
FTBx-88810 - complete lab-to-field testing from 1G to 800G, 800ZR-ready
Full-rate coverage from 1G to 800G—supporting Ethernet, OTN, Fibre Channel and coherent optics (800ZR-ready). Built for the Coherent Future.
Get the latest news on network testing, monitoring and analytics.
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Thank you!
At EXFO, our products help you deliver top-notch services with speed and quality. Our high-performance, easy-to-use solutions are designed to address your needs, quickly and effectively helping you assess the quality of your network and services.
Full-rate coverage from 1G to 800G—supporting Ethernet, OTN, Fibre Channel and coherent optics (800ZR-ready). Built for the Coherent Future.
High-resolution OTDR designed for metro network testing and splitter characterization in PON FTTx applications. Optimized for use during the rollout and troubleshooting of metro/core and FTTx/MDU networks.
Optimized for FTTx/MDU fiber deployments and troubleshooting, suitable for metro. Live and/or dark fiber testing capability in a compact yet mighty form factor.
The BA-1600 is a world-class series of 1.6T electrical BER testers supporting 8-channel PAM4 coding.
OTDRs driving unmatched field efficiency with always-on connectivity on a rugged platform.
Optimized for metro core and FTTx/MDU fiber deployments and troubleshooting.
Always-on connectivity and optimized usability for efficient, compliant and secure tests.
Optimized for FTTx/MDU fiber rollouts and troubleshooting. Can also test metro networks.
Optimized for the construction and troubleshooting of singlemode and multimode access networks.
This high-power pocket-sized VFL is an essential tool for any technician testing fiber over long distances.
High-resolution OTDR designed for metro network testing and splitter characterization in PON FTTx applications. Optimized for use during the rollout and troubleshooting of metro/core and FTTx/MDU networks.
The accuracy, reliability and durability of EXFO’s OTDRs in a compact design for the field.