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400G QSFP DD Active Optical Cable [QS400GA20]3
https://www.genmore.net/ GenMore International Corp.
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Home Product Other SAS, SFP, QSFP, Fiber 400G QSFP DD Active Optical Cable [QS400GA20]
QS400GA20

400G QSFP DD Active Optical Cable [QS400GA20]

Price US$ 1

GenMore is devoted to providing reliable and outstanding active optical cable (AOC).
GenMore QSFP-DD 400Gbps AOC is a high-speed solution with cost-effective design.

Description

The 400G Active Optical Cable product is a 8 pairs parallel active optical cable for storage, data, and high performance computing connectivity. This product offers 8 independent data transmission channels and 8 data receiving channels via the multimode fibers, each capable up to 50Gb/s operation. So that an aggregate data rate of 400Gb/s over 100 meters transmission can be achieved by this product. This product compliant with the QSFP specifications of SFF8436、8432、8472 and IEEE802.3bm.

Features

  • 8 channels full-duplex active optical cable
  • Transmission data rate up to 53Gbps per channel
  • 8x53Gbps PAM4 transmitter and PAM4 receiver
  • Internal CDR circuits on both receiver and transmitter channels
  • Single 3.3V power supply
  • Power consumption < 10W per end
  • Hot-pluggable QSFP-DD connectors, compliant with CMIS
  • Length up to 70m (OM3) or 100m (OM4)
  • Operating case temperature range 0℃ to 70℃
  • Built-in digital diagnostic functions
  • RoHS6



QSFP-DD MSA GROUP ANNOUNCES NEW SPECIFICATIONS AND WHITEPAPER

Quad Small Form Factor Pluggable Double Density MSA releases Hardware and Common Management Interface Specifications plus a new whitepaper on thermal design

Chicago – May 24, 2021 – The Quad Small Form Factor Pluggable Double Density (QSFPDD) Multi Source Agreement (MSA) group today announces the release of a hardware specification revision 6.0 updating QSFP-DD, introducing QSFP-DD800 and introducing QSFP112. The specification can be found at www.qsfp-dd.com.

QSFP-DD is the premier 8-lane data center pluggable module form factor. Systems designed for QSFP-DD modules can be backward compatible with existing QSFP form factors and provide maximum flexibility for end users, network platform designers, and integrators. With the inclusion of support for 100 Gb/s electrical host interfaces, this 7th public release adds QSFP-DD800 and QSFP112 Mechanical and Board Definitions. It also adds QSFP112 electrical and management timing. Revision 6.0 includes updated power supply test methods and support for an increased module power rating to 25 W. The module power contact rating is increased from 1 A to 1.5 A. An appendix with normative connector performance data has also been added.

The group also announces the release of an updated Common Management Interface Specification (CMIS) revision 5.0 for QSFP-DD, QSFP-DD800 and QSFP112. The CMIS defines the host-to-module interactions needed to ensure that modules will initialize and operate consistently. This revision provides several extensions and a comprehensive technical and editorial consolidation. It is harmonized with timing parameters defined in QSFP-DD MSA HW Spec revision 5.1 previously published and in this revision 6.0. CMIS is broadly implemented across the industry, beyond just the QSFP/QSFP-DD family of module types. The feedback from many implementers has also been consolidated to improve and extend the specification.

“It is exciting to see how the 63 companies involved came together to harmonize these important QSFP/QSFP-DD form factors and software to future-proof data centers while maintaining backward compatibility,” said Scott Sommers, founding member, and MSA co-chair.

The MSA group also announces the release of a new thermal management whitepaper. High performance network environments need efficient cooling of pluggable optical modules. This is particularly true for the new high power 25 W modules for QSFP-DD800 systems, which must dissipate heat effectively to ensure operational performance. Careful thermal design of module, cage, heatsink, and the overall system for QSFP-DD modules is required for efficient heat dissipation. This new whitepaper explains techniques that can be used to achieve this goal in QSFP-DD/QSFP-DD800 module design and QSFP-DD/QSFP-DD800 system design. It includes both experimental and simulation studies to demonstrate the efficacy of these techniques.

“The performance and power demands for high-speed network solutions are constantly increasing,” said Mark Nowell, founding member, and MSA co-chair. “This whitepaper captures the design experience garnered over the recent years from many companies and was written to help design engineers understand how they can achieve the thermal characteristics their system requires, even when using new 25 W modules, thus ensuring the reliable operation of their products.”

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