$199.99 CAD

AddOn HP J9054B Compatible TAA Compliant 100Base-FX SFP Transceiver (MMF, 1310nm, 2km, LC)
This HP® J9054B compatible SFP transceiver provides 100Base-FX throughput up to 2km over multi-mode fiber (MMF) using a wavelength of 1310nm via an LC connector. It is guaranteed to be 100% compatible with the equivalent HP® transceiver. This easy to install, hot swappable transceiver has been programmed, uniquely serialized and data-traffic and application tested to ensure that it will initialize and perform identically. It is built to meet or exceed the specifications of HP, as well as to comply with MSA (Multi-Source Agreement) standards to ensure seamless network integration. This transceiver is Trade Agreements Act (TAA) compliant. We stand behind the quality of our products and proudly offer a limited lifetime warranty.


  • With 100Base-FX technology, enjoy up to 100Mbps data transfer rate over optical fiber cable

  • Featuring Fast Ethernet port to enhance the data transfer rate by up to 100Mbps for connectivity

  • Supports optical fiber cable for durable performance, minimal signal loss, and fast data transfers to greater distances

Product Type: SFP
Country Of Origin: United States
Brand Name: AddOn
Compatibility:
  • HP ProCurve Switch 6200yl
  • HP ProCurve Switch 5400zl
  • HP ProCurve Switch 4200vl
  • HP ProCurve Switch 3500yl
  • HP ProCurve Switch 2900
  • HP ProCurve Switch 2810
  • HP ProCurve Switch 2800
  • HP ProCurve Switch 2510
  • HP ProCurve vl J9033A Module
Form Factor: Hot-swappable
Manufacturer: AddOn
Product Name: HP ProCurve J9054A Compatible SFP Transceiver
Manufacturer Part Number: J9054BAO
Manufacturer Website Address: http://www.addoncomputer.com
Limited Warranty: Lifetime
Weight (Approximate): 0.96 oz (27.22 g)
Feature1: With 100Base-FX technology, enjoy up to 100Mbps data transfer rate over optical fiber cable
Feature2: Featuring Fast Ethernet port to enhance the data transfer rate by up to 100Mbps for connectivity
Feature3: Supports optical fiber cable for durable performance, minimal signal loss, and fast data transfers to greater distances