$3,539.40 CAD

AddOn Juniper Networks EX-XFP-10GE-ZR Compatible TAA 10GBase-ZR XFP Transceiver (SMF, 1550nm, 80km, LC, DOM)
This Juniper Networks® EX-XFP-10GE-ZR compatible XFP transceiver provides 10GBase-ZR throughput up to 80km over single-mode fiber (SMF) using a wavelength of 1550nm via an LC connector. It can operate at temperatures between 0 and 70C. Our transceiver is built to meet or exceed OEM specifications and is guaranteed to be 100% compatible with Juniper Networks®. It has been programmed, uniquely serialized, and tested for data-traffic and application to ensure that it will initialize and perform identically. All of our transceivers comply with Multi-Source Agreement (MSA) standards to provide seamless network integration. Additional product features include Digital Optical Monitoring (DOM) support which allows access to real-time operating parameters. This transceiver is Trade Agreements Act (TAA) compliant. We stand behind the quality of our products and proudly offer a limited lifetime warranty.


  • With 10GBase-ZR technology, enjoy up to 10Gbps data transfer rate over optical fiber cable

  • Enjoy flexibility and scalability with data transfer rate of up to 10 Gbps with 10 Gigabit Ethernet technology

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

Product Type: XFP
Country Of Origin: United States
Brand Name: AddOn
Compatibility:

Juniper EX3200 Ethernet Switches

Manufacturer: AddOn
Product Model: EX-XFP-10GE-ZR
Product Name: Juniper EX-XFP-10GE-ZR Compatible XFP Transceiver
Manufacturer Part Number: EX-XFP-10GE-ZR-AO
Manufacturer Website Address: http://www.addoncomputer.com
Limited Warranty: 3 Year
Weight (Approximate): 6.40 oz (181.44 g)
Feature1: With 10GBase-ZR technology, enjoy up to 10Gbps data transfer rate over optical fiber cable
Feature2: Enjoy flexibility and scalability with data transfer rate of up to 10 Gbps with 10 Gigabit Ethernet technology
Feature3: Supports optical fiber cable for durable performance, minimal signal loss, and fast data transfers to greater distances