AddOn GLC-BX40-DA-I-AO 1000BASE-BX SFP Transceiver | Cisco Compatible, TAA — GLC-BX40-DA-I-AO
Build cleaner fiber access links with this AddOn Networks 1000BASE-BX SFP transceiver. Designed for Cisco GLC-BX40-DA-I compatibility and TAA-compliant procurement, it fits enterprise environments that need approved sourcing without sacrificing network compatibility. The 1000BASE-BX architecture is well suited to single-mode fiber deployments where bidirectional transport helps simplify cabling design. That makes it a strong option for access switches, distribution links, and remote network endpoints where conserving fiber strands can matter as much as link performance. With an LC connector and compact SFP form factor, this module integrates into standard optical ports without redesigning the surrounding infrastructure. For teams managing mixed refresh cycles or replacing approved optics in Cisco-based environments, it provides a straightforward path to maintain service continuity while meeting procurement requirements. Ideal For Connect access switches to distribution equipment over single-mode fiber Support fiber-efficient links in campus network closets Replace approved optics in Cisco-based enterprise networks Extend Gigabit connectivity to remote endpoints with limited fiber strands Why This Product 1 Bidirectional design can reduce fiber strand requirements 2 TAA compliance supports controlled procurement programs 3 Cisco compatibility simplifies deployment in existing environments 4 LC SFP format fits common enterprise optical infrastructure
- Form Factor: Plug-in module
- Connector Type: LC
- Data Rate Gbps: 1 Gbps
- Transceiver Type: SFP
- Network Technology: 1000BASE-BX
- Ethernet Technology: Gigabit Ethernet
- Fiber Mode Supported: Single-Mode
- Key Feature 1: 1000BASE-BX Gigabit Ethernet transceiver
- Key Feature 2: SFP form factor
- Key Feature 3: LC connector
- Key Feature 4: Single-mode fiber support
- Key Feature 5: Cisco GLC-BX40-DA-I compatible
- Key Feature 6: TAA compliant
- Key Feature 7: Bidirectional optical design
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