TE Connectivity micro SFP+ Connector and Cable Assembly

TE Connectivity's (TE) micro SFP+ Connector and Cable Assembly increase faceplate density while freeing up additional PCB space due to the board connector's shortened length. TE's micro SFP+ interconnects feature a footprint that is up to 50% smaller than SFP+, taking up as little as 15mm board space. The cable assembly and connector provide a staggered contact configuration that improves signal routing. The bottom and top contacts are further optimized for speed. These micro SFP+ interconnects are designed for telecommunications, data communication, medical diagnostic equipment, and networking applications.

Features

  • Increases faceplate density / saves PCB space
    • Up to 50% smaller than current SFP+ connectors, in width and length, taking up as little as 15mm board space
    • One micro SFP+ frees up 19% more faceplate space than 1 SFP+ connector
  • Improves Signal Integrity
    • Cable assembly and connector designed with a staggered contact configuration that improves signal routing
    • Bottom and top contacts further optimized for speed
  • Reduces EMI through a die cast housing, cable shield crimped at 360 degrees, and an extended EMI shield over the cable's plug
  • Optimizes manufacturing processes
    • For manufacturing automation, board interconnect combines connector and cage into finished product for automated placement
    • Withstands up to +265°C

Applications

  • Telecommunications
    • Cellular infrastructure
    • Hubs
    • Servers
    • Switches
  • Data communication
    • Servers
    • Storage equipment
  • Medical diagnostic equipment
  • Networking
    • Network interface
    • Storage
    • Power supplies
    • Test and measurement equipment

Specifications

  • Electrically compliant to SFF-8431
  • 10Gigabit Ethernet and Gigabit Ethernet (IEEE802.3ae)
  • Fibre Channel (FC): 1, 2, 4, and 8GFC
  • InfiniBand standard (10Gbps)
  • Fibre Channel over Ethernet (FCoE)
  • Serial data transmission
發佈日期: 2015-04-06 | 更新日期: 2026-01-12