$689.23 CAD

Axiom 100GBase-SR4 QSFP28 Transceiver for HP - 845966-B21

Axiom QSFP28 100Gb Transceiver Modules are 100% compatible in all OEM applications. They are pre-configured with an application specific code to meet the requirement set forth by the router and switch OEMs. Axiom compatible transceivers perform, fit and function identically when compared to "Original" Transceivers. Axiom brand transceivers also function with other brands within the same network.

  • 100% Guaranteed Compatibility in all OEM applications

  • Part number and unique product serialization; Eliminates any network communication conflicts and provides easy identification

  • Fully compliant with the multi-sourcing agreement (MSA) which enables them to work in all MSA compliant platforms
    Original Equipment Manufacturer (OEM)® names may be registered trademarks of the respective OEM, and the OEM has neither authorized nor sponsored the use of its trademark or trade name. All OEM names are used for comparative purposes only.

    • With 100GBase-SR4 technology, get up to 100Gbps data transfer rate over optical fiber cable

    • 100 Gigabit Ethernet - High bandwidth performance, ease of use and reliable connectivity

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


  • Product Type: QSFP28
    Environmental Compliance: Restriction of Hazardous Substances (RoHS)
    Brand Name: Axiom
    Compatibility:

    MSA Compliant

    Manufacturer: Axiom Memory Solutions
    Product Model: 845966-B21-AX
    Product Name: 100GBase-SR4 QSFP28 Transceiver for HP - 845966-B21
    Manufacturer Part Number: 845966B21AX
    Manufacturer Website Address: http://search.axiomupgrades.com
    Limited Warranty: Lifetime
    Feature1: With 100GBase-SR4 technology, get up to 100Gbps data transfer rate over optical fiber cable
    Feature2: 100 Gigabit Ethernet - High bandwidth performance, ease of use and reliable connectivity
    Feature3: Supports optical fiber cable for durable performance, minimal signal loss, and fast data transfers to greater distances