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Wide Wavelength Low Loss Plug-in CWDM Module

The wide-wavelength low-loss plug-in CWDM module is a high-performance transmission device that can realize multi-signal transmission and demultiplexing, and has the characteristics of stable wavelength, low insertion loss, and high isolation. This product is suitable for optical communication systems, optical transmission networks, data centers and other fields, and is an ideal choice for improving the efficiency and reliability of optical communication transmission.

  • Product Introduction

The wide-wavelength low-loss plug-in CWDM module is a high-performance transmission device that can realize multi-signal transmission and demultiplexing, and has the characteristics of stable wavelength, low insertion loss, and high isolation. This product is suitable for optical communication systems, optical transmission networks, data centers and other fields, and is an ideal choice for improving the efficiency and reliability of optical communication transmission.

 

The wide-wavelength low-loss plug-in CWDM module adopts advanced optical technology and high-quality optical components, with excellent performance and stability. The product has a wide wavelength range and can support wavelengths from 1270nm to 1610nm to meet the needs of different application scenarios. At the same time, the insertion loss of the wide-wavelength low-loss plug-in CWDM module is less than 1.5dB, the return loss is higher than 50dB, and the isolation is higher than 30dB, which can ensure the efficient transmission and stability of the equipment.

 

Wide-wavelength low-loss plug-in CWDM module adopts plug-in design, which is easy to install and maintain. The plug-in method of this product is LC interface, which is compatible with most of the equipment on the market, and has strong compatibility and flexibility. In addition, the wide-wavelength and low-loss plug-in CWDM module also supports hot-swap function, which can facilitate maintenance and upgrade of equipment.

 

Product Features

 

1. Wide wavelength range: The wide-wavelength low-loss plug-in CWDM module can support the wavelength range from 1270nm to 1610nm, which is suitable for different optical communication transmission scenarios.


2. Low insertion loss: The insertion loss of this product is less than 1.5dB, which can ensure the efficient transmission and stability of the signal.


3. High isolation: The isolation of the wide-wavelength low-loss plug-in CWDM module is higher than 30dB, which can effectively avoid signal interference and crossover.


4. High return loss: The return loss of this product is higher than 50dB, which can ensure the clarity and stability of the signal.


5. Plug-in design: The wide-wavelength low-loss plug-in CWDM module adopts a plug-in design, which is easy to install and maintain.


6. Strong compatibility: The plug-in method of this product is LC interface, which can be compatible with most of the equipment on the market, and has strong compatibility and flexibility.


7. Hot-swappable function: The wide-wavelength and low-loss plug-in CWDM module supports hot-swappable function, which can facilitate maintenance and upgrade of equipment.


8. High stability: The product adopts advanced optical technology and high-quality optical components, has excellent performance and stability, and is suitable for high-demand optical communication transmission scenarios.

 

Product Image

 

Product picture of wide wavelength and low loss plug-in CWDM module

Optical circuit diagram of wide wavelength and low loss plug-in CWDM module

 

Product Applications

 

1. Configure the correct wavelength range: When using a wide-wavelength low-loss plug-in CWDM module, it is necessary to configure the correct wavelength range to ensure the accuracy and reliability of transmission. According to actual needs, select the appropriate wavelength range for configuration.


2. Avoid strong light exposure: When installing and using a wide-wavelength low-loss plug-in CWDM module, it is necessary to avoid strong light exposure, so as not to affect the transmission effect and the stability of the device. If it is necessary to commission the device, please use a suitable light source to do so.


3. Pay attention to the direction of the fiber connection: When connecting the fiber, you need to pay attention to the direction of the connection. Make sure that the connection direction of the optical fiber is correct, so as not to affect the transmission effect of the signal.


4. Avoid bending the optical fiber: When using the wide-wavelength low-loss plug-in CWDM module, it is necessary to avoid bending the optical fiber, so as not to affect the transmission effect of the optical signal. If you need to bend the fiber, use an appropriate fiber bend radius.


5. Avoid shock and vibration: When installing and using a wide-wavelength low-loss plug-in CWDM module, it is necessary to avoid shock and vibration, so as not to affect the stability and reliability of the equipment. When installing the device, use suitable fixing devices.
6. Regular maintenance and testing: In order to ensure the normal operation of the wide-wavelength low-loss plug-in CWDM module, regular maintenance and testing are required. During the operation of the equipment, it is necessary to pay attention to observe the operating status and performance indicators of the equipment, and deal with abnormal situations in time.

