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High Precision Collimator Variable Optical Attenuator

High-precision collimator variable optical attenuator is a high-performance optical device, which is widely used in optical communication, optical testing, optical simulation and other fields. The product adopts precise optical design and manufacturing process, has the advantages of high precision, high reliability, high stability, etc., and can meet various needs of users for optical signal processing and control.

  • Product Introduction

High-precision collimator variable optical attenuator is a high-performance optical device, which is widely used in optical communication, optical testing, optical simulation and other fields. The product adopts precise optical design and manufacturing process, has the advantages of high precision, high reliability, high stability, etc., and can meet various needs of users for optical signal processing and control.

 

High-precision collimator variable optical attenuator has many advantages, such as high precision, high sensitivity, high stability, high reliability, etc., and can meet the various needs of users for optical signal processing and control. The product also has the advantages of small size, light weight, and convenient operation, which is convenient for users to operate and control flexibly and efficiently in practical applications.

 

If you need precise control and collimation of optical signals, high-precision collimator variable optical attenuators are ideal for you. We will provide you with high-quality products and services to meet your various needs and requirements.

 

Product Features

 

1. High-precision performance: High-precision collimator variable optical attenuator adopts precise optical design and manufacturing process, and has high-precision optical performance. In the process of optical signal processing and control, it can meet the needs of users for precise control and collimation of optical signals, and ensure the transmission quality of optical signals.


2. Variable light attenuation function: The variable light attenuator of the high-precision collimator adopts an adjustable light attenuator, which has a variable light attenuation function. Users can adjust the light attenuation through the controller or manual controller to meet the different needs of users for optical signals in different application scenarios.


3. Collimation function: the high-precision collimator variable optical attenuator has a collimation function, which can precisely collimate the optical signal. During the transmission and control process of the optical signal, the transmission direction of the optical signal can be completely consistent with the direction of the optical axis, so as to ensure the transmission accuracy and stability of the optical signal.


4. High sensitivity: The high-precision collimator variable optical attenuator has high-sensitivity optical performance, and can accurately detect and control small optical signal changes. In the fields of optical testing and simulation, it can meet the demand for high-precision detection and control of optical signals.


5. High stability: The high-precision collimator variable optical attenuator has high stability optical performance, and can maintain stable optical performance and working status during long-term use. In fields such as optical communication, it can ensure stable transmission and control of optical signals.

 

Product Image

 

High precision collimator variable optical attenuator product picture

 

Product Applications

 

1. Optical communication field: high-precision collimator variable optical attenuator can be applied to optical path optimization and optical signal adjustment in optical communication systems. In the optical communication system, the optical attenuator can be used to adjust the intensity of the optical signal, reduce the noise and distortion of the optical signal, thereby improving the transmission quality and stability of the optical signal.


2. Optical testing field: high-precision collimator variable optical attenuator can be applied to precise testing and simulation in optical testing system. In the field of optical testing, optical attenuators can be used to simulate different optical signal intensities, so as to conduct precise optical testing and simulation, and evaluate and optimize the performance of optical devices.


3. Optical imaging field: high-precision collimator variable optical attenuator can be applied to optical path calibration and image processing in optical imaging systems. In the field of optical imaging, the optical attenuator can be used to adjust the intensity of the optical signal, thereby realizing the adjustment and optimization of the brightness and contrast of the image, and improving the clarity and quality of the image.


4. Field of scientific research experiment: high-precision collimator variable optical attenuator can be applied to optical signal control and adjustment in scientific research experiment. In the field of scientific research experiments, optical attenuators can be used to simulate different optical signal intensities and optical path changes, so as to conduct precise optical experiments and explorations, and explore optical phenomena and principles.

