2 to 12 Channel CWDM OADM Low Loss Module
The 2 to 12-channel CWDM OADM low-loss module is a fiber optic communication device for optical multiplexing and wavelength division multiplexing application scenarios. It can realize the simultaneous transmission and multiplexing of multiple signals, which improves the efficiency and bandwidth utilization of optical fiber communication. This module is mainly composed of two parts: CWDM MUX/DEMUX and OADM.
- Product Introduction
The 2 to 12-channel CWDM OADM low-loss module is a fiber optic communication device for optical multiplexing and wavelength division multiplexing application scenarios. It can realize the simultaneous transmission and multiplexing of multiple signals, which improves the efficiency and bandwidth utilization of optical fiber communication. This module is mainly composed of two parts: CWDM MUX/DEMUX and OADM.
CWDM MUX/DEMUX is an optical multiplexer/demultiplexer, which can multiplex multiple signals onto or demultiplex from one optical fiber, so as to realize simultaneous transmission of multiple signals. OADM (Optical Add-Drop Multiplexer) is an optical demultiplexer, which can insert or delete specific wavelengths in optical signals, so as to realize fine regulation of optical signals.
The device has the advantages of multi-channel, low insertion loss, and high isolation. It can provide a choice of 2 to 12 channels, which can meet the needs of different application scenarios. At the same time, its insertion loss is lower than 1dB, which can ensure the quality of the signal and the transmission efficiency. In addition, it also has high isolation, which can effectively reduce crosstalk and interference of signals, thereby improving the stability and reliability of communication.
Product Features
1. Multi-channel selection: This product provides 2 to 12 channel options, which can meet the needs of different application scenarios.
2. Low insertion loss: The insertion loss of this product is lower than 1dB, which can ensure the quality of the signal and the transmission efficiency.
3. High isolation: This product has high isolation, which can effectively reduce signal crosstalk and interference, thereby improving the stability and
reliability of communication.
4. High quality: The product adopts high-quality materials and advanced technology, has high-quality optical performance and stability, and can meet high-demand optical fiber communication applications.
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Product Applications
1. Data center: With the development of cloud computing and big data technology, the demand for high-speed, high-bandwidth, and high-reliability optical fiber communication equipment in data centers is increasing. The 2 to 12-channel CWDM OADM low-loss module can realize simultaneous transmission and multiplexing of multiple signals, which improves the efficiency and bandwidth utilization of optical fiber communication, and is an important part of the optical fiber communication system of the data center.
2. Telecom operators: With the popularization of mobile communications and broadband networks, telecom operators have an increasing demand for high-speed, high-bandwidth, and high-stability optical fiber communication equipment. The 2 to 12-channel CWDM OADM low-loss module can realize various optical fiber communication systems such as optical multiplexing and wavelength division multiplexing, which improves the efficiency and bandwidth utilization of optical fiber communication, and provides high-quality optical fiber communication services for telecom operators.
3. Enterprise network: Enterprises usually need to establish a local area network (LAN) in different locations to realize data transmission and sharing between different locations. The 2 to 12-channel CWDM OADM low-loss module can realize the simultaneous transmission and multiplexing of multiple signals, improve the efficiency and bandwidth utilization of optical fiber communication, and provide an efficient and stable optical fiber communication solution for enterprise networks.
Product Parameters
| Number of channels | 2-12 channels optional | Channel Spacing | 20nm |
| Working wavelength range | 1270nm-1610nm | Typical insertion loss | 1.5dB |
| Maximum Insertion Loss | 2.0dB | Maximum input power | 300mW |
| Operating temperature range | -5°C ~ +75°C |
Instructions For Use
1. Install the module: firstly, you need to install the module in a suitable position, usually on the cabinet or shelf of the optical fiber communication system, and then connect the power supply.
2. Connect the optical fiber: Next, you need to connect the optical fiber to be used for optical multiplexing or wavelength division multiplexing to the input port of the module, and connect the output port of the module to other devices or optical fiber lines.
3. Configuration parameters: According to specific application requirements, it is necessary to configure some parameters of the module, such as selecting the number of channels, wavelength range, gain, etc.
4. Test verification: Finally, it is necessary to test and verify the module to ensure that the signal quality and transmission efficiency meet the requirements, such as insertion loss, isolation, wavelength channel and other parameters.
Terms Of Use
1. Obey the operating procedures: When using this product, you need to abide by the relevant operating procedures and safety regulations to ensure the safe and stable operation of the equipment.
2. Prevent damage: The optical fiber port and connection lines of this product are very delicate, so care should be taken to prevent damage or pollution, so as not to affect the performance and service life of the device.
3. Correct connection: When using this product, it is necessary to connect the optical fiber correctly to ensure that the connection of the optical fiber is correct and avoid signal loss and interference.
4. Appropriately configure parameters: According to the specific application requirements, some parameters need to be configured for the module, such as the number of channels, wavelength range, gain, etc., which need to be properly configured according to the actual situation to ensure the normal use and performance optimization of the device.
5. Regular inspection and maintenance: In order to ensure the normal operation and stable performance of the equipment, it is necessary to regularly inspect and maintain the equipment, such as cleaning, calibration and testing.
6. Avoid excessive use: When using this product, avoid excessive use, so as not to affect the life and performance of the equipment.
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