Startech SFP100BLXST 100Base-LX SFP Transceiver Module
TheStartech SFP100BLXST SFP Transceiver Module is hot-swappable, making upgrades and replacements seamless by minimizing network disruptions.
The Startech SFP100BLXST is an MSA-compliant fibre SFP transceiver that's designed, programmed and tested to work with 100BASE-LX compatible MSA switches and routers. The SFP transceiver module supports a maximum distance of up to 10 km (6.2 mi) and delivers dependable 100 Mb Ethernet connectivity over fibre cabling.
CONDITION
Brand New - A brand-new, unused, unopened, undamaged item in its original packaging.
WARRANTY
This item comes with a Limited Lifetime manufacturer's warranty.
FEATURES
• 100% MSA Uncoded SFP Transceiver: Designed, programmed and tested to work with compatible MSA Compliant switches and routers to deliver dependable 100MbE connectivity
• Technical Specs: 100BASE-LX | 100Mbps | Single Mode (SMF) | LC Connector | 1310nm | Digital Diagnostic Monitoring (DDM) | Distances up to 10km (6.2mi)
• Tested for Compatibility: Hot-swappable in MSA Compliant routers and switches; DDM support reports the transceiver's status to most SNMP network management tools.
• Works with MSA Compliant Switches: Works with switch models from Ubiquiti, D-Link, Netgear, Supermicro, TP-Link and more that accept uncoded modules
QUICK SPECIFICATIONS
• Product Type: SFP
• Compatibility: MSA Compliant
• Application/Usage: Data Networking, Optical Network
• Interfaces/Ports Details: 1 x LC Duplex 100Base-LX Network
• Connector Type: LC
• Total Number of Ports: 1
• Form Factor: Hot-swappable
• Network Technology: 100Base-LX
• Ethernet Technology: Fast Ethernet
• Media Type Supported: Optical Fiber
• Fiber Mode Supported: Single-mode
WHAT'S INCLUDED
• Startech SFP100BLXST 100Base-LX SFP Transceiver Module
• User Guide
Do you have a question about this product? Please call 1800 90 90 99.
Specific References
- MPN
- SFP100BLXST
TheStartech SFP100BLXST SFP Transceiver Module is hot-swappable, making upgrades and replacements seamless by minimizing network disruptions.