200G PAM4 Bit Error Rate Tester (BERT). By integrating a 10.1-inch industrial touchscreen tablet and a removable battery module into - [Inside the Optics: Understanding Z-Block and TFF Prism Technologies in WDM Systems](https://www.fiberstamp.com/understanding-z-block-and-tff-prism-technologies-in-wdm-systems.html) - Wavelength Division Multiplexing (WDM) has become a cornerstone of modern optical communications, enabling multiple wavelengths to be transmitted simultaneously over a single optical fiber.By significantly increasing fiber capacity without deploying additional infrastructure, WDM plays a vital role in metro, long-haul, and data center interconnect (DCI) networks. At the heart of every WDM subsystem is an - [FIBERSTAMP Showcases Differentiated Technologies In 8-way Optics, O-BAND DWDM and NPO at OFC 2025](https://www.fiberstamp.com/news-13330.html) - Singapore, March 25, 2025 - FIBERSTAMP, with a core focus on differentiated optical network product development and design, adheres to its technology philosophy of "Economical, Inevitable, and Differentiated." Dedicated to driving innovation and breakthroughs in optical communication technology. April 1-3, 2025, FIBERSTAMP will present its cutting-edge technologies at OFC 2025, held at the Moscone Center in - [Next-Generation AI Computing Network Architecture and Optical Interconnect Technology Analysis](https://www.fiberstamp.com/next-generation-ai-computing-network-architecture-and-optical-interconnect-technology-analysis.html) - 1. Building Low-Latency and Low-Power Data Center Interconnect Networks with NRZ Modulation and Half-DSP Technologies1.1 NRZ Modulation: Mature, Reliable, and Optimized for Ultra-Low Latency1.2 “Half-DSP” Modulation Solutions: LPO and Hybrid Technologies2. O-BAND Non-Coherent DWDM as an Efficient Complement to Coherent Communication for Low-Latency and Cost-Effective Medium-Distance DCI3.Three Flexible Solutions for 1.6T AI & Data Center - [FIBERSTAMP Releases White Paper on Next-Generation AI Computing Network Architecture and Optical Interconnect Technology Analysis](https://www.fiberstamp.com/news-14982.html) - Singapore, June 18, 2026 — FIBERSTAMP, a provider of advanced optical interconnect solutions, today announced the release of its latest white paper, “Next-Generation AI Computing Network Architecture and Optical Interconnect Technology Analysis.” The white paper provides a comprehensive analysis of four key optical interconnect technology approaches designed for next-generation AI computing networks. For short-reach interconnect - [Why HYBRID Architectures Outperform LRO in Real-World Systems—and Are Reshaping Short-Reach Interconnects in AI Data Centers](https://www.fiberstamp.com/news-14237.html) - 1. Introduction: AI and Data Center Short-Reach Interconnects Must Return to System Engineering Reality As AI and data center interconnects accelerate toward 800G and 1.6T, short-reach optical connectivity is no longer a question of power optimization alone. It has evolved into a system-level engineering challenge, encompassing port density, thermal design, link stability, and large-scale deployability. - [FIBERSTAMP O-Band Incoherent Technology Solution ——O-Band Incoherent Architecture for Scale-Across Computing Networks](https://www.fiberstamp.com/fiberstamp-o-band-incoherent-technology-solution-o-band-incoherent-architecture-for-scale-across-computing-networks.html) - 1. Architecture Overview of Modern Computing Networks With the rapid scaling of AI training and inference clusters, data center interconnect architectures are evolving into a clearly defined layered model. Modern computing networks are generally divided into two distinct layers: Scale-Across Network (Short-to-Medium Reach Interconnects) This layer connects computing nodes across racks, cabinets, and within data - [FIBERSTAMP Showcases 48G SDI Optical Interconnect and O-Band 12G SDI DWDM Solutions at NAB Show 2026](https://www.fiberstamp.com/news-14862.html) - Singapore, April 10, 2026 — FIBERSTAMP, a global provider of open optical networking solutions, will present its latest 48G SDI optical interconnect solution and O-Band 12G SDI DWDM transmission solution at NAB Show 2026, addressing the increasing demand for high-quality, long-distance 8K baseband video transmission in broadcast, live production, sports, and large-scale event environments. 48G - [FIBERSTAMP Announces Office Relocation and Official Launch of Singapore TAA Manufacturing Initiative](https://www.fiberstamp.com/news-14904) - Singapore — May 18, 2026 — FIBERSTAMP today announced the official opening of its new Singapore office, now fully operational at: 33 Ubi Ave 3,Tower A,Room 08-64,Singapore 408868. In parallel with the office relocation, FIBERSTAMP also announced the launch of its Singapore manufacturing initiative under the Trade Agreements Act (TAA), further strengthening the company’s global supply - [OFC 2026 — Live Demonstration of the 1.6T DR16-NPO Silicon Photonics Engine and HYBRID Green Interconnect Innovations](https://www.fiberstamp.com/news-14758.html) - Singapore, March 12, 2026 — As global data center networks rapidly accelerate toward the 800G and 1.6T era, ultra-high-speed optical interconnect technologies are entering a new phase of innovation. OFC 2026, held at the Los Angeles Convention Center, brings together leading innovators across the optical communications industry. At this year’s exhibition, FIBERSTAMP showcases its next-generation - [Paving the Way for Cost-Effective DWDM Transmission — FIBERSTAMP Showcases O-Band 400G DWDM4 Direct-Detect Optical Module and Subsystem at OFC 2026](https://www.fiberstamp.com/news-14772.html) - Singapore, March 12, 2026 —At the upcoming OFC 2026 in Los Angeles, FIBERSTAMP will unveil its exclusively developed O-band 400G DWDM4 optical modules and transmission subsystems. Leveraging the zero-dispersion characteristics of the O-band, FIBERSTAMP delivers a more economical, simplified, and efficient 400GE interconnect solution for global data center connectivity. Traditionally, the C-band has dominated long-haul transmission. - [FIBERSTAMP Wins 2026 Lightwave Innovation Award — HYBRID 800G ACC+, 800G AOC, and 1.6T Silicon Photonics Active Optical Cables Honored](https://www.fiberstamp.com/news-14717.html) - Singapore – February 27, 2026 – FIBERSTAMP today announced that three of its next-generation HYBRID interconnect solutions have been recognized in the 2026 Lightwave Innovation Reviews, presented by Lightwave, a leading authority in optical networking and communications technology. The awarded products include: 800G OSFP HYBRID ACC+ — Rated 4.0/5.0 1.6T OSFP224 HYBRID PSM8-AOC-SiPho — Rated 4.0/5.0 800G OSFP - [FIBERSTAMP Demonstrates 800G HYBRID ACC+ Active Copper Cable and 800G HYBRID Silicon Photonics Module at DesignCon 2026](https://www.fiberstamp.com/news-14697.html) - Singapore, February 11, 2026 — FIBERSTAMP announced that it will exhibit at DesignCon 2026, where it will demonstrate its next-generation 800G HYBRID ACC+ Active Copper Cable and an 800G silicon photonics module based on the HYBRID architecture. DesignCon 2026 will be held from February 24–26, 2026, at the Santa Clara Convention Center, Santa Clara, California. - [100G QSFP28 PAM4 DWDM Solution](https://www.fiberstamp.com/100g-qsfp28-pam4-dwdm-solution.html) - FIBERSTAMP’s 100G QSFP28 PAM4 DWDM is designed to support 100G Ethernet DCI applications over DWDM and P to P Access Network. It’s a dual cs adaptor transceiver with the hot-pluggable QSFP28 MSA form factor that can transmit up to 80km over G.652 SMF white box. It uses 2x50G PAM4 modulation format on 100GHz ITU DWDM - [AI 800G / 1.6T Data Center MPO Fiber Cabling Solution for Next-Gen Data Centers](https://www.fiberstamp.com/ai-800g-1-6t-data-center-mpo-fiber-cabling-solution-for-next-gen-data-centers.html) - FIBERSTAMP’s AI 800G / 1.6T Data Center MPO Fiber Cabling Solution provides a complete, high-performance cabling system engineered for high-speed data center fabrics supporting 800G and 1.6T networks. This solution combines a comprehensive portfolio of MPO/MTP fiber cabling components with optimized design features to maximize density, minimize link loss, and simplify deployment and maintenance. Key - [Passive xWDM Devices Solution - Compact CWDM & DWDM Components for Flexible Optical Networks](https://www.fiberstamp.com/passive-xwdm-devices-solution-compact-cwdm-dwdm-components-for-flexible-optical-networks.html) - FIBERSTAMP’s Passive xWDM Devices Solution offers a comprehensive portfolio of passive wavelength division multiplexing (WDM) devices designed to simplify and optimize optical networks. This solution family includes CWDM, DWDM, and compact WDM modules that require no electrical power and deliver reliable, cost-effective optical signal aggregation across metro, access, and transport networks. Solution Overview Our passive - [SDI High-Definition Video Optical Solution - 12G SDI CWDM/DWDM Optical Transport up to 40 km](https://www.fiberstamp.com/sdi-high-definition-video-optical-solution-12g-sdi-cwdm-dwdm-optical-transport-up-to-40-km.html) - FIBERSTAMP’s SDI High-Definition Video Optical Solution delivers robust, long-reach optical transport for professional broadcast and video production environments, supporting SD-SDI through 12G-SDI high-definition signals over optical fiber. This solution uses CWDM and DWDM optical modules and extenders to enable high-quality video transmission for studio, live event, and outdoor broadcast applications. Key Features Broad SDI Standard - [400G Single-Wavelength DCI BOX Coherent Subsystem Solution](https://www.fiberstamp.com/400g-single-wavelength-dci-box-coherent-subsystem-solution.html) - FIBERSTAMP’s 400G Single-Wavelength DCI BOX Coherent Subsystem Solution delivers a high-capacity, cost-efficient optical transport platform for data center interconnect (DCI) and metro applications. It uses the latest 400G QSFP-DD ZR/ZR+ coherent optical modules integrated in a modular DCI BOX chassis to support scalable, long-reach coherent links with simplified deployment and enhanced spectral efficiency. Core Solution - [800G Single-Wavelength DCI BOX Coherent Subsystem Solution for Long-Reach Data Center Interconnects](https://www.fiberstamp.com/single-wavelength-800g-dci-box-coherent-subsystem-solution-for-long-reach-data-center-interconnects.html) - FIBERSTAMP’s Single-Wavelength 800G DCI BOX Coherent Subsystem Solution delivers next-generation optical transport by leveraging single-wavelength 800G coherent transmission to optimize data center interconnect (DCI) links with high bandwidth density and enhanced transmission efficiency. This solution combines advanced CFP2-DCO coherent transceiver technology with flexible deployment options to meet the growing demands of cross-domain connectivity across compute - [COLOR X SiPh DWDM Optical Solution for Metro, DCI & 5G Fronthaul](https://www.fiberstamp.com/color-x-siph-dwdm-optical-solution-for-metro-dci-5g-fronthaul.html) - FIBERSTAMP’s COLOR X SiPh DWDM Optical Solution delivers a complete O-Band DWDM (Dense Wavelength Division Multiplexing) interconnect platform optimized for metro access, data center interconnect (DCI), and 5G fronthaul networks. Operating in the O-Band with 200 GHz channel spacing, this solution supports high-capacity DWDM links using compact silicon photonics-based transceivers and subsystems, simplifying network design - [COLOR ZR+ C-Band DWDM Optical Solution for Long-Reach Transport](https://www.fiberstamp.com/colorzr-c-band-dwdm-optical-solution-for-long-reach-transport.html) - FIBERSTAMP’s COLOR ZR+ C-Band DWDM Optical Solution delivers high-capacity, long-distance optical transport using a compact 100G QSFP28 PSM DWDM4 optical module with an MPO-12 interface. When paired with external wavelength multiplexing, dispersion compensation (DCM), and amplification (EDFA), this solution enables extended optical links up to 80 km, meeting the demands of metro, data center interconnect - [Immersion Liquid-Cooling Optical Extender Solutions for High-Density Optical Networks](https://www.fiberstamp.com/immersion-liquid-cooling-optical-extender-solutions-for-high-density-optical-networks.html) - FIBERSTAMP’s Immersion Liquid-Cooling Optical Extender Solutions extend liquid-cooling interconnect technology to optical extenders, enabling reliable, low-power optical connectivity in high-heat-density environments such as AI compute clusters, hyperscale data centers, and 5G fronthaul applications. These extenders work alongside immersion liquid-cooled optical modules and active optical cables to support future-ready interconnects from 25G up to 800G and - [400G DR4 & 800G DR8 Immersion Liquid-Cooling Silicon Photonics Modules](https://www.fiberstamp.com/400g-dr4-800g-dr8-immersion-liquid-cooling-silicon-photonics-modules.html) - FIBERSTAMP’s Immersion Liquid-Cooling Silicon Photonics Modules deliver next-level performance for high-density, high-power network environments by combining silicon photonics integration with liquid cooling technology. Designed for both 400G and 800G applications, these modules address thermal challenges in AI computing and hyperscale data centers, enabling higher energy efficiency and power-optimized operation. Key Technology Features Silicon Photonics Integration: - [100G SFP56-DD SR2 Optical Interconnect Solution](https://www.fiberstamp.com/100g-sfp56-dd-sr2-optical-interconnect-solution.html) - The 100G SFP56-DD SR2 Optical Module delivers 100 Gbps high-speed optical performance in an ultra-compact, double-density form factor — ideal for dense data center and cloud network environments. Built on 2×50G PAM4 modulation, this solution supports high-performance links while preserving a small physical footprint for maximum port density. Key Features: Compact Double Density Design: The - [200G QSFP56 SR2 Data Center Interconnect Solution for Broad Compatibility](https://www.fiberstamp.com/200g-qsfp56-sr2-data-center-interconnect-solution-for-broad-compatibility.html) - The FIBERSTAMP 200G QSFP56 SR2 optical interconnect solution is engineered to meet the demanding bandwidth, low power, and broad compatibility requirements of next-generation data centers, AI clusters, and cloud computing environments. Built on advanced 2×100G PAM4 modulation, this solution delivers 200 Gbps optical performance with excellent energy efficiency and wide interoperability. Technical Highlights High Throughput - [400G QSFP-DD ER4-30 Optical Interconnect Solution for Metro & Data Center Networks](https://www.fiberstamp.com/400g-qsfp-dd-er4-30-optical-interconnect-solution-for-metro-data-center-networks.html) - The 400G QSFP-DD ER4-30 Optical Interconnect Solution from FIBERSTAMP delivers robust, long-reach 400 Gbps transmission over dual fiber up to 30 km — ideal for metro DCI (Data Center Interconnect) scenarios and extended data center networking. This solution harnesses advanced APD receiver technology and low-dispersion wavelength emission to ensure stable, high-speed optical performance across diverse - [Hybrid ACC+ Copper Cable Solutions-800G OSFP / 800G QSFP-DD & 1.6T OSFP224](https://www.fiberstamp.com/hybrid-acc-copper-cable-solutions-800g-osfp-800g-qsfp-dd-1-6t-osfp224.html) - FIBERSTAMP’s Hybrid Architecture Active Copper Cable (ACC+) solutions redefine high-speed copper interconnects for AI, hyperscale data center, and cloud networking systems. By leveraging a patented Hybrid architecture that combines the strengths of existing PCC/ACC and AEC methodologies, these cables deliver dramatically lower power, latency, and cost compared with conventional active copper cables — while maintaining - [800G FR8 Optical Interconnect Solution for Next-Gen Data Center Networks](https://www.fiberstamp.com/800g-fr8-optical-interconnect-solution-for-next-gen-data-center-networks.html) - The 800G FR8 Optical Interconnect Solution from FIBERSTAMP delivers high-speed 800 Gbps optical transmission up to 2 km using advanced 8-lane wavelength-division multiplexing (LWDM) over standard duplex fibers. By enabling 800G Ethernet over dual LC fiber with built-in MUX/DEMUX, this solution simplifies deployment and reduces fiber requirements and operating costs compared with traditional 800G 2×FR4 - [800G Hybrid Optical Interconnect Solution-Next-Generation Hybrid VR8-AOC & DR8 PHO Replacements for Traditional 800G Interconnects](https://www.fiberstamp.com/800g-hybrid-optical-interconnect-solution-next-generation-hybrid-vr8-aoc-dr8-pho-replacements-for-traditional-800g-interconnects.html) - The 800G Hybrid Optical Interconnect Solution delivers a high-performance, power-efficient alternative to traditional 800G OSFP active optical cables (AOCs) and optical modules. By adopting a patented Hybrid architecture, this solution reduces power consumption and latency while maintaining robust transmission performance — making it ideal for AI-centric and hyperscale data center interconnects. What Makes the Hybrid - [400G Hybrid Optical Interconnect Solution— Next-Generation Replacement for Traditional 400G AOC](https://www.fiberstamp.com/400g-hybrid-optical-interconnect-solution-400g-qsfp-dd-hybrid-vr8-aoc.html) - The 400G QSFP-DD Hybrid VR8-AOC from FIBERSTAMP harnesses our patented Hybrid Active Optical Cable (Hybrid AOC) technology, delivering a next-generation interconnect solution that outperforms traditional DSP-centric active optical cables in power, latency, and cost efficiency. By applying DSP to only half of the optical channels and combining industry-proven LPO/LRO design concepts with advanced system-level signal - [Hybrid Architecture Active Optical Cable (AOC) Solutions-400G / 800G / 1.6T OSFP224](https://www.fiberstamp.com/hybrid-architecture-active-optical-cable-aoc-solutions.html) - FIBERSTAMP’s Hybrid Architecture Active Optical Cable (AOC) portfolio delivers a new generation of high-speed, energy-efficient optical interconnects for AI, hyperscale data center, and cloud infrastructures. Based on a patented Hybrid interconnect architecture, these AOC solutions combine advanced system-level signal alignment with flexible implementation options — including VCSEL-based and silicon photonics-based designs — for superior performance - [1.6T CPO DR16 Silicon Photonics Engine Solution-Powering Next-Generation AI & Hyperscale Switch Platforms](https://www.fiberstamp.com/1-6t-cpo-dr16-silicon-photonics-engine-solution.html) - The 1.6T DR16 CPO Silicon Photonics Engine represents a breakthrough in high-speed interconnect technology, designed for modern AI, cloud, and hyperscale data center networks. Leveraging a linear direct-drive (LPO) silicon photonics architecture combined with a compact SOCKET-type package, this engine enables ultra-efficient, cost-optimized, and highly scalable 1.6 T switching solutions. Key Advantages High-Performance Multi-Lane ArchitectureSupports - [1.6T Heterogeneous Interconnect Solution --1.6T OSFP224 DR8 PHO TO 2X800G DR4](https://www.fiberstamp.com/1-6t-heterogeneous-interconnect-solution-1-6t-osfp224-dr8-pho-to-2x800g-dr4.html) - The 1.6T OSFP224 DR8 PHO module features FIBERSTAMP’s patented HYBRID architecture, supporting both VCSEL-based and silicon photonics–based implementations. By utilizing only half of the DSP channels compared to traditional full-DSP designs, the HYBRID architecture delivers lower power consumption, reduced latency, and improved system efficiency for next-generation AI and data center networks. Inspired by LPO/LRO design - [LPO and CPO: A Strategic Turning Point and Parallel Evolution in Optical Interconnect Architectures](https://www.fiberstamp.com/industry-insights-14190.html) - As AI workloads scale and data center architectures evolve, optical interconnect technology is undergoing a fundamental transformation. Traditional pluggable optics are being challenged by two emerging approaches—Linear-drive Pluggable Optics (LPO) and Co-packaged Optics (CPO)—both driven by the industry’s urgent need for lower power consumption, higher bandwidth density, and improved system efficiency. At the heart of - [FIBERSTAMP to Showcase Immersion Liquid-Cooled 800G Optical Module and 800G Optical Extender at SC 2025](https://www.fiberstamp.com/news-14004.html) - Singapore, November 7, 2025 — FIBERSTAMP will showcase its latest generation of liquid-cooled optical interconnect solutions at the Supercomputing 2025 (SC 2025) exhibition, taking place in St. Louis, USA, from November 16 to 21, 2025. At Booth #4008, FIBERSTAMP will present a live demonstration of its immersion liquid-cooled 800G optical module and 800G optical extender series, - [FIBERSTAMP Launches Narrow-Grid LAN-WDM 400G QSFP-DD ER4-30km Optical Module for Metro Ethernet Applications](https://www.fiberstamp.com/news-13857.html) - Singapore, October 24, 2025 – FIBERSTAMP has announced the launch of its 400G QSFP-DD ER4-30km optical module, built on narrow-grid LAN-WDM wavelengths. Designed for medium to long-reach Metro Ethernet networks, the module delivers exceptional bandwidth, low power consumption, and stable performance over distances up to 30 km—addressing the growing demand for high-speed interconnects in next-generation - [FIBERSTAMP to Showcase COLOR X O-Band 100G DWDM and 400G DCI Coherent Subsystems at Network X 2025 in Paris](https://www.fiberstamp.com/13840-news.html) - Singapore, October 11, 2025— FIBERSTAMP, a provider of cost-optimized DWDM optical communication solutions, today announced its participation in Network X 2025, the world’s leading telecom and digital ecosystem exhibition, to be held October 14–16 at Paris Expo Porte de Versailles, France (Booth No. B10). At this year’s exhibition, FIBERSTAMP will highlight two of its latest - [Dispersion and Polarization in Optical Communications](https://www.fiberstamp.com/news-13814) - Introduction to Dispersion and Polarization 1. Dispersion Dispersion occurs when light of different wavelengths travels at varying speeds through a medium, causing pulse broadening and signal distortion. This phenomenon can be classified into several types: Modal Dispersion – Common in multimode fibers, where multiple propagation paths exist. Light traveling near the fiber axis arrives sooner than - [Ultra-Low-Latency Optics Are Reinventing Financial Trading Networks](https://www.fiberstamp.com/news-13672.html) - As high-frequency trading (HFT), AI inference, and edge computing infrastructure push toward real-time responsiveness, network architects are reevaluating one of the most overlooked layers of the stack: the optical interconnect. Historically, optical transceivers have been optimized around bandwidth and reach. But as system-level latency becomes a profit driver and performance bottleneck, particularly in nanosecond-sensitive environments, - [Choosing the Right OSFP: Balancing Performance and Thermal Innovation](https://www.fiberstamp.com/news-13797.html) - As AI supercomputing, HPC, and next-gen data centers evolve, high-speed connectivity isn’t enough—efficient thermal management is now critical. FIBERSTAMP OSFP modules offer flexible packaging options to match different cooling scenarios, helping you maximize performance and energy efficiency. Three OSFP Packaging Options: Finned-Top OSFP Top fins improve airflow and cooling 13.00 mm height, air-cooled switches compatible - [FIBERSTAMP Launches 800G OSFP DR8 & 2×FR4/2×LR4 Up to 10km Silicon Optical Transceivers With 16W Power Consumption](https://www.fiberstamp.com/fiberstamp-launches-800g-osfp-dr8-2xfr4-2xlr4-up-to-10km-silicon-optical-transceivers-with-16w-power-consumption.html) - May 17, 2024. Singapore – In response to the comprehensive goals of large-scale commercialization and technological advancement of the 800G architecture in domestic and foreign AI data centers, FIBERSTAMP today announced the launch of 800G OSFP DR8/DR8+/DR8++& 800G OSFP 2×FR4/2×LR4 series of silicon optical transceivers based on 7nm DSP with a power consumption of 16W The transceivers - [FIBERSTAMP Joins the Open Compute Project as a Community Member](https://www.fiberstamp.com/news-13649.html) - Following its official entry into the Optical Internetworking Forum (OIF) in June, FIBERSTAMP, an emerging leader in silicon photonics and differentiated optical interconnect solutions, today announced that it has officially joined the Open Compute Project (OCP) as a Community Member. The Open Compute Project (OCP), founded by Meta (formerly Facebook) in 2011, is a global - [FIBERSTAMP Officially Joins the Optical Internetworking Forum (OIF)](https://www.fiberstamp.com/news-13575.html) - [13 June 2025, Singapore] — FIBERSTAMP, a global leader in open optical interconnect solutions, today announced its official membership in the Optical Internetworking Forum (OIF), a premier international standards organization driving innovation in optical networking. Since its founding in 1998, the Optical Internetworking Forum (OIF) has grown into a leading global, non-profit alliance with over - [FIBERSTAMP Launches 2×100G PAM4-Based 200G QSFP56 SR2 Optical Module to Power Next-Gen Data Center Connectivity](https://www.fiberstamp.com/news-13445.html) - April 28, 2025 — FIBERSTAMP announced the official launch of its cutting-edge 200G QSFP56 SR2 optical module. Built on advanced 2×100G PAM4 modulation technology, the module delivers ultra-high speed, low latency, and broad compatibility — providing a future-ready connectivity solution for next-generation data centers. Technology-Driven Innovation: Breaking Barriers in Speed and EfficiencyAs data centers rapidly transition - [FIBERSTAMP Launches 400G QSFP-DD SR4 to 4×100G Single-Lambda QSFP28/SFP112 SR1 Cost-Effective Short-Reach Data Center Solution](https://www.fiberstamp.com/news-13379.html) - High Density, Low Power, and Cost-Effective — Powering the Next Generation of Data Center Upgrades April 15, 2025 Singapore - FIBERSTAMP, a global leader in optical communication solutions, has launched a new cost-effective short-reach data center interconnect solution: the 400G QSFP-DD SR4 to 4×100G single-lambda QSFP28/SFP112 SR1. Designed to meet the growing demands of modern data centers for - [FIBERSTAMP WINS TWO LIGHTWAVE INNOVATION AWARDS FOR 100G QSFP28 DWDM1 O-BAND AND 800G QSFP-DD CWDM8 LR8](https://www.fiberstamp.com/news-13004.html) - Singapore, Feb 18th, 2025— FIBERSTAMP, a leading innovator in Optical Network Solutions, has been honored with two prestigious LIGHTWAVE Innovation Awards for its groundbreaking products: the 100G QSFP28 DWDM1 O-Band Silicon Photonics and the 800G QSFP-DD CWDM8/LR8 Optical Transceivers. These awards recognize FIBERSTAMP’s exceptional contributions to advancing high-speed optical networking technologies. The Color X 100G QSFP28 - [2025 Optical Transceivers Innovation Plan & Insights on Evolving Network Architectures! --FIBERSTAMP](https://www.fiberstamp.com/news-12948.html) - January 21, 2025. Singapore – The world's desire to explore AI computing power has driven the rapid advancements in optical transceiver and copper cable technologies, based on low latency and low power consumption, the network and product innovation practices are being carried out around the world. As a dedicated pioneer of differentiated network technology solutions, FIBERSTAMP is striving - [The Basic Dialogue Between Fiberstamp And Network Architecture](https://www.fiberstamp.com/the-basic-dialogue-between-fiberstamp-and-network-architecture.html) - Currently, the networks we are communicating and constructing on do not possess a low-latency foundation. The belief in networks based on a 100G PAM4 underlying structure has been ingrained for many years. Although history cannot be reversed, it is necessary for us to question the networks, forming a theoretical basis for cognitive retrospection and moving - [FIBERSTAMP Launches Long-Haul Telecom-Grade Optical Transceivers](https://www.fiberstamp.com/fiberstamp-launches-long-haul-telecom-grade-optical-transceivers.html) - December 31, 2024. Singapore – With the growth of telecom bandwidth and the popularity of long-haul application in telecom and MAN, FIBERSTAMP has opened a series of high-speed long-hual telecom-grade optical transceivers in order to meet the communication request of larger coverage, better resource use and lower cost, including 25G SFP28 ZR 80km, 40G QSFP+ ZR4, - [Advantages of FIBERSTAMP O-Band DWDM Solutions](https://www.fiberstamp.com/advantages-of-fiberstamp-o-band-dwdm-solutions.html) - O-Band is a band in optical fiber communications ranges from 1260 to 1360 nm. Highlights Of FIBERSTAMP O–Band Transmission System Low dispersion: The zero-dispersion characteristic better for higher transmission rate and longer transmission distance. Low cost: O-band reduces the complexity and cost of the system because no