100GHz DWDM MUX DEMUX Module
100GHz DWDM MUX DEMUX module is a kind of optical transmission equipment based on DWDM technology, which is used in optical fiber communication system to realize multiplexing and demultiplexing of optical signals of different wavelengths. It is composed of multiple DWDM filters, which can combine optical signals of different wavelengths into the same optical fiber for transmission through multiplexing technology, and can also separate optical signals of different wavelengths in the same optical fiber through demultiplexing technology Come out to realize WDM and WDM.
- Product Introduction
100GHz DWDM MUX DEMUX module is a kind of optical transmission equipment based on DWDM technology, which is used in optical fiber communication system to realize multiplexing and demultiplexing of optical signals of different wavelengths. It is composed of multiple DWDM filters, which can combine optical signals of different wavelengths into the same optical fiber for transmission through multiplexing technology, and can also separate optical signals of different wavelengths in the same optical fiber through demultiplexing technology Come out to realize WDM and WDM.
The working principle of the 100GHz DWDM MUX DEMUX module is to filter and split optical signals through DWDM filters, and combine and separate optical signals of different wavelengths through multiplexing and demultiplexing technologies. Specifically, the 100GHz DWDM MUX DEMUX module includes multiple DWDM filters, and each DWDM filter can select one or more wavelengths of optical signals for multiplexing or demultiplexing, so that multiple wavelengths of optical signals can be transmission in an optical fiber or in a different optical fiber. The 100GHz DWDM MUX DEMUX module also has the advantages of low insertion loss, high isolation, and good stability, which can improve the efficiency and quality of optical signal transmission.
Product Features
1. High-density wavelength multiplexing: 100GHz DWDM MUX DEMUX module adopts high-density wavelength multiplexing technology, which can multiplex multiple optical signals with different wavelengths into the same optical fiber for transmission, improving the utilization rate of optical fibers.
2. Wide wavelength range: The 100GHz DWDM MUX DEMUX module has a wide wavelength range and can support optical signals of various wavelengths to meet the needs of different users.
3. Low insertion loss: 100GHz DWDM MUX DEMUX module has low insertion loss, which can reduce energy loss during optical signal transmission and improve the efficiency of optical fiber transmission.
4. High isolation: 100GHz DWDM MUX DEMUX module has high isolation, which can effectively isolate optical signals of different wavelengths and avoid mutual interference between optical signals.
5. Good stability: The 100GHz DWDM MUX DEMUX module has good stability, which can ensure the stability and reliability of optical signal transmission.
6. Easy to install and maintain: The 100GHz DWDM MUX DEMUX module is small in size, easy to install, and has good maintainability. Users can easily install and maintain the equipment.
7. High reliability: The 100GHz DWDM MUX DEMUX module adopts high-quality materials and advanced manufacturing technology, has high reliability and long life, and can meet the needs of users for long-term and stable operation of optical communication equipment.
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Product Applications
1. Telecommunications field: 100GHz DWDM MUX DEMUX modules are widely used in the telecommunications field, and can be used for wavelength division multiplexing and demultiplexing in optical fiber transmission networks, improving the utilization of optical fibers and reducing transmission costs. It can also be used in optical fiber splicing boxes, optical distribution frames and other equipment to realize multiplexing and demultiplexing of optical signals.
2. Data center field: 100GHz DWDM MUX DEMUX modules are more and more widely used in the data center field, and can be used for wavelength division multiplexing and demultiplexing in the optical fiber transmission network inside the data center to improve the transmission efficiency and bandwidth utilization.
3. In the field of enterprise network: 100GHz DWDM MUX DEMUX module can also be applied in the field of enterprise network to realize optical signal transmission between different sites and improve the transmission efficiency and reliability of enterprise network.
4. Radio and television field: 100GHz DWDM MUX DEMUX module can also be applied in the field of radio and television to realize the transmission and distribution of radio and television signals, and improve the efficiency and reliability of the radio and television transmission network.
5. Military field: 100GHz DWDM MUX DEMUX modules are also used in the military field, and can be used for optical fiber transmission in military communication networks to improve communication efficiency and security.
Product Parameters
| Number of channels | 4, 8, 16, 32, 40, 44, 48, 80, 88, 96 | Bandwidth | 100 GHz |
| Center wavelength | C-band: 1528.77 nm - 1563.86 nm <br> L-band: 1563.86 nm - 1608.75 nm | Insertion Loss | ≤ 4.5 dB |
| Temperature Coefficient of Refractive Index | 1.3×10-5 /℃ | Channel spacing | 0.8 nm |
| Working temperature | -5 ℃ ~ 70 ℃ | Return Loss | ≥ 40 dB |
| Storage Temperature | -40 ℃ ~ 85 ℃ | Face geometry | UPC/APC |
| Input optical power range | 0 dBm ~ +10 dBm | Cross collar rejection ratio | ≥ 25 dB |
| Mutual crosstalk | ≥ 30 dB |
Instructions For Use
1. Confirm the interface type of the device: Before using the 100GHz DWDM MUX DEMUX module, it is necessary to confirm whether the interface type of the device matches the module to ensure that the optical signal can be transmitted correctly.
2. Connect the optical fiber: connect the optical signal that needs to be multiplexed or demultiplexed to the input port of the 100GHz DWDM MUX DEMUX module through the optical fiber.
3. Set the wavelength channel: set the wavelength channel to the corresponding position as required to realize the multiplexing or demultiplexing function of the optical signal. Please refer to the manual of the device for the specific setting method.
4. Output optical signal: Connect the multiplexed or demultiplexed optical signal to the corresponding equipment through the optical fiber to complete the transmission of the optical signal.
5. Monitoring equipment operation status: When using the 100GHz DWDM MUX DEMUX module, it is necessary to regularly monitor the equipment operation status, including optical power, wavelength, insertion loss and other parameters, to ensure the normal operation of the equipment and the quality of optical signal transmission.
Terms Of Use
1. Confirm the interface type of the device: Before using the 100GHz DWDM MUX DEMUX module, it is necessary to confirm whether the interface type of the device matches the module to ensure that the optical signal can be transmitted correctly.
2. Prevent bending of optical fiber: When connecting optical fiber, care should be taken to avoid bending or damage of optical fiber, so as not to affect the transmission quality of optical signals.
3. Select the appropriate wavelength channel: Select the appropriate wavelength channel according to the needs to ensure that the multiplexed or demultiplexed optical signals can be transmitted correctly.
4. Avoid excessively stretching the optical fiber: When connecting the optical fiber, it is necessary to avoid excessively stretching the optical fiber, so as not to affect the transmission quality of the optical signal.
5. Avoid strong light exposure: When using the 100GHz DWDM MUX DEMUX module, it is necessary to avoid strong light exposure, so as not to affect the performance and life of the device.
6. Clean the equipment regularly: During the use of the equipment, the optical ports and interfaces of the equipment need to be cleaned regularly to ensure the stability and reliability of the equipment.
7. Avoid vibration and collision: When using the 100GHz DWDM MUX DEMUX module, it is necessary to avoid vibration and collision, so as not to affect the performance and life of the device.
Customer Comments
Manchester Systems Engineer Zoe Edwards commented:
Nathan Collins, an expert in communications technology in Paris, commented:
Munich network architect Riley Turner commented:
Cancun Systems Administrator Isaac Parker commented:
Finnish communications engineer Lily Wright commented:
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