What are Active Copper Breakout Cables?

Picture of FiberMall

FiberMall

Answered on 6:19 am

Active Copper Breakout Cables are cables that connect a single high-speed port to multiple lower-speed ports. They are typically used to connect switches, servers, and storage devices in data centers. They use copper wires to transmit electrical signals and have active components in the connectors that boost the signal quality and extend the reach. They can support data rates from 10G to 400G per lane.

The QSFP end of the active breakout cable includes a gearbox chip which converts 2x 50G PAM-4 electrical signals from the 400G port (a 100G-2 interface) into 4x 25G NRZ electrical signals (a 100G-4 interface). The vast majority of the installed base of 100G QSFP switches / routers / NICs use 100G-4 QSFP ports (where the QSFP port has an electrical interface consisting of 4x 25G NRZ electrical signals).

The Arista active copper breakout cables offer a cost-effective way to breakout a 400G port into 4x100G and connect to an installed base of 100G QSFP ports.

ACC

People Also Ask

Scale Out vs Scale Up: Insights into AI Network Architectures for 2028

As a leading specialist in optical-communication products and solutions, FiberMall is dedicated to providing cost-effective options for global data centers, cloud computing, enterprise networks, access networks, and wireless systems. With our expertise in AI-enabled communication networks, we’re the perfect partner for those seeking high-quality, value-driven optical-communication solutions. In this blog,

Understanding Optical Transceiver Modules: A Comprehensive Guide to Technical Parameters

In the world of fiber optic communications, optical transceiver modules play a pivotal role as interfaces that convert electrical signals to optical signals and vice versa. If you’re dealing with data centers, telecommunications, or AI networking, grasping the key parameters of an optical transceiver module is essential. This blog post dives deep

Spine-Leaf vs. Traditional Three-Tier Architecture: Comprehensive Comparison and Analysis

Introduction Evolution of Data Center Networking Over the past few decades, data center networking has undergone a massive transformation from simple local area networks to complex distributed systems. In the 1990s, data centers primarily relied on basic Layer 2 switching networks, where servers were interconnected via hubs or low-end switches.

AMD: Pioneering the Future of AI Liquid Cooling Markets

In the rapidly evolving landscape of AI infrastructure, AMD is emerging as a game-changer, particularly in liquid cooling technologies. As data centers push the boundaries of performance and efficiency, AMD’s latest advancements are setting new benchmarks. FiberMall, a specialist provider of optical-communication products and solutions, is committed to delivering cost-effective

The Evolution of Optical Modules: Powering the Future of Data Centers and Beyond

In an era dominated by artificial intelligence (AI), cloud computing, and big data, the demand for high-performance data transmission has never been greater. Data centers, the beating hearts of this digital revolution, are tasked with processing and moving massive volumes of data at unprecedented speeds. At the core of this

How is the Thermal Structure of OSFP Optical Modules Designed?

The power consumption of ultra-high-speed optical modules with 400G OSFP and higher rates has significantly increased, making thermal management a critical challenge. For OSFP package type optical modules, the protocol explicitly specifies the impedance range of the heat sink fins. Specifically, when the cooling gas wind pressure does not exceed

Related Articles

800g sr8 and 400g sr4

800G SR8 and 400G SR4 Optical Transceiver Modules Compatibility and Interconnection Test Report

Version Change Log Writer V0 Sample Test Cassie Test Purpose Test Objects:800G OSFP SR8/400G OSFP SR4/400G Q112 SR4. By conducting corresponding tests, the test parameters meet the relevant industry standards, and the test modules can be normally used for Nvidia (Mellanox) MQM9790 switch, Nvidia (Mellanox) ConnectX-7 network card and Nvidia (Mellanox) BlueField-3, laying a foundation for

Read More »
scale out vs scale up

Scale Out vs Scale Up: Insights into AI Network Architectures for 2028

As a leading specialist in optical-communication products and solutions, FiberMall is dedicated to providing cost-effective options for global data centers, cloud computing, enterprise networks, access networks, and wireless systems. With our expertise in AI-enabled communication networks, we’re the perfect partner for those seeking high-quality, value-driven optical-communication solutions. In this blog,

Read More »
AMD

AMD: Pioneering the Future of AI Liquid Cooling Markets

In the rapidly evolving landscape of AI infrastructure, AMD is emerging as a game-changer, particularly in liquid cooling technologies. As data centers push the boundaries of performance and efficiency, AMD’s latest advancements are setting new benchmarks. FiberMall, a specialist provider of optical-communication products and solutions, is committed to delivering cost-effective

Read More »
osfp module

How is the Thermal Structure of OSFP Optical Modules Designed?

The power consumption of ultra-high-speed optical modules with 400G OSFP and higher rates has significantly increased, making thermal management a critical challenge. For OSFP package type optical modules, the protocol explicitly specifies the impedance range of the heat sink fins. Specifically, when the cooling gas wind pressure does not exceed

Read More »
Scroll to Top