additional dispersion compensation equipment is required. High efficiency: - [FIBERSTAMP introduces the single-wave 100G SFP112 SR1/LR1/ER1 optical transceivers](https://www.fiberstamp.com/fiberstamp-introduces-the-single-wave-100g-sfp112-sr1-lr1-er1-optical-transceivers.html) - Singapore, November 26, 2024 - As a leading provider of open optical networks, FIBERSTAMP is focused on providing high-performance optical communication connectivity solutions for the global market and is committed to providing innovative technology support for hyper-scale AI data centers. FIBERSTAMP has announced the launch of its industry-leading single-wave 100G PAM4 SFP112 products, covering transmission distance from - [FIBERSTAMP will exhibit AI 800G high-speed AOC and DAC interconnect I/O assembly and immersible liquid cooling interconnect at SC24!](https://www.fiberstamp.com/fiberstamp-will-exhibit-ai-800g-high-speed-aoc-and-dac-interconnect-i-o-assembly-and-immersible-liquid-cooling-interconnect-at-sc24.html) - November 18, 2024. Singapore - SC24 is an International Conference for High Performance Computing, Networking, Storage, and Analysis that will be held in Atlanta USA during November 17-22, 2024. FIBERSTAMP will exhibit AI 800G high-speed AOC and DAC interconnect I/O assembly and immersible liquid cooling interconnect at the exhibition. We are looking forwarding to seeing you at our booth No.623! - [FIBERSTAMP Will Present 400G DCI BOX, Coherent and Metro Telecom Optical Transceivers At Network X!](https://www.fiberstamp.com/fiberstamp-will-present-400g-dci-box-coherent-and-metro-telecom-optical-transceivers-at-network-x.html) - September 29, 2024. Singapore - Network X 2024 (formerly BBWF), as the "Oscar" event in the global telecommunications field, will be opened at the Porte de Versailles International Exhibition Center in Paris on October 8-10, France time. The exhibition will gather Telecom, 5G, Broadband,Cloud and other related fields. FIBERSTAMP, as a global open optical network - [FIBERSTAMP Upgrades The Immersion Interconnect Solutions To Improve Energy Efficiency For “Green AI” Data Center](https://www.fiberstamp.com/fiberstamp-upgrades-the-immersion-interconnect-solutions-to-improve-energy-efficiency-for-green-ai-data-center.html) - August 30, 2024. Singapore - From July 2021 on when Fiberstamp launched the immersible liquid cooling optical transceivers, nowadays we have developed a comprehensive immersible liquid cooling product lines including the new 400G and 800G immersible optics, which have been widely used in 5G fronthaul and AI computing data center application. In order to catch - [FIBERSTAMP Will Present DWDM Optical Network Solutions At Fiber Connect 2024.](https://www.fiberstamp.com/fiberstamp-will-present-dwdm-optical-network-solutions-at-fiber-connect-2024.html) - July 16, 2024. Singapore – Fiber Connect 2024 will be held in Gaylord Opryland, Nashville, Tennessee, USA from July 28 to July 31. FIBERSTAMP will present DWDM optical network solutions and 800G AI data center solutions in the exhibition, and set sail to showcase our latest and most professional product range at Booth #1090! Fiber Connect, - [Why To Use O-BAND In Optical Communication?](https://www.fiberstamp.com/why-to-use-o-band-in-optical-communication.html) - The higher the speed of optical communication, the more affected by dispersion. The "low loss wavelength region" optical band from 1260nm to 1625nm is most suitable for transmission in optical fibers. The transmission loss and optical band relationship is shown in the following figure below. Figure 1 – The relationship between the transmission loss and optical band - [Why to Choose Silicon Photonics in Data Center?](https://www.fiberstamp.com/why-to-choose-silicon-photonics-in-data-center.html) - Data Center to Computing Power Center With the rapid development of high computing power applications such as AI and machine learning, diversified businesses such as autonomous vehicles, big data streaming, and ChatGPT emerge one after another. As an infrastructure to support applications such as AI and machine learning, compared with CPU (central processing unit) computing - [FIBERSTAMP unveil 100G QSFP28 DWDM4 and Non-Coherent Subsystem for COLOR ZR+ Solutions!](https://www.fiberstamp.com/fiberstamp-unveil-100g-qsfp28-dwdm4-and-non-coherent-subsystem-for-color-zr-solutions.html) - Singapore, March 6, 2024– Long-distance data transmission operates through two distinct modes: coherent and non-coherent. Today, FIBERSTAMP officially unveils two trailblazing 100G QSFP28 PSM DWDM4 for Non-Coherent long-distance Subsystem. These modules, built upon a 4x25G NRZ quad-carrier DWDM solution, offer options in C-band spectra, effectively spanning distances exceeding 80km. They aim to provide more cost-effective DWDM - [FIBERSTAMP Releases Color X O-BAND 100G QSFP28 DWDM1 Silicon Optical Transceivers](https://www.fiberstamp.com/fiberstamp-releases-color-x-100g-qsfp28-dwdm1-o-band-silicon-optical-transceivers.html) - June 25, 2024. Singapore - FIBERSTAMP has launched Color ZR+ 100G QSFP28 PSM DWDM4 optical transceivers for Non-coherent subsystems in March this year. It is based on 4x25G NRZ four-carrier DWDM solution, available in C-BAND and O-BAND series. Efficiently spanning distances of more than 80 km, it provides a more cost-effective DWDM transport solution for - [Fiberstamp's way to Silicon Photonics development](https://www.fiberstamp.com/fiberstamps-way-to-silicon-photonics-development.html) - FIBERSTAMP has been in the silicon optics industry since 2018 and already has the following basic capabilities: High-performance silicon optical transceiver module hardware design platform DSP-driver-TIA type selection design, mainstream brand IC, low batch risk high frequency SI design, excellent module service transmission performance Thermal design, modules with low power consumption The silicon optical coupling - [AI data center network architecture requirements: 400/800G optical Transceivers](https://www.fiberstamp.com/ai-data-center-network-architecture-requirements-400-800g-optical-transceivers.html) - With the continuous development of AI technology and related applications, the importance of large models, big data and AI computing power has become increasingly prominent in the development of AI. Large models and data sets form the software foundation for AI research, and AI computing power is the critical infrastructure. In this article, we will - [FIBERSTAMP Release 800G OSFP Breakout ACC (Active copper Cables), benchmark against Nvidia!](https://www.fiberstamp.com/fiberstamp-introduces-a-complete-line-of-800g-osfp-breakout-copper-cables-interconnection-benchmark-against-nvidia.html) - Singapore, April 18, 2024–Fiberstamp's 800G OSFP DAC and ACC comply with OSFP MSA and IEEE802.3ck specifications, use 16 pairs of copper cables to support 8-channel 112GB/s two-way transmission and achieve rate backward compatibility. The product is fully compatible with NVIDIA equipment and matches NVIDIA product specifications. The 800G OSFP DAC series supports a maximum of - [OFC 2024 Has opened, Welcome to Booth#4118 to See the open optical network 7 products lines!](https://www.fiberstamp.com/ofc-2024-has-opened-welcome-to-booth4118-to-see-the-open-optical-network-7-products-lines.html) - [OFC2024: Colorful Open Optical Network Product Lines Under Painter- FIBERSTAMP](https://www.fiberstamp.com/ofc2024-colorful-open-optical-network-product-lines-under-painter-fiberstamp.html) - Singapore, March 20, 2024 - Spring is like a color pen, making the whole world more perfect. In the world of open optical networks, there is also a different color pen - FIBERSTAMP. Welcome to our booth#4118 at OFC2024 to see the open optical network 7 product lines under 2. General Immersible Liquid Cooling Interconnect - [FIBERSTAMP 800G OSFP MMF and SMF Silicon Photonics Modules Are in Mass Production for AI Data Center!](https://www.fiberstamp.com/fiberstamp-800g-osfp-mmf-and-smf-silicon-photonics-modules-are-in-mass-production-for-ai-data-center.html) - Singapore, March 13, 2024– With the continuous development of AI data centers, the demand for faster and more efficient data transmission is increasing, and the surge in demand for 800G optical modules directly reflects the escalating demand for AI-driven applications. The surge in demand for 800G optical modules is closely related to changes in data center - [Application scenarios of 5G carrying optical modules](https://www.fiberstamp.com/application-scenarios-of-5g-carrying-optical-modules.html) - The 5G bearer network is generally divided into the metro access layer, the metro convergence layer, and the metro core layer/provincial trunk line to implement the forward and middle transmission functions of 5G services. Devices at each layer mainly rely on optical modules to connect. The typical application scenarios and requirements are analyzed as follows: - [Development of DWDM Transceivers From 100M SFP to 100G QSFP28](https://www.fiberstamp.com/development-of-dwdm-transceivers-from-100m-sfp-to-100g-qsfp28.html) - DWDM (Dense wavelength division multiplexing) technology through the simultaneous transmission of multiple optical signals of different wavelengths on the optical fiber, to achieve multi-wavelength multiplexing, improve the transmission capacity of the optical fiber, is designed for large capacity, long distance transmission of the optical module. With the development and construction of 5G communication, DWDM is - [network computing: How to cluster 128 units H100 ?](https://www.fiberstamp.com/network-computing-how-to-cluster-128-units-h100.html) - The NVIDIA DGX H100 is equipped with eight single-port ConnectX-7 network cards supporting NDR 400Gb/s bandwidth and two dual-port Bluefield-3 DPUs (200Gb/s) supporting IB/ Ethernet networks. The appearance is shown in the following figure. The DGX H100 is equipped with four QSFP56 ports for storage networks and In-Band management networks. In addition, there is one - [FIBERSTAMP Launches high sensitivity 400G and 200G QSFP-DD XPSM8 parallel optical modules to enrich the network differentiation pattern](https://www.fiberstamp.com/fiberstamp-launches-high-sensitivity-400g-and-200g-qsfp-dd-xpsm8-parallel-optical-modules-to-enrich-the-network-differentiation-pattern.html) - Singapore Feb. 26th, 2024 - Diverse networks drive the discovery and advancement of differentiated technologies for optical interconnection. FIBERSTAMP recently launched two parallel optical modules, 200G QSFP DD XPSM8 and 400G QSFP DD XPSM8 based on 200G/400G QSFP DD PSM8. Products Instruction 200G QSFP DD XPSM8 - 8X25G NRZ It is designed with QSFP-DD package, providing 8 - [FIBERSTAMP Unveils 400G/800G High-Speed Cables in QSFP-DD/OSFP Form Factors for AI Data Applications](https://www.fiberstamp.com/fiberstamp-unveils-400g-800g-high-speed-cables-in-qsfp-dd-osfp-form-factors-for-ai-data-applications.html) - Singapore, 18th, 2023 – The rise of artificial intelligence in cloud computing and AI-powered factories has driven the demand for high-speed computing and cutting-edge networks. In response, FIBERSTAMP has now introduced an 800G and 400G DAC/ACC/AOC high-speed cable product line that supports AI applications, offering optional QSFP-DD/OSFP form factors to address the needs of data - [Navigating the Heat Wave with Immersive Liquid Cooling in Next-Gen Data Centers](https://www.fiberstamp.com/navigating-the-heat-wave-with-immersive-liquid-cooling-in-next-gen-data-centers.html) - With the widespread application of large-scale AI models in enterprise digitization, there has been a sharp increase in the demand for massive AI computing power. This poses a severe challenge to traditional data centers. The extensive processes of training, inference, and interaction require substantial AI computing power, making the construction of high-density data centers with - [Which is the cheapest solution for 400km DCI transmission?](https://www.fiberstamp.com/which-is-the-cheapest-solution-for-400km-dci-transmission.html) - The introduction of coherent optical technology is one of the most significant innovations in the development of DWDM systems and a technological high ground of ultra-haul high speed optical communication, which is temporarily irreplaceable in the field of transmission over 90km. In ultra-haul DCI applications, there are several coherent solutions to choose from, and users - [Earth Day, Go Green Data Centers with Immersion Cooling Optics for Green Planet](https://www.fiberstamp.com/earth-day-go-green-data-centers-with-immersion-cooling-optics-for-green-planet.html) - As the backbone infrastructure of the new generation digital world, the data center business has aroused great attention, as well as the environmental issues it raises. Combining the two to achieve sustainable development is not only a trend in the data center industry, but also significant from an economic development perspective. With Earth Day as - [What Types of Coolants Are Used in Liquid Cooling Data Centers?](https://www.fiberstamp.com/what-types-of-coolants-are-used-in-liquid-cooling-data-centers.html) - We all know that IT equipment must avoid any contact with water to prevent short circuits. Running IT equipment generates heat, which is usually managed using fans for cooling and air conditioning. However, large data centers face a significant cooling challenge, leading to the emergence of a new type of data center known as liquid-cooled - [CWDM vs DWDM, Which is right for your network?](https://www.fiberstamp.com/cwdm-vs-dwdm-which-is-right-for-your-network.html) - In the field of optical fiber communication, CWDM (Coarse Wavelength Division Multiplexing) and DWDM (Dense Wavelength Division Multiplexing) are two common technologies that allow multiple signals to be transmitted over the same optical fiber. Both are part of Wavelength Division Multiplexing (WDM) technology, while these two technologies may seem to differ in the density of wavelengths they - [Unlocking the Power of Silicon Photonics: Journey from Origins to Future Breakthroughs — Section 1](https://www.fiberstamp.com/unlocking-the-power-of-silicon-photonics-journey-from-origins-to-future-breakthroughs-section-1.html) - Silicon photonics originated in 1985 when Professor Soref first proposed the concept of using silicon as the optical waveguide medium. This innovative principle was visionary at the time because silicon is an abundant and cost-effective material, and it had already found widespread applications in the field of electronics. Over 40 years, silicon photonics has made - [Unveiling Wavelength Mysteries](https://www.fiberstamp.com/unveiling-wavelength-mysteries.html) - Optical wavelengths are fundamental to efficient data transmission, boosting network capacity and ensuring compatibility across components. Understanding these wavelengths allows us to optimize networks, streamline data flow, and meet the evolving demands of high-end AI applications in data centers. Today, let’s decode the optical network, revealing the mysteries of wavelengths The evolution of fiber optic - [Driving the Future of High-Speed Data Transfer: The Role of PAM4 and Silicon Photonics in the Age of AI](https://www.fiberstamp.com/driving-the-future-of-high-speed-data-transfer-the-role-of-pam4-and-silicon-photonics-in-the-age-of-ai.html) - The rapid development of artificial intelligence has led to an increasing demand for high bandwidth and high-speed data transmission, further driving the development of 800G technology. In this process, PAM4 (Four-Level Pulse Amplitude Modulation) and silicon photonics technology have played crucial roles. Let’s delve deeper into the roles of these two key technologies. PAM4 technology has proven to be - [Why 400G QSFP-DD DR4 Stands Out Among Optical Modules](https://www.fiberstamp.com/why-400g-qsfp-dd-dr4-stands-out-among-optical-modules.html) - In the current digital landscape, the imperative for high-speed data transmission has become paramount for both enterprises and technology suppliers. Meeting the escalating demands for accelerated data transfer, the 400G QSFP-DD DR4 silicon photonics module stands out as the cutting-edge solution for high-speed networks. This article will meticulously delve into the technical intricacies, advantages, and - [Optimizing Thermal Pad Selection: Key Factors for Enhanced Heat Transfer and Reliability](https://www.fiberstamp.com/optimizing-thermal-pad-selection-key-factors-for-enhanced-heat-transfer-and-reliability.html) - Thermal pads serve as a crucial link between heating components and heat dissipation surfaces. They are flexible and elastic, enabling coverage of uneven surfaces. These pads facilitate the conduction of heat from individual components or the entire PCB to metal casings or diffusion plates, thereby enhancing the efficiency and lifespan of heat-generating electronic parts. When - [Critical Role of 12G SDI Optical Modules in Ensuring High-Definition Video Transmission Stability](https://www.fiberstamp.com/critical-role-of-12g-sdi-optical-modules-in-ensuring-high-definition-video-transmission-stability.html) - 12G SDI is a solution designed for 4K ultra-high-definition video transmission.Its primary principle is that 12G SDI can integrate four 3G-SDI signal lines into one, achieving the transmission of 4K audio and video. This integration ensures the quality of transmitting 4K high-definition images and audio while also reducing costs. There’s a significant difference between SDI - [Exploring FIBERSTAMP’s Advanced Silicon Photonics for 400G Networks](https://www.fiberstamp.com/exploring-fiberstamps-advanced-silicon-photonics-for-400g-networks.html) - In the domain of commercial silicon photonics integration, there exists a clear division into two factions: the III-V family and silicon (Si). The III-V family technology, while mature, is burdened by high costs and incompatibility with CMOS (Integrated Circuit) technology. Conversely, Si silicon devices, leveraging CMOS technology, facilitate passive optoelectronic device integration and single-chip integration, - [AI’s Power Surge Ushers in Liquid Cooling Revolution in Data Centers](https://www.fiberstamp.com/ais-power-surge-ushers-in-liquid-cooling-revolution-in-data-centers.html) - The rising tide of Generative AI, pioneered by OpenAI’s ChatGPT, reshapes the data center landscape. This swift evolution anticipates a whopping $500 Billion Capex by 2027. However, the burgeoning demands of large language models prompt a significant transformation in data center architecture, reminiscent of infrastructures observed in the high-performance computing sector. AI’s Rising Power Demands: - [Surging Microwave Transmission Revenue Projections Highlight 5G Evolution’s Impact](https://www.fiberstamp.com/surging-microwave-transmission-revenue-projections-highlight-5g-evolutions-impact.html) - A recent forecast by Dell’Oro Group, a reputable source for telecommunications market insights, predicts an upward trajectory in Microwave Transmission equipment revenue. Projections indicate a substantial surge, with expectations soaring to $18 billion over the next five years. This significant uptick represents a remarkable 12 percent increase compared to the previous five-year period. The driving - [Next-Generation DWDM Optical Modules Based on PAM4 Modulation](https://www.fiberstamp.com/next-generation-dwdm-optical-modules-based-on-pam4-modulation.html) - The latest report, encompassing the second quarter of 2023, highlighted a 5% year-on-year growth in revenue for optical transport equipment, reaching slightly over $4.0 billion. The consistent growth rate for the optical market over the past three quarters was attributed to higher DWDM long haul and multiservice multiplexer revenue, surpassing initial estimates. Let’s delve further - [Data Centers Embrace Immersive Cooling Solutions for AI Overload](https://www.fiberstamp.com/data-centers-embrace-immersive-cooling-solutions-for-ai-overload.html) - AI applications are known for their voracious appetite for power, especially deep learning models that demand substantial computational resources during training and execution. The hardware requirements for running these applications include advanced components such as GPUs (specialized circuits for accelerating graphics and image rendering) and TPUs (circuits designed to accelerate AI and machine learning workloads). - [Green Living Meets Immersion Data Centers: A Perfect Pairing](https://www.fiberstamp.com/green-living-meets-immersion-data-centers-a-perfect-pairing.html) - In the ever-evolving landscape of data centers, energy consumption stands out as a significant concern, both from a financial and environmental perspective. The Storage Networking Industry Association emphasizes that energy costs rank among the largest budgetary allocations for data centers, resonating with the top 10 concerns of operators and network operations managers alike. Benefits of - [FIBERSTAMP Sets New Industry Benchmark with 800G QSFP-DD High-Speed Copper Cable assemblies](https://www.fiberstamp.com/fiberstamp-800g-qsfp-dd-high-speed-copper-cable-sets-new-industry-benchmark.html) - Singapore, July 24th, 2023 - FIBERSTAMP, a leading expert in 100G PAM4 technology, continues to demonstrate its commitment to innovation as it embraces the era of 400G commercialization and embarks on the 800G journey. Today, we are proud to announce the launch of the 800G QSFP-DD ACC and the expansion of our 800G QSFP-DD DAC - [FIBERSTAMP Introduces Two Distinct 400G Data Center architectures based on silicon photonics technology, Providing Optimal Choices for Different Customers](https://www.fiberstamp.com/fiberstamp-introduces-two-different-architectures-for-400g-data-center-interconnect-solutions-providing-optimal-choices-for-different-customers.html) - Singapore, 2023.8.24 - FIBERSTAMP has unveiled two distinct 400G data center interconnect solutions to cater to diverse client needs. With the current high-bandwidth demands of 100G/200G data centers, achieving the best 400G data center model has become a focal point in the industry. Among these, silicon photonics-based solutions are considered the most promising 400G data - [Fiberstamp Introduces Dual Duplex LC Interface - 400G QSFP-DD 2x FR4 and 200G QSFP-DD 2x CWDM4 Fan-Out Optical Modules for Enhanced Network Architecture](https://www.fiberstamp.com/fiberstamp-introduces-dual-duplex-lc-interface-400g-qsfp-dd-2x-fr4-and-200g-qsfp-dd-2x-cwdm4-fan-out-optical-modules-for-enhanced-network-architecture.html) - Singapore, 2023.10.30 - Fiberstamp has unveiled the innovative fan-out optical modules, 400G QSFP-DD 2x FR4 and 200G QSFP-DD 2x CWDM4. The primary goal of these new products is to maximize the development of low-order modulation technology, enhancing optical communication systems' flexibility, efficiency, and cost-effectiveness. This aims to optimize the value of low-order modulation technology within data center and - [FIBERSTAMP Launches 100G QSFP28 Triple-Proof Rugged Modules for Challenging Environments](https://www.fiberstamp.com/fiberstamp-launches-100g-qsfp28-triple-proof-rugged-modules-for-challenging-environments.html) - Singapore, 27th November — FIBERSTAMP introduces triple-proof 100G QSFP28 SR4/PSM4/CWDM4 rugged modules designed for edge server applications in hazardous environments (high dust, humidity, corrosion, etc.) and inhospitable or harsh industrial environments. These modules effectively alleviate the concerns and maintenance associated with the application environment of optical module products. The Industrial Internet is a cornerstone of - [FIBERSTAMP Showcases the 800G Interconnect TRIO at OCP2023/SC2023](https://www.fiberstamp.com/fiberstamp-showcases-the-800g-interconnect-trio-at-ocp2023-sc2023.html) - Singapore, 2023.10.11 - The upcoming OCP 2023 and SC 2023 events represent the most expansive stage for high-performance computing and data center product technology. FIBERSTAMP is set to make a remarkable appearance at both of these grand occasions, showcasing its innovative 800G DAC, 800G SR8/AOC, 800G DR8 silicon photonic modules, and liquid cooling interconnect solutions. - [Total Upgrade And Unveiled Economical 200G Data Center Solutions](https://www.fiberstamp.com/total-upgrade-and-unveiled-economical-200g-data-center-solutions.html) - Singapore, July 5th, 2023 - FIBERSTAMP has unveiled a brand-new economical 200G data center solution, undergoing a complete upgrade. The solution features the 200G QSFP56 DR4/FR4 optical module with PAM4 DML lasers, aiming to strike a balance between investment budget and effectiveness in data centers. The structure of this data center solution is as follows: - [FIBERSTAMP Launches Economical DCI BOX and 400G QSFP DD ZR+ Coherent Optics for Open Optical Networks](https://www.fiberstamp.com/fiberstamp-launches-economical-dci-box-and-400g-qsfp-dd-zr-coherent-optics.html) - Singapore, May 17th, 2023 - Boosting the huge demand for long-haul data center interconnection due to the market trend of cloud migration and large-scale integration of digital services, FIBERSTAMP introduces the new 400G QSFP DD ZR+ coherent optical module, which adopts the latest OpenZR+ specification and standard to improve the compatibility and economic efficiency of - [FIBERSTAMP Unveils Innovative Data Center Optical Interconnect Solutions and Network Diversion Best Practices at NA Cyber Security Expo](https://www.fiberstamp.com/fiberstamp-unveils-innovative-data-center-optical-interconnect-solutions-and-network-diversion-best-practices-at-na-cyber-security-expo.html) - Singapore, May 10th 2023 - FIBERSTAMP is honored to be invited to the North American Cyber Security and Cloud Expo. William Tan, the Marketing Director, will be speaking at the Santa Clara Convention Center in California on May 18th, 2023. As businesses migrate to the cloud, data transmission becomes more massive and complex, bringing higher - [FIBERSTAMP Presents New 48G SDI Solutions and Broadcast High Speed Optics at NAB 2023](https://www.fiberstamp.com/nab2023.html) - Singapore, Apr 6, 2023 – FIBERSTAMP will announce the brand new 48G SDI optical extenders and next-gen broadcast high-speed optical modules, the stable optical network solutions for agility production of UHD digital content and lossless transmission, at booth W3958 NAB Show 2023 from April 15-19th in Las Vegas. 48G SDI Solutions FIBERSTAMP released brand new - [Silicon Photonics Light Up 400G Data Centers](https://www.fiberstamp.com/silicon-photonics-light-up-400g-data-centers.html) - July 25, 2022 — The Silicon Photonics technology is widely used in 400G data centers and has been a cornerstone of technology innovation in recent years since it is a vital technology for meeting higher bandwidth demands at a substantially lower cost. Recently, FIBERSTAMP has launched 400G QSFP-DD DR4/DR4+ transceivers based on the Silicon Photonics technology, to - [FIBERSTAMP Honored by Lightwave Innovation Reviews for 50G SFP56 DWDM  ](https://www.fiberstamp.com/lightwave.html) - Singapore, FEB 15th 2023 - Recently, the famous media covering the global optical network industry, Lightwave, announced the 2023 Lightwave Innovation Reviews Honorees. FIBERSTAMP 's 50G PAM4 SFP56 DWDM 80 km (EDFA + DCM) optical module won a prize for facilitating long-distance transmission in the 5G fronthual application. FIBERSTAMP after winning the immersion cooling optical - [FIBERSTAMP exhibits new products at OFC2023, becomes superior flag bearer of open optical network middleware](https://www.fiberstamp.com/fiberstamp-exhibits-new-products-at-ofc2023-aims-to-be-the-superior-flag-bearer-of-open-optical-network-middleware.html) - Singapore, FEB 23, 2023 - As an open optical mail carrier, FIBERSTAMP will present a series of brand new self-developed products to exhibit at the Optical Fiber Communications Conference and Exhibition (OFC), San Diego Convention Center in San Diego, California, from March 7-9. We are looking forward to exploring industrial development prospects and exchanging cooperation - [Aiming to be an ideological company, FIBERSTAMP releases new products and solutions roadmap for 2023](https://www.fiberstamp.com/aiming-to-be-an-ideological-company-fiberstamp-releases-new-products-and-solutions-road-map-for-2023.html) - Singapore, Feb 7th, 2023 - While the world keeps changing, FIBERSTAMP has always maintained the inner passion for innovative technologies in optical communication industry. 