• optical transceiver
  • optical transceiver

10G CWDM 1270nm 40km

The 10G CWDM 1270nm 40km optical transceiver is a high-performance, industrial-grade fiber optic module designed for reliable long-distance data transmission in modern network infrastructures. Operating at the 1270nm wavelength within the Coarse Wavelength Division Multiplexing (CWDM) spectrum, this solution enables efficient bandwidth utilization while maintaining exceptional signal integrity over extended distances
  • optical transceiver

Description

The 10G CWDM 1270nm 40km optical transceiver is a high-performance, industrial-grade fiber optic module designed for reliable long-distance data transmission in modern network infrastructures. Operating at the 1270nm wavelength within the Coarse Wavelength Division Multiplexing (CWDM) spectrum, this solution enables efficient bandwidth utilization while maintaining exceptional signal integrity over extended distances

Key Features

  • 10Gbps High-Speed Transmission: Supports 10 Gigabit Ethernet (10GbE) and Fiber Channel applications
  • 40km Reach Capability: Optimized for extended transmission distances without signal degradation
  • CWDM Technology: Enables wavelength multiplexing withU-T G.694.2)
  • 1270nm DFB Laser Source: Delivers stable optical performance with low dispersion characteristics
  • Dual LC/UPC Connector: Ensures precise optical coupling and low insertion loss
  • Industrial Temperature Range: Operates at -40°C to +85C for harsh environment deployment

Technical Advantages

1. Enhanced Bandwidth Efficiency

Utilizes CWDM technology to multiplex up to 18 channels over single fiber, effectively multiplying existing fiber capacity without infrastructure expansion.

2. Superior Transmission Stability

Incorporates advanced APD (Avalanche Photodiode) receivers and FEC (Forward Error Correction) technology to maintain BER (Bit Error Rate) below 10⁻¹² at maximum reach.

3. Power-Efficient Design

Consumes <3.5W with digital diagnostics monitoring (DDM) functionality for real-time performance tracking via I²C interface.