Multichannel CWDM Mux Module
The multi-channel CWDM multiplexer module is an optical transmission device, which is used to combine and transmit multiple optical signals of different wavelengths to improve the transmission efficiency of optical fibers. CWDM technology is a low-cost, low-power optical fiber transmission solution, suitable for short-distance, low-speed optical fiber transmission. The advantages of the multi-channel CWDM multiplexer module include low cost, low power consumption, large capacity, long transmission distance, easy maintenance, etc. It is suitable for optical fiber transmission scenarios such as data centers, LANs, and WANs.
- Product Introduction
The multi-channel CWDM multiplexer module is an optical transmission device, which is used to combine and transmit multiple optical signals of different wavelengths to improve the transmission efficiency of optical fibers. CWDM technology is a low-cost, low-power optical fiber transmission solution, suitable for short-distance, low-speed optical fiber transmission. The advantages of the multi-channel CWDM multiplexer module include low cost, low power consumption, large capacity, long transmission distance, easy maintenance, etc. It is suitable for optical fiber transmission scenarios such as data centers, LANs, and WANs.
The multi-channel CWDM multiplexer module usually includes multiple channels, and each channel transmits an optical signal of a different wavelength. light signal. The multi-channel CWDM multiplexer module can also perform operations such as amplification and gain adjustment of optical signals to ensure the transmission quality and stability of optical signals.
Product Features
1. Multi-channel transmission: The multi-channel CWDM multiplexer module can transmit multiple optical signals of different wavelengths at the same time, improve the efficiency of optical fiber transmission, and meet the needs of data centers, LANs, and WANs.
2. Low cost: Compared with DWDM, CWDM technology is cheap and suitable for low-speed, short-distance optical fiber transmission.
3. Low power consumption: The multi-channel CWDM multiplexer module adopts a low power consumption design, which can save energy costs and reduce the impact on the environment.
4. Strong flexibility: The multi-channel CWDM multiplexer module supports multiple interface types, such as SC, LC, etc., and can be connected with different types of optical fiber equipment, with good compatibility and flexibility.
5. Easy installation and maintenance: The multi-channel CWDM multiplexer module adopts a modular design, which is very convenient for installation and maintenance. Maintenance personnel can quickly replace faulty modules to improve maintenance efficiency.
Product Image



Mechanical Dimensions
60*40*11(mm)

100*80*10mm

120*80*18mm

140*115*18mm

Product Applications
1. Data center: The multi-channel CWDM multiplexer module can meet the needs of high-density optical fiber transmission in the data center. In the data center, various servers, storage devices, etc. need high-speed data transmission. The multi-channel CWDM multiplexer can multiplex multiple optical signals of different wavelengths, improve the efficiency of optical fiber transmission, and achieve fast and stable data transmission.
2. LAN: The multi-channel CWDM multiplexer module is also suitable for optical fiber transmission in LAN. In the local area network, the multi-channel CWDM multiplexer can multiplex multiple optical signals of different wavelengths to meet the high-speed data transmission requirements between various office equipment and improve network transmission efficiency.
3. Wide area network: multi-channel CWDM multiplexer module can also be applied to optical fiber transmission of wide area network. In the wide area network, the multi-channel CWDM multiplexer can multiplex multiple optical signals of different wavelengths to realize high-speed data transmission between different regions and improve network transmission efficiency.
4. Transportation: Multi-channel CWDM multiplexer modules can also be used in the field of transportation. For example, in transportation scenarios such as highways and railways, multi-channel CWDM multiplexers can multiplex surveillance video signals from different locations to achieve high-speed transmission of video signals and improve the efficiency of traffic management.
5. Other application fields: The multi-channel CWDM multiplexer module can also be used in other fields, such as optical fiber transmission in medical, financial and other fields, and data transmission in industrial automation and other fields.
Product Parameters
| Number of Channels | 4/8/16/18 | Non-adjacent channel isolation | ≥40dB |
| Working wavelength | 1270-1610nm | Return Loss | ≥45dB |
| Wavelength Accuracy | ±0.1nm | Input and output isolation | ≥15dB |
| Loss | ≤3.5dB | Input and output insertion loss | ≤1.5dB |
| Adjacent channel isolation | ≥30dB | Working temperature | 0°C-70°C |
| Input optical power range | -9dBm-3dBm | Output optical power range | 0dBm-3dBm |
| Input Fiber Type | SC/UPC or LC/UPC | Output fiber type | SC/UPC or LC/UPC |
Instructions For Use
1. First, it is necessary to determine the number of wavelengths used by the optical signal to be transmitted and the number of channels required. The multi-channel CWDM multiplexer module usually has 4, 8, 16, and 18 channels for selection, which can be selected according to actual needs.
2. Connect the equipment that requires optical fiber transmission to the input port of the multi-channel CWDM multiplexer through an optical fiber interface such as SC or LC. Make sure the connection is correct and the signal transmission is smooth.
3. Connect the output port of the multi-channel CWDM multiplexer to the input port of the target device through optical fiber. It is also necessary to ensure that the connection is correct and the signal transmission is smooth.
4. Configure the wavelength of each channel through the web interface or client software of the multi-channel CWDM multiplexer. Configure according to actual needs to ensure correct transmission of optical signals.
5. After the configuration is complete, start the optical signal transmission to ensure that the optical signals of each channel can be transmitted stably and achieve the expected effect.
6. In the process of optical signal transmission, optical power monitoring and maintenance are required to ensure stable and reliable transmission of optical signals of each channel. If a fault is found, repair or replace the faulty module in time to ensure the normal operation of the system.
Terms Of Use
1. When connecting the optical fiber, it is necessary to ensure that the optical fiber connection is correct, the length of the optical fiber meets the requirements, and the bending radius of the optical fiber is not less than the specified value, so as to ensure smooth and stable optical signal transmission.
2. When configuring the channel wavelength, it is necessary to ensure that the wavelength configuration of each channel is correct and does not interfere with each other. If the wavelength configuration is wrong or the wavelengths overlap between channels, the optical signal cannot be transmitted or the transmission effect will be deteriorated.
3. The multi-channel CWDM multiplexer module needs to be installed in a dry, dust-proof, and anti-static environment to avoid dust, moisture, and static electricity from affecting the equipment.
4. During use, the multi-channel CWDM multiplexer module needs to be regularly maintained, such as cleaning equipment, checking optical power, etc., to ensure the normal operation of the equipment.
5. The multi-channel CWDM multiplexer module needs to be used within the specified temperature range to avoid the impact of long-term high or low temperature environment on the equipment.
6. During use, it is necessary to ensure the security of the device to avoid illegal intrusion or damage of the device to ensure data security.
Customer Comments
Australian customer Jenny, she is a network engineer, she said:
John from the United States, an optical communication engineer, said:
Max in Germany, a telecommunications engineer, said:
Sophie from France, an optical engineer, said:
Emily from Canada, who is a network security engineer, said:
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