2023 will be the year of solid development for FIBERSTAMP as an optical network mail carrier, and the year for us to demonstrate our core competency and ideology. ‘Mission Accomplished’ is the - [FIBERSTAMP Exhibits with immersible optics and server interconnect cables in SC22](https://www.fiberstamp.com/fiberstamp-exhibits-with-immersible-optical-modules-and-sever-interconnect-cables-in-sc2022.html) - Singapore, Nov 4th, 2022 – Super Computing 2022 (SC2022), will be held in Kay Bailey Hutchison Convention Center Dallas, Texas from November 14th to 17th , local time. FIBERSTAMP will bring a variety of self-developed immersion optical modules and server interconnect cables to the exhibition.(Booth,4340) FIBERSTAMP is a developer and product supplier of a wide range of - [FIBERSTAMP Launches 400G QSFP-DD ZR DCO For DCI and IP over DWDM](https://www.fiberstamp.com/fiberstamp-launches-400g-qsfp-dd-zr-dco-for-dci-and-ip-over-dwdm.html) - New Launch - [FIBERSTAMP's 100G QSFP28 SR BiDi & SWDM4 Optical Modules for Smooth Upgrade Data Center Fiber Infrastructure](https://www.fiberstamp.com/fiberstamps-100g-qsfp28-sr-bd-swdm4-optical-modules-for-smooth-upgrade-data-center-fiber-infrastructure.html) - Singapore, Dec 30th, 2022 – For perfectly scale-up from the 10G data center network to 100G, FIBERSTAMP launched 100G QSFP28 SR BiDi & SWDM4 can utilize part of the existing data center infrastructure while upgrading. The demand for bandwidth and data transmission rates is increasing, especially from performance-driven financial, healthcare, and technology companies that are - [Launches Several 400G QSFP-DD Products With 7nm DSP](https://www.fiberstamp.com/fiberstamp-launches-several-400g-qsfp-dd-products-with-7nm-dsp.html) - Singapore, Oct 22nd, 2022 – FIBERSTAMP has recently launched several 400G QSFP-DD products, including SR8, XDR4&PLR4, and FR4, all of which are based on the 7nm DSP chip. There is no doubt that 400G optical modules have become the best choice in the Late-100G optical modules era, FIBERSTAMP releases these four new products change from the original - [FIBERSTAMP Will Be Exhibiting OFC2022 with brand new optical interconnection hardware and innovation cost improvement solutions](https://www.fiberstamp.com/may-news) - FIBERSTAMP will attend the OFC 2022, which will be held in March 8-10th in San Diego Convention Center Booth 4907. At the conference, FIBERSTAMP will show its latest products and solutions featuring excellent differentiation technology fruits, best economy and user experience for niche markets covering niche application fields of data center and server, 5G fronthaul, - [FIBERSTAMP Launched Economical Coherent 200G Transponder & Muxponder](https://www.fiberstamp.com/fiberstamp-launched-economical-coherent-200g-transponder-muxponder.html) - June 4, 2021 — To meet the demand of the DCI market, FIBERSTAMP launched a economical and streamline Transponder & Muxponder coherent optical transmission solution, which support 100G CFP2 DCO and 200G CFP2 DCO optical transceivers. Features: High Integration: All electrical and optical functions are integrated in one rack unit Large Capacity: 400G per 1RU coherent transmission capacity, - [FIBERSTAMP Launches a Full Range of xWDM Transceivers for 5G Fronthaul](https://www.fiberstamp.com/fiberstamp-launches-a-full-range-of-xwdm-transceivers-for-5g-fronthaul.html) - July 30, 2020 — In response to 5G network deployment needs, FIBERSTAMP, the leader beyond 200G in the optical communications industry, began a comprehensive upgrade of the design of xWDM transceivers above 10G as early as 2018, and now officially launched a full range of 5G fronthaul xWDM transceivers, including 10G CWDM, 10G DWDM, 25G CWDM, - [With Hope | FIBERSTAMP Exhibits at OFC2020](https://www.fiberstamp.com/with-hope-fiberstamp-exhibits-at-ofc2020.html) - Affected by the novel coronavirus epidemic situation (COVID-19) , this OFC 2020 can be described as many twists and turns. After understanding the risk of the epidemic, FIBERSTAMP set up the OFC 2020 special action group for the first time. After a long period of preparation and preset assessment of various risk conditions, FIBERSTAMP made - [FIBERSTAMP Launches a Complete 200G Data Center Product Line](https://www.fiberstamp.com/fiberstamp-launches-a-complete-200g-data-center-product-line.html) - June 30, 2020 — FIBERSTAMP officially launched a complete 200G data center product line to meet the new requirements of hyperscale data centers and 5G in terms of bandwidth, reliability and cost of data communication products. The product line mainly includes two series: 200G QSFP56 Series (4x50G PAM4) 200G QSFP56 SR4/AOC — VCSEL, reach up to - [FIBERSTAMP Launches 100G Ultra-long Distance Dual-rate QSFP28 ER4/ZR4 Optical Transceiver](https://www.fiberstamp.com/fiberstamp-launches-100g-ultra-long-distance-dual-rate-qsfp28-er4-zr4-optical-transceiver.html) - August 20, 2021 — FIBERSTAMP today launches two models of 100G long distance optical transceivers — 100G QSFP28 ER4 & 100G QSFP28 ZR4, supporting up to 90km ultra-long distance dual-rate high-speed transmission, and showing up outstanding performance superiority of high stability and compatibility, are well adapt to 5G Backhaul and Metro DCI Networks. The newly rolled-out product portfolio feature several - [Deep Ploughing Cost Management Upgrade, FIBERSTAMP Realizes a Leap-forward Cost Optimization of 100G Optical Transceivers!](https://www.fiberstamp.com/deep-ploughing-cost-management-upgrade-fiberstamp-realizes-a-leap-forward-cost-optimization-of-100g-optical-transceivers.html) - May 28, 2021 — With the rapid development of public cloud, Internet of Things (IoT), artificial intelligence (AI) and 5G networks, the demand for high-speed network transmission has also shown obvious positive correlation growth, and the construction of large-scale data centers is gradually completing the rate upgrade. While data center transmission speeds are greatly upgraded, the - [FIBERSTAMP's 400G QSFP-DD PSM8 was honored as Elite Score recipients by 2021 Lightwave Innovation Reviews](https://www.fiberstamp.com/fiberstamps-400g-qsfp-dd-psm8-was-honored-as-elite-score-recipients-by-2021-lightwave-innovation-reviews.html) - Mar 24, 2021 — FIBERSTAMP, a leading manufacturer of pluggable optics beyond 200G, announced today that its 400G QSFP-DD PSM8 was recognized among the best by the 2021 Lightwave Innovation Reviews. An esteemed and experienced panel of judges from the optical communications community recognized FIBERSTAMP as a high-scoring honoree. 400G QSFP-DD PSM8 uses a single PCB design, so - [FIBERSTAMP to Participate in Lightwave Innovation Reviews 2021 with 400G QSFP-DD PSM8](https://www.fiberstamp.com/fiberstamp-to-participate-in-lightwave-innovation-reviews-2021-with-400g-qsfp-dd-psm8.html) - March 11, 2021 — FIBERSTAMP, a leading manufacturer of pluggable optics beyond 200G, announced to participate in the 2021 Lightwave Innovation Reviews. FIBERSTAMP chose the newly developed 400G QSFP-DD PSM8 to participate in the competition. FIBERSTAMP's industry-leading 400G QSFP-DD PSM8 transceiver adopts uncooled 50G PAM4 EML lasers to achieve 2-10km intra-connection for 400G data center. It adopts parallel light - [FIBERSTAMP Launches 200G QSFP56 ER4 Optical Transceiver — The Optimum Solution of 40km Long-distance Transmission!](https://www.fiberstamp.com/fiberstamp-launches-200g-qsfp56-er4-optical-transceiver-the-optimum-solution-of-40km-long-distance-transmission.html) - August 4, 2021 — Facing the explosive growth of Internet technology and data nowadays, data centers, communication network equipment vendors and network operators are increasingly eager for further improvement of broadband speed and transmission distance. At present, on the 40km long-distance transmission track, limited by technology and cost, users can only choose optical transceiver modules - [FIBERSTAMP Launches 400G QSFP-DD LR8 Optical Transceiver with Innovative 8-lane Optical Design](https://www.fiberstamp.com/fiberstamp-launches-400g-qsfp-dd-lr8-optical-transceiver-with-innovative-8-lane-optical-design.html) - June 16, 2021 — FIBERSTAMP, a new power in optical interconnection field coming from Taiwan, launched a new model 400G QSFP-DD LR8 Optical Transceiver, which is of significantly innovative meaning for dealing with highly increasing bandwidth demand of data centers. The product is manufactured with an initiative 8-lane WDM optical engine (1:8 LAN-WDM Mux/Demux (patent pending), - [FIBERSTAMP Supports the Liquid Cooling Data Center Reconstruction of a Top US HFT Company](https://www.fiberstamp.com/fiberstamp-supports-the-liquid-cooling-data-center-reconstruction-of-a-top-us-hft-company.html) - November 30, 2021 — FIBERSTAMP supports the liquid cooling data center reconstruction plan of a top US High Frequency Trading (HFT) company, with its liquid cooling immersible optical transceivers in joint testing phase at present. The client, as one of top US HFT companies owning top-ranking sophisticated computing environments for R&D, is planning to convert - [FIBERSTAMP Liquid Cooling Immersible Optical Transceiver Won 2022 LIGHTWAVE INNOVATION REVIEWS with 4.5 High Score!](https://www.fiberstamp.com/fiberstamp-liquid-cooling-immersible-optical-transceiver-won-2022-lightwave-innovation-reviews-with-4-5-high-score!.html) - The Ninth Annual Lightwave Innovation Reviews has come to a conclusion. FIBERSTAMP’s 25G liquid cooling immersible optical transceiver stands out from a pile of competitors to get a high score of 4.5 through the judges of the independent panel. Besides, FIBERSTAMP will attend the 2022 Lightwave Innovation Reviews Honoree Reception at 5:00 - 6:00 pm - [The New Force of 5G Fronthaul - FIBERSTAMP's 50G SFP56 DWDM Transceivers are coming](https://www.fiberstamp.com/the-new-force-of-5g-fronthaul-fiberstamps-50g-sfp56-dwdm-transceivers-are-coming.html) - May 24, 2022 — FIBERSTAMP, the mail carrier of open optical network, announced the launch of 50G SFP56 DWDM transceivers for 5G fronthaul. Following the steps of 25G SFP28 DWDM transceivers, the 50G SFP56 DWDM transceivers, that based on 50G PAM4 have been launched by FIBERSTAMP, will be put into use in 5G fronthaul. Compared with 25G - [Power-up Data Center Server Interconnection with 800G QSFP-DD PCC](https://www.fiberstamp.com/power-up-data-center-server-interconnection-with-800g-qsfp-dd-pcc.html) - June, 22, 2022 — FIBERSTAMP, the open optical network mail carrier, recently launched groundbreaking passive DAC cable assemblies, 800G QSFP-DD PCC, which breaks another barrier in the 112G PAM4 DAC server interconnection and aims to create an 800G data center. The globalized consumer trend is becoming sophisticated and leading the expectations of diversification and real-time efficiency - [DCI BOX Series Implementing Coherent Technology Applications in Ultra-Long-Haul Scenarios](https://www.fiberstamp.com/dci-box-series-implementing-coherent-technology-applications-in-ultra-long-haul-scenarios.html) - July,22,2022 - The combination of modern manufacturing with Internet, Big Data, Cloud Computing and Internet of Things is promoting applications of information, datafication, and intelligence in various industries, as well as driving the development of data center. FIBERSTAMP is committed to providing economical and simple data center interconnection(DCI) solutions and persisted study in coherent optical - [48G-SDI Video Optical Extender Augments 8K Visual Experience Delivery](https://www.fiberstamp.com/48g-sdi-video-optical-extender-augments-8k-visual-experience-delivery.html) - Aug 17, 2022 – The development of ultra-high-definition (UHD) technology is driven by people’s infinite desire for the visual experience. With the prevalence of high-speed network era, video applications such as live streaming, cloud video conferencing, and distance education have emerged, showing the market’s demand for video signals, from ”scene reproduction” to “realistic restoration”. 8K - [FIBERSTAMP Headquarter Relocated to Singapore with Southeast Asia Manufactory Establishment](https://www.fiberstamp.com/fiberstamp-headquarter-relocated-to-singapore-with-southeast-asia-manufactory-establishment.html) - Sep 22th, 2022 — Singapore, one of the most economically stable countries in the world, has consistently ranked as a leader in digitalization, with a vibrant Information and Communications Technology (ICT) ecosystem and world-class infrastructure. At the same time, a multicultural environment and an openness to differences create unlimited opportunities for ICT firms to partner ## Pages - [Home](https://www.fiberstamp.com/) - FIBERSTAMP is an open optical network middleware provider with a diverse technology path. Experts in III-V Transceivers & Silicon Photonics for Data Centers, Servers, 5G Open RAN, and UHD video transmission. - [Products](https://www.fiberstamp.com/product-solution.html) - FIBERSTAMP masters siph optical transceivers alongside traditional III-V based ones, offering a versatile transceiver lineup up to 800G for various distance needs. - [AI&DC Immersible Liquid Cooling](https://www.fiberstamp.com/aidc-immersible-liquid-cooling) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent &Coherent DWDMSolutions Optical Lab Equipment Innovative Technology Immersion cooling is a full immersion solution using insulating liquid as the coolant. The heat is directly transferred from the server to coolant, the coolant then undergoes secondary heat exchange with - [Non-Coherent & Coherent DWDM Solutions](https://www.fiberstamp.com/non-coherent-coherent-dwdm-solutions) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent & Coherent DWDM Solutions Optical Lab Equipment Comprehensive Open Optical Network FIBERSTAMP’s comprehensive Color X DWDM solutions enable efficient optical connectivity across modern network infrastructures. Our portfolio includes O-Band non-coherent DWDM modules, coherent DWDM modules, Color ZR/X non-coherent - [5G & Metro Network](https://www.fiberstamp.com/5g-metro-network) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent & Coherent DWDM Solutions Optical Lab Equipment Mature Technology & High Productivity To keep up with the demands of High-Performance Computing (HPC) and High-Frequency Trading (HFT) applications in Data Centers and 5G settings, FIBERSTAMP utilizes proven COB technology - [5G & Metro Network](https://www.fiberstamp.com/telecom-mobile-network.html) - FIBERSTAMP crafts advanced Active Optical Cables (AOC) assemblies tailored for Data Centers, 5G environments, HPC, and HFT applications. - [SDI Video Transmission](https://www.fiberstamp.com/sdi-video-transmission.html) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent & Coherent DWDM Solutions Optical Lab Equipment Leading Video Transmission Technology FIBERSTAMP has introduced a variety of high-speed broadcast-grade video optical transceiver kit solutions that aim to enable long-distance single-mode fiber transmission of multiple uncompressed SDI signals to - [AI&DC NPO Solutions](https://www.fiberstamp.com/aidc-npo-solutions) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent &Coherent DWDMSolutions Optical Lab Equipment Linear NPO Linear Near-Packaged Optics (NPO) places optical engines adjacent to the switch ASIC, enabling DSP-free optical interconnects with lower power consumption, higher bandwidth density, and improved signal integrity for next-generation AI and - [Solutions](https://www.fiberstamp.com/solutions) - Solutions FIBERSTAMP offers a complete portfolio of advanced optical interconnect and transport solutions for AI computing, hyperscale data centers, metro networks, and professional applications. Covering speeds from 100G to 1.6T, our solutions span hybrid and coherent architectures, silicon photonics, passive WDM systems, and high-density fiber infrastructure. Designed with a system-level engineering approach, they enable scalable - [DWDM&DCI BOX 2026](https://www.fiberstamp.com/dwdm-dci-box.html) - FIBERSTAMP offers Passive Wavelength Division Multiplexing (WDM) system, Non-coherent DWDM subsystems for enhanced transmission quality, and Coherent DCI BOX offerings for ultra-large-capacity service access. - [RESORCES](https://www.fiberstamp.com/download-center) - AI&DC Interconnect AI&DC CPC/CPO Solutions AI&DC Immersible Liquid Cooling 5G&Metro Network SDI Video Transmission DWDM&DCI BOX Optical Lab Equipment Download Product Series Brochures Download our latest product brochures featuring high-speed transceivers, AOC/DAC cables, liquid-cooled interconnects, uncompressed video transmission modules, and open DCI DWDM solutions for data center and broadcast applications. FIBERSTAMP Transceivers & Cables PostFIBERSTAMP, - [Activities](https://www.fiberstamp.com/activities.html) - Introducing our news channel where we share the latest from the forefront of open optical networking. Stay updated with our continuous stream of new product releases, innovative services, and engaging activities, showcasing our expertise as pioneers in the field. - [Optical Lab Equipment](https://www.fiberstamp.com/optical-lab-equipment) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent &Coherent DWDMSolutions Optical Lab Equipment Optical Lab Equipment FIBERSTAMP’s Optical Lab Equipment series provides comprehensive tools for optical network testing and validation — including Checkers, Loopback Modules, and the Cloud Programmer.Designed for precision, reliability, and multi-form-factor compatibility to - [AI&DC Interconnect](https://www.fiberstamp.com/ai-dc-interconnect.html) - AI&DC Interconnect AI&DC NPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Non-Coherent &Coherent DWDMSolutions Optical Lab Equipment Diverse Technology Path & Product Line FIBERSTAMP excels in producing silicon optical modules, mastering both traditional III-V laser-based optical modules and cutting-edge silicon optical technology. Our comprehensive transceiver range spans up to 800G - [Membership](https://www.fiberstamp.com/membership) - AI&DC Interconnect AI&DC CPC/CPO Solutions AI&DC Immersible Liquid Cooling 5G&Metro Network SDI Video Transmission DWDM&DCI BOX Optical Lab Equipment Order Now About the Membership Program Our membership offers exclusive, one-stop services for VIP customers, including:Real-time order trackingAccess to inventory updatesProduct reward redemptionPriority support and promotionsJoin now to unlock premium benefits and streamline your partnership with - [AI&DC CPC/CPO Solutions](https://www.fiberstamp.com/cpo.html) - AI&DC Interconnect AI&DC CPO Solutions AI&DC Immersible Liquid Cooling 5G & Metro Network SDI Video Transmission Color X Non-Coherent &Coherent DWDMSolutions Optical Lab Equipment Linear CPO Linear CPO is a relatively friendly technology form, eliminates the need for DSPs, enabling higher-speed, lower-power, and more reliable interconnects. It addresses limitations of traditional pluggable optics and emerging - [Membership](https://www.fiberstamp.com/service.html) - We offer VIP customers a seamless, all-in-one service to track their order status and redeem product rewards hassle-free. - [EverCompare](https://www.fiberstamp.com/evercompare) - [evercompare_table] - [HDMI/USB AOC](https://www.fiberstamp.com/sdi-video-transmission/hdmi-usb-aoc.html) - DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI Video Transmission Leading Video Transmission Technology FIBERSTAMP has introduced a variety of high-speed broadcast-grade video optical transceiver kit solutions that aim to enable long-distance single-mode fiber transmission of multiple uncompressed SDI signals to meet different scenarios in the upcoming 4K/8K UHD remote transmission era. - [SDI Extender](https://www.fiberstamp.com/sdi-video-transmission/sdi-extender.html) - DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI Video Transmission Leading Video Transmission Technology FIBERSTAMP has introduced a variety of high-speed broadcast-grade video optical transceiver kit solutions that aim to enable long-distance single-mode fiber transmission of multiple uncompressed SDI signals to meet different scenarios in the upcoming 4K/8K UHD remote transmission era. - [Immersible DAC](https://www.fiberstamp.com/immersible-dac.html) - Optical Network Switches Optical Modules & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System Optical Transceivers Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI - [Immersible AOC](https://www.fiberstamp.com/immersible-aoc.html) - Optical Modules & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System Optical Transceivers Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI Video Transmission Innovative - [DAC](https://www.fiberstamp.com/dac.html) - Optical Modules & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System Optical Modules & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI - [Coherent Optical Transceiver](https://www.fiberstamp.com/coherent-optical-transceiver.html) - Optical Modules & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System Optical Transceivers Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI Video Transmission Comprehensive - [Passive WDM Subsystem](https://www.fiberstamp.com/passive-wdm-subsystem.html) - FIBERSTAMP offers a diverse suite of Open Optical Network System solutions, including WDM and DWDM systems for enhanced transmission across metropolitan, regional, and DWDM networks. - [Non-Cherent DWDM Subsystem](https://www.fiberstamp.com/non-coherent-dwdm-subsystem.html) - [Campus Switches](https://www.fiberstamp.com/campus-switches.html) - Optical Module & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System Optical Modules & Coherent DCO Active Optical Cables Direct Attach Copper Cables Immersion Cooling Optics Optical Network Switches Open Optical Network System DWDM&DCI BOX AI&DC Interconnect AI&DC Immersible Liquid Cooling 5G&Metro Network SDI - [HAOC](https://www.fiberstamp.com/haoc.html) - FIBERSTAMP crafts advanced Hardened Active Optical Cables(HAOC) assemblies tailored for Data Centers, 5G Fronthaul , HPC, and HFT applications. - [Immersible Extender](https://www.fiberstamp.com/immersible-extender.html) - [AOC](https://www.fiberstamp.com/aoc.html) - [Rugged-series](https://www.fiberstamp.com/rugged-transceivers.html) - [Loopback Series](https://www.fiberstamp.com/loopback-modules.html) - [SMF / SiPh Series](https://www.fiberstamp.com/smf-transceivers.html) - FIBERSTAMP continues to redefine industry standards with our silicon-based integrated optical transceivers, building upon our proven range of 100G/400G/800G modules. ## ElementsKit items - [dynamic-content-widget-409839c-99](https://www.fiberstamp.com/elementskit-content/dynamic-content-widget-409839c-99) - dynamic-content-widget-409839c-99 - [dynamic-content-widget-5696075-99](https://www.fiberstamp.com/elementskit-content/dynamic-content-widget-5696075-99) - Data Center Solutions Showcasing 5 Projects Hyperscale Data Centers Malesuada fames ac turpis egestas integer eget aliquet nibh. maecenas pharetra convallis posuere morbi leo urna molestie at. 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Egestas maecenas pharetra convallis posuere morbi leo pharetra convallis - [dynamic-content-widget-7ced03d-99](https://www.fiberstamp.com/elementskit-content/dynamic-content-widget-7ced03d-99) - [dynamic-content-megamenu-menuitem1471](https://www.fiberstamp.com/elementskit-content/dynamic-content-megamenu-menuitem1471) - what’s new furniture Dining Chairs Counter & Bar Stools Occasional Chairs Daybeds & Chaises lightings Benches & Ottomans Dining Tables Coffee & Cocktail Tables Consoles & Desks accessories Cabinets & Bookcases Screens Outdoor Furniture Floor Samples Texture lab Side Tables Beside Tables Sideboards & Drawers Lounge Chairs - [dynamic-content-megamenu-menuitem1473](https://www.fiberstamp.com/elementskit-content/dynamic-content-megamenu-menuitem1473) - what’s new 400G QSFP-DDNEW LAUNCHES 数据中心&服务器 5G 前传 相干光通信 电信传输 超高清视讯 - [dynamic-content-megamenu-menuitem1448](https://www.fiberstamp.com/elementskit-content/dynamic-content-megamenu-menuitem1448) - Product Post 数据中心与服务器 5G OPEN RAN 相干光通信 超高清视讯 Security Tools Benches & Ottomans Dining Tables Coffee & Cocktail Tables Consoles & Desks Cocktail Tables Brand Gadget Side Tables Beside Tables Sideboards & Drawers Lounge Chairs Consoles & Desks Smartwatch Dining Chairs Counter & Bar Stools Occasional Chairs Daybeds & Chaises Benches & Ottomans ## Products - [12G-SDI DWDM SFP Optical Transceiver 10km/30km Reach](https://www.fiberstamp.com/12g-sdi-dwdm-sfp.html) - FIBERSTAMP’s 12G-SDI DWDM SFP Optical Transceiver is designed to transmit/receive data rates from 50Mbps to 11.88Gbps,compliant with SMPTE ST 2082-1 (12G UHD-SDI), ST 2081-1 (6G UHD-SDI), ST424 (3G SDI), ST 292-1 (HD-SDI), and ST 259 (SD-SDI). FIBERSTAMP’s Video transceiver supports SDI pathological patterns signals. The transceiver includes threse sections: a cooled DWDM DML transmitter, a PIN/APD photodiode integrated with a trans-impedance preamplifier (TIA) ,Reclocker ,and a MCU controller. The transceiver is compliant with SFP Multi-Source Agreement (MSA) . - [400G QSFP-DD SR8 Optical Transceiver for liquid cooling (MPO16)](https://www.fiberstamp.com/immersible-400g-qsfp-dd-sr8.html-2) - FIBERSTAMP immersion 400G QSFP-DD SR8 is a Eight-Channel, Pluggable, Parallel, Fiber-Optic QSFP Double Density for 2x200 Gigabit Ethernet Applications. This transceiver is a high performance module for short-range multi-lane data communication and interconnection applications. It integrates eight data lanes in each direction with 8x26.5625GBd. Each lane can operate at 53.125Gbps up to 70 m using OM3 fiber or 100 m using OM4 fiber with FEC, the optical interface is pluggable MPO16 pigtail. It’s suitable for immersion environment, the internal optics are covered and protected with special technique to prevent cooling liquid leakage. - [100G QSFP28 PSM DWDM4 C-BAND MPO Optical Transceiver](https://www.fiberstamp.com/product/100g-qsfp28-psm-dwdm4-c-band-mpo-optical-transceiver) - FIBERSTAMP FEG-100DxK80C is a Four-Channel, Pluggable, Parallel, Fiber-Optic QSFP28 PSM4 C-BAND DWDM4 for 100G or 40 Ethernet Metro-Access over DWDM applications. It integrates four data lanes in each direction with 104 Gbps bandwidth. Each lane can operate at 26Gbps up to 80km over G.652 SMFwith external Mux/Demux, EDFA ,CD compensation.The electrical interface uses a 38 contact edge type connector. The optical interface uses a 12 fiber MTP (MPO) connector. - [Immersion 800G QSFP-DD Active Optical Cable Optical for liquid cooling](https://www.fiberstamp.com/immersible-800g-qsfp-dd-aoc.html) - FIBERSTAMP 800G QSFP-DD AOC is Eight-Channel, Pluggable, Parallel, Fiber-Optic QSFPDD Double Density for 800 Gigabit Ethernet Applications. It integrates eight data lanes in each direction with 8x53.125GBd. Each lane can operate at 106.25Gbps up to 30 m using OM3 fiber or 50 m using OM4 fiber with FEC. Both ends of this product are 800G QSFP-DD liquid immersion transceivers , internal optics are covered and protected with special technique to prevent cooling liquid leakage, the both side optical interface is MPO16 and pluggable with MPO16 optical jumper. - [Immersion 800G OSFP112 SR8 Optical Transceiver Module for liquid cooling](https://www.fiberstamp.com/immersible-800g-osfp-sr8.html) - FIBERSTAMP 800G OSFP SR8 immersible cooling optical transceiver is a Eight-Channel, OSFP Form Pluggable, Parallel, Fiber-Optic for 800 Gigabit Ethernet Applications in liquid immersion environment. This transceiver is a high performance module for short-range multi-lane data communication and interconnection applications. It integrates eight data lanes in each direction with 8x53.125GBd. Each lane can operate at 106.25Gbps up to 60 m using OM3 fiber or 100 m using OM4 fiber with FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The optical interface uses dual 12 fiber pluggable APC MPO pigtail. The Common Management Interface Specification (CMIS) for OSFP modules, This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [Immersion 800G QSFP-DD SR8 Optical Transceiver Module for liquid cooling](https://www.fiberstamp.com/immersible-800g-qsfp-dd-sr8.html-2) - FIBERSTAMP immersion 800G QSFP-DD SR8 Optical Transceiver Module is a Eight-Channel, Pluggable, Parallel, Fiber-Optic QSFPDD Double Density for 800 Gigabit Ethernet Applications in liquid immersion environment. This transceiver is a high performance module for short-range multi-lane data communication and interconnection applications. It integrates eight data lanes in each direction with 8x53.125GBd. Each lane can operate at 106.25Gbps up to 60 m using OM3 fiber or 100 m using OM4 fiber with FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The optical interface uses pluggable MPO16 pigtail. The Common Management Interface Specification (CMIS) for QSFP-DD modules, This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [200G QSFP DD PSM8 20km Optical Transceiver