1U 19 Inch Rack Mount Dual Network Fiber 1x16 DWDM Mux Demux

DWDM MUX Demux
December 08, 2025
Category Connection: DWux Mux Demux
Brief: Get an inside view of features that deliver consistent results in daily use. This video provides a detailed walkthrough of the GEZHI 1U Rack Mount Dual Network Fiber 1x16 DWDM Mux Demux, showcasing its high-density, passive optical design and demonstrating how it enables high-capacity, long-haul transmission for data centers and metro networks.
Related Product Features:
  • Low loss, high-density standalone passive optical module based on thin film coating technology.
  • Dual fiber design offering high channel isolation for data centers and Metro access applications.
  • Combines multiplexer and demultiplexer in a compact 19-inch 1U rack mount chassis.
  • Features LC/UPC adapters and operates on C19~C34 wavelengths with an expansion port.
  • Exceptionally stable and reliable performance with high channel isolation and low polarization dependent loss.
  • Epoxy-free optical path ensures long-term reliability and signal integrity.
  • Protocol transparent, supporting 10/1G Ethernet, SDH/SONET, Fibre Channel, and CATV applications.
  • Designed for long-haul transport of fiber optic signals over dual fiber with up to 48 wavelengths in 100GHz grid.
Câu hỏi thường gặp:
  • What applications is this 1x16 DWDM Mux Demux suitable for?
    It is ideal for long-haul networks, dense WDM systems, metro networks, CATV fiber optic links, and access/enterprise networks, supporting protocols like 10/1G Ethernet, SDH/SONET, and Fibre Channel.
  • What are the key performance specifications of this module?
    Key specifications include insertion loss below 4.8 dB, adjacent channel isolation greater than 30 dB, non-adjacent channel isolation over 40 dB, polarization dependent loss under 0.15 dB, and operation within -5 to +75°C temperature range.
  • How does the expansion port function in this DWDM module?
    The expansion port allows for future upgrades and fiber extension, providing flexibility for network expansion and integration with additional wavelengths or system enhancements.
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