Interconnection

Interconnections

Products

  • Cable assemblies with MXC connectors use optical interconnect technology adopted by the open compute consortium, targeting high-broadband data centre interconnection. The expanded beam PRIZM MT ferrule used in the MXC connector offers higher resistance to dust and dirt contamination. MXC to MXC trunks are designed for short-distance, high-broadband connections within a rack or cabinet.
  • The 32-fibre round cable is terminated on both sides with MXC connectors which carry the basic type of PRIZM® MT ferrules with two row of lenses. PRIZM® MT ferrules greatly reduce sensitivity to debris, and MXC connectors take up less space in comparison to standard MPO/MTP connectors. With a lower spring force, this assembly is suitable for applications which demand the repeated mating of connectors. The round cable structure imparts sufficient flexibility to the assembly.
  • Cable assemblies with MXC connectors use optical interconnect technology adopted by the open compute consortium, targeting high-broadband data centre interconnection. The expanded beam PRIZM MT ferrule used in the MXC connector offers higher resistance to dust and dirt contamination. MXC to MXC trunks are designed for short-distance, high-broadband connections within a rack or cabinet.
  • The 48 fibres, which are grouped into four 12-fiber bare ribbons terminated on both sides by MXC connectors, are carried in the new PRIZM® MT ferrule – the type with the highest number of lenses: 4 rows, each with 12 lenses. PRIZM® MT ferrules greatly reduce sensitivity to debris, and MXC connectors take up less space in comparison to standard MPO/MTP connectors.
  • The fanout solution is designed for the testing of individual channels of MXC assemblies in the design stage. Fibres are separated into individual fibres, protected by 2.0mm tubings and terminated by LC connectors with high-precision zirconia ferrules.
  • Individual channels terminated by LC connectors are identified by marking sleeves for easy identification of each channel.

Cable assemblies with MXC connectors use optical interconnect technology adopted by the open compute consortium, targeting high-broadband data centre interconnection.

Cable assemblies with MXC connectors use optical interconnect technology adopted by the open compute consortium, targeting high-broadband data centre interconnection.

  • A “backplane” solution for high-speed optical connections directly from PCB to card edge, the MXC receptacle on the card edge offers a compact design with a small footprint and a ruggedised interface using an expanded beam PRIZM MT ferrule. The PRIZM LT connector offers the possibility of using AVAGO MiniPODs/MicroPODs or US CONEC MOI for direct PCB connection.
  • On one side, the assembly carries 32 fibres with MXC receptacle connector on the other side, it is equipped with two PRIZM® LightTurn connectors. The MXC connector carries the new PRIZM® MT ferrule with two rows of lenses. This combination brings a perfect card edge solution with a small connection footprint and increased resistance against debris. PRIZM® LightTurn® miniature detachable connectors provide for perpendicular connection to printed circuit boards, and are very often used for connection to AVAGO MiniPOD / MicroPOD parallel optic modules.

A “backplane” solution for high-speed optical connections directly from PCB to card edge, the MXC receptacle on the card edge offers a compact design with a small footprint and a ruggedised interface using an expanded beam PRIZM MT ferrule.

This receptacle is a fanout solution for testing individual channels of MXC trunk cables in the design stage. Individual channels terminated by LC connectors are identified by marking sleeves for easy identification of each channel.

  • WENDY module for 12 connections. Used as splitting point from cable to individual E2000 ports.

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