MPO24 / MPO16](https://www.fiberstamp.com/200g-qsfp-dd-psm8-20km.html) - FIBERSTAMP 200G QSFP DD PSM8 20km Optical Transceiver is a Eight-Channel, Pluggable, Parallel, Fiber-Optic QSFP DD PSM8 for 2×100 Gigabit Ethernet , Infiniband DDR/EDR Applications. This transceiver is a high performance module for data communication and interconnect applications. It integrates eight data lanes in each direction with 208 Gbps bandwidth. Each lane can operate at 26Gbps up to 20km over G.652 SMF. These modules are designed to operate over single mode fiber systems using a nominal wavelength of 1310nm. The electrical interface uses a 76 contact edge type connector. The optical interface uses an 16/ 24 fiber MTP (MPO) connector. This module incorporates FIBERSTAMP Technologies proven circuit and Optical technology to provide reliable long life, high performance, and consistent service. - [200G QSFP-DD PSM8 DML 1310nm 2km/10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/200g-qsfp-dd-psm8.html) - FIBERSTAMP 200G QSFP-DD PSM8 optical transceiver modules are used for medium to long distance interconnections in data centers and are compliant with 100G PSM4 MSA specification and 200G Ethernet transport protocols, as well as compatible with 8x10G/25G Ethernet and InfiniBand QDR/EDR transport protocols. The series uses 8 pairs of parallel single-mode fiber optic transmission with a central wavelength of 1310nm and distances up to 2km or 10km (both with FEC on), with optional industrial grade operating temperature range. - [SFP112 immersion cooling extender](https://www.fiberstamp.com/sfp112-immersion-cooling-extender.html) - FIBERSTAMP can offer rich experience of immersion solution, that includes different form and speed transceivers/AOC/product. FIBERSTAMP SFP112 immersion cooling extender (FSWE-PC101-DXX) is an important part of liquid immersion solution, normal SFP112 form transceiver/AOC can be used for immersion environment with this product. This product include extender cage, cable, SFP112 housing three parts, the cable length can be customized no more than 0.3m for extension, that can avoid the optical lens/engine/interface exposure to the liquid indirectly. In addition, this product can provide I2C read/write, also can show the status indicators with LED for low speed electrical hardware pins. When insertion and removal frequently, this product can effectively protect the SFP112 SMT connector of switch/NIC. - [SFP28 immersion cooling extender](https://www.fiberstamp.com/sfp28-immersion-cooling-extender.html) - FIBERSTAMP can offer rich experience of immersion solution, that includes different form and speed transceivers/AOC/product. FIBERSTAMP SFP28 immersion cooling extender (FSCE-PC250-DXX) is an important part of liquid immersion solution, normal SFP form transceiver/AOC can be used for immersion environment with this product. This product include extender cage, cable, SFP housing three parts, the cable length can be customized no more than 0.5m for extension, that can avoid the optical lens/engine/interface exposure to the liquid indirectly. In addition, this product can provide I2C read/write, also can show the status indicators with LED for low speed electrical hardware pins. When insertion and removal frequently, this product can effectively protect the SFP SMT connector of switch/NIC. - [200GBASE-SR4 QSFP56 AOC for liquid cooling](https://www.fiberstamp.com/200g-sr4-qsfp56-aoc.html) - Description The FIBERSTAMP’s 200G QSFP56 AOC is designed for use in 200G Ethernet links over OM3/OM4/OM5 multimode fiber, both ends are QSFP56 liquid immersion transceiver and connected by single MPO connector receptacle, internal optics are covered and protected with special technique to prevent cooling liquid leakage, all of active optical cable assemblies are specially designed for liquid immersion environment. They are compliant with the QSFP MSA and IEEE 802.3cd 200GBASE-SR4 specification. Digital diagnostics functions are available via the I2C interface as specified by CMIS V4.0. It integrates 4 data lanes in each direction with 4*53.125Gb/s bandwidth. - [FIBERSTAMP 100G QSFP28 Liquid Immersion Active Optical Cable](https://www.fiberstamp.com/100g-qsfp28-aoc.html) - The FIBERSTAMP Technologies 100G QSFP28 Liquid Immersion AOC is a Four-Channel, Pluggable, Parallel, Fiber-Optic QSFP28 SR4 for 100 or 40 Gigabit Ethernet, Infiniband FDR/EDR Applications.This transceiver is a high performance module for short-range multi-lane data communication and interconnect applications especially for liquid imemersion environment. It integrates four data lanes in each direction with 100 Gbps bandwidth. Each lane can operate at 25Gbps up to 70 m using OM3 fiber or 100 m using OM4 fiber. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The electrical interface uses a 38 contact edge type connector. The optical interface uses an 12 fiber MTP (MPO) connector. This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [400G OSFP RHS Active Optical Cable for liquid cooling](https://www.fiberstamp.com/400g-osfp-rhs-aoc.html) - The FIBERSTAMP’s 400GE OSFP RHS AOC is designed for use in 400G Ethernet/IB links over OM3/OM4/OM5 multimode fiber, both ends are OSFP RHS liquid immersion transceivers and connected by a single MPO connector receptacle, internal optics are covered and protected with special technique to prevent cooling liquid leakage, all of active optical cable assemblies are specially designed for liquid immersion environment. They are compliant with the OSFP MSA and IEEE 802.3db 400GBASE-SR4 specification. Digital diagnostics functions are available via the I2C interface as specified by CMIS V4.0. It integrates 4 data lanes in each direction with 4*106.25Gb/s bandwidth. - [400G QSFP112 Active Optical Cable for liquid cooling](https://www.fiberstamp.com/400g-qsfp112-aoc.html-2) - The FIBERSTAMP’s 400GE QSFP112 AOC is designed for use in 400G Ethernet/IB links over OM3/OM4/OM5 multimode fiber, both ends are QSFP112 liquid immersion transceivers and connected by a single MPO connector receptacle, internal optics are covered and protected with special technique to prevent cooling liquid leakage, all of active optical cable assemblies are specially designed for liquid immersion environment. They are compliant with the QSFP112 MSA and IEEE 802.3db 400GBASE-SR4 specification. Digital diagnostics functions are available via the I2C interface as specified by CMIS V4.0. It integrates 4 data lanes in each direction with 4*106.25Gb/s bandwidth. - [FIBERSTAMP Color X 400G QSFP-DD PSM4 O-band DWDM4 10km Silicon Photonics Transceiver Module](https://www.fiberstamp.com/product/color-x-400g-qsfp-dd-dwdm4) - The Color X 400G QSFP-DD PSM4 DWDM4 is a Four-Channel, Pluggable, Parallel, Fiber-OpticQSFP28 PSM4 for 400G or 200G Ethernet Metro-Access over DWDM applications and it is compliant to QSFP-DDMSA, IEEE802.3bs protocol and 400GAUI-8 standards. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform. It uses SiPh chips that integrate a number of active and passive optoelectronic components, 3D packaging technology and industry-leading 7nm DSP chips. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [Color ZR+100G QSFP28 PSM DWDM4 C-band Optical Transceiver Module](https://www.fiberstamp.com/product/color-zr100g-qsfp28-psm-dwdm-dwdm) - The Color ZR+ 100G QSFP28 PSM DWDM4 is a non-coherent DWDM optical transceiver optimized for cost-effective data center interconnect and metro transport networks. Operating in the C-band with EML-based transmitters, it supports multi-channel DWDM transmission using a simplified direct-detect architecture. The module enables reliable short- to medium-reach DWDM links while maintaining low power consumption and compact QSFP28 form factor. - [FIBERSTAMP 200G QSFP DD SR4 Optical Transceiver Module](https://www.fiberstamp.com/200g-qsfp-dd-sr4.html) - The FIBERSTAMP 200G QSFP DD SR4 is a Pluggable, Parallel, Fiber-Optic QSFP Double Density for 200 Gigabit Ethernet Applications. This transceiver is a high performance module for short-range multi-lane data communication and interconnection applications. Each lane can operate at 53.125Gbps up to 70 m using OM3 fiber or 100 m using OM4 fiber with KP-FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The electrical interface 200GAUI-8(no FEC)1 uses a 76 contact edge type connector. The optical interface uses a 12 fiber MTP (MPO) connector. This module can convert 8 channels of 25Gbps (NRZ) electrical input data to 4 channels of 50Gbps (PAM4) optical signal, and also can convert 4 channels of 50Gbps (PAM4) optical signal to 8 channels of 25Gbps (NRZ) electrical output data. The Common Management Interface Specification (CMIS) for QSFP DD modules, This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [400G QSFP112 to 2 x 200G QSFP56 AOC Optical Transceiver Module](https://www.fiberstamp.com/400g-qsfp112-to-2-x-200g-qsfp56.html) - FIBERSTAMP’s FYJH-400MxxxC MMF Active Optical Cable is used in 4 X 100Gigabit Ethernet links over OM3/OM4 multimode fiber. The QSFP112 port has integrate 4 independent transmit and receive channels, each capable of 106.25Gb/s PAM4 operation for an aggregate data rate of 425Gb/s. The QSFP56 module can convert 4-channel 53.125Gb/s electrical data to 2 parallel channels of optical signals, each supporting106.25Gb/s data transmission. Reversely, it can convert 2-channel 106.25Gb/s optical signals to 4-channel electrical output data on the receiver side. It is compliant with IEEE 802.3db, and QSFP112 &QSFP56 MSA. - [SiPh 800G QSFP-DD 2xLR4 CWDM4 10km SMF 2xDuplex LC Optical Transceiver](https://www.fiberstamp.com/siph-800g-qsfp-dd-2xlr4.html) - FIBERSTAMP's 800G QSFP-DD 2xLR4 silicon photonics hot-pluggable optical modules are engineered with silicon photonics integration for 800GBASE-2xLR4 Ethernet links within data centers. Utilizing 100G PAM4 and 2x4-way single-mode parallel technology, these modules support transmission distances of up to 10km. - [FIBERSTAMP 100G-DWDM1 QSFP28 10km Silicon Photonics Transceiver Module](https://www.fiberstamp.com/100g-qsfp28-dwdm1-o-band.html) - FIBERSTAMP 100G-DWDM1 QSFP28 is optical transceiver designed for using in 100-Gigabit Ethernet links up to 10km over Single-Mode Fiber (SMF). It is compliant with the QSFP28 MSA , 100G Lambda MSA 100G-LR Specification and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. It integrates 4 data lanes in each direction with 4×25.78125Gb/s bandwidth. The electrical interface uses a 38-contact edge type connector. The optical interface uses a Duplex LC connector. This module incorporates FIBERSTAMP proven circuit and Silicon Photonics technology to provide reliable long life, high performance, and consistent service. - [800G QSFP-DD VR8 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/800g-qsfp-dd-vr8.html) - FIBERSTAMP 800G QSFP-DD VR8 is a hot-pluggable optical transceiver module designed for 800G VR8 Ethernet links in data centers. It adopts 100G PAM4 and VCSEL technology and can realize 800G data exchange within 50m. - [400G QSFP-DD PSM O-band DWDM4 10km Silicon Photonics Transceiver Module](https://www.fiberstamp.com/400g-qsfp-dd-psm-o-band-dwdm4-siph-10km.html) - The FIBERSTAMP 400G QSFP-DD PSM O-band DWDM4 is a Four-Channel, Pluggable, Parallel, Fiber-Optic QSFP 28 PSM4 for 400G or 200G Ethernet Metro-Access over DWDM applications and it is compliant to QSFP-DD MSA, IEEE 802.3bs protocol and 400GAUI-8 standards. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform. It uses SiPh chips that integrate a number of active and passive optoelectronic components, 3D packaging technology and industry-leading 7nm DSP chips. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [SiPh 800G QSFP-DD DR8+ 1310nm 2km SMF MPO Optical Transceiver](https://www.fiberstamp.com/siph-800g-qsfp-dr8-2km.html) - FIBERSTAMP's 800G QSFP-DD DR8+ silicon photonics hot-pluggable optical modules are engineered with silicon photonics integration for 800GBASE-DR8 Ethernet links within data centers. Utilizing 100G PAM4 and 8-way single-mode parallel technology, these modules support transmission distances of up to 2km. - [SiPh 800G QSFP-DD DR8++ 1310nm 10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/siph-800g-qsfp-dr8-10km.html) - FIBERSTAMP's 800G QSFP-DD DR8++ silicon photonics hot-pluggable optical modules are engineered with silicon photonics integration for 800GBASE-DR8 Ethernet links within data centers. Utilizing 100G PAM4 and 8-way single-mode parallel technology, these modules support transmission distances of up to 10km. - [SiPh 400G QSFP-DD DR4+ 1310nm 2km SMF MPO Optical Transceiver](https://www.fiberstamp.com/siph-400g-qsfp-dd-dr4-plus.html) - FIBERSTAMP 400G QSFP-DD DR4+ silicon optical module is an enhanced version of DR4 and supports a larger transmission distance. The product complies with the IEEE 802.3bs 400GBASE-DR4 specification and supports 400G Ethernet rate (425Gb/s) full-duplex links up to 2km. Thanks to the advantages of high signal quality and low mass production cost brought by silicon photonics technology, as well as the advantages of low device cost brought by single-wavelength 100G PAM4 modulation technology and parallel optical engine technology, this product has now become a data center 2km,which is one of the most cost-effective solutions for domestic 400G interconnection. - [SiPh 400G QSFP-DD DR4 1310nm 500m SMF MPO Optical Transceiver](https://www.fiberstamp.com/siph-400g-qsfp-dd-dr4.html) - FIBERSTAMP 400G QSFP-DD DR4 silicon optical module is a hot-pluggable optical transceiver module manufactured based on silicon photonics integration technology, designed for 400GBASE-DR4 Ethernet links in data centers, using 100G PAM4 and 4-way single-mode parallel technology, supporting a maximum transmission distance of 500m or 2km. - [400G QSFP-DD 2×FR4 DML 2xCWDM4 2km SMF Dual Duplex LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-2fr4.html) - FIBERSTAMP 400G QSFP-DD 2×FR4 optical transceiver module is designed for medium-distance interconnect in data centers, compliant with the IEEE 802.3cn 400GBASE-2xFR4 Ethernet transmission protocol, supporting link transmission of up to 2km. - [400G QSFP-DD PLR4 1310nm EML 10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-plr4.html) - FIBERSTAMP 400G QSFP-DD PLR4 optical transceiver module is used for long-distance interconnection of data centers, conforms to IEEE 802.3cu 100GBASE-LR1 Ethernet transmission protocol, and is also compatible with IEEE 802.3bs 400GBASE-DR4 Ethernet transmission protocol. This product uses 4 pairs of parallel single-mode optical fiber transmission, the center wavelength is 1310nm, the distance can reach up to 10km (FEC needs to be turned on), and it supports 400G to 4x 100G-LR1 branch interconnection. - [400G QSFP-DD LR4 EML CWDM4 10km SMF LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-lr4.html) - FIBERSTAMP 400G QSFP-DD LR4 optical transceiver module is used for medium and long-distance interconnection in data centers, conforms to the 100G Lambda MSA 400G-LR4-10 specification, and is compatible with IEEE 802.3cu 400GBASE-LR4 Ethernet transmission protocol. The product has a built-in pair of 4-channel CWDM MUX and DEMUX with center wavelengths of 1271nm, 1291nm, 1311nm and 1331nm respectively. It uses a pair of single-mode fiber for transmission, and the distance can reach up to 10km (FEC needs to be turned on). - [800G QSFP-DD SR8 VCSEL 850nm 100m MMF MPO/MTP Optical Transceiver](https://www.fiberstamp.com/800g-qsfp-dd-sr8.html) - FIBERSTAMP 800G QSFP-DD SR8 is a hot-pluggable optical transceiver module designed for 800G SR8 Ethernet links in data centers. It adopts 50G PAM4 and VCSEL technology and can realize 800G data exchange within 100m. - [800G OSFP SR8 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/800g-osfp-sr8.html) - FIBERSTAMP 800G OSFP SR8 is a hot-pluggable optical transceiver module designed for 800G SR8 Ethernet links in data centers. It adopts 100G PAM4 and VCSEL technology and can realize 800G data exchange within 100m. - [200G QSFP56 DR4 EML 1310nm 500m SMF MPO Optical Transceiver](https://www.fiberstamp.com/200g-qsfp56-dr.html) - FIBERSTAMP 200G QSFP56 DR4 optical transceiver module is used for short to medium distance interconnections between devices within data centers and is compliant with IEEE 802.3bs 200GBASE-DR4 Ethernet transport protocol and is also compatible with InfiniBand HDR transport protocol. It uses 4 pairs of parallel single-mode fiber for transmission with a central wavelength of 1310nm and a distance of up to 500m (with FEC enabled). - [200G QSFP56 FR4 DML CWDM4 2km SMF LC Optical Transceiver](https://www.fiberstamp.com/200g-qsfp56-fr4-dml.html) - FIBERSTAMP 200G QSFP56 FR4 optical transceiver module is used for medium distance interconnection between devices within data centers and is compliant with IEEE 802.3bs 200GBASE-FR4 Ethernet transport protocol and also compatible with InfiniBand HDR transport protocol. This product is the DML version of 200G QSFP56 FR4 with a built-in pair of 4-channel CWDM MUX and DEMUX with center wavelengths of 1271nm, 1291nm, 1311nm and 1331nm, respectively, using a pair of single-mode fibers for transmission at distances up to 2km (FEC needs to be enabled). Note: DML has lower power consumption and cost compared to EML. - [400G QSFP-DD FR8 LWDM8 EML 2km SMF LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-fr8.html) - FIBERSTAMP 400G QSFP-DD FR8 is a hot-pluggable optical transceiver module designed for 400GBASE-FR8 Ethernet links in data centers and 5G backhaul. It adopts 50G PAM4 and LWDM8 technologies and supports 2km the maximum transmission distance. - [100G QSFP28 LR1 EML 1310nm 20km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-lr.html) - FIBERSTAMP 100G QSFP28 LR1 optical transceiver module is used for long-distance transmission in the datacom or telecom field and is compliant with the 100G Lambda MSA 100G-LR1-20 specification and compatible with the IEEE 802.3cu 100GBASE-LR1 Ethernet transmission protocol. The product uses a pair of single-mode fiber for transmission with a central wavelength of 1310nm and a distance of up to 20km (with FEC on). - [SiPh 100G QSFP28 FR1 1310nm 2km SMF LC Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-100g-qsfp28-fr.html) - FIBERSTAMP 100G QSFP28 FR1 optical transceiver module adopts single-wavelength 100G PAM4 and silicon photonics integration technology, which is widely used in 100GBASE-FR1 Ethernet links, and the transmission distance through single-mode fiber can reach up to 2km. - [SiPh 100G QSFP28 LR1 1310nm 10km SMF LC Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-100g-qsfp28-lr.html) - FIBERSTAMP 100G QSFP28 LR1 optical transceiver module adopts single-wavelength 100G PAM4 and silicon photonics integration technology, which is widely used in 100GBASE-LR1 Ethernet links, and the transmission distance can reach up to 10km through single-mode fiber. - [400G QSFP-DD CWDM4 EML 6km SMF LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-cwdm4.html) - FIBERSTAMP 400G QSFP-DD CWDM4 optical transceiver module is used for medium-distance interconnection in data centers, and complies with IEEE 802.3cu 400GBASE-FR4 Ethernet transmission protocol. The product has a built-in pair of 4-channel CWDM MUX and DEMUX with center wavelengths of 1271nm, 1291nm, 1311nm and 1331nm respectively. It uses a pair of single-mode optical fibers for transmission. The distance can reach up to 6km under the condition of three temperatures. - [SiPh 100G QSFP28 DR1 1310nm 500m SMF LC Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-100g-qsfp28-dr.html) - FIBERSTAMP 100G QSFP28 DR1 optical transceiver module adopts single-lambda 100G PAM4 and silicon photonics integration technology, which is widely used in 100GBASE-DR Ethernet links, and the transmission distance can reach up to 500m through single-mode fiber. - [100G QSFP28 CLR4 DML 2km/10km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-clr4.html) - FIBERSTAMP 100G QSFP28 CLR4 optical transceiver are used for medium and long distance interconnection in data centers, complying with 100G CLR4 MSA specification and compatible with both 100G Ethernet and InfiniBand EDR transmission protocols. The product has a built-in pair of 4-channel CWDM MUX and DEMUX with center wavelengths of 1271nm, 1291nm, 1311nm and 1331nm, respectively, using a pair of single-mode fibers for transmission over distances of up to 2km or 10km (without FEC on). - [200G QSFP56 SR4 VCSEL 850nm MMF MPO 100m Optical Transceiver](https://www.fiberstamp.com/200g-qsfp56-sr4.html) - FIBERSTAMP 200G QSFP56 DR4 optical transceiver module is used for short distance interconnection between devices within data centers and is compliant with IEEE 802.3cd 200GBASE-SR4 Ethernet transport protocol and is also compatible with InfiniBand HDR transport protocol. It uses 4 pairs of parallel multimode fiber for transmission over distances up to 70m (OM3) or 100m (OM4/OM5). - [200G QSFP-DD VCSEL SR8 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/200g-qsfp-dd-sr8.html) - FIBERSTAMP 200G QSFP-DD SR8 optical transceiver modules are used for short-range interconnections between devices within data centers and are compliant with 200G Ethernet transport protocols, as well as compatible with 8x10G/25G Ethernet and InfiniBand QDR/EDR transport protocols. The series use 8 pairs of parallel multimode fiber for transmission with a center wavelength of 850nm and distances up to 70m (OM3) or 100m (OM4) with optional industrial grade operating temperature range. - [100G QSFP28 PSM4 DML 1310nm 2km/10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-psm4.html) - FIBERSTAMP 100G QSFP28 PSM4 optical transceiver are used for medium to long distance interconnections in data centers and are compliant with the 100G PSM4 MSA specification and compatible with both 100G Ethernet and InfiniBand EDR transport protocols. The series use 4 pairs of parallel single-mode fiber for transmission with a central wavelength of 1310nm and distances up to 2km or 10km (both with FEC enabled). - [100G QSFP28 CWDM4 DML 2km/10km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-cwdm4.html) - FIBERSTAMP 100G QSFP28 CWDM4 optical transceiver are used for medium to long distance interconnections in data centers and are compliant with CWDM4 MSA specification and compatible with both 100G Ethernet and InfiniBand EDR transmission protocols. The product has a built-in pair of 4-channel CWDM MUX and DEMUX with center wavelengths of 1271nm, 1291nm, 1311nm and 1331nm, respectively, and uses a pair of single-mode fibers for transmission over distances up to 2km or 10km (both with FEC enabled). - [100G QSFP28 FR1 EML 1310nm 2km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-fr.html) - FIBERSTAMP 100G QSFP28 FR1 optical transceiver module is designed for long distance transmission in the datacom or telecom space and is compliant with the 100G Lambda MSA 100G-FR1 specification. The product uses a pair of single-mode fibers with a central wavelength of 1310nm for transmission over distances up to 2km (FEC enabled). - [100G QSFP28 SR4 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-sr4.html) - FIBERSTAMP 100G QSFP28 SR4 optical transceiver are used for short-range interconnections between devices within data centers and are compliant with the IEEE 802.3bm 100GBASE-SR4 Ethernet transport protocol, with optional multi-rate versions compatible with 100G Ethernet, OTN OTU4 and 128GFC. The series uses 4 pairs of parallel multimode fiber optics for transmission with a center wavelength of 850nm and distances up to 70m (OM3) or 100m (OM4) with optional industrial grade operating temperature range. - [100G QSFP28 eSR4 VCSEL 850nm 300m MMF MPO Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-esr4.html) - The Fiberstamp Technologies FEG-100S4M30C is a Four-Channel, Pluggable, Parallel, Fiber-Optic QSFP28 SR4 for 100 or 40 Gigabit Ethernet and Infiniband FDR/EDR Applications. This transceiver is a high performance module for short-range multi-lane data communication and interconnect applications. Each lane can operate at 25.78125Gbps up to 70 m using OM3 fiber 100m using OM4 fiber w/o FEC or 300m OM4 MMF with KR-FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The electrical interface uses a 38 contact edge type connector. The optical interface uses an 12 fiber MTP (MPO) connector. This module incorporates Fiberstamp Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [128GFC QSFP28 eSR4 VCSEL 850nm 300m MMF MPO Optical Transceiver (Industrial Grade Available)](https://www.fiberstamp.com/128g-qsfp28-esr4.html) - FIBERSTAMP 128GFC QSFP28 3SR4 optical transceiver modules are used for short-haul interconnections between network devices in internal storage areas of data centers. They are compliant with 128GFC/4x32GFC transport protocols, and are compatible with 40G/100G Ethernet, InfiniBand FDR/EDR, and OTN OTU4 transport protocols. The series is an enhanced version of the 128GFC QSFP28 SR4, which uses 4 pairs of parallel multimode fiber transmission with a central wavelength of 850nm for distances of up to 200m (OM3) or 300m (OM4), with an optional industrial-grade operating temperature range. - [128GFC QSFP28 SR4 VCSEL 850nm 100m MMF MPO Optical Transceiver (Industrial Grade Available)](https://www.fiberstamp.com/128g-qsfp28-sr4.html) - FIBERSTAMP 128GFC QSFP28 SR4 optical transceiver modules are used for short-haul interconnections between network devices in internal storage areas of data centers. They are compliant with 128GFC/4x32GFC transport protocols, and are compatible with 40G/100G Ethernet, InfiniBand FDR/EDR, and OTN OTU4 transport protocols. The series is an enhanced version of the 128GFC QSFP28 SR4, which uses 4 pairs of parallel multimode fiber transmission with a central wavelength of 850nm for distances of up to 70m (OM3) or 100m (OM4), with an optional industrial-grade operating temperature range. - [100G QSFP28 4WDM-10 DML CWDM4 10km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-4wdm-10.html) - FIBERSTAMP 100G QSFP28 4WDM-10 optical transceiver is used for long distance interconnection in data centers and is compliant with 100G 4WDM-10 MSA specification. The product has a built-in pair of 4-channel CWDM MUX and DEMUX with center wavelengths of 1271nm, 1291nm, 1311nm and 1331nm, respectively, and can be transmitted over distances up to 40km using a single-mode fiber pair (with FEC enabled). - [100G QSFP28 LR4 DML LWDM4 10km/20km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-lr4.html) - FIBERSTAMP 100G QSFP28 LR4 optical modules are used for long-distance transmission in the datacom or telecom field and are compliant with IEEE 802.3ba 100GBASE-LR4 Ethernet transmission protocol, with optional dual-rate versions compatible with 100G Ethernet and OTN OTU4. The series have a built-in pair of 4-channel LWDM MUX and DEMUX with center wavelengths of 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm, respectively, using a single-mode fiber pair for transmission over distances of up to 10km or 20km (both without FEC on). - [100G QSFP28 4WDM-40 DML CWDM4 30km/40km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-4wdm-40.html) - FIBERSTAMP 100G QSFP28 4WDM-40 optical transceiver is used for long distance interconnection in data centers and is compliant with 100G 4WDM-40 MSA specification. It has a built-in pair of 4-channel LWDM MUX and DEMUX with center wavelengths of 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm, respectively, and uses a pair of single-mode fibers for transmission over distances up to 30km (without FEC on) or 40km (with FEC on). - [100G QSFP28 ER4 Lite DML LWDM4 SMF LC 30km/40km Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-er4-lite.html) - FIBERSTAMP 100G QSFP28 ER4 optical transceiver module is used for long-distance transmission in the field of data communication or telecom, which is compliant with 100G Ethernet transmission protocol and compatible with OTN OTU4 transmission protocol. It has a built-in pair of 4-channel LWDM MUX and DEMUX with center wavelengths of 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm, respectively, and uses a pair of single-mode fibers for transmission over distances up to 30km (without FEC) or 40km (with FEC). - [100G QSFP28 eER4 EML LWDM4 60km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-eer4.html) - FIBERSTAMP 100G QSFP28 eER4 optical transceiver module is used for long-distance transmission in the field of data communication or telecom, and is compliant with 100G Ethernet transmission protocol, with optional dual-rate versions compatible with 100G Ethernet and OTN OTU4 transmission protocol. The product has a built-in pair of 4-channel LWDM MUX and