Amphenol High speed I/O solution
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overpass_catalog.pdf |
Amphenol`s OverPass™ cable system offers a broad range of capabilities that allow our customers to efficiently transmit high speed signals from near an ASIC to anywhere in their system. Allow us to help identify the ideal solution and optimized cost from our broad range of OverPass connector options.
FEATURES/BENEFITS *EXTERNAL IO Use of the OverPass product in HSIO applications allow system designers to: • have a direct high speed interconnect link from the near chip/on chip site directly to the external IO port • reduce overall link signal loss • eliminate the need for expensive signal re-timers and avoid increased heat generation • reduce cost from high performance laminates in PCB construction • optimize airflow and system heat management efficiency
The HSIO OverPass portfolio products are fully compliant to established industry standard interfaces: • SFP, QSFP, QSFP DD, OSFP and others • all interfaces support signal transmission speeds of 10G, 28G and 56G PAM and 112G versions for OSFP, QSFP DD and QSFP • press fit or cabled sideband signal management options The portfolio also includes cage configurations & layouts (stacked & ganged,belly-to-belly) that can maximize the linear board port density available to the designer. OverPass solutions allow for applications in elevated operating temperature environments (85C+) and all cage configurations include standard and custom heat sink offerings and light pipe options.
*CABLED BACKPLANE OverPass backplane cable solutions extend the reach of passive copper for next generation system designs. 56G and 112G PAM4 performance is optimized by utilizing our low loss twinax cable with Paladin® and ExaMAX® backplane connector families. OverPass is complementary with traditional PCB routing and compatible with existing backplane connector systems. While providing enhanced performance, OverPass can lower system costs. This is done by reducing or eliminating the need for expensive re-timers, and high performance board materials. The proven reliability of passive twinax copper, coupled with advanced wire attachment and 100% high speed test coverage provides peace of mind reliability.
*ORTHOGONAL Using OverPass product in Orthogonal applications allow system designers to have a direct high speed interconnect link from the chip site to the Orthogonal connector. Hybrid applications can mix cable and board differential pairs into the same connector. Allowing select routing of low speed/low reach links through the board and high speed/high reach links cabled directly to the chip site. Multiple options for chip site connector, dependent on customer requirements.
*INTERNAL The OverPass cable system allows for the transfer of high-speed signals to twinax cables shortly after they are launched from the ASIC. Delivering a simple, low-loss, direct link to pluggable modules or anywhere in your system. Multiple interface choices are available, so system designers can optimize key parameters like signaling speed, signal density, and system heat management. • multiple cable exit options like straight, right angle, and coplanar • high-speed, low-loss twinax cable aids in wire management and routing • solutions are available in 10G, 25G, 56G & 112G PAM4 per lane signaling speeds • construction options including double ended, Y cable and breakout cables • multiple cages configurations like single, ganged and stacked
TARGET MARKETS/APPLICATIONS Communications • Telecom • Datacom • Switches and Routers Data • Routers and Servers • Data Center Network • Storage • Firewall More information, please visit: • High Speed I/O Solutions:https://www.amphenol-cs.com/high-speed-io-solutions.html • External High Speed IO:https://www.amphenol-cs.com/overpass/external-high-speed-io • Cabled Backplane:https://www.amphenol-cs.com/overpass/cabled-backplane • Internal:https://www.amphenol-cs.com/overpass/internal Video - OverPass™ Solutions | Amphenol:https://www.youtube.com/watch?v=ihJbYzirlrs Please contact us for any inquiries, thank you. E-mail: sales@quadrep.com.tw |
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