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Vszerda

Vszerda MINI SAS HD to MINI SAS 36PIN Adapter Cable SFF-8644 to SFF-8087 12Gbps 1.64TF/0.5M

SKU CH-EE5D-8KJGR

Connects 12 Gbps SFF-8644 and SFF-8087 SAS ports for server hard-disk links

Cable Length 10 Feet

  • 12 Gbps transfer speed for fast server storage links
  • SFF-8644 to SFF-8087 connects Mini SAS HD with 36-pin Mini SAS
  • 5 m length suits tight rack cable runs
  • Copper conductors with 5 mΩ max on-resistance for low loss
  • Rated from −20 °C to 85 °C for demanding server environments

Vszerda SFF-8644 to SFF-8087 Adapter Cable

This Vszerda adapter cable connects Mini SAS HD SFF-8644 ports to Mini SAS 36-pin SFF-8087 ports. It supports 12Gbps data transfer for server hard disk links. The 1.64TF 0.5M length suits internal chassis routing. Copper conductors and black insulation complete the assembly.

Suits 12Gbps SAS links; not for other speeds

Builders linking 12Gbps SAS controllers to backplanes or drives using these connectors will find the cable matches the spec. Systems requiring a different data rate or connector pinout should look at another cable. The 0.5M reach limits use to adjacent devices.

12Gbps rating decides compatibility

The cable is rated for 12Gbps operation across the SFF-8644 to SFF-8087 interface. If the host or target device runs at a different SAS speed the link will not perform as intended. Verify the required signalling rate before purchase.

Highlights

  • 12 Gbps transfer speed for fast server storage links
  • SFF-8644 to SFF-8087 connects Mini SAS HD with 36-pin Mini SAS
  • 5 m length suits tight rack cable runs
  • Copper conductors with 5 mΩ max on-resistance for low loss
  • Rated from −20 °C to 85 °C for demanding server environments

Specifications

No published specifications for this item yet.

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Questions about this item

How do I connect the SFF-8644 end to the SFF-8087 port without damaging the pins?

Align the keyed SFF-8644 plug with the SFF-8087 receptacle and press straight in until the latch clicks; do not exceed the 55.5 N insertion force limit or you risk bending the 36-pin contacts.

What wear should I expect on the copper contacts after repeated mating cycles?

The contacts are rated for a maximum on-resistance of 5 mΩ and a low-power contact impedance of 80 MΩ; if resistance rises above those values the cable should be replaced.

At what temperature does the 12 Gbps signal integrity start to degrade during continuous server workloads?

The cable is specified for an operating range of -20 °C to 85 °C; sustained operation near the upper limit can increase insertion loss and bit errors on the 12 Gbps link.

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