DEMUX with center wavelengths of 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm, respectively, and uses a pair of single-mode fibers for transmission over distances up to 60km (without FEC on). - [40G QSFP+ PSM4 DML 1310nm 2km/10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/40g-qsfp-psm4.html) - FIBERSTAMP 40G QSFP+ PSM4 optical transceiver module is designed for medium to long-distance interconnections in data centers. It is compliant with the 40G Ethernet transmission protocol and offers an optional dual-rate version for 40GE/OTU3. This series of products utilizes 4 pairs of parallel single-mode fibers for transmission, with a center wavelength of 1310nm. The maximum transmission distance can reach 2km or 10km, depending on the specific model. - [40G QSFP+ SR4 VCSEL 850nm 150m MMF MPO Optical Transceiver](https://www.fiberstamp.com/40g-qsfp-sr4.html) - FIBERSTAMP 40G QSFP+ SR4 optical transceiver modules are designed for short-distance interconnection between devices within data centers. They comply with the IEEE 802.3ba 40GBASE-SR4 Ethernet transmission protocol and offer optional dual-rate versions supporting 40GE/OTU3. These modules utilize 4 pairs of parallel multimode fibers for transmission, with a center wavelength of 850nm. The maximum transmission distance is 100m (OM3 MMF) or 150m (OM4 MMF). Industrial-grade operating temperature range options are available. - [40G QSFP+ SR BiDi VCSEL 850nm/900nm 150m MMF LC Optical Transceiver](https://www.fiberstamp.com/40g-qsfp-sr-bidi.html) - FIBERSTAMP 40G QSFP+ SR BiDi optical transceiver is designed for short-distance interconnection between devices within data centers. It complies with the 40G Ethernet transmission protocol. When upgrading the network architecture from 10G to 40G, it can directly utilize the existing LC duplex cabling infrastructure without the need for additional MPO cabling. This product converts XLPPI 4x10G signals into two 20G signals and achieves 40G total bandwidth transmission over two single-fiber bidirectional channels. Each channel uses a different operating wavelength (850nm or 900nm), and the maximum transmission distance is up to 100m (OM3 MMF) or 150m (OM4 MMF). - [40G QSFP+ LR4 DML CWDM4 10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/40g-qsfp-lr4.html) - FIBERSTAMP 40G QSFP+ LR4 optical transceiver module is designed for medium to long-distance interconnects in data centers, complying with the IEEE 802.3ba 40GBASE-LR4 Ethernet transmission protocol. It is available in a dual-rate version supporting both 40GE and OTU3. This product series features an integrated pair of 4-channel MUX and DEMUX, with the center wavelengths of the four channels being 1271nm, 1291nm, 1311nm, and 1331nm. It utilizes a pair of single-mode fibers for transmission, allowing for distances of up to 2km, 10km, or 20km. - [100G QSFP28 ER4 DML LWDM4 SMF LC 40km Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-er4.html) - FIBERSTAMP 100G QSFP28 ER4 optical transceiver module is used for long-distance transmission in the field of data communication or telecom, which is compliant with 100G Ethernet transmission protocol and compatible with OTN OTU4 transmission protocol. It has a built-in pair of 4-channel LWDM MUX and DEMUX with center wavelengths of 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm, respectively, and uses a pair of single-mode fibers for transmission over distances up to 40km (without FEC on). - [40G QSFP+ ER4 DML CWDM4 40km SMF LC Optical Transceiver](https://www.fiberstamp.com/40g-qsfp-er4.html) - FIBERSTAMP 40G QSFP+ ER4 optical transceiver module is designed for long-distance interconnections in data centers. It complies with the IEEE 802.3bm 40GBASE-ER4 Ethernet transmission protocol and supports both 40GE and OTU3 dual-rate applications, which features an integrated pair of multiplexers (MUX) and demultiplexers (DEMUX), with each channel operating at a center wavelength of 1271nm, 1291nm, 1311nm, and 1331nm respectively. It utilizes a pair of single-mode fibers for transmission, allowing for a maximum reach of 40km. - [40G QSFP+ ZR4 EML LWDM4 80km SMF LC Optical Transceiver](https://www.fiberstamp.com/40g-qsfp-zr4.html) - FIBERSTAMP 40G QSFP+ ZR4 optical transceiver module is designed for long-distance interconnectivity in data centers. It complies with the 40G Ethernet transmission protocol and supports dual rates of 40GE and OTU3. This module features a built-in pair of 4-channel MUX and DEMUX. Each channel operates at a center wavelength of 1295.56nm, 1300.05nm, 1304.58nm, and 1309.14nm. It utilizes a single-mode fiber pair for transmission, enabling distances of up to 80km. - [50G SFP56 SR VCSEL 850nm 100m MMF LC Optical Transceiver Module (Industrial Grade Optional)](https://www.fiberstamp.com/50g-sfp56-sr-100m.html) - FIBERSTAMP 50G SFP56 SR optical transceiver module is used for short-distance interconnection between internal devices in the data center or 5G fronthaul. It complies with IEEE 802.3cd 50GBASE-SR Ethernet transmission protocol and is compatible with 50G eCPRI transmission protocol. This series of products use 1 pair of multimode optical fiber for transmission, the center wavelength is 850nm, the distance can reach up to 70m (OM3) or 100m (OM4), and the working temperature range of industrial grade is optional. - [50G SFP56 LR EML 1310nm 10km SMF LC Optical Transceiver Module (Industrial Grade Optional)](https://www.fiberstamp.com/50g-sfp56-lr-10km.html) - FIBERSTAMP 50G SFP56 LR optical transceiver module is used for long-distance interconnection of data centers or 5G fronthaul. It complies with IEEE 802.3cd 50GBASE-LR Ethernet transmission protocol and is compatible with 50G eCPRI transmission protocol. This series of products uses a pair of single-mode optical fiber for transmission, the center wavelength is 1310nm, the distance can reach up to 10km, and the working temperature range of industrial grade is optional. - [50G SFP56 BiDi EML 10km/30km Single-fiber SMF LC Bidirectional Transceiver Module (Industrial Grade Optional)](https://www.fiberstamp.com/50g-sfp56-bidi.html) - FIBERSTAMP 50G SFP56 BiDi single-fiber bidirectional optical transceiver module is used for 5G fronthaul, conforms to 50G Ethernet transmission protocol, and is also compatible with 50G eCPRI transmission protocol. This series of products uses a single single-mode optical fiber for transmission, the center wavelength is 1270nm/1330nm, the distance can reach up to 10km or 30km, and it supports industrial-grade operating temperature range. - [25G SFP28 SR VCSEL 850nm 100m MMF LC Optical Transceiver (Industrial Grade Optional)](https://www.fiberstamp.com/25g-sfp28-sr.html) - FIBERSTAMP 25G SFP28 SR optical transceiver modules are used for short-distance interconnections between equipment within data centers or for 5G pre-transmission, and are compliant with the IEEE 802.3by 25GBASE-SR Ethernet transport protocol, with an optional dual-rate version compatible with CPRI Option 10 and 25GE. The series uses 1 pair of multimode fiber optic transmission with a central wavelength of 850nm for distances up to 70m (OM3) or 100m (OM4), with an optional industrial grade operating temperature range. - [25G SFP28 LR DML 1310nm 10km SMF LC Optical Transceiver (Industrial Grade Optional)](https://www.fiberstamp.com/25g-sfp28-lr.html) - FIBERSTAMP 25G SFP28 LR optical transceiver modules are used for short-distance interconnections between equipment within data centers or for 5G pre-transmission, and are compliant with the IEEE 802.3by 25GBASE-SR Ethernet transport protocol, with an optional dual-rate version compatible with CPRI Option 10 and 25GE. The series uses 1 pair of multimode fiber optic transmission with a central wavelength of 850nm for distances up to 70m (OM3) or 100m (OM4), with an optional industrial grade operating temperature range. - [25G SFP28 DWDM EML 100GHz 2km/10km SMF LC Optical Transceiver (Industrial Grade Optional)](https://www.fiberstamp.com/25g-sfp28-dwdm.html) - FIBERSTAMP 25G SFP28 DWDM optical transceiver modules for 5G fronthaul are compliant with 25 Ethernet transmission protocols and compatible with 25G eCPRI transmission protocols. The series uses 1 pair of single-mode fiber for transmission, C-band 100GHz C18-C61 44 operating wavelengths are selectable for distances up to 2km or 10km, and industrial-grade operating temperature ranges are available. - [400G QSFP-DD SR8 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-sr8.html) - FIBERSTAMP 400G QSFP-DD SR8 is a hot-pluggable optical transceiver module designed for 400G SR8 Ethernet links in data centers. It adopts 50G PAM4 and VCSEL technology. On the premise of enabling FEC in the system, 425Gbps data interconnection within 100m can be realized through 8 pairs of multimode optical fibers. - [100G QSFP28 ZR4 EML LWDM4 60km/80km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-zr4.html) - FIBERSTAMP 100G QSFP28 ZR4 optical transceiver module is used for long-distance transmission in the field of data communication or telecom, and is compliant with 100G Ethernet transmission protocol, with optional dual-rate versions compatible with 100G Ethernet and OTN OTU4 transmission protocol. The product has a built-in pair of 4-channel LWDM MUX and DEMUX with center wavelengths of 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm, respectively, and uses a pair of single-mode fibers for transmission over distances up to 60km or 80km(with FEC on). - [400G QSFP112 SR4 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp112-sr4.html) - FIBERSTAMP 400G QSFP112 SR4 is a hot-pluggable optical transceiver module, designed for 400G Ethernet links in data centers, using 100G PAM4 and VCSEL technology, under the premise that the system is enabled FEC, 425Gbps data interconnection within 100m can be achieved through 4 pairs of multimode fibers. - [100G BIDI SR1.2 QSFP28 Optical Transceiver Duplex LC](https://www.fiberstamp.com/100g-bidi-sr1.2-qsfp28.html) - The FIBERSTAMP 100G BIDI SR QSFP28 optical transceiver is designed for using in 100-Gigabit Ethernet links up to 70m using OM3 and 100m using OM4. It is compliant with the QSFP28 MSA, IEEE802.3cm-2020 and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. The module incorporates 2 channels 850nm/910nm VCSEL and PIN photo detector, transmitting and receiving each optically over one simplex LC fiber using bi-directional optics. This results in an aggregate bandwidth of 100Gbps into a duplex LC cable. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 2 channels of 50Gbps (PAM4) optical signal, and also can convert 2 channels of 50Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. The electrical interface uses a 38-contact edge type connector. This transceiver is a high performance module for short-range duplex data communication and interconnects applications. - [800G OSFP Passive Copper Cable 8x100G PAM4 2 Meters(6.6ft)](https://www.fiberstamp.com/800g-osfp-pcc.html) - FIBERSTAMP 800G OSFP PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3ck 800GBASE-CR8 Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8 times 100G PAM4 signals, with a maximum reach of 1m (30AWG) or 2m (26AWG). - [50G SFP56 ER EML 1310nm 40km Optical Transceiver (Industrial Grade Optional)](https://www.fiberstamp.com/50g-sfp56-er.html) - FIBERSTAMP 50G SFP56 ER optical transceiver module is used for 5G fronthaul, conforms to IEEE 802.3cn 50GBASE-ER Ethernet transmission protocol, and is compatible with 50G eCPRI transmission protocol. This series of products uses a pair of single-mode optical fiber transmission, the center wavelength is 1310nm, the distance can reach up to 40km, and the working temperature range of industrial grade is optional - [25G SFP28 ER EML 1310nm 30km/40km SMF LC Optical Transceiver (Industrial Grade Optional)](https://www.fiberstamp.com/25g-sfp28-er.html) - FIBERSTAMP 25G SFP28 ER optical transceiver module is used for 5G fronthaul, conforms to IEEE 802.3cc 25GBASE-ER Ethernet transmission protocol, and is also compatible with CPRI Option 10 and 25G eCPRI transmission protocol. This series of products uses a pair of single-mode optical fiber for transmission, with a center wavelength of 1310nm, a distance of up to 30km (without FEC) or 40km (with FEC turned on), and an optional industrial-grade operating temperature range. - [50G SFP56 DWDM EML 80km SMF LC Optical Transceiver Module (Industrial Grade Optional)](https://www.fiberstamp.com/50g-sfp56-dwdm.html) - FIBERSTAMP 50G SFP56 DWDM optical transceiver module is used for 5G fronthaul, conforms to 50 Ethernet transmission protocol, and is also compatible with 50G eCPRI transmission protocol. This series of products uses 1 pair of single-mode optical fiber transmission, C-band 100GHz C18-C61 44 working wavelengths are optional, the distance can reach up to 80km (EDFA and DCM are required), and the working temperature range of industrial grade is optional. - [800G QSFP112 Passive Copper Cable 8x100G PAM4 2Meters(6.6ft)](https://www.fiberstamp.com/800g-qsfp112-pcc.html) - FIBERSTAMP 800G QSFP112-DD PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3ck 800GBASE-CR8 Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8 times 100G PAM4 signals, with a maximum reach of 1m (30AWG) or 2m (26AWG). - [200G QSFP-DD Active Optical Cables 8x25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/200g-qsfp-dd-aoc.html) - FIBERSTAMP 0G QSFP28-DD AOC active optical cable is used for short-distance interconnection between internal devices in the data center, conforms to IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol, and is also compatible with IEEE 802.3by 25GBASE-SR Ethernet and InfiniBand EDR Transfer Protocol. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4). - [400G QSFP56-DD Active Optical Cables, 8x50G PAM4, 100 Meters(328ft)](https://www.fiberstamp.com/400g-qsfp56-dd-aoc.html) - FIBERSTAMP 400G QSFP56-DD AOC active optical cable is used for short-distance interconnection between internal devices in data centers. It complies with IEEE 802.3cm 400GBASE-SR8 transmission protocol, and is also compatible with IEEE 802.3cd 200GBASE-SR4 and InfiniBand HDR transmission protocols. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [400G QSFP56-DD To 2x 200G QSFP56 Active Optical Cables, 8x50G PAM4, 100 Meters(328ft)](https://www.fiberstamp.com/400g-qsfp-dd-2x-200g-qsfp56-aoc.html) - FIBERSTAMP 400G QSFP56-DD to 2x 200G QSFP56 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3cm 400GBASE-SR8 transmission protocol, and is also compatible with IEEE 802.3cd 200GBASE-SR4 and InfiniBand HDR/HDR100 transmission protocol. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [400G QSFP56-DD To 4x 100G QSFP56 Active Optical Cables, 8x50G PAM4, 100 Meters(328ft)](https://www.fiberstamp.com/400g-qsfp-dd-4x-100g-qsfp56-aoc.html) - FIBERSTAMP 400G QSFP56-DD to 4x 100G QSFP56 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3cm 400GBASE-SR8 transmission protocol, and is also compatible with IEEE 802.3cd 200GBASE-SR2 and InfiniBand HDR/HDR100 transmission protocol. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [400G QSFP56-DD To 8x 50G SFP56 Active Optical Cables, 8x50G PAM4, 100 Meters(328ft)](https://www.fiberstamp.com/400g-qsfp-dd-8x-50g-sfp56-aoc.html) - FIBERSTAMP 400G QSFP56-DD to 8x 50G SFP56 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3cm 400GBASE-SR8 transmission protocol, and is also compatible with IEEE 802.3cd 50GBASE-SR and InfiniBand HDR transmission protocol. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [200G QSFP-DD To 2x 100G QSFP28 Active Optical Cables 8x25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/200g-qsfp-dd-2x-100g-qsfp28-aoc.html) - FIBERSTAMP 200G QSFP28-DD to 2x 100G QSFP28 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol, and is also compatible with InfiniBand EDR transmission protocol. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4). - [200G QSFP-DD To 4x 50G QSFP28 Active Optical Cables 8x25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/200g-qsfp-dd-4x-50g-qsfp28-aoc.html) - FIBERSTAMP 200G QSFP28-DD to 4x 50G QSFP28 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol, and is also compatible with InfiniBand EDR transmission protocol. This series of products uses 8 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4). - [200G QSFP56 Active Optical Cables 4x50G PAM4, 100Meters(328ft)](https://www.fiberstamp.com/200g-qsfp56-aoc100m.html) - FIBERSTAMP 200G QSFP56 AOC active optical cable is used for short-distance interconnection between internal devices in the data center, conforms to IEEE 802.3cd 200GBASE-SR4 Ethernet transmission protocol, and is compatible with InfiniBand HDR transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [200G QSFP56 To 4x 50G QSFP56 Active Optical Cables 8x25G PAM4, 100Meters(328ft)](https://www.fiberstamp.com/200g-qsfp56-4x-50g-qsfp56-aoc.html) - FIBERSTAMP 200G QSFP56 to 4x 50G QSFP56 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3cd 200GBASE-SR4 Ethernet transmission protocol, and is also compatible with IEEE 802.3cd 50GBASE-SR Ethernet and InfiniBand HDR transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [200G QSFP56 To 2x 100G QSFP56 Active Optical Cables 4x50G PAM4, 100Meters(328ft)](https://www.fiberstamp.com/200g-qsfp56-2x-100g-qsfp56-aoc.html) - FIBERSTAMP 200G QSFP56 to 2x 100G QSFP56 AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center, conforms to IEEE 802.3cd 200GBASE-SR4 Ethernet transmission protocol, and is also compatible with IEEE 802.3cd 100GBASE-SR2 Ethernet and InfiniBand HDR100 transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 70m (OM3) or 100m (OM4/OM5). - [100G QSFP28 Hardened AOC](https://www.fiberstamp.com/100g-qsfp28-haoc.html) - FIBERSTAMP 100G QSFP28 pluggable hardened active optical cable assemblies support 100G Ethernet, InfiniBand EDR and CPRI Option 10 data rates. - [100G QSFP28 Active Optical Cables 4x25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/100g-qsfp28-aoc-100m.html) - FIBERSTAMP 100G QSFP28 AOC active optical cable is used for short-distance interconnection between internal devices in data centers. It complies with IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol, and is also compatible with IEEE 802.3ba 40GBASE-SR4 and InfiniBand FDR/EDR transmission protocols . This series of products uses 4 pairs of parallel multimode fiber transmission, the center wavelength is 850nm, and the distance can reach up to 70m (OM3) or 100m (OM4). - [56G QSFP28 Active Optical Cables 2x28/25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/56g-qsfp28-aoc-100m.html) - FIBERSTAMP 56G QSFP28 AOC active optical cable is used for short-distance interconnection between internal devices in the data center, conforms to the 2x32GFC fiber channel transmission protocol, and is also compatible with IEEE 802.3by 25GBASE-SR and IEEE 802.3ba 40GBASE-SR4 Ethernet transmission protocols, And InfiniBand FDR/EDR transmission protocol. This series of products uses 2 pairs of parallel multimode optical fiber transmission, the distance can reach up to 70m (OM3) or 100m (OM4). - [56G QSFP+ Active Optical Cables 4x14G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/56g-qsfp-plus-aoc.html) - FIBERSTAMP 56G QSFP+ AOC active optical cable is used for short-distance interconnection between internal devices in the data center. It complies with the 4x16GFC fiber channel transmission protocol and is compatible with the InfiniBand FDR transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 100m (OM3) or 150m (OM4). - [40G QSFP+ Active Optical Cables 4x10G NRZ, 300Meters(984ft)](https://www.fiberstamp.com/40g-qsfp-plus-aoc.html) - FIBERSTAMP 40G QSFP+ AOC active optical cable is used for short-distance interconnection between internal devices in the data center, conforms to IEEE 802.3ba 40GBASE-SR4 transmission protocol, and is also compatible with InfiniBand QDR transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, the distance can reach up to 300m (OM3) or 400m (OM4). - [25G SFP28 Active Optical Cables 25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/25g-sfp28-aoc-100m.html) - FIBERSTAMP 25G SFP28 AOC active optical cable is used for short-distance interconnection between internal devices in the data center, and complies with IEEE 802.3by 25GBASE-SR Ethernet transmission protocol. This series of products use 1 pair of multimode optical fiber for transmission, and the distance can reach up to 70m (OM3) or 100m (OM4). - [4×3G-SDI Extender](https://www.fiberstamp.com/4x3g-sdi-optical-extender.html) - FIBERSTAMP 4-channel 3G-SDI optical extender lengthens 4K video transmission through optical fiber by up to 80km. The transmitter converts SDI signals to optical for transmission, while the receiver reverts them back for amplification. - [120G CXP Active Optical Cables 12x10G NRZ, 300Meters(984ft)](https://www.fiberstamp.com/120g-cxp-aoc-400m.html) - FIBERSTAMP 120G CXP AOC active optical cable is used for short-distance interconnection between internal devices in the data center. It complies with IEEE 802.3ba 100GBASE-SR10 Ethernet transmission protocol, and is also compatible with IEEE 802.3ae 10GBASE-SR Ethernet and InfiniBand QDR transmission protocol . This series of products uses 12 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 300m (OM3) or 400m (OM4). - [120G CXP To 3x 40G QSFP+ Active Optical Cables 12x10G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/120g-cxp-3x-40g-qsfp-aoc.html) - FIBERSTAMP 120G CXP to 3x 40G QSFP+ AOC active optical cable is used for short-distance interconnection between internal devices in the data center, conforms to IEEE 802.3ba 40GBASE-SR4 Ethernet transmission protocol, and is also compatible with InfiniBand QDR transmission protocol. This series of products uses 12 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 100m (OM3). - [128GFC QSFP28 Active Optical Cables 4x28G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/128gfc-qsfp28-aoc-100m.html) - FIBERSTAMP 128GFC QSFP28 AOC active optical cable is used for short-distance interconnection between internal devices in the data center. It complies with 128GFC/4x32GFC fiber channel transmission protocol and is compatible with IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, the center wavelength is 850nm, and the distance can reach up to 70m (OM3) or 100m (OM4). - [128GFC QSFP28 Active Optical Cables 4x28G NRZ, Enhanced, 300Meters(984ft)](https://www.fiberstamp.com/128gfc-qsfp28-eaoc.html) - FIBERSTAMP 128GFC QSFP28 AOC enhanced active optical cable is used for short-distance interconnection between internal devices in the data center. It complies with 128GFC/4x32GFC fiber channel transmission protocol and is compatible with IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol. This series of products uses 4 pairs of parallel multimode optical fiber transmission, the center wavelength is 850nm, and the distance can reach up to 200m (OM3) or 300m (OM4). - [100G QSFP28 To 4x 25G SFP28 Active Optical Cables 4x25G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/100g-qsfp28-4x-25g-sfp28-aoc.html) - FIBERSTAMP 100G QSFP28 to 4x 25G SFP28 AOC active optical cable is used for short-distance interconnection between devices within the data center, conforming to IEEE 802.3bm 100GBASE-SR4 Ethernet transmission protocol and IEEE 802.3by 25GBASE-SR Ethernet transmission protocol. This series uses 4 pairs of parallel multimode fiber transmission with a center wavelength of 850nm and distances of up to 70m (OM3) or 100m (OM4). - [400G QSFP112 Active Optical Cables, 4x100G PAM4, 100 Meters(328ft)](https://www.fiberstamp.com/400g-qsfp112-aoc.html) - FIBERSTAMP GIGALIGHT's 400G QSFP112 AOC is a hot-pluggable active optical cable designed for 400G Ethernet links in data centers. With 100G PAM4 and VCSEL technology, it can interconnect up to 425Gbps of data within 100m with FEC turned on in the system. - [40G QSFP+ to 4x 10G SFP+ Active Optical Cables 4x10G NRZ, 100Meters(328ft)](https://www.fiberstamp.com/40g-qsfp-4x-10g-sfp-aoc.html) - FIBERSTAMP 40G QSFP+ AOC active optical cable is used for short-distance branch interconnection between internal devices in the data center. It complies with IEEE 802.3ba 40GBASE-SR4 transmission protocol, and is also compatible with IEEE 802.3ae 10GBASE-SR and InfiniBand QDR transmission protocols. This series of products uses 4 pairs of parallel multimode optical fiber transmission, and the distance can reach up to 100m (OM3). - [800G QSFP-DD Active Optical Cables 8x100G PAM4, 100Meters(328ft)](https://www.fiberstamp.com/800g-qsfp-dd-aoc.html) - FIBERSTAMP 800G QSFP112-DD AOC active optical cable is used for short-distance interconnections between equipment within data centers and are compliant with the IEEE 802.3cm 800GBASE-SR8 transport protocol. The series uses 8 parallel pairs of multimode fiber for transmission over distances up to 70m (OM3) or 100m (OM4/OM5). - [800G OSFP112 Active Optical Cables 8x100G PAM4, 100Meters(328ft)](https://www.fiberstamp.com/800g-osfp-aoc.html) - FIBERSTAMP 800G OSFP AOC active optical cable is used for short-distance interconnections between equipment within data centers and are compliant with the IEEE 802.3cm transport protocol, transport protocols. The series uses 8 parallel pairs of multimode fiber for transmission over distances up to 70m (OM3) or 100m (OM4/OM5). - [10G SFP+ Passive Directed Copper Cables, 10G NRZ, 7Meters(23ft)](https://www.fiberstamp.com/10g-sfp-pcc.html) - FIBERSTAMP 10G SFP+ PCC passive direct copper cable (DAC) is used for interconnection within or between racks in data centers, conforming to the 10GSFP+Cu Ethernet transmission protocol and compatible with the InfiniBand QDR transmission protocol. This series uses 2 pairs of coaxial cables to transmit 10G NRZ signals over distances of up to 3m (30AWG) or 7m (24AWG). - [25G SFP28 Passive Directed Copper Cables, 25G NRZ, 5Meters(16ft)](https://www.fiberstamp.com/25g-sfp28-pcc-5m.html) - FIBERSTAMP 25G SFP28 PCC passive direct copper cable is used for interconnection within or between racks within the data center, conforming to IEEE 802.3by 25GBASE-CR/25GBASE-CR-S Ethernet transmission protocol and compatible with the InfiniBand EDR transmission protocol. This series uses 2 pairs of coaxial cables to transmit 25G NRZ signals over distances of up to 2m (30AWG) or 5m (26AWG). - [40G QSFP+ To 4x 10G SFP+ Passive Directed Copper Cables, 4x10G NRZ, 3Meters(10ft)](https://www.fiberstamp.com/40g-qsfp-4x-10g-sfp-pcc.html) - FIBERSTAMP 40G QSFP+ to 4 x 10G SFP+ PCC passive direct copper cable is used for interconnection within or between racks within the data center, conforming to IEEE 802.3ba 40GBASE-CR4 Ethernet transport protocol and compatible with 10GSFP+Cu Ethernet and InfiniBand QDR transport protocol. The series uses 8 pairs of coaxial cables to transmit 4x 10G NRZ signals over distances of up to 3m (30AWG). - [100G QSFP28 To 4x 25G SFP28 Passive Directed Copper Cables, 4x25G NRZ, 5Meters(16ft)](https://www.fiberstamp.com/100g-qsfp28-4x-25g-sfp28-pcc.html) - FIBERSTAMP 100G QSFP28 to 4x 25G SFP28 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3bj 100GBASE-CR4 and IEEE 802.3by 25GBASE-CR/25GBASE-CR-S Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 25G NRZ signals, with a maximum reach of 3m (30AWG) or 5m (26AWG). - [40G QSFP+ Passive Directed Copper Cables, 4x 10G NRZ, 5Meters(16ft)](https://www.fiberstamp.com/40g-qsfp-plus-pcc.html) - FIBERSTAMP 40G QSFP+ PCC passive direct copper cable is used for interconnection within or between racks within the data center, conforming to IEEE 802.3ba 40GBASE-CR4 Ethernet transport protocol and compatible with the InfiniBand QDR transport protocol. The series uses 8 pairs of coaxial cables to transmit 4x 10G NRZ signals over distances of up to 3m (30AWG) or 5m (26AWG). - [100G QSFP28 Passive Directed Copper Cables, 4x25G NRZ, 5Meters(16ft)](https://www.fiberstamp.com/100g-qsfp28-pcc-5m.html) - FIBERSTAMP 100G QSFP28 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3bj 100GBASE-CR4 Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 25G NRZ signals, with a maximum reach of 3m (30AWG) or 5m (26AWG). - [200G QSFP56 To 4x 50G SFP56 Passive Directed Copper Cables, 4x50G PAM4, 3Meters(10ft)](https://www.fiberstamp.com/200g-qsfp56-4x-50g-sfp56-pcc.html) - FIBERSTAMP 200G QSFP56-DD to 4x 50G SFP56 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3cd 200GBASE-CR4/50GBASE-CR Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 50G PAM4 signals, with a maximum reach of 2m (30AWG) or 3m (26AWG). - [Immersion 25G SFP28 SR 850nm 100m(328ft)/300m(984ft) Optical Transceivers](https://www.fiberstamp.com/immersible-25g-sfp28-sr.html) - FIBERSTAMP 25G SFP28 SR