 

Product Parameters

 

Working wavelength range 1270nm - 1610nm Channel Spacing 20nm
Number of channels 4, 8, 16, 18, 40 Maximum insertion los 0.6dB
Minimum isolation 30dB Minimum Return Loss 45dB
Fiber Interface LC Interface Working temperature -5℃~+75℃
Insertion/extraction times >1000 Working Voltage 3.3V |

 

Instructions For Use

 

1. Installation: Insert the wide-wavelength low-loss plug-in CWDM module into a suitable position in the optical communication system. The insertion method is the LC interface to ensure a firm connection.


2. Connecting equipment: Connect the equipment that needs to be transmitted to the wide-wavelength low-loss plug-in CWDM module through an optical fiber cable to ensure that the connection is correct.


3. System settings: According to the requirements of the optical communication system, perform corresponding system settings, including wavelength selection, transmission distance and other parameter settings.


4. Start transmission: After completing the above steps, you can start optical communication transmission. The wide-wavelength low-loss plug-in CWDM module can realize multi-signal transmission and demultiplexing, ensuring efficient transmission and stability of signals.


5. Maintenance and upgrade: If the equipment needs to be maintained or upgraded, it can be operated by using the hot-swap function of the wide-wavelength and low-loss plug-in CWDM module to ensure the reliability and stability of the equipment.

 

Terms Of Use

 

1. Configure the correct wavelength range: When using a wide-wavelength low-loss plug-in CWDM module, it is necessary to configure the correct wavelength range to ensure the accuracy and reliability of transmission. According to actual needs, select the appropriate wavelength range for configuration.


2. Avoid strong light exposure: When installing and using a wide-wavelength low-loss plug-in CWDM module, it is necessary to avoid strong light exposure, so as not to affect the transmission effect and the stability of the device. If it is necessary to commission the device, please use a suitable light source to do so.


3. Pay attention to the direction of the fiber connection: When connecting the fiber, you need to pay attention to the direction of the connection. Make sure that the connection direction of the optical fiber is correct, so as not to affect the transmission effect of the signal.


4. Avoid bending the optical fiber: When using the wide-wavelength low-loss plug-in CWDM module, it is necessary to avoid bending the optical fiber, so as not to affect the transmission effect of the optical signal. If you need to bend the fiber, use an appropriate fiber bend radius.


5. Avoid shock and vibration: When installing and using a wide-wavelength low-loss plug-in CWDM module, it is necessary to avoid shock and vibration, so as not to affect the stability and reliability of the equipment. When installing the device, use suitable fixing devices.


6. Regular maintenance and testing: In order to ensure the normal operation of the wide-wavelength low-loss plug-in CWDM module, regular maintenance and testing are required. During the operation of the equipment, it is necessary to pay attention to observe the operating status and performance indicators of the equipment, and deal with abnormal situations in time.

 

Customer Comments

American systems engineer Emily Johnson commented:

As a system engineer, I have achieved remarkable results using wide-wavelength low-loss plug-in CWDM modules in our San Francisco data center. This product provides efficient and reliable fiber optic signal transmission capabilities, allowing us to achieve greater capacity and faster data transfer. It does an excellent job of ensuring communication quality and stability.

Mexican network architect Luis Hernandez commented:

Our Mexico City data center has been using wide-wavelength low-loss plug-in CWDM modules for some time, and we are very satisfied with the functions and performance provided by this product. It has excellent and stable fiber optic signal transmission capabilities, providing high-speed, reliable and flexible data transmission for our network architecture.

Japanese communications engineer Hiroshi Tanaka commented:

Wide-wavelength low-loss plug-in CWDM modules play an important role in our data center in Sapporo. It provides stable and efficient optical fiber signal transmission, enabling us to meet the growing demand for fast and reliable transmission of large-capacity data. This product is highly reliable and brings better performance and security to the company's network architecture.

Brazilian system administrator Maria Santos commented:

This wide-wavelength low-loss plug-in CWDM module is one of the key components of our São Paulo data center! With its excellent reliability and elasticity, it provides companies with fast, reliable and elastically scalable fiber optic connections. We use this device to successfully optimize the internal network structure and improve business efficiency.

Oliver Schmidt, a German communication technology expert, commented:

Wide-wavelength low-loss plug-in CWDM modules performed excellently in our data center in Munich. It provides stable and efficient optical fiber signal transmission, enabling us to meet the ever-increasing demand for large-capacity data. This product is highly reliable and brings better performance and security to the company's network architecture.

 

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