Categories | CCWDM MUX |
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Brand Name: | HJY |
Model Number: | HJY-CCWDM-8~18CH-Module |
Certification: | CE, ROHS, FCC ISO9001 |
Place of Origin: | China |
MOQ: | 10 pcs |
Price: | 1~999 |
Payment Terms: | T/T,Western Union,L/C |
Supply Ability: | 100,000 pcs |
Delivery Time: | 5~8 working days |
Packaging Details: | Roll, Neutrial Packing or with OEM LOGO |
Waveband: | 1270~1610 nm |
Connector Type: | LC/UPC |
Number Of Channels: | 8~18CH |
Package Type: | CCWDM Box |
Storage Temperature: | -40-85°C |
Channel Spacing: | 20nm |
The 4/8 Channel CCWDM MUX/DEMUX utilizes Thin-Film Filter (TFF) technology and free-space cascading to multiplex/demultiplex multiple optical channels. Its compact design allows deployment within a standard 1U rack space, reducing volume by over 60% compared to traditional CWDM modules. The plug-and-play modular design eliminates the need for additional cooling equipment, significantly simplifying installation.
Parameter | 4-Channel Model | 8-Channel Model |
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Wavelength Spacing | 20nm (ITU-T G.694.2 standard) | 20nm (ITU-T G.694.2 standard) |
Operating Wavelength Range | 1470-1610nm (8-band prioritized) | 1470-1610nm (8-band prioritized) |
Typical Insertion Loss | ≤1.5dB (including fiber connectors) | ≤2.25.5dB (including fiber connectors) |
Number of Channels | 4 | 8 |
Package Size | 50*30*6mm³ | 50*30*6mm³ |
Interface Type | LC/UPC Duplex | LC/UPC Duplex |
Monitoring Port | Supports 1% signal extraction | Supports 1% signal extraction |
Compliance | ITU-T G.694.2 standard | ITU-T G.694.2 standard |
Operating Temperature | -5℃~70℃ | -5℃~70℃ |
In data center interconnect scenarios, the 4/8 Channel CCWDM MUX/DEMUX multiplexes multiple wavelength channels onto a single fiber, increasing transmission capacity by 4-8 times and alleviating fiber resource constraints. For example, an 8-channel model can simultaneously transmit eight 10Gbps signals, achieving a total bandwidth of 80Gbps—ideal for high-speed data exchange between server clusters. Its passive design eliminates optical-electrical conversion losses, making it particularly suitable for short-distance (≤40km) high-density connections.
By integrating TFF filters and free-space optical paths, this module consumes less than 1/10th the power of traditional DWDM systems. For instance, an 8-channel model consumes only 0.5W per unit, compared to over 5W for equivalent DWDM equipment with laser cooling. In fully racked scenarios, space utilization improves by 50%, directly reducing data center cooling and power costs.
Ideal for budget-conscious enterprise network upgrades, with per-channel costs at 1/3 of DWDM.
Supports 16-channel cascading for multi-service isolation in campus networks.
Suited for harsh environments (e.g., industrial IoT) due to zero electronic failure risks.
The CCWDM Mux adopts Free-Space technology, which uses light propagating in free space to wirelessly transmit data. Inside the device, adjacent signal channels are cascaded by parallel beam instead of the fiber. This saves a lot of space for package box, and the unique workmanship also helps CCWDM Mux Demux with low insertion loss.
The insertion loss of CCWDM Mux is about half of the conventional CWDM Mux. This reduces the overall loss of the whole link, and leaves more choices for the design of the solution.
CCWDM Mux uses the parallel beam for cascading instead of the fiber, which saves significant space. The minimum dimension of CCWDM aluminum box module is less than the 1/4 size of minimum CWDM ABS pigtailed module.
Configuration | Channel No. | Pigtail Type | Fiber length | Declension(mm) | Connector |
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CC=CCWDM | 40=4 Channel 41=4+UPG 80=8 Channel 81=8+UPG1 82=8+UPG2 --- | 0=250um 1=900um | 0=0.5m 1=1m 2=1.5m 3=others | 1= L55 x W35 xH8 2=L44 x W25 x H6 | 0=None 1=FC/APC 2=FC/PC 3=SC/APC 4=SC/PC 5=others |
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