liquid-cooled optical modules are widely used in submerged liquid-cooled data centers, transmitting up to 100m over OM4 multimode optical fiber. - [Immersion 25G SFP28 LR 1310nm 10km Optical Transceivers](https://www.fiberstamp.com/immersible-25g-sfp28-lr.html) - FIBERSTAMP 25G SFP28 LR liquid-cooled optical modules are widely used in submerged liquid-cooled data centers, transmitting up to 10km over single mode optical fiber. - [400G QSFP56-DD Passive Directed Copper Cables, 8x50G PAM4, 3Meters(10ft)](https://www.fiberstamp.com/400g-qsfp-dd-pcc.html) - FIBERSTAMP 400G QSFP56-DD PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with the ETC 400GBASE-CR8 Ethernet transmission protocol and is also compatible with the InfiniBand NDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8x 50G PAM4 signals, with a maximum reach of 2m (30AWG) or 3m (26AWG). - [200G QSFP56 Passive Directed Copper Cables, 4x50G PAM4, 3Meters(10ft)](https://www.fiberstamp.com/200g-qsfp56-pcc.html) - FIBERSTAMP 200G QSFP56 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with the IEEE 802.3cd 200GBASE-CR4 Ethernet transmission protocol and is also compatible with the InfiniBand NDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 50G PAM4 signals, with a maximum reach of 2m (30AWG) or 3m (26AWG). - [400G QSFP56-DD To 8x 50G SFP56 Passive Directed Copper Cables, 8x50G PAM4, 3Meters(10ft)](https://www.fiberstamp.com/400g-qsfp-dd-8x-50g-sfp56-pcc.html) - FIBERSTAMP 400G QSFP56-DD to 8x 50G SFP56 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with ETC 400GBASE-CR8 and IEEE 802.3cd 200GBASE-CR4 Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8x 50G PAM4 signals, with a maximum reach of 2m (30AWG) or 3m (26AWG). - [400G QSFP56-DD To 4x 100G QSFP56 Passive Directed Copper Cables, 8x50G PAM4, 3Meters(10ft)](https://www.fiberstamp.com/400g-qsfp-dd-4x-100g-qsfp56-pcc.html) - FIBERSTAMP 400G QSFP56-DD to 4x 100G QSFP56 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with ETC 400GBASE-CR8 and IEEE 802.3cd 200GBASE-CR4 Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8x 50G PAM4 signals, with a maximum reach of 2m (30AWG) or 3m (26AWG). - [400G QSFP56-DD To 2x 200G QSFP56 Passive Directed Copper Cables, 8x50G PAM4, 3Meters(10ft)](https://www.fiberstamp.com/400g-qsfp-dd-2x-200g-qsfp56-pcc.html) - FIBERSTAMP 400G QSFP56-DD to 2x 200G QSFP56 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with ETC 400GBASE-CR8 and IEEE 802.3cd 200GBASE-CR4 Ethernet transmission protocols, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8x 50G PAM4 signals, with a maximum reach of 2m (30AWG) or 3m (26AWG). - [400G QSFP112 Passive Directed Copper Cables, 4x100G PAM4, 2Meters(6.6ft)](https://www.fiberstamp.com/400g-qsfp112-pcc.html) - FIBERSTAMP 400G QSFP112 PCC passive direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with the IEEE 802.3ck 400GBASE-CR4 Ethernet transmission protocol and is also compatible with the InfiniBand NDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 100G PAM4 signals, with a maximum reach of 1m (30AWG) or 2m (26AWG). - [200G QSFP56 Active Directed Copper Cables, 4x50G PAM4, 7Meters(23ft)](https://www.fiberstamp.com/200g-qsfp56-acc.html) - FIBERSTAMP 200G QSFP56 ACC active direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3ck 200GBASE-CR4 Ethernet transmission protocol, while also being compatible with InfiniBand NDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 50G PAM4 signals, with a maximum reach of 7m. - [400G QSFP56-DD Active Directed Copper Cables, 8x50G PAM4, 7Meters(23ft)](https://www.fiberstamp.com/400g-qsfp-dd-acc.html) - FIBERSTAMP 400G QSFP56-DD ACC active direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with ETC 400GBASE-CR8 Ethernet transmission protocol, while also being compatible with InfiniBand HDR transmission protocol. This series of products utilizes 16 pairs of coaxial cables to transmit 8x 50G PAM4 signals, with a maximum reach of 7m. - [400G QSFP112 Active Directed Copper Cables, 4x100G PAM4, 5Meters(16ft)](https://www.fiberstamp.com/400g-qsfp112-acc.html) - FIBERSTAMP 400G QSFP112 ACC active direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3ck 400GBASE-CR4 Ethernet transmission protocol, while also being compatible with InfiniBand NDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 4x 100G PAM4 signals, with a maximum reach of 5m. - [800G QSFP112-DD Active Directed Copper Cables, 8x100G PAM4, 4Meters(13ft)](https://www.fiberstamp.com/800g-qsfp-dd-acc.html) - FIBERSTAMP 800G QSFP112-DD ACC active direct attach copper cable is designed for intra-rack or inter-rack interconnects in data centers. It complies with IEEE 802.3ck 800GBASE-CR8 Ethernet transmission protocol, while also being compatible with InfiniBand NDR transmission protocol. This series of products utilizes 8 pairs of coaxial cables to transmit 8x 100G PAM4 signals, with a maximum reach of 4m. - [Immersion 800G QSFP-DD SR8 850nm 100m(328ft) Optical Transceivers](https://www.fiberstamp.com/immersible-800g-qsfp-dd-sr8.html) - FIBERSTAMP 800G QSFP-DD SR8 immersible cooling optical transceiver module is designed for immersive data center 800GBASE-SR8 Ethernet links, employing 100G PAM4 and VCSEL technology. With FEC on, it can achieve 800Gbps data interconnect within 100m using 8 pairs of multimode optical fibers. - [Immersion 400G QSFP-DD SR8 850nm 100m(328ft) Optical Transceivers](https://www.fiberstamp.com/immersible-400g-qsfp-dd-sr8.html) - FIBERSTAMP 400G QSFP-DD SR8 liquid-cooled optical module is designed for immersive data center 400GBASE-SR8 Ethernet links. It utilizes 50G PAM4 and VCSEL technology and, with the FEC enabled, can achieve 400Gbps data interconnection over 8 pairs of multimode optical fibers within a distance up to 100 meters. - [Immersion 400G OSFP SR8 850nm 100m(328ft) Optical Transceivers](https://www.fiberstamp.com/immersible-400g-osfp-sr8.html) - FIBERSTAMP 400G OSFP SR8 liquid-cooled optical module is designed for immersive data center 400GBASE-SR8 Ethernet links. It utilizes 50G PAM4 and VCSEL technology and, with the FEC enabled, can achieve 400Gbps data interconnection over 8 pairs of multimode optical fibers within a distance up to 100 meters. - [Immersion 200G QSFP56 SR4 850nm 100m(328ft) Optical Transceivers](https://www.fiberstamp.com/immersible-200g-qsfp56-sr4.html) - FIBERSTAMP 200G QSFP56 SR4 immersible cooling optical module is designed for immersion-based data center 200GBASE-SR4 Ethernet links. It employs 50G PAM4 and VCSEL technology, and with FEC enabled, it can achieve 212.5Gbps data interconnection over 4 pairs of multimode fibers within a distance of up to 100 meters. - [Immersion 100G QSFP28 SR4 850nm 100m(328ft) Optical Transceivers](https://www.fiberstamp.com/immersible-100g-qsfp28-sr4.html) - FIBERSTAMP 100G QSFP28 SR4 immersible liquid-cooled optical transceiver modules are used for short-haul interconnections in data centers and are compliant with the IEEE 802.3bm 100GBASE-SR4 Ethernet transport protocol, as well as compatible with the IEEE 802.3by 25GBASE-SR Ethernet and InfiniBand EDR transport protocols. The series uses 4 parallel pairs of multimode fiber for transmission over distances up to 70m (OM3) or 100m (OM4), with MPO12/PC connectors for pigtails and customizable cable lengths. - [Immersion 100G QSFP28 PSM4 1310nm 2km/10km Optical Transceivers](https://www.fiberstamp.com/immersible-100g-qsfp28-psm4.html) - FIBERSTAMP 100G QSFP28 PSM4 immersible cooling optical transceiver modules are used for medium to long distance interconnections in data centers and are compliant with the 100G PSM4 MSA specification, as well as compatible with 100G Ethernet and InfiniBand EDR transport protocols. The series uses 4 pairs of parallel single-mode fibers with a central wavelength of 1310nm for transmission over distances of up to 10km (FEC enabled), with MPO12/APC connectors on pigtails and customizable cable lengths. - [SiPh 400G QSFP-DD FR4 EML CWDM4 2km SMF LC Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-400g-qsfp-dd-fr4.html) - FIBERSTAMP Silicon Photonics 400G QSFP-DD FR4 optical transceiver module adopts single-wavelength 100G PAM4 and silicon photonics integration technology, which is widely used in 400GBASE-FR4 Ethernet links, and the transmission distance can reach up to 2km through single-mode fiber with FEC on. - [SiPh 400G QSFP-DD LR4 EML CWDM4 10km SMF LC Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-400g-qsfp-dd-lr4.html) - FIBERSTAMP Silicon Photonics 400G QSFP-DD LR4 optical transceiver module adopts single-wavelength 100G PAM4 and silicon photonics integration technology, which is widely used in 400GBASE-LR4 Ethernet links, and the transmission distance can reach up to 10km through single-mode fiber with FEC on. - [SiPh 400G QSFP112 DR4 1310nm 500m SMF MPO Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-400g-qsfp112-dr4.html) - FIBERSTAMP Silicon Photonics 400G QSFP112 DR4 optical transceiver module adopts 100G PAM4 and silicon photonics integration technology, which is widely used in 400GBASE Ethernet links, and the transmission distance can reach up to 500m through single-mode fiber with KP-FEC on. It is a cost-effective and lower power consumption solution for 400GBASE data center. - [SiPh 400G QSFP112 FR4 CWDM 2km SMF MPO Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-400g-qsfp112-fr4.html) - FIBERSTAMP Silicon Photonics 400G QSFP112 FR4 optical transceiver module adopts 100G PAM4 and silicon photonics integration technology, which is widely used in 400GBASE Ethernet links, and the transmission distance can reach up to 2km through single-mode fiber with FEC on. It is a cost-effective and lower power consumption solution for 400GBASE data center. - [SiPh 400G QSFP112 CWDM4 6km SMF MPO Optical Transceiver](https://www.fiberstamp.com/silicon-photonics-400g-qsfp112-cwdm4.html) - FIBERSTAMP Silicon Photonics 400G QSFP112 CWDM4 optical transceiver module adopts 100G PAM4 and silicon photonics integration technology, which is widely used in 400GBASE Ethernet links, and the transmission distance can reach up to 6km through single-mode fiber. It is a cost-effective and lower power consumption solution for 400GBASE data center. - [12G-SDI SFP+ Optical Modules](https://www.fiberstamp.com/12g-sdi-sfp.html) - FIBERSTAMP 12G-SDI SFP+ video optical modules are designed for high-definition video signal optical transmission applications, supporting SD-SDI, HD-SDI, 3G-SDI, 6G-SDI and 12G-SDI standard, reach up to 20km over single mode fiber. - [12G-SDI SFP+ BiDi Optical Modules](https://www.fiberstamp.com/12g-sdi-bidi-sfp.html) - FIBERSTAMP 12G-SDI BiDi SFP+ is a series of single-fiber bidirectional transceiver integrated optical modules designed for high-definition video signal optical transmission applications, supporting SD-SDI, HD-SDI, 3G-SDI, 6G-SDI and 12G-SDI standards, which can achieve bidirectional transmission of up to 20km through a single single-mode fiber. - [12G-SDI SFP+ CWDM Optical Modules](https://www.fiberstamp.com/12g-sdi-cwdm-sfp.html) - FIBERSTAMP 12G-SDI CWDM SFP+ is a series of dual-fiber bidirectional transceiver integrated optical modules designed for high-definition video signal optical transmission applications, supporting SD-SDI, HD-SDI, 3G-SDI, 6G-SDI and 12G-SDI standard, with a pair of passive CWDM MUX DEMUX, can achieve up to 10km bidirectional transmission through a pair or a single-mode fiber. - [3G-SDI SFP Optical Modules](https://www.fiberstamp.com/3g-sdi-sfp.html) - FIBERSTAMP 3G-SDI SFP series optical transceiver modules are widely used in the transmission and reception of 3G-SDI video optical transmission optical signals, and are compatible with SD-SDI and HD-SDI, and the transmission distance through single-mode fiber can reach up to 2km to 80km. - [3G-SDI SFP CWDM Optical Modules](https://www.fiberstamp.com/3g-sdi-cwdm-sfp.html) - FIBERSTAMP 3G-SDI CWDM SFP series optical modules include 18 optional channels, widely used in the transmission and reception of 3G-SDI video optical transmission optical signals, compatible with SD-SDI and HD-SDI, through a single Mode fiber transmission distance up to 20km or 40km or 80km. - [48G SDI QSFP+ PSM4 Optical Transceiver](https://www.fiberstamp.com/48g-sdi-qsfp.html) - FIBERSTAMP 48G SDI QSFP+ PSM4 video optical transceiver modules are designed for 8K ultra-high-definition video signal optical transmission applications, and support reach up to 10km or 20km over 4 pairs of parallel single-mode fibers. - [800G OSFP VR8 VCSEL 850nm 50m MMF MPO Optical Transceiver](https://www.fiberstamp.com/800g-osfp-vr8.html) - FIBERSTAMP 800G OSFP VR8 is a hot-pluggable optical transceiver module designed for 800G VR8 Ethernet links in data centers. It adopts 100G PAM4 and VCSEL technology and can realize 800G data exchange within 50m. - [400G QSFP-DD 2×FR4 DML 2km SMF Dual Duplex LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-2fr4.html) - FIBERSTAMP 400G QSFP-DD 2×FR4 optical transceiver module is designed for medium-distance interconnect in data centers, compliant with the IEEE 802.3cn 400GBASE-2xFR4 Ethernet transmission protocol, supporting link transmission of up to 2km. - [200G QSFP-DD 2×CWDM4 2km SMF Dual Duplex LC Optical Transceiver](https://www.fiberstamp.com/200g-qsfp-dd-2cwdm4.html) - FIBERSTAMP 200G QSFP-DD 2×CWDM4 optical transceiver module is designed for medium-distance interconnect in data centers, compliant with the IEEE 802.3cn 200GBASE-2xCWDM4 Ethernet transmission protocol, supporting link transmission of up to 2km. - [SiPh 800G OSFP DR8 1310nm 500m SMF MPO Optical Transceiver](https://www.fiberstamp.com/800g-osfp-dr8.html) - FIBERSTAMP 800G OSFP DR8 Silicon Optical Module is a hot-pluggable optical transceiver module based on silicon photonics integration technology, designed for data center 800GBASE-DR8 Ethernet links, with 100G PAM4 and 8-way single-mode parallel technology, and supports 500m maximum transmission distance. - [SiPh 800G OSFP DR8++ 1310nm 10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/800g-osfp-dr8-10km.html) - FIBERSTAMP 800G OSFP DR8+ Silicon Optical Module is a hot-pluggable optical transceiver module based on silicon photonics integration technology, designed for data center 800GBASE-DR8 Ethernet links, with 100G PAM4 and 8-way single-mode parallel technology, and supports 10km maximum transmission distance. - [SiPh 800G QSFP-DD DR8 1310nm 500m SMF MPO Optical Transceiver](https://www.fiberstamp.com/siph-800g-qsfp-dd-dr8.html) - FIBERSTAMP's 800G QSFP-DD DR8 is a transceiver module designed for 500m optical communication applications, and they are compliant to QSFP-DD MSA, IEEE 802.3 protocol. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [4×12G-SDI CWDM Extender](https://www.fiberstamp.com/4x12g-sdi-optical-extenders.html) - FIBERSTAMP 4x12G-SDI optical extender extends the range of 8K video transmission through optical fiber between SDI source and receiver equipment. Utilizing the 12G-SDI CWDM optical module, it extends the transmission distance up to 10km. - [2×12G-SDI Extender](https://www.fiberstamp.com/2x12g-sdi-optical-extender.html) - FIBERSTAMP 2-channel 12G-SDI optical extender boasts a transmission rate spanning 125Mbps to 11.88Gbps. It enables bidirectional transmission of two independent 12G-SDI video signals, covering distances of up to 20km. It also maintains backward compatibility with MADI, DVB-ASI, SD-SDI, HD-SDI, 3G-SDI, and 6G-SDI standards. GIGALIGHT’s 3G/6G/12G-SDI optical module empowers customers to expand one to two SDI signal channels seamlessly. - [100G QSFP28 SR4 VCSEL 850nm 100m MMF MPO Rugged Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-sr4-rugged.html) - FIBERSTAMP 100G QSFP28 SR4 rugged optical module is is based on normal QSFP28 SR4 transceiver and specifically engineered to withstand harsh environmental conditions. Its PCBA and internal case space are safeguarded by conformal coating and an epoxy layer. This module successfully achieves IP67 certification, passing tests for dust and water resistance, salt spray and gas corrosion ratings, as well as enduring long-term mold growth assessments. - [5Gbps USB 3.0 Type-A Optical Cable](https://www.fiberstamp.com/5g-usb-aoc.html) - FIBERSTAMP's 5Gbps USB 3.0 Type-A Optical Cable is an active optical assembly featuring two USB 3.0 Type-A connectors along with an optical cable, designed to support USB 3.0 data transmission. Equipped with IC, VCSEL, and PD at each end, it seamlessly handles photoelectric and electro-optical conversions, enabling lossless 5Gbps data transmission up to 100m through multimode fiber. - [10Gbps USB 3.1 Type-A Male to Female Fiber Optic Cable](https://www.fiberstamp.com/10g-usb-c-aoc.html) - FIBERSTAMP introduces a cutting-edge 10Gbps USB 3.1 Type-C high-speed optical fiber cable to address stability, compatibility, and distance limitations of traditional copper wires in high-speed USB 3.1/3.0 signal transmission. It features a patented miniature diffraction system, ensuring stable performance, simple production, and custom casing options. This solution offers the most mature USB 3.1/3.0 optical fiber data transmission on the market. - [SiPh 400G QSFP-DD DR4++ 1310nm 10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/siph-400g-qsfp-dd-dr4-10km.html) - FIBERSTAMP 400G QSFP-DD DR4++ Silicon Optical Module extends the reach of DR4 for longer transmission distances. Compliant with IEEE 802.3bs 400GBASE-DR4, it supports 400G Ethernet rates (425Gb/s) for full-duplex links covering distances up to 10km. Leveraging the cost efficiency of silicon optical technology and the low device cost of single-lambda 100G PAM4 modulation and parallel optical engine technology, this module stands as a highly cost-effective solution for 400G interconnects within data centers - [SiPh 400G QSFP-DD LR4 CWDM4 10km SMF LC Optical Transceiver](https://www.fiberstamp.com/siph-400g-qsfp-dd-lr4.html) - FIBERSTAMP's silicon-based 400G QSFP-DD LR4 optical transceiver is tailored for mid-to-long-range data center connections. It aligns with 100G Lambda MSA 400G-LR4-10 standards and IEEE 802.3cu 400GBASE-LR4 Ethernet protocol. This module integrates a 4-channel CWDM MUX and DEMUX with central wavelengths at 1271nm, 1291nm, 1311nm, and 1331nm, enabling distances of up to 10km (FEC enabled) through a pair of single-mode optical fibers - [Immersible 25G SFP28 BiDi LR 10km Optical Modules](https://www.fiberstamp.com/immersible-25g-sfp28-bidi-lr.html) - FIBERSTAMP s 25G SFP28 BiDi LR optical modules, adapted for submerged liquid-cooled data centers, enable transmission over single-mode fiber for distances of up to 10km. - [200G QSFP56 Immersible Cooling Extender](https://www.fiberstamp.com/immersible-200g-qsfp56-extender.html) - FIBERSTAMP's 200G QSFP56 immersion cooling extender, plays a vital role in this liquid immersion solution. It allows standard QSFP transceivers/AOCs to function within an immersion environment. The extender consists of three parts: extender cage, cable, and QSFP housing, enabling customizable cable lengths of up to 0.5m for extension, safeguarding optical components from direct exposure to the liquid. - [100G QSFP28 Immersible Cooling DAC](https://www.fiberstamp.com/immersible-100g-qsfp28-dac.html) - FIBERSTAMP's 100G QSFP28 Immersion Cooling DAC designed for reliable use in liquid immersion environments. It's constructed with hot melt glue, forming a protective layer to safeguard the copper conductor from liquid contact, ensuring excellent signal integrity. Unlike standard DACs, this product features a braided and shielded sleeve instead of a traditional outer jacket, mitigating the risk of cooling liquid compromising the jacket material and contaminating the liquid cooling system. - [400G QSFP-DD FR4 EML CWDM4 2km SMF LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-fr4.html) - FIBERSTAMP 400G QSFP-DD FR4 optical transceiver module adopts single-wavelength 100G PAM4 and silicon photonics integration technology, which is widely used in 400GBASE-FR4 Ethernet links, and the transmission distance can reach up to 2km. - [100G SFP56-DD EML FR1 2km SMF Optical Transceiver](https://www.fiberstamp.com/100g-sfp56-dd-fr.html) - FIBERSTAMP 100G SFP56-DD FR optical transceiver is tailored for 100G Lambda 100G LR-10 Ethernet links within data centers and supports 5G fronthaul over single-mode fiber, covering distances of up to 2km. - [100G SFP56-DD LR1 1310nm 10km/20km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-sfp56-dd-lr.html) - FIBERSTAMP 100G SFP56-DD LR optical transceiver modules are purpose-built for facilitating high-speed data transmission in data center 100G Lambda 100G LR1-10 links, as well as supporting 5G fronthaul applications up to distances of 10km/20km across single-mode fiber. - [100G SFP56-DD ER1 1310nm 30km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-sfp56-dd-er.html) - FIBERSTAMP 100G SFP56-DD ER optical transceiver modules are purpose-built for facilitating high-speed data transmission in data center 100G Lambda 100G LR1-10 links, as well as supporting 5G fronthaul applications up to distances of 30km across single-mode fiber. - [400G OSFP-RHS SR4 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-osfp112-sr4.html) - FIBERSTAMP 400G OSFP-RHS SR4, the hot-pluggable optical transceiver engineered for high-speed 400G Ethernet links in data centers. Leveraging 100G PAM4 and cutting-edge VCSEL technology, this module seamlessly interconnects an impressive 425Gbps of data across 100 meters, utilizing 4 pairs of multimode fiber with FEC enabled. - [400G OSFP-RHS VR4 VCSEL 850nm 50m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-osfp112-vr4-transceiver.html) - FIBERSTAMP 400G OSFP-RHS VR4, the hot-pluggable optical transceiver engineered for high-speed 400G Ethernet links in data centers. Leveraging 100G PAM4 and cutting-edge VCSEL technology, this module seamlessly interconnects an impressive 425Gbps of data across 50 meters, utilizing 4 pairs of multimode fiber with FEC enabled. - [400G QSFP-DD VR4 VCSEL 850nm 50m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-vr4-transceiver.html) - FIBERSTAMP 400G QSFP-DD VR4, the hot-pluggable optical transceiver engineered for high-speed 400G Ethernet links in data centers. Leveraging 100G PAM4 and cutting-edge VCSEL technology, this module seamlessly interconnects an impressive 425Gbps of data across 50 meters, utilizing 4 pairs of multimode fiber with FEC enabled. - [400G QSFP-DD SR4 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-sr4-transceiver.html) - FIBERSTAMP's 400G QSFP-DD SR4 is a hot-pluggable optical transceiver made for high-speed 400G Ethernet links in data centers. Using 100G PAM4 and advanced VCSEL tech, it effortlessly connects up to 425Gbps of data over 100 meters, using 4 pairs of multimode fiber with FEC enabled. - [400G QSFP112 VR4 VCSEL 850nm 100m MMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp112-vcsel-vr4.html) - FIBERSTAMP 400G QSFP112 VR4 is a 4-channel 850nm VCSEL hot-pluggable optical module, designed for 400G Ethernet links in data centers, using 100G PAM4 and VCSEL technology, under the premise that the system is enabled FEC, 425Gbps data interconnection within 30m (OM3 MMF) or 50m (OM4 MMF) can be achieved through 4 pairs of multimode fibers. - [SiPh 800G OSFP 2xFR4 CWDM 2km SMF 2xDuplex LC Optical Transceiver](https://www.fiberstamp.com/800g-osfp-2xfr4.html) - FIBERSTAMP 800G OSFP 2xFR4 Silicon Optical Module is a hot-pluggable optical transceiver module based on silicon photonics integration technology, designed for data center 800GBASE-2xFR4 Ethernet links, with 100G PAM4 and 2x4-way single-mode parallel technology, and supports 2km maximum transmission distance. - [SiPh 800G OSFP 2xLR4 CWDM4 10km SMF 2xDuplex LC Optical Transceiver](https://www.fiberstamp.com/800g-osfp-2xlr4.html) - FIBERSTAMP 800G OSFP 2xLR4 Silicon Optical Module is a hot-pluggable optical transceiver module based on silicon photonics integration technology, designed for data center 800GBASE-2xLR4 Ethernet links, with 100G PAM4 and 2x4-way single-mode parallel technology, and supports 10km maximum transmission distance. - [SiPh 800G QSFP-DD 2xFR4 CWDM4 2km SMF 2xDuplex LC Optical Transceiver](https://www.fiberstamp.com/siph-800g-qsfp-dd-2xfr4.html) - FIBERSTAMP's 800G QSFP-DD 2xFR4 is a transceiver module designed for 2km optical communication application, they are compliant to QSFP-DD800 MSA and IEEE 802.3 protocol. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform.It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [400G QSFP112 SR4 Optical Transceiver Module for liquid cooling](https://www.fiberstamp.com/400g-qsfp112-sr4-immersion.html) - The Fiberstamp FQJ-400SR4M10xxx is a high performance module for short-range multi-lane data communication and interconnection applications in liquid immersion environment. It integrates Four data lanes in each direction with 4x53.125GBd. Each lane can operate at 106.25Gbps up to 60 m using OM3 fiber or 100 m using OM4 fiber with FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The optical interface uses male MPO12 APC pigtail. The Common Management Interface Specification (CMIS) for QSFP112 modules, This module incorporates Fiberstamp Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [400G QSFP-DD Immersible Cooling Extender](https://www.fiberstamp.com/immersible-400g-qsfp-dd-immersible-extender.html) - Fiberstamp can offer rich experience of immersion solution, that includes different form and speed transceivers/AOC/product. Fiberstamp 400G QSFP-DD immersion cooling extender (GLQE-PC401-DXX) is an important part of liquid immersion solution, normal QSFP-DD form transceiver/AOC can be used for immersion environment with this product. This product include extender cage, cable, QSFP-DD housing three parts, the cable length can be customized no more than 0.5m for extension, that can avoid the optical lens/engine/interface exposure to the liquid indirectly. - [100G QSFP28 Immersible Cooling Extender](https://www.fiberstamp.com/immersible-100g-qsfp28-extender.html) - FIBERSTAMP's 100G QSFP28 immersion cooling extender, plays a vital role in this liquid immersion solution. It allows standard QSFP transceivers/AOCs to function within an immersion environment. The extender consists of three parts: extender cage, cable, and QSFP housing, enabling customizable cable lengths of up to 0.5m for extension, safeguarding optical components from direct exposure to the liquid. - [100G SFP112 ER1 Lite 1310nm 30km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-sfp112-er1.html) - The Fiberstamp Technologies GSS-SPO101-ES1C is a single-Channel, Pluggable, Fiber-Optic SFP112 for 53.125GBd PAM4 Ethernet Applications. It is a high performance module for short-range data communication and interconnect applications which operate at 106.25Gbps up to 30km over Single-Mode Fiber (SMF). The electrical interface uses a 20 contact edge type connector. The optical interface uses duplex LC receptacle. The optical interface uses a Duplex LC connector. The high performance cooled EML transmitter and high sensitivity APD receiver provide superior performance for 100Gigabit Ethernet applications up to 30km links. - [100G SFP112 LR1 1310nm 10km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-sfp112-lr1.html) - The Fiberstamp Technologies GSS-SPO101-LR1C is a single-Channel, Pluggable, Fiber-Optic SFP112 for 53.125GBd PAM4 Ethernet Applications. It is a high performance module for short-range data communication and interconnect applications which operate at 106.25Gbps up to 10km over Single-Mode Fiber (SMF). The electrical interface uses a 20 contact edge type connector. The optical interface uses duplex LC receptacle. The optical interface uses a Duplex LC connector. The high performance cooled EML transmitter and high sensitivity PIN receiver provide superior performance for 100Gigabit Ethernet applications up to 10km links. - [800G QSFP-DD FR8 Duplex LC EML CWDM 2km Transceiver Module](https://www.fiberstamp.com/800g-qsfp-dd-fr8.html) - The FIBERSTAMP 800G QSFPDD FR8 is a high-speed transceiver module for 2km optical communication. It supports 8 channels at 106.25Gbps each, using CWDM EML lasers and PAM4 technology. The receiver includes 8 photodiodes and two 4-channel TIA arrays. It is compliant with QSFPDD MSA and IEEE 802.3, designed for harsh environments, and features a two-wire serial interface for control. - [100G-DR1-500m QSFP28 Optical Transceiver for liquid cooling](https://www.fiberstamp.com/immersible-100g-qsfp28-dr1.html) - The FIBERSTAMP 100G DR1-500m QSFP28 optical transceiver, 100G QSFP28 DR1 (FMG-10031M50) is designed for using in 100-Gigabit Ethernet links up to 500m over Single-Mode Fiber (SMF). It is compliant with the QSFP28 MSA , 802.3cu-2021 and CAUI-4(no FEC)1. The module incorporates 1 channel optical signal, on 1311nm center wavelength, operating at 100Gbps data rate. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 1 channel of 100Gbps (PAM4) optical signal, and also can convert 1 channel of 100Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. This optical module is especially designed for liquid immersion, the case is sealed with the sealing material coating to protect optical engine leaking in the coolant, comparing other liquid immersion solutions in optics, the module case has a pressure test point for liquid leakage ,so case sealing and testing technology has unique testability advantage in manufacture. - [SiPh 400G QSFP-DD DR4 500m Silicon Photonics Transceiver Module](https://www.fiberstamp.com/siph-400g-qsfp-dd-dr4.html) - The FIBERSTAMP FUL-400P4M50C is a transceiver module designed for 500m optical communication applications, and it is compliant to QSFP-DD MSA, IEEE 802.3bs protocol and 400GAUI-8 standards. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform. It uses SiPh chips that integrate a number of active and passive optoelectronic components, 3D packaging technology and industry-leading 7nm DSP chips. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [800G QSFP-DD to 2x400G QSFP112 Direct Attach Cable](https://www.fiberstamp.com/800g-qsfp-dd-to-2x400g-qsfp112.html) - FIBERSTAMP’s passive copper cable assembly series product provide superior signal integrity performance and reliability,QSFP-DD passive copper cable assembly doubles the number of 25G NRZ &50G PAM4/lane from 4 to 8 lanes comparing QSFP cabling systems, double density still maintains backward plug compatibility to meet next generation market needs. FIBERSTAMP’s FWL2J-80026D15C cable assemblies are effective alternatives to fiber optics. The cable connects data signals from each of the 16 pairs on the single QSFP-DD end to the dual QSFP112 end, each pair operates at data rates of up to 100Gb/s, each QSFP-DD/QSFP112 port can be addressed by EEPROM to provide product information, which can be read or write by I2C interface. FIBERSTAMP’s FWL2J-80026D15C cable assemblies is compliant with the QSFP-DD-MSA and IEEE802.3ck ,it’s high performance & cost effective I/O solutions for LAN, HPC and SAN. The high speed cable assemblies meet and exceed 800Gigabit Ethernet, InfiniBand EDR /HDR and temperature requirements for performance and reliability. - [800G QSFP-DD to 4x200G QSFP112 Direct Attach Cable](https://www.fiberstamp.com/800g-qsfp-dd-to-4x200g-qsfp112.html) - FIBERSTAMP’s passive copper cable assembly series product provide superior signal integrity performance and reliability,QSFP-DD passive copper cable assembly doubles the number of 25G NRZ &50G PAM4/lane from 4 to 8 lanes comparing QSFP cabling systems, double density still maintains backward plug compatibility to meet next generation market needs. FIBERSTAMP’s FWL4J-80030D15C cable assemblies are effective alternatives to fiber optics. The cable connects data signals from each of the 16 pairs on the single QSFP-DD end to the quad QSFP-DD ends, each pair operates at data rates of up to 100Gb/s, each QSFP-DD/QSFP112 port can be addressed by EEPROM to provide product information, which can be read or write by I2C interface. FIBERSTAMP’s FWL4J-80030D15C cable assemblies is compliant with the QSFP-DD-MSA and IEEE802.3ck ,it’s high performance & cost effective I/O solutions for LAN, HPC and SAN. The high speed cable assemblies meet and exceed 800Gigabit Ethernet, InfiniBand EDR /HDR and temperature requirements for performance and reliability. - [100G-DR1-500m QSFP28 EML Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-dr1-500m.html) - The FIBERSTAMP 100G DR1-500m QSFP28 optical transceiver, 100G QSFP28 DR1 (FBG-10031M50C) is designed for using in 100-Gigabit Ethernet links up to 500m over Single-Mode Fiber (SMF). It is compliant with the QSFP28 MSA , 802.3cu-2021 and CAUI-4(no FEC)1 . Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. The module incorporates 1 channel optical signal, on 1311nm center wavelength, operating at 100Gbps data rate. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 1 channel of 100Gbps (PAM4) optical signal, and also can convert 1 channel of 100Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. The electrical interface uses a 38-contact edge type connector. The optical interface uses a Duplex LC connector. The high performance cooled EML transmitter and high sensitivity PIN receiver provide superior performance for 100Gigabit Ethernet applications up to 500m links. - [800G-CR8 (OSFP RHS) Direct Attach Cable](https://www.fiberstamp.com/800g-cr8-osfp-rhs-pcc.html) - FIBERSTAMP’s FWU-800-XXM02C cable assemblies are effective alternatives to fiber optics. The cable connects data signals from each of the 16 pairs on the single OSFP RHS end to the other OSFP RHS end, each pair operates at data rates of up to 100Gb/s, each OSFP RHS port can be addressed by EEPROM to provide product information, which can be read or write by I2C interface. FIBERSTAMP’s FWU-800-XXM02C cable assemblies is compliant with the OSFP-MSA and IEEE 802.3ck, it’s a high performance & cost effective I/O solutions for LAN, HPC and SAN. The high speed cable assemblies meet and exceed 800Gigabit Ethernet, InfiniBand EDR /HDR and temperature requirements for performance and reliability. - [800G QSFP-DD immersion cooling extender](https://www.fiberstamp.com/800g-qsfp-dd-immersion-cooling-extender.html) - Description FIBERSTAMP can offer rich experience of immersion solution, that includes different form and speed transceivers/AOC/product. FIBERSTAMP 800G QSFP-DD immersion cooling extender (FSQE-PC801-DXX) is an important part of liquid immersion solution, normal QSFP-DD form transceiver/AOC can be used for immersion environment with this product. This product include extender cage, cable, QSFP-DD housing three parts, the cable length can be customized no more than 0.3m for extension, that can avoid the optical lens/engine/interface exposure to the liquid indirectly. In addition, this product can provide I2C read/write, also can show the status indicators with LED for low speed electrical hardware pins. When insertion and removal frequently, this product can effectively protect the QSFP-DD SMT connector of switch/NIC. - [800G-CR8 (OSFP RHS) Active Copper Cable](https://www.fiberstamp.com/800g-cr8-osfp-rhs-acc.html) - FIBERSTAMP’s OSFP RHS ACC(Active Copper Cable) assembly series product provide superior signal integrity performance and reliability, comparing to PCC and AOC, ACC is a re-drive solution which built-in linear equalizer to compensate transmission loss, it is an effective solution with low power, low latency, low cost to help high-speed data centers even AI high-computational applications. FIBERSTAMP’s FZU-800-XXM02C cable connects data signals from each of the 16 pairs on the single OSFP RHS end to the other OSFP RHS end, each pair operates at data rates of up to 100Gb/s and can be adaptive downward compatibility. The product operates 3.3V power supply and comply with OSFP MSA and IEEE802.3ck ,it’s high performance & cost effective I/O solutions for LAN, HPC and SAN. The high speed cable assemblies meet 400Gigabit Ethernet, Infiniband requirements for performance and reliability. - [200G QSFP56 SR2(4x53G PAM4 to 2x106G PAM4) 100m Optical Transceiver Module](https://www.fiberstamp.com/200g-qsfp56-sr2.html) - The FIBERSTAMP 200G QSFP56 SR2 is a Pluggable, Parallel, Fiber-Optic QSFP56 for 200 Gigabit Ethernet Applications. This transceiver is a high performance module for short-range multi-lane data communication and interconnection applications. This module can convert 4-channel 53.125 Gbit/s electrical data to 2 parallel channels of optical signals, each supporting106.25 Gbit/s data transmission. Reversely, it can convert 2-channel 106.25 Gbit/s optical signals to 4-channel electrical output data on the receiver side. Each lane can operate up to 60 m using OM3 fiber or 100 m using OM4 fiber with FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The optical interface uses 12 fiber MTP (MPO) connector. The Common Management Interface Specification (CMIS) for QSFP56 modules, This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [200G QSFP56 VR2 (4x53G PAM4 to 2x106G PAM4) 50m Optical Transceiver Module](https://www.fiberstamp.com/200g-qsfp56-vr2.html) - The FIBERSTAMP 200G QSFP56 VR2 is a Pluggable, Parallel, Fiber-Optic QSFP56 for 200 Gigabit Ethernet Applications. This transceiver is a high performance module for short-range multi-lane data communication and interconnection applications. This module can convert 4-channel 53.125 Gbit/s electrical data to 2 parallel channels of optical signals, each supporting106.25 Gbit/s data transmission. Reversely, it can convert 2-channel 106.25 Gbit/s optical signals to 4-channel electrical output data on the receiver side. Each lane can operate up to 30 m using OM3 fiber or 50 m using OM4 fiber with FEC. These modules are designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The optical interface uses 12 fiber MTP (MPO) connector. The Common Management Interface Specification (CMIS) for QSFP56 modules, This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [FIBERSTAMP 100G QSFP28 SR1 Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-sr1.html) - The FIBERSTAMP 100G QSFP28 SR1 is a single-Channel, Pluggable, Fiber-Optic QSFP28 for 106.25Gbps PAM4 Ethernet Applications. It is a high performance module for short-range data communication and interconnect applications which operate at 106.25Gbps up to 100 m using OM4 fiber or 100 m using OM5 fiber. It is compliant with the QSFP28 MSA ,100GBASE-SR1 and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. This module is designed to operate over multimode fiber systems using a nominal wavelength of 850nm.The optical interface uses duplex LC/APC receptacle. This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. KR-FEC is optional, please contact us if necessary. - [QSFP28 to 1XSFP28 DAC cable](https://www.fiberstamp.com/qsfp28-to-1xsfp28-dac.html) - FIBERSTAMP’s FWG-10030XXXC cable assembly is a customized passive copper cable. The cable connects data signals from each of the 1 pair on the single QSFP end to the SFP28 end, the pair operates at data rates of up to 25Gb/s, each end can be addressed by EEPROM to provide product information, which can be read or write by I2C interface. - [200G QSFP-DD to 2XQSFP28 DAC](https://www.fiberstamp.com/200g-qsfp-dd-to-2xqsfp28-dac.html) - FIBERSTAMP’s FWL-E25200XXC cable assembly is a customized passive copper cable. The cable connects data signals from each of the 16 pairs on the single QSFP-DD end to the dual QSFP28 end, the 16 pairs operates at data rates of up to 25Gb/s, each end can be addressed by EEPROM to provide product information, which can be read or write by I2C interface. - [SiPh 400G OSFP-RHS DR4 500m Silicon Photonics Transceiver Module](https://www.fiberstamp.com/400g-osfp-dr4-siph.html) - FIBERSTAMP FUR-400P4M50C is a high-performance transceiver module designed for 500-meter optical communication applications. It is fully compliant with OSFP MSA and the IEEE 802.3bs standard. This silicon photonics (SiPh) transceiver is built on a state-of-the-art SiPh platform, incorporating both active and passive optoelectronic components. It utilizes advanced 3D packaging technology and industry-leading 7nm DSP chips, delivering a cost-effective, low-power solution for 400GBASE data center applications. Engineered for reliability, the module is designed to perform in harsh operating environments, withstanding variations in temperature, humidity, and EMI interference. It provides high functionality and integration, with easy management and control via a two-wire serial interface. - [SiPh 400G QSFP112 DR4++ 10km Silicon Photonics Transceiver Module](https://www.fiberstamp.com/400g-qsfp112-dr4.html) - The FIBERSTAMP 400G QSFP112 DR4++ is a transceiver module designed for 10km optical communication applications, and it is compliant to QSFP112 MSA, IEEE 802.3cu protocol. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform. It uses SiPh chips that integrate a number of active and passive optoelectronic components, 3D packaging technology and industry-leading 7nm DSP chips. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [100G QSFP28 SWDM4 Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-swdm4.html) - The FIBERSTAMP 100G QSFP28 SWDM4 transceiver modules are designed for use in 100G Ethernet links over duplex multi-mode fiber. Four channels/lanes in the 850-940nm region @ 25.78Gbps to transport the Ethernet signal. Digital diagnostics functions are available via an I2C interface, as specified by the QSFP28 MSA. - [FIBERSTAMP 100G QSFP28 SR2 Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-sr2.html) - The FIBERSTAMP 100G SR2 QSFP28 optical transceiver is designed for using in 100-Gigabit Ethernet links up to 70m using OM3 and 100m using OM4. It is compliant with the QSFP28 MSA, IEEE 802.3cd and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. The module incorporates 2 channels 850nm VCSEL Array and PIN photo detector array. This results in an aggregate bandwidth of 100Gbps into a MPO cable. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 2 channels of 50Gbps (PAM4) optical signal, and also can convert 2 channels of 50Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. The electrical interface uses a 38-contact edge type connector. This transceiver is a high performance module for short-range duplex data communication and interconnects applications. - [FIBERSTAMP 800G OSFP immersion cooling extender](https://www.fiberstamp.com/800g-osfp-immersion-cooling-extender.html) - Description FIBERSTAMP can offer rich experience of immersion solution, that includes different form and speed transceivers/AOC/product. FIBERSTAMP 800G OSFP immersion cooling extender (FSOE-PC801-DXX) is an important part of liquid immersion solution, normal OSFP form transceiver/AOC can be used for immersion environment with this product. This product include extender cage, cable, OSFP housing three parts, the cable length can be customized no more than 0.3m for extension, that can avoid the optical lens/engine/interface exposure to the liquid indirectly. In addition, this product can provide I2C read/write, also can show the status indicators with LED for low speed electrical hardware pins. When insertion and removal frequently, this product can effectively protect the OSFP SMT connector of switch/NIC. - [FIBERSTAMP 100G SFP112 SR1 Optical Transceiver](https://www.fiberstamp.com/100g-sfp112-sr1.html) - The FIBERSTAMP Technologies 100G SFP112 SR1 is a single-Channel, Pluggable, Fiber-Optic SFP112 for 53.125GBd PAM4 Ethernet Applications. It is a high performance module for short-range data communication and interconnect applications which operate at 106.25Gbps up to 100 m using OM4 fiber or 100 m using OM5 fiber. This module is designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The electrical interface uses a 20 contact edge type connector. The optical interface uses duplex LC/APC receptacle. This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [FIBERSTAMP 800G QSFP-DD to 2x400G QSFP112 Active Copper Cable ACC](https://www.fiberstamp.com/800g-qsfp-dd-to-2x400g-qsfp112-acc.html) - FIBERSTAMP’s ACC(Active Copper Cable) assembly series product provide superior signal integrity performance and reliability, comparing to PCC and AOC, ACC is a re-drive solution which built-in linear equalizer to compensate transmission loss, it is an effective solution with low power, low latency, low cost to help high-speed data centers even AI high-computational applications. FIBERSTAMP’s FZL2J-800XXM05C cable connects data signals from each of the 16 pairs on the single QSFP-DD end to the dual QSFP112 ends, each pair operates at data rates of up to 100Gb/s and can be adaptive downward compatibility. The product operates 3.3V power supply and comply with QSFP-DD MSA and IEEE802.3ck ,it’s high performance & cost effective I/O solutions for LAN, HPC and SAN. - [800G OSFP to 4x200G OSFP RHS breakout Direct Attach Cable](https://www.fiberstamp.com/800g-osfp-to-4x200g-osfp-rhs.html) - FIBERSTAMP’s 800G OSFP to 4x200G OSFP cable assembly splitter is effective alternative to fiber optics. The cable connects data signals from each of the 16 pairs on the single OSFP end to the quad OSFP RHS ends, each pair operates at data rates of up to 100Gb/s, each OSFP/OSFP RHS port can be addressed by EEPROM to provide product information, which can be read or write by I2C interface. FIBERSTAMP’s FWU4U-800xxxxxC cable assembly splitter is compliant with the OSFP-MSA and IEEE 802.3ck, it’s a high performance, lowest-cost &latency &power consumption I/O solutions for LAN, HPC and SAN. The high speed cable assemblies meet and exceed 800 Gigabit Ethernet, InfiniBand EDR /HDR/NDR and temperature requirements for performance and reliability. The height of OSFP CTHS (Close Top Heat Sink) is fully compliant with OSFP finned top, OSFP RHS(Riding Heat Sink) also can be called flat top, it’s a little bit lower than OSFP CTHS. - [800G OSFP to 4x200G QSFP112 Breakout Active Copper Cable](https://www.fiberstamp.com/800g-osfp-to-4x200g-qsfp112.html) - FIBERSTAMP’s ACC(Active Copper Cable) assembly series product provide superior signal integrity performance and reliability, comparing to PCC and AOC, ACC is a re-drive solution which built-in linear equalizer to compensate transmission loss, it is an effective solution with low power, low latency, low cost to help high-speed data centers even AI high-computational applications. FIBERSTAMP’s FWU4J-800xxxxxC cable connects data signals from each of the 16 pairs on the single OSFP end to the quad QSFP112 ends, each pair operates at data rates of up to 100Gb/s and can be adaptive downward compatibility. The product operates 3.3V power supply and comply with OSFP-MSA and IEEE802.3ck ,it’s high performance & cost effective I/O solutions for LAN, HPC and SAN. - [FIBERSTAMP 200G QSFP-DD ER4 40km Optical Transceiver Module](https://www.fiberstamp.com/200g-qsfpdd-er4.html) - FIBERSTAMP’s 200GE QSFP-DD ER4 Optical Transceiver modules are designed for using in 200Gigabit Ethernet 40km links over SMF single-mode fiber. They are compliant with the QSFP-DD MSA and with IEEE 802.3cn 200GBASE-ER4 specification. Digital diagnostics functions are available via the I2C interface as specified by CMIS V4.0. These modules can convert 8 channels of 25Gbps (NRZ) electrical input data to 4 channels of 50Gbps (PAM4) optical signal, and also can convert 4 channels of 50Gbps (PAM4) optical signal to 8 channels of 25Gbps (NRZ) electrical output data. And these modules incorporate FIBERSTAMP Technologies proven circuit and EML technology to provide reliable long life, high performance, and consistent service. - [800G QSFP-DD to 4x200G QSFP112 Active Copper Cable ACC](https://www.fiberstamp.com/800g-qsfp-dd-to-4x200g-qsfp112-acc.html) - FIBERSTAMP’s ACC(Active Copper Cable) assembly series product provide superior signal integrity performance and reliability, comparing to PCC and AOC, ACC is a re-drive solution which built-in linear equalizer to compensate transmission loss, it is an effective solution with low power, low latency, low cost to help high-speed data centers even AI high-computational applications. FIBERSTAMP’s FZL4J-800XXM05C cable assemblies are effective alternatives to fiber optics. The cable connects data signals from each of the 16 pairs on the single QSFP-DD end to the quad QSFP112 ends, each pair operates at data rates of up to 100Gb/s, each QSFP-DD/QSFP112 port can be addressed by EEPROM to provide product information, which can be read or write by I2C interface, it’s a high performance & cost effective I/O solutions for LAN, HPC and SAN. - [FIBERSTAMP 400G QSFP-DD ER8 40km Optical Transceiver Module](https://www.fiberstamp.com/400g-qsfpdd-er8.html) - FIBERSTAMP's 400G QSFP-DD ER8 module is designed for 40 km optical communication applications, and it is compliant to IEEE 802.3bs for 400GE Ethernet. This module contains 8-lane optical transmitter, 8-lane optical receiver and module management block including 2 wire serial interfaces. The optical signals are multiplexed to a single-mode fiber through an industry standard LC connector. - [FIBERSTAMP 200G QSFP-DD LR4 LWDM 10km Optical Transceiver Module](https://www.fiberstamp.com/200g-qsfpdd-lr4.html) - FIBERSTAMP’s 200G QSFP-DD LR4 Optical Transceiver modules are designed for using in 200Gigabit Ethernet 10km links over SMF single-mode fiber. They are compliant with the QSFP-DD MSA and with IEEE 802.3cn 200GBASE-LR4 specification. Digital diagnostics functions are available via the I2C interface as specified by CMIS V4.0. These modules can convert 8 channels of 25Gbps (NRZ) electrical input data to 4 channels of 50Gbps (PAM4) optical signal, and also can convert 4 channels of 50Gbps (PAM4) optical signal to 8 channels of 25Gbps (NRZ) electrical output data. And these modules incorporate FIBERSTAMP Technologies proven circuit and EML technology to provide reliable long life, high performance, and consistent service. - [25Gbps SFP28 Hardened Active Optical Cable](https://www.fiberstamp.com/25g-sfp28-haoc.html) - FIBERSTAMP 25Gbps SFP28 Hardened Active Optical Cables (HAOCs) are direct-attach fiber assemblies with SFP28 connectors, designed for short-reach interconnects. Featuring a hardened optical cable construction, they provide a cost-effective solution for connections within racks and between adjacent racks. Each FIBERSTAMP SFP28 HAOC is built with a stainless steel tube, Kevlar reinforcement, and an LSZH jacket, supporting distances of up to 70 meters over OM3 multimode fiber. Engineered for long-term reliability and resistance to harsh environments, these cables deliver outstanding performance in demanding applications. - [10G SFP+ Hardened Active Optical Cables](https://www.fiberstamp.com/10g-sfp-haoc.html) - FIBERSTAMP 10G SFP+ Hardened Active Optical Cables are direct-attach fiber assemblies with SFP+ connectors. They are suitable for very short distances and offer a cost-effective way to connect within racks and across adjacent racks. FIBERSTAMP SFP+ Hardened Active Optical Cables is made of hardened optical cable structure with stainless steel metal tube, Kevlar strenthen and LSZH Jacket ,support up to 300 meters on OM3 MMF, it’s specially for outstanding long term reliability and harsh environment tolerance. - [100G QSFP28 Hardened Active Optical Cable](https://www.fiberstamp.com/100g-qsfp28-haoc.html-2) - The FIBERSTAMP Technologies 100G QSFP28 HAOC is a four-channel, pluggable, parallel fiber-optic transceiver designed for 100G or 40G Ethernet and InfiniBand FDR/EDR applications. This high-performance module is ideal for short-range, multi-lane data communications and interconnect deployments. Built with a ruggedized optical cable structure featuring a stainless steel tube, Kevlar reinforcement, and an LSZH jacket, delivering reliable performance over distances of up to 70 meters on OM3 multimode fiber. Engineered for long-term durability and resistance to harsh environments, it ensures superior reliability for demanding applications. - [Immersion 800G OSFP DR8 Optical Transceiver Module for liquid cooling](https://www.fiberstamp.com/immersion-800g-osfp-dr8.html) - The FIBERSTAMP 800G OSFP DR8 is a transceiver module designed for optical communication applications of up to 500 m in liquid immersion environments. It is built on two core technological pillars—advanced silicon photonics chips and a state-of-the-art 5 nm DSP—working in synergy to deliver exceptional performance, efficiency, and integration. Specifically engineered for liquid immersion, the module’s housing is sealed with a protective coating to prevent coolant ingress into the optical engine. Compared with other liquid-immersion optical solutions, this design incorporates a dedicated pressure test point for leakage detection, giving the sealing and testing process a unique advantage in manufacturing quality assurance. Built to withstand the most demanding operating conditions, the module resists extreme temperatures, high humidity, and EMI interference. It also offers extensive functionality and feature integration, all accessible via a two-wire serial interface. - [FIBERSTAMP 400G OSFP-RHS FR4 2Km EML Transceiver Module](https://www.fiberstamp.com/400g-osfp-rhs-fr4.html) - This FIBERSTAMP 400G OSFP-RHS FR4 product is designed for 2km optical communication applications. The module converts 4 channels of 100Gb/s (PAM4) electrical input data to 4 channels of CWDM optical signals, and multiplexes them into a single channel for 400Gb/s optical transmission. Reversely, on the receiver side, the module optically de-multiplexes a 400Gb/s optical input into 4 channels of CWDM optical signals and converts them to 4 channels of 100Gb/s (PAM4) electrical output data. The module incorporates 4 independent channels on CWDM4 1271/1291/1311/1331nm center wavelength, operating at 100G per channel. The transmitter path incorporates 4 independent EML drivers and EML lasers together with an optical multiplexer. On the receiver path, an optical de- multiplexer is coupled to a 4-channel photodiode array. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [FIBERSTAMP 400G OSFP-RHS LR4 10Km EML Transceiver Module](https://www.fiberstamp.com/400g-osfp-rhs-lr4.html) - This FIBERSTAMP 400G OSFP-RHS product is designed for 10km optical communication applications. The module converts 4 channels of 100Gb/s (PAM4) electrical input data to 4 channels of CWDM optical signals, and multiplexes them into a single channel for 400Gb/s optical transmission. Reversely, on the receiver side, the module optically de-multiplexes a 400Gb/s optical input into 4 channels of CWDM optical signals and converts them to 4 channels of 100Gb/s (PAM4) electrical output data. The module incorporates 4 independent channels on CWDM4 1271/1291/1311/1331nm center wavelength, operating at 100G per channel. The transmitter path incorporates 4 independent EML drivers and EML lasers together with an optical multiplexer. On the receiver path, an optical de- multiplexer is coupled to a 4-channel photodiode array. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [FIBERSTAMP 400G QSFP112 FR4 2Km EML Transceiver Module](https://www.fiberstamp.com/400g-qsfp112-fr4.html) - This FIBERSTAMP 400G QSFP112 FR4 product is designed for 2km optical communication applications. The module converts 4 channels of 100Gb/s (PAM4) electrical input data to 4 channels of CWDM optical signals, and multiplexes them into a single channel for 400Gb/s optical transmission. Reversely, on the receiver side, the module optically de-multiplexes a 400Gb/s optical input into 4 channels of CWDM optical signals and converts them to 4 channels of 100Gb/s (PAM4) electrical output data. The module incorporates 4 independent channels on CWDM4 1271/1291/1311/1331nm center wavelength, operating at 100G per channel. The transmitter path incorporates 4 independent EML drivers and EML lasers together with an optical multiplexer. On the receiver path, an optical de- multiplexer is coupled to a 4-channel photodiode array. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [FIBERSTAMP 400G QSFP112 LR4 10Km EML Transceiver Module](https://www.fiberstamp.com/400g-qsfp112-lr4.html) - This FIBERSTAMP FBJ-400C4K10C product is designed for 10km optical communication applications. The module converts 4 channels of 100Gb/s (PAM4) electrical input data to 4 channels of CWDM optical signals, and multiplexes them into a single channel for 400Gb/s optical transmission. Reversely, on the receiver side, the module optically de-multiplexes a 400Gb/s optical input into 4 channels of CWDM optical signals and converts them to 4 channels of 100Gb/s (PAM4) electrical output data. The module incorporates 4 independent channels on CWDM4 1271/1291/1311/1331nm center wavelength, operating at 100G per channel. The transmitter path incorporates 4 independent EML drivers and EML lasers together with an optical multiplexer. On the receiver path, an optical de- multiplexer is coupled to a 4-channel photodiode array. It is a cost-effective and lower power consumption solution for 400GBASE data center. It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface. - [100G BIDI-ER1-30km QSFP28 Optical Transceiver](https://www.fiberstamp.com/product/100g-qsfp28-bidi-er1-30km-optical-transceiver) - Description  The FIBERSTAMP 100G QSFP28 BIDI ER1-30 optical transceiver, is designed for using in 100-Gigabit Ethernet links up to 30km over Single-Mode Fiber (SMF). It is compliant with the QSFP28 MSA , OIF CEI-28G-VSR and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. The module incorporates 1 channel optical signal, operating at 100Gbps data rate. