40 Channel DWDM AAWG Passive Rack Panel
The 40-channel DWDM AAWG passive rack panel is a high-performance DWDM device that can realize multi-wavelength multiplexing and separation of 40 channels. The product adopts advanced AAWG technology, has very low insertion loss and cross-modulation distortion, and can realize high-quality optical signal transmission and separation. The product also has very high temperature stability and wavelength stability, and can maintain good performance stability in extreme environments.
- Product Introduction
The 40-channel DWDM AAWG passive rack panel is a high-performance DWDM device that can realize multi-wavelength multiplexing and separation of 40 channels. The product adopts advanced AAWG technology, has very low insertion loss and cross-modulation distortion, and can realize high-quality optical signal transmission and separation. The product also has very high temperature stability and wavelength stability, and can maintain good performance stability in extreme environments.
The 40-channel DWDM AAWG passive rack panel is suitable for various optical communication application scenarios, including data centers, telecom operators, enterprise networks, etc. It can achieve multi-wavelength multiplexing and separation, thereby improving network bandwidth utilization, reducing network costs, and enabling long-distance signal transmission. The product also has very high reliability and stability, and can provide users with stable network transmission services.
40 Channels DWDM AAWG Passive Rack Panel is a high quality DWDM equipment with advanced technology and excellent performance. If you are looking for a reliable, efficient and high-quality DWDM equipment, then the 40-channel DWDM AAWG passive rack panel will be your unmissable choice. We look forward to cooperating with you and providing you with quality products and services.
Product Features
1. Multi-channel multiplexing and separation: 40-channel DWDM AAWG passive rack panel can multiplex and separate multiple optical channels at the same time, thereby improving the bandwidth utilization and transmission efficiency of the network.
2. High performance: The product adopts AAWG technology, which has very low insertion loss and cross-modulation distortion, and can realize high-quality optical signal transmission and separation.
3. High temperature stability: The 40-channel DWDM AAWG passive rack panel has very high temperature stability and can maintain good performance stability in extreme environments.
4. High wavelength stability: The product has very high wavelength stability and can maintain good performance stability in various environments, thereby improving the reliability and stability of the network.
5. Multiple application scenarios: 40-channel DWDM AAWG passive rack panel is suitable for various optical communication application scenarios, including data centers, telecom operators, enterprise networks, etc.
6. High reliability: This product has very high reliability and stability, can provide users with stable network transmission services, and can run for a long time without frequent maintenance and replacement.
7. Green and environmental protection: 40-channel DWDM AAWG passive rack panel adopts passive design and does not require additional power supply and cooling system, thus realizing energy saving and environmental protection.
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Product Applications
1. Data center: 40-channel DWDM AAWG passive rack panel can realize high-speed optical signal transmission between different devices in the data center, and improve the bandwidth utilization and transmission efficiency of the data center.
2. Telecom operators: This product can be used in the optical communication network of telecom operators to realize optical signal transmission between different regions and improve network bandwidth utilization and transmission efficiency.
3. Enterprise network: 40-channel DWDM AAWG passive rack panel can be used for optical communication of enterprise network, realize optical signal transmission between different offices, and improve enterprise network bandwidth utilization and transmission efficiency.
4. Educational institutions: This product can be used for network transmission of educational institutions, realize optical signal transmission between different campuses, and improve network bandwidth utilization and transmission efficiency of educational institutions.
5. Medical institutions: 40-channel DWDM AAWG passive rack panels can be used for network transmission in medical institutions, realize optical signal transmission between different hospitals, and improve network bandwidth utilization and transmission efficiency of medical institutions.
6. Government agencies: This product can be used for network transmission of government agencies, realize optical signal transmission between different government departments, and improve network bandwidth utilization and transmission efficiency of government agencies.
Product Parameters
| Number of channels | 40 | Channel Spacing | 100 GHz |
| Channel Bandwidth | 0.8 nm | Insertion Loss | ≤ 4.0 dB |
| Center Wavelength Range | 1528.77 nm to 1563.86 nm | Linearity | ≤ 0.5 dB |
| Polarization dependent loss | ≤ 0.3 dB | Adjacent channel isolation | ≥ 30 dB |
| Non-adjacent channel isolation | ≥ 40 dB | Repeatability | ≤ 0.3 dB |
| Temperature range | -5 ℃ to +70 ℃ | Maintain stability | ≤ 0.005 dB/℃ |
Instructions For Use
1. Install the 40-channel DWDM AAWG passive rack panel into the rack to ensure that the connection between the panel and the rack is firm and stable.
2. Connect the optical fiber: connect the optical fiber to the input port or output port of the 40-channel DWDM AAWG passive rack panel, and make sure the connection is correct and firm.
3. Configure wavelengths and channels: Configure the wavelengths and channels of the 40-channel DWDM AAWG passive rack panel as required to ensure that optical signals can be multiplexed and separated correctly.
4. Perform optical signal transmission: start the 40-channel DWDM AAWG passive rack panel for optical signal transmission. Note, to avoid bending and too long optical fiber during transmission, so as not to affect the signal quality.
5. Monitoring transmission quality: During optical signal transmission, timely monitor transmission quality to ensure stable optical signal transmission and avoid transmission quality degradation and signal loss.
Terms Of Use
1. Before installing the 40-channel DWDM AAWG passive rack panel, please read the product manual carefully to understand the features, functions, performance and installation methods of the product. Make sure you have fully understood the usage details and precautions of the product.
2. When installing the 40-channel DWDM AAWG passive rack panel, please pay attention to the connection of power and ground wires. Make sure that the power and ground wires are connected correctly and securely to avoid equipment damage and safety accidents.
3. When connecting the optical fiber, please pay attention to the bending and length of the optical fiber. Avoid excessive bending or excessive length of optical fiber, so as not to affect the quality and stability of optical signal transmission.
4. When configuring the wavelength and channel of the 40-channel DWDM AAWG passive rack panel, please make sure that the configuration is correct. If the configuration is wrong, optical signals may not be multiplexed and separated correctly, thus affecting the quality and stability of network transmission.
5. The 40-channel DWDM AAWG passive rack panel has high requirements on temperature and humidity. Please ensure that the temperature and humidity of the working environment of the equipment meet the product requirements. Avoid using the device in a high temperature or high humidity environment, so as not to affect the performance and life of the device.
6. Regularly maintain and maintain the 40-channel DWDM AAWG passive rack panel, including cleaning the panel and optical fiber connection ports, etc. Prevent dust and debris from entering the inside of the device to ensure the performance and stability of the device.
Customer Comments
Avery Scott, Tokyo Telecom, Japan
Lucas Green, Network Company, Vancouver, Canada
Harper Adams, a tech company in Mexico City
Logan Baker, London Finance Corporation
Brasilia Government Agency Victoria Nelson
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