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High Stability Dense Wavelength Division Multiplexer

A high-stability dense wavelength division multiplexer is an optical device that can multiplex multiple optical signals of different wavelengths on one optical fiber, thereby realizing efficient transmission of multi-wavelength optical signals. The device adopts high-density wavelength division multiplexing technology, which can multiplex optical signals of multiple wavelengths on one optical fiber, and has the characteristics of low insertion loss and high channel isolation.

  • Product Introduction

A high-stability dense wavelength division multiplexer is an optical device that can multiplex multiple optical signals of different wavelengths on one optical fiber, thereby realizing efficient transmission of multi-wavelength optical signals. The device adopts high-density wavelength division multiplexing technology, which can multiplex optical signals of multiple wavelengths on one optical fiber, and has the characteristics of low insertion loss and high channel isolation.

 

The high-stability dense wavelength division multiplexer also has high stability and reliability, and can work normally under different environmental conditions such as temperature and humidity, ensuring the long-term stability and reliability of the optical communication system. It is one of the important optical devices in the optical communication system and is suitable for applications such as optical signal multiplexing and multi-wavelength optical signal transmission.

 

Product Features

 

1. High-density multiplexing: High-stability dense wavelength division multiplexer adopts high-density wavelength division multiplexing technology, which can multiplex multiple optical signals of different wavelengths on one optical fiber. Compared with traditional wavelength division multiplexers, it can achieve higher density optical signal multiplexing, thereby improving the transmission efficiency and performance of optical communication systems.


2. Low insertion loss: The high-stability dense wavelength division multiplexer adopts advanced optical design and processing technology, which has low insertion loss and high channel isolation. These features can ensure the transmission quality and performance of multiplexed optical signals, and reduce the bit error rate and signal distortion rate of the system.


3. High stability: The high stability dense wavelength division multiplexer has high stability and reliability, and can work normally under different environmental conditions such as temperature and humidity. It can ensure the long-term stability and reliability of the optical communication system, reduce system maintenance and failure rate, and reduce operating costs.


4. Compact package: The high-stability dense wavelength division multiplexer adopts a compact package design, which is small in size and easy to install. It can be applied to various optical communication systems and application occasions, and improves the flexibility and scalability of the system.


5. Various specifications and models: High-stability dense wavelength division multiplexers are available in various specifications and models to meet the actual application needs of different users. Users can choose the appropriate product according to their own needs to meet their actual application needs.

 

Product Image

 

Product picture of high stability dense wavelength division multiplexer

 

Product Applications

 

1. Optical communication system: High-stability dense wavelength division multiplexer can be used in applications such as optical signal multiplexing and multi-wavelength optical signal transmission in optical communication systems. It can multiplex multiple optical signals of different wavelengths on one optical fiber, thereby improving the transmission efficiency and performance of the optical communication system, and reducing system cost and maintenance costs.


2. Data center: High stability dense wavelength division multiplexer can be used in optical communication system in data center. Data centers require high-speed, high-density optical communication systems to meet the needs of big data processing and transmission. High-stability dense wavelength division multiplexers can improve the transmission efficiency and performance of optical communication systems, and reduce system costs and maintenance costs.


3. Wireless communication systems: High stability dense wavelength division multiplexers can be used in optical transmission systems in wireless communication systems. A high-speed, high-stability optical transmission system is required in a wireless communication system to meet the needs of signal transmission and processing. The high-stability dense wavelength division multiplexer can improve the transmission efficiency and performance of the optical transmission system, and reduce the system cost and maintenance cost.


4. Test and measurement: High-stability dense wavelength division multiplexers can be used in optical communication test systems in the field of test and measurement. The field of test and measurement requires a high-precision, high-stability optical communication test system to meet the needs of test and measurement. The high-stability dense wavelength division multiplexer can improve the test efficiency and performance of the optical communication test system, and reduce the cost of test and measurement.