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 1 channel of 100Gbps (PAM4) optical signal, and also can convert 1 channel of 100Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. The electrical interface uses a 38-contact edge type connector. The optical interface uses a Single LC connector. The high performance cooled EML transmitter and high sensitivity PIN receiver provide superior performance for 100Gigabit Ethernet applications up to 30km links. - [100G QSFP28 ER1 EML 1310nm 40km SMF LC Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-er.html) - FIBERSTAMP 100G QSFP28 ER1 optical transceiver module is used for long-distance transmission in the datacom or telecom sector and is compliant with the 100G Lambda MSA 100G-ER1-40 specification. It uses a pair of single-mode fibers for transmission with a central wavelength of 1310nm and a distance of up to 40km (FEC on). - [100G-ER1-30km QSFP28 Optical Transceiver](https://www.fiberstamp.com/100g-qsfp28-er1-30km.html) - Description  The FIBERSTAMP 100G ER1-30km QSFP28 optical transceiver, 100G QSFP28 ER1-30(FBG-100ER-K30C) is designed for using in 100-Gigabit Ethernet links up to 30km over Single-Mode Fiber (SMF). It is compliant with the QSFP28 MSA ,100G Lambda 100G ER1-30 and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA. The module incorporates 1 channel optical signal, on 1311nm center wavelength, operating at 100Gbps data rate. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 1 channel of 100Gbps (PAM4) optical signal, and also can convert 1 channel of 100Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. The electrical interface uses a 38-contact edge type connector. The optical interface uses a Duplex LC connector. The high performance cooled EML transmitter and high sensitivity APD receiver provide superior performance for 100Gigabit Ethernet applications up to 30km links. - [200G QSFP56 LR4 EML LWDM4 10km/20km SMF LC Optical Transceiver](https://www.fiberstamp.com/200g-qsfp56-lr4.html) - FIBERSTAMP 200G QSFP-DD PSM8 optical transceiver modules are used for medium to long distance interconnections in data centers and are compliant with 100G PSM4 MSA specification and 200G Ethernet transport protocols, as well as compatible with 8x10G/25G Ethernet and InfiniBand QDR/EDR transport protocols. The series uses 8 pairs of parallel single-mode fiber optic transmission with a central wavelength of 1310nm and distances up to 2km or 10km (both with FEC on), with optional industrial grade operating temperature range. - [200G QSFP-DD LR8 DML LWDM8 10km SMF Dual LC Optical Transceiver](https://www.fiberstamp.com/200g-qsfp-dd-lr8.html) - FIBERSTAMP 200G QSFP-DD LR8 optical transceiver modules are used for medium to long distance interconnections in data centers and are compliant with 200G Ethernet transport protocols. The series uses 8 pairs of parallel single-mode fiber optic transmission with a central wavelength of 1273.55nm, 1277.89nm, 1282.26nm, 1286.66nm, 1295.56nm, 1300.05nm, 1304.58nm and 1309.14nm,and distances up to 10km or 20km (with no need of FEC ). - [400G QSFP-DD xPSM8 EML 1310nm 20km/30km SMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-xpsm8.html) - FIBERSTAMP 400G QSFP-DD xPSM8 is a hot-pluggable optical transceiver module, designed for 400G PSM8 Ethernet links in data centers, using 50G PAM4 and 8-way single-mode parallel technology, supporting 20km or 30km maximum transmission distance. - [400G QSFP-DD PSM8 EML 1310nm 2km/10km SMF MPO Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-psm8.html) - FIBERSTAMP 400G QSFP-DD PSM8 is a hot-pluggable optical transceiver module, designed for 400G PSM8 Ethernet links in data centers, using 50G PAM4 and 8-way single-mode parallel technology, supporting 2km or 10km maximum transmission distance. - [400G QSFP-DD LR8 EML LWDM8 10km SMF Dual LC Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-lr8.html) - FIBERSTAMP 400G QSFP-DD LR8 is a hot-pluggable optical transceiver module designed for 400GBASE-LR8 Ethernet links in data centers and 5G backhaul. It adopts 50G PAM4 and LWDM8 technology and supports 10km the maximum transmission distance. - [FIBERSTAMP 16 Channels 3G SDI Optical Extender + 2 Channels Independent 1000M IP + Network Gateway](https://www.fiberstamp.com/16channels-3g-sdi-extender2-chanenls-1000m-ipnms.html) - The FIBERSTAMP FBV3G-C45K20N optical transceiver is capable of transmitting 16 channels of 3G-SDI at a bit rate of 2.97 Gbps, along with 2 independent channels of 1000M IP data. It is fully compatible with HD-SDI and SD-SDI formats. Designed with a modular structure, the FBV3G-C45K20N meets CE certification standards and complies with the SMPTE 178 protocol. It has successfully passed SDI pathological signal tests, ensuring stable and reliable signal transmission for professional video and data applications. - [400G QSFP-DD ZR+ Coherent Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-zr-plus.html) - FIBERSTAMP 400G QSFP-DD ZR+ Coherent Optical Module for Data Center 400G Ethernet and OTN OTU4 Metro Optical Transport Network links over single-mode fiber up to 120km. module operates on full C-band DWDM wavelengths at 75GHz (up to 64 channels) or 100GHz (up to 48 channels) channel spacing, ideal for long-haul metro DCI and 5G backhaul applications. Ideal solution for long-haul metro DCI and 5G backhaul applications. - [400G QSFP-DD ZR Coherent Optical Transceiver](https://www.fiberstamp.com/400g-qsfp-dd-zr.html) - FIBERSTAMP 400G QSFP-DD ZR coherent optical module supports 400GE and OTN links reach up to 120km. It operates on full C-band DWDM wavelengths with 75GHz (up to 64 channels) or 100GHz (up to 48 channels) channel spacing, and is ideal for long-haul metro DCI and 5G backhaul applications. - [100G CFP DCO DWDM C-band 50GHz Tunable 120~2000km Coherent Optical Transceiver](https://www.fiberstamp.com/100g-cfp-dco.html) - FIBERSTAMP 100G CFP DCO supports 100GE and OTN links reach up to 120km, 600km or 1200km. It operates at full C-band tunable DWDM wavelengths with 50GHz channel spacing, and supports up to 96 channels over a single fiber, which can greatly save fiber resources. It is an ideal solution for long-distance transmission applications. - [10G SFP+ BiDi 10~80km Single-fiber Bidirectional Transceiver Module (Industrial-Grade Option Available)](https://www.fiberstamp.com/10g-sfp-bidi-10-80km.html) - FIBERSTAMP’s 10G BiDi SFP+ optical transceiver series is widely deployed in 10G Ethernet and Optical Transport Network (OTN OTU2e) applications. The modules are fully compatible with 10G CPRI, SONET OC-192 / SDH STM-64, and 10G Fibre Channel standards. Designed for single-fiber transmission over single-mode fiber, they support reach options from 10 km up to 80 km, enabling efficient fiber utilization and flexible network deployment. - [FIBERSTAMP 1G&10G SFP+ OEO card](https://www.fiberstamp.com/product/1g10g-sfp-oeo-card) - 1G&10G SFP+ OEO card - the Optical Signal Regeneration Converter, transforming optical signal processing. Based on the O-E-O principle, it excels in wavelength conversion, relay amplification, and more, serving as a pivotal component in optical communication across SDH, Ethernet, and C/DWDM domains. With full-rate access from 155Mbps to 11.3Gbps, support for various services, 3R function, and exceptional integration, this card offers versatile, space-efficient expansion capabilities. - [FIBERSTAMP 25G OEO Card](https://www.fiberstamp.com/product/25g-oeo-card) - The 25G OEO Card operates on the O-E-O principle, serving as an optical signal regeneration converter proficient in 25.5-28.1Gbps signal wavelength conversion, single-mode adaptation, relay amplification, and signal regeneration. Its versatile applications cover the 25G/100G optical communication and transmission domains, spanning Data Networks and C/DWDM scenarios. Featuring rate access from 25.5-28.1Gbps, service access encompassing Ethernet, FC, and more, along with 3R function support, this card efficiently handles 4-channel two-way/4-channel one-way business processing on a single card. Its plug-in design ensures seamless integration, saving space and allowing convenient expansion as needed. - [FIBERSTAMP 100G OEO Optical Converter](https://www.fiberstamp.com/product/100g-oeo-optical-converter) - 100G OEO Optical Converter, a cutting-edge signal regeneration equipment based on the O-E-O principle. This versatile converter is designed for optical signal wavelength conversion, relay amplification, and regeneration, serving diverse applications in 100G metropolitan area network Ethernet and backbone network data diversion monitoring. With an impressive signal rate of 103.1~112Gbps, 3R function support, and capability for 2-channel two-way service processing, it ensures robust performance. Additionally, it offers DDM information monitoring and SNMP/Client Remote management, making it an ideal solution for high-speed optical signal processing needs. - [FIBERSTAMP 100G QSFP28 to 4x25G OEO Card](https://www.fiberstamp.com/product/4x25g-oeo-card) - 100G QSFP28 To 4x25G OEO Card designed for multiplexing 4 channels of 25/28G optical signals into 1x100G or demultiplexing 1x100G into 4 channels of 25/28G signals. Operating on the OEO principle, it transparently forwards business data, ideal for long-distance 100G optical transmission or 25G signal multiplexing. Its applications span DWDM Systems and Data Networks, offering multi-service access like Ethernet, OTN, and more. With a single card, it seamlessly handles multiplexing and demultiplexing, ensuring efficient optical signal processing. - [400G OSFP-RHS DR4 optical transceiver for immersion cooling](https://www.fiberstamp.com/400g-osfp-rhs-dr4-immersion.html) - The FIBERSTAMP FQU-400P4M50C is a transceiver module designed for 500m optical communication applications in liquid immersion environment, and it is compliant to OSFP MSA, IEEE 802.3bs protocol. The silicon photonics transceiver is based on a new state-of-the-art silicon photonics (SiPh) platform. It uses SiPh chips that integrate a number of active and passive optoelectronic components, 3D packaging technology and industry-leading DSP chips. The optical module is especially designed for liquid immersion, the case is sealed with the sealing material coating to protect optical engine leaking in the coolant, comparing other liquid immersion solutions in optics, the module case has a pressure test point for liquid leakage ,so case sealing and testing technology has unique testability advantage in manufacture. This product has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. It offers very high functionality and feature integration, accessible via a two-wire serial interface. - [FIBERSTAMP 400G QSFP112 DR4 optical transceiver module for liquid cooling](https://www.fiberstamp.com/400g-qsfp112-dr4-immersion.html) - The FIBERSTAMP FQJ-400P4M50C is a transceiver module designed for up to 500m optical communication applications in liquid immersion environment, and it is compliant to QSFP112 MSA type 1 form factor, IEEE 802.3cu protocol. It uses SiPh chips that integrate a number of active and passive optoelectronic components, 3D packaging technology and industry-leading DSP chips. The optical module is especially designed for liquid immersion, the case is sealed with the sealing material coating to protect optical engine leaking in the coolant, comparing other liquid immersion solutions in optics, the module case has a pressure test point for liquid leakage ,so case sealing and testing technology has unique testability advantage in manufacture. This product has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. It offers very high functionality and feature integration, accessible via a two-wire serial interface. - [FIBERSTAMP 53G SFP56 Active Optical Cable](https://www.fiberstamp.com/53g-sfp56-aoc.html-2) - The FIBERSTAMP FYD-E50M100C is a single-Channel Active Optical Cable for 26.5625GBd PAM4 Ethernet Applications. It is a high performance module for short-range data communication and interconnect applications which operate at 53.125Gbps up to 70 m using OM3 fiber or 100 m using OM4 fiber. This module is designed to operate over multimode fiber systems using a nominal wavelength of 850nm. The electrical interface uses a 20 contact edge type connector. This module incorporates FIBERSTAMP Technologies proven circuit and VCSEL technology to provide reliable long life, high performance, and consistent service. - [FIBERSTAMP 400G QSFP-DD to 400G OSFP-RHS AOC Optical Transceiver Module](https://www.fiberstamp.com/400g-qsfp-dd-400g-osfp-rhs.html) - FIBERSTAMP’s FYLU-400M50C MMF Active Optical Cable is used in 4 X 100Gigabit Ethernet links over OM3/OM4 multimode fiber. The OSFP-RHS port has integrate 4 independent transmit and receive channels, each capable of 106.25Gb/s PAM4 operation for an aggregate data rate of 425Gb/s, while the QSFP-DD port has integrate 4 independent transmit and receive channels and uses QSFP-DD MSA,which provides increased port density and total system cost savings for switches and routers, etc. It is compliant with IEEE 802.3db, IEEE 802.3ck and OSFP&QSFP-DD MSA. - [400G QSFP112 to 400G OSFP-RHS AOC Optical Transceiver Module](https://www.fiberstamp.com/400g-qsfp112-400g-osfp-rhs.html) - FIBERSTAMP’s FYLU-400MxxxC MMF Active Optical Cable is used in 4 X 100Gigabit Ethernet links over OM3/OM4 multimode fiber. The OSFP-RHS port has integrate 4 independent transmit and receive channels, each capable of 106.25Gb/s PAM4 operation for an aggregate data rate of 425Gb/s, while the QSFP112 port has integrate 4 independent transmit and receive channels and uses QSFP112 MSA,which provides increased port density and total system cost savings for switches and routers, etc. It is compliant with IEEE 802.3db, IEEE 802.3ck and OSFP&QSFP112 MSA. - [400G QSFP56-DD to 4x100G QSFP28 MMF Active Optical Splitter Cable 8x50G PAM4](https://www.fiberstamp.com/400g-qsfp56-dd-to-4x100g-qsfp28-aoc.html) - FIBERSTAMP’s FYHG-400MXXXC MMF Active Optical Splitter Cable is used in 4 X 100 Gigabit Ethernet links over OM3/OM4/OM5 multimode fiber, which provides connectivity between system units with a 400GbE connector on one side and four separate 100GbE connectors on the other four sides. The cable connects data signals from each of the 8 MMF (Multi Mode Fiber) pairs on the single QSFP56-DD end to the dual pair of each of the QSFP56 multiport ends. FIBERSTAMP’s FYHG-400MXXXC MMF Active Optical Splitter Cable is compliant with the QSFP-DD-MSA and with 100GBASE-SR2 specification. Digital diagnostics functions are available via the I2C interface as specified by CMIS V4.0. The transceiver is RoHS 2.0 compliant and lead-free per Directive 2011/65/EU. - [FIBERSTAMP 800G OSFP to RHS immersion cooling extender](https://www.fiberstamp.com/800g-osfp-to-rhs-immersion-cooling-extender.html) - Description FIBERSTAMP can offer rich experience of immersion solution, that includes different form and speed transceivers/AOC/product. FIBERSTAMP 800G OSFP to RHS immersion cooling extender (FSUE-RHS-801-DXX) is an important part of liquid immersion solution, this product include RHS extender cage, cable, OSFP contact three parts, the cable length can be customized no more than 0.3m, that can avoid the optical lens/engine/interface exposure to the liquid indirectly. In addition, this product can provide I2C read/write, also can show the status indicators with LED for low speed electrical hardware pins. - [FIBERSTAMP 200G QSFP DD xPSM8 20km Optical Transceiver(MPO16)](https://www.fiberstamp.com/200g-qsfp-dd-xpsm8-20km.html) - The Fiberstamp Technologies FBL-200P8K20C is a Eight-Channel, Pluggable, Parallel, Fiber-Optic QSFP DD PSM8 for 2×100 Gigabit Ethernet , Infiniband DDR/EDR Applications. This transceiver is a high performance module for data communication and interconnect applications. It integrates eight data lanes in each direction with 208 Gbps bandwidth. Each lane can operate at 26Gbps up to 20km over G.652 SMF. These modules are designed to operate over single mode fiber systems using a nominal wavelength of 1310nm. The electrical interface uses a 76 contact edge type connector. The optical interface uses an 16 fiber MTP (MPO) connector. This module incorporates Fiberstamp Technologies proven circuit and Optical technology to provide reliable long life, high performance, and consistent service. - [100G QSFP28 Loopback Modules](https://www.fiberstamp.com/100g-qsfp28-loopback.html) - FIBERSTAMP 100G QSFP28 Loopback Module is designed to replace QSFP28 transceiver modules for board-level testing of QSFP28 ports, providing data center customers with a cost-effective solution for QSFP-DD port testing. - [200G QSFP56 Loopback Modules](https://www.fiberstamp.com/200g-qsfp56-loopback.html) - FIBERSTAMP 200G QSFP56 Loopback Module is designed to replace QSFP56 transceiver modules for board-level testing of QSFP56 ports, providing data center customers with a cost-effective solution for QSFP56 port testing. - [200G QSFP-DD Loopback Modules](https://www.fiberstamp.com/200g-qsfp-dd-loopback.html) - FIBERSTAMP 200G QSFP-DD Loopback Module is designed to replace QSFP-DD transceiver modules for board-level testing of QSFP-DD ports, providing data center customers with a cost-effective solution for QSFP-DD port testing. - [100G SFP56-DD Loopback Modules](https://www.fiberstamp.com/100g-sfp56-dd-loopback.html) - FIBERSTAMP 100G SFP56-DD Loopback Module is designed to replace QSFP56 transceiver modules for board-level testing of SFP56-DD ports, providing data center customers with a cost-effective solution for SFP56-DD port testing. - [25G SFP28 Loopback Modules](https://www.fiberstamp.com/25g-sfp28-loopback.html) - FIBERSTAMP 25G SFP28 Loopback Module is designed to replace QSFP56 transceiver modules for board-level testing of SFP28 ports, providing data center customers with a cost-effective solution for SFP28 port testing. - [400G QSFP-DD Loopback Modules](https://www.fiberstamp.com/400g-qsfp-dd-loopback.html) - FIBERSTAMP 400G QSFP-DD Loopback Module is designed to replace QSFP-DD transceiver modules for board-level testing of QSFP-DD ports, providing data center customers with a cost-effective solution for QSFP-DD port testing. - [100G/200G CFP2 DCO DWDM C-band 50GHz Tunable 120~1200km Coherent Optical Transceiver](https://www.fiberstamp.com/200g-cfp2-dco.html) - FIBERSTAMP 100G/200G CFP2 DCO supports 100/200GE and OTN links reach up to 80km or 600km. It operates at full C-band tunable DWDM wavelengths with 50GHz channel spacing, and supports up to 96 channels over a single fiber, which can greatly save fiber resources. It is an ideal solution for long-distance transmission applications. - [400G CFP2 DCO 600km SML Duplex LC Coherent Optical Transceiver](https://www.fiberstamp.com/400g-cfp2-dco.html) - Hot-pluggable CFP2 digital coherent optical transceiver modules Data rate up to 425Gbps Supports 200G PM-QPSK, 200G/400G PM-16QAM and 200G PM-16QAMps modulation modes Supports 100GE, 200GE, 400GE and OTU4/OTUCn services Compliant with OTL4.4, FOIC1.4, CAUI-4 and FOIC1.2 specifications Support near-end and far-end data loopback Compatible with CFP2 MSA and CFP MSA Support OTN mapping and Ethernet - [96CH DWDM 50GHz(15-62)Dual fiber MUX & DEMUX 2U RACK](https://www.fiberstamp.com/product/96h-dwdm-50ghz) - Features 2U 19” Rach mount LC / UPC Duplex connector 1% Monitor port for Tx and Rx, easy troubleshooting for DWDM system ITU G.694.1 50GHz ITU grid, 0.4nm spacing Based on Athermal AWG DWDM module technology Flat-top Typical insertion loss <7.3 dB Telcordia GR-1209-CORE and CR-1221-CORE compliant 1% Monitor port for Tx and Rx, ensutes - [64CH DWDM 75GHz C1-C64 Dual fiber MUX & DEMUX 2U RACK](https://www.fiberstamp.com/product/64ch-dwdm-75ghz) - Features 2U 19” Rach mount LC / UPC Duplex connector 1% Monitor port for Tx and Rx, easy troubleshooting for DWDM system ITU G.196.1 75GHz ITU grid, 0.6nm spacing Based on Athermal AWG DWDM module technology Flat-top Typical insertion loss <6.0 dB Telcordia GR-1209-CORE and CR-1221-CORE compliant 1% Monitor port for Tx and Rx, ensutes - [48CH DWDM 100GHz (C17-C64) Dual fiber MUX & DEMUX 1U RACK](https://www.fiberstamp.com/product/48ch-dwdm-100ghz-c17-c64-dual-fiber-mux-demux-1u-rack) - [table id=48 /] ## Template Builder - [Single Product](https://www.fiberstamp.com/woolentor-template/single-product) ## Categories - [Preview](https://www.fiberstamp.com/category/preview) - [Product News](https://www.fiberstamp.com/category/news) - [Company Activities](https://www.fiberstamp.com/category/company-activities) - [2023](https://www.fiberstamp.com/news2023) - [2022](https://www.fiberstamp.com/news2022) - 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[AI&DC Interconnect](https://www.fiberstamp.com/product-category/aidc-interconnect) - [Non-Coherent & Coherent DWDM Solutions](https://www.fiberstamp.com/product-category/dwdmdci-box) - [Optical Lab Equipment](https://www.fiberstamp.com/product-category/optical-lab-equipment) ## Product tags - [400G](https://www.fiberstamp.com/product-tag/400g) - [SMF](https://www.fiberstamp.com/product-tag/smf) - [LR4](https://www.fiberstamp.com/product-tag/lr4) - [EML](https://www.fiberstamp.com/product-tag/eml) - [CWDM4](https://www.fiberstamp.com/product-tag/cwdm4) - [800g](https://www.fiberstamp.com/product-tag/800g) - [MMF](https://www.fiberstamp.com/product-tag/mmf) - [QSFP-DD](https://www.fiberstamp.com/product-tag/qsfp-dd) - [DML](https://www.fiberstamp.com/product-tag/dml) - [Dual Duplex LC](https://www.fiberstamp.com/product-tag/dual-duplex-lc) - [Data Center](https://www.fiberstamp.com/product-tag/data-center) - [200G](https://www.fiberstamp.com/product-tag/200g) - [Ethernet](https://www.fiberstamp.com/product-tag/ethernet) - [QSFP56](https://www.fiberstamp.com/product-tag/qsfp56) - [100G](https://www.fiberstamp.com/product-tag/100g) - [100G QSFP28](https://www.fiberstamp.com/product-tag/100g-qsfp28) - [QSFP28](https://www.fiberstamp.com/product-tag/qsfp28) - [CWDM](https://www.fiberstamp.com/product-tag/cwdm) - [LWDM8](https://www.fiberstamp.com/product-tag/lwdm8) - [SR4](https://www.fiberstamp.com/product-tag/sr4) - [SR8](https://www.fiberstamp.com/product-tag/sr8) - [QSFP+](https://www.fiberstamp.com/product-tag/qsfp) - [40G](https://www.fiberstamp.com/product-tag/40g) - [ER4](https://www.fiberstamp.com/product-tag/er4) - [CWDM4. LR4](https://www.fiberstamp.com/product-tag/cwdm4-lr4) - [OSFP](https://www.fiberstamp.com/product-tag/osfp) - [128G](https://www.fiberstamp.com/product-tag/128g) - [50G](https://www.fiberstamp.com/product-tag/50g) - [SFP56](https://www.fiberstamp.com/product-tag/sfp56) - [25G](https://www.fiberstamp.com/product-tag/25g) - [SFP28](https://www.fiberstamp.com/product-tag/sfp28) - [Siph](https://www.fiberstamp.com/product-tag/siph) - [QSFP112](https://www.fiberstamp.com/product-tag/qsfp112) - [Loopback](https://www.fiberstamp.com/product-tag/loopback) - [tool](https://www.fiberstamp.com/product-tag/tool) - [10G](https://www.fiberstamp.com/product-tag/10g) - [CFP](https://www.fiberstamp.com/product-tag/cfp) - [SFP+](https://www.fiberstamp.com/product-tag/sfp) - [ER](https://www.fiberstamp.com/product-tag/er) - [DWDM](https://www.fiberstamp.com/product-tag/dwdm) - [QSFPDD](https://www.fiberstamp.com/product-tag/qsfpdd) - [NRZ](https://www.fiberstamp.com/product-tag/nrz) - [AOC](https://www.fiberstamp.com/product-tag/aoc) - [56G](https://www.fiberstamp.com/product-tag/56g) - [4x50G PAM4](https://www.fiberstamp.com/product-tag/4x50g-pam4) - [50G PAM4](https://www.fiberstamp.com/product-tag/50g-pam4) - [120G](https://www.fiberstamp.com/product-tag/120g) - [CXP](https://www.fiberstamp.com/product-tag/cxp) - [PAM4](https://www.fiberstamp.com/product-tag/pam4) - [850nm](https://www.fiberstamp.com/product-tag/850nm) - [ACC](https://www.fiberstamp.com/product-tag/acc) - [Immersion Cooling](https://www.fiberstamp.com/product-tag/immersion-cooling) - [Coherent](https://www.fiberstamp.com/product-tag/coherent) - [CFP2 DCO](https://www.fiberstamp.com/product-tag/cfp2-dco) - [ZR+](https://www.fiberstamp.com/product-tag/zr) - [Immersion](https://www.fiberstamp.com/product-tag/immersion) - [BiDi](https://www.fiberstamp.com/product-tag/bidi) - [HD Video](https://www.fiberstamp.com/product-tag/hd-video) - [SDI](https://www.fiberstamp.com/product-tag/sdi) - [12G](https://www.fiberstamp.com/product-tag/12g) - [3G](https://www.fiberstamp.com/product-tag/3g) - [48G](https://www.fiberstamp.com/product-tag/48g) - [vr8](https://www.fiberstamp.com/product-tag/vr8) - [DR8](https://www.fiberstamp.com/product-tag/dr8) - [Extender](https://www.fiberstamp.com/product-tag/extender) - [HAOC](https://www.fiberstamp.com/product-tag/haoc) - [rugged](https://www.fiberstamp.com/product-tag/rugged) - [HDMI](https://www.fiberstamp.com/product-tag/hdmi) - [USB](https://www.fiberstamp.com/product-tag/usb) - [OSFP-RHS](https://www.fiberstamp.com/product-tag/osfp-rhs) - [VR4](https://www.fiberstamp.com/product-tag/vr4) - [FR4](https://www.fiberstamp.com/product-tag/fr4) - [100G DWDM](https://www.fiberstamp.com/product-tag/100g-dwdm) - [C-BAND](https://www.fiberstamp.com/product-tag/c-band) - [MPO](https://www.fiberstamp.com/product-tag/mpo) - [800G OSFP 2xFR4](https://www.fiberstamp.com/product-tag/800g-osfp-2xfr4) - [2xFR4](https://www.fiberstamp.com/product-tag/2xfr4) - [2xLR4](https://www.fiberstamp.com/product-tag/2xlr4) - [800G OSFP 2xLR4](https://www.fiberstamp.com/product-tag/800g-osfp-2xlr4) - [800G QSFP-DD 2xFR4](https://www.fiberstamp.com/product-tag/800g-qsfp-dd-2xfr4) - [800G QSFP-DD 2xLR4](https://www.fiberstamp.com/product-tag/800g-qsfp-dd-2xlr4) - [immesible extender](https://www.fiberstamp.com/product-tag/immesible-extender) - [SFP112](https://www.fiberstamp.com/product-tag/sfp112) - [ER1](https://www.fiberstamp.com/product-tag/er1) - [LR1](https://www.fiberstamp.com/product-tag/lr1) - [Duplex LC](https://www.fiberstamp.com/product-tag/duplex-lc) - [DR1](https://www.fiberstamp.com/product-tag/dr1) - [500m](https://www.fiberstamp.com/product-tag/500m) - [liquid cooling](https://www.fiberstamp.com/product-tag/liquid-cooling) - [O-Band](https://www.fiberstamp.com/product-tag/o-band) - [200GHz](https://www.fiberstamp.com/product-tag/200ghz) - [DR4](https://www.fiberstamp.com/product-tag/dr4) - [Silicon Photonics Transceiver](https://www.fiberstamp.com/product-tag/silicon-photonics-transceiver) - [2X400G](https://www.fiberstamp.com/product-tag/2x400g) - [DAC](https://www.fiberstamp.com/product-tag/dac) - [PCC](https://www.fiberstamp.com/product-tag/pcc) - [4x200g](https://www.fiberstamp.com/product-tag/4x200g) - [RHS](https://www.fiberstamp.com/product-tag/rhs) - [immersion cooling extender](https://www.fiberstamp.com/product-tag/immersion-cooling-extender) - [30km](https://www.fiberstamp.com/product-tag/30km) - [SR2](https://www.fiberstamp.com/product-tag/sr2) - [vr2](https://www.fiberstamp.com/product-tag/vr2) - [DWDM1](https://www.fiberstamp.com/product-tag/dwdm1) - [Transceiver](https://www.fiberstamp.com/product-tag/transceiver) - [Module](https://www.fiberstamp.com/product-tag/module) - [LWDM](https://www.fiberstamp.com/product-tag/lwdm) - [10km](https://www.fiberstamp.com/product-tag/10km) - [Optical](https://www.fiberstamp.com/product-tag/optical) - [40KM](https://www.fiberstamp.com/product-tag/40km) - [ER8](https://www.fiberstamp.com/product-tag/er8) - [SR1](https://www.fiberstamp.com/product-tag/sr1) - [SWDM4](https://www.fiberstamp.com/product-tag/swdm4) - [1G](https://www.fiberstamp.com/product-tag/1g) - [OEO](https://www.fiberstamp.com/product-tag/oeo) - [53g](https://www.fiberstamp.com/product-tag/53g) - [Active Optical Cable](https://www.fiberstamp.com/product-tag/active-optical-cable) - [QSFP56-DD](https://www.fiberstamp.com/product-tag/qsfp56-dd) - [48ch](https://www.fiberstamp.com/product-tag/48ch) - [96ch](https://www.fiberstamp.com/product-tag/96ch) - [xpsm8](https://www.fiberstamp.com/product-tag/xpsm8) - [psm8](https://www.fiberstamp.com/product-tag/psm8) - [DWDM4](https://www.fiberstamp.com/product-tag/dwdm4) - [PSM4](https://www.fiberstamp.com/product-tag/psm4) - [PAM](https://www.fiberstamp.com/product-tag/pam) - [Silicon Photonics Transceiver Module](https://www.fiberstamp.com/product-tag/silicon-photonics-transceiver-module) - [DATACENTER](https://www.fiberstamp.com/product-tag/datacenter) - [MPO16](https://www.fiberstamp.com/product-tag/mpo16) - [MPO24](https://www.fiberstamp.com/product-tag/mpo24) - [20KM](https://www.fiberstamp.com/product-tag/20km)