 

Product Parameters

 

Operating wavelength range 1525 nm - 1565 nm Insertion Loss ≤ 4.5 dB
Number of digital channels 40 Stability ≤ 0.02 dB/℃
Attenuation Uniformity ≤ 0.8 dB Stability ≤ 0.05 dB/year
Out-of-Band Suppression Ratio ≥ 30 dB @ 0.4 nm Operating temperature range -10℃ ~ +70℃
Out-of-band rejection ≥ 40 dB @ 0.4 nm    

 

Instructions For Use

 

1. Install the high-stability dense wavelength division multiplexer at a suitable location in the optical communication system. During installation, it is necessary to pay attention to the correctness and tightness of the optical fiber connection to ensure the transmission quality and performance of the optical signal.


2. Connect the optical signal to be multiplexed to the input port of the high-stability dense wavelength division multiplexer. Note that optical signals of different wavelengths are connected to different input ports to avoid wavelength aliasing and signal distortion.


3. The high-stability dense wavelength division multiplexer will multiplex multiple input optical signals onto one optical fiber. The multiplexed optical signal can be transmitted to other parts of the optical communication system for further processing and transmission.


4. When using a high-stability dense wavelength division multiplexer, it is necessary to continuously monitor the transmission quality and performance of the optical signal. Optical power meters, spectrometers and other test instruments can be used for monitoring and testing to ensure the normal operation and performance of the system.


5. Regularly maintain and maintain the high-stability dense wavelength division multiplexer. You can use cleaning cloth and other tools to clean the surface of the device to avoid the influence of dust and impurities on the device. It is necessary to regularly check the tightness and connection status of the optical fiber connection to ensure the reliability and stability of the system.

 

Terms Of Use

 

1. The correctness and tightness of fiber optic connections are the key to using high-stability dense wavelength division multiplexers. During the connection process, attention should be paid to the alignment and insertion depth of the optical fiber to ensure the transmission quality and performance of the optical signal.


2. The stability and performance of high-stability DWDM are affected by temperature. During use, the ambient temperature needs to be controlled to avoid the influence of too high or too low temperature on the device. If you need to use it under harsh environmental conditions, you can choose a device with temperature self-stabilization.


3. When using a high-stability dense wavelength division multiplexer, it is necessary to control the values of input optical power and output optical power. Too high or too low optical power will adversely affect the performance and life of the device, and may even cause damage to the device.


4. When dealing with high-stability dense wavelength division multiplexers, you need to pay attention to anti-static. Static electricity will affect the device and may even cause damage to the device. Use antistatic gloves and tools when handling devices to avoid the impact of static electricity on devices.


5. Regularly maintain and maintain the high-stability dense wavelength division multiplexer. You can use cleaning cloth and other tools to clean the surface of the device to avoid the influence of dust and impurities on the device. It is necessary to regularly check the tightness and connection status of the optical fiber connection to ensure the reliability and stability of the system.

 

Customer Comments

American system engineer Xavier Ortiz commented:

We have been using high-stability DWDM in our San Francisco data center for some time and are very satisfied with the features and performance this product provides. It has excellent and stable fiber optic signal transmission capabilities, making our network architecture more efficient and reliable. It also performed very well in terms of reliability.

Grace Sullivan, a Mexican communication technology expert, commented:

As a licensed technology professional, I have had remarkable results using high stability DWDMs in our Tampico data center. This product can not only achieve ultra-long-distance transmission, but also ensure high-quality optical fiber transmission, providing our company with better performance and security.

German network architect Andrew Powell commented:

High stability dense wavelength division multiplexers play an important role in our Munich data center. 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 does an excellent job of ensuring communication quality.

Russian system administrator AudreyRogers commented:

We have been using high stability DWDM in St. Petersburg for some time and are very satisfied with the functions and performance provided by this product. It has excellent and stable fiber optic signal transmission capabilities, providing faster speed and larger capacity data transmission for our network architecture. It also performed very well in terms of reliability.

Finnish communications engineer Thomas Peterson commented:

We have been using high stability DWDM in Tampere data center for some time and are very satisfied with the functions and performance provided by this product. It has excellent and stable fiber optic signal transmission capabilities, providing faster speed and larger capacity data transmission for our network architecture. It also performed very well in terms of reliability.

 

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