 

Product Parameters

 

Optical interface type FC/PC, SC/PC Optical Attenuation Range 0 dB to 50 dB
Optical Attenuation Accuracy ±0.05 dB Optical attenuation resolution 0.001 dB
Collimation accuracy ≤1.0 arcmin Collimation angle 0.1° to 45°
Collimator diameter 10 mm or others Operating wavelength range 1260 nm to 1650 nm
Optical Path Insertion Loss ≤1.5 dB Fiber Return Loss ≥50 dB

 

Instructions For Use

 

1. Before using the high-precision collimator variable optical attenuator, it needs to be prepared. First, the optical attenuator and collimator need to be connected to the optical fiber. Secondly, you need to connect the controller (or manual controller) with the variable optical attenuator of the high-precision collimator, and plug the power cord into the power socket.


2. Before processing and controlling the optical signal, the collimator needs to be adjusted first. Through the controller or manual controller, the transmission direction of the optical signal in the collimator can be completely consistent with the direction of the optical axis, thereby ensuring the transmission accuracy and stability of the optical signal.


3. After the adjustment of the collimator is completed, the adjustment of the optical attenuator can be started. Through the controller or manual controller, the adjustment of light attenuation can be realized to meet the different needs of users for optical signals in different application scenarios. By adjusting the optical attenuator, the intensity of the optical signal can be adapted to different application scenarios, and the transmission quality and stability of the optical signal can be improved.


4. After completing the processing and control of the optical signal, it is necessary to disconnect the power supply of the high-precision collimator variable optical attenuator, separate the optical fiber from the device, and keep the device and accessories properly. When storing devices and accessories, it is necessary to pay attention to dust-proof, moisture-proof, shock-proof and anti-static measures to ensure the integrity and stability of devices and accessories.

 

Terms Of Use

 

1. Pay attention to the use environment: When using the high-precision collimator variable optical attenuator, you need to pay attention to the use environment. Avoid using in high temperature, high humidity, flammable, explosive, strong electromagnetic interference and other environments. At the same time, the use environment should be kept clean to prevent dust, water droplets, foreign matter, etc. from entering the device and affecting the transmission and stability of optical signals.


2. Pay attention to the way of use: when using the high-precision collimator variable optical attenuator, you need to pay attention to the way of use. Correct operation should be carried out in accordance with the instruction manual or user guide to avoid damage to the device or distortion and interference of optical signals caused by improper operation. It should be noted that the high-precision collimator variable optical attenuator is a precision optical instrument and should be used with caution.


3. Pay attention to the fiber interface: when using the high-precision collimator variable optical attenuator, you need to pay attention to the connection of the fiber interface. Standard optical fiber interfaces and connectors should be used, and unsuitable interfaces and connectors should be avoided, which will affect the transmission and stability of optical signals. At the same time, attention should be paid to the length and bending radius of the optical fiber to avoid bending too small or stretching too long, which will affect the transmission and stability of optical signals.


4. Pay attention to the range of light attenuation: When using a variable light attenuator with a high-precision collimator, you need to pay attention to the range of light attenuation. The appropriate optical attenuation range should be selected according to the actual application requirements to avoid excessive or small optical attenuation, which will affect the transmission and stability of optical signals. At the same time, attention should be paid to the uniformity and linearity of light attenuation to avoid uneven or nonlinear light attenuation, which will affect the transmission and stability of optical signals.

 

Customer Comments

Brazilian optical engineer, Marlowe Frostwood, commented

Highly appreciate the precision and reliability of the High Precision Collimator Variable Optical Attenuator. He believes that the product's collimation accuracy and flexible adjustment of light attenuation provide great convenience for optical applications in the Sao Paulo area. Marlowe Frostwood believes the device will help businesses in St. Paul achieve finer optical adjustment and control.

Avalon Nightshade, an optics researcher in Albany, USA, commented

Appreciate the performance and precision of the High Precision Collimator Variable Optical Attenuator. She emphasizes that the product's collimation accuracy and range of light attenuation make it the instrument of choice for optical laboratories in the Albany area. Avalon Nightshade believes the device will provide the Albany research facility with more accurate and reliable optical experimental results.

Japanese optical designer, Seraphina Holloway, commented

Very satisfied with the design and performance of the High Precision Collimator Variable Optical Attenuator. He pointed out that the product's excellent collimation ability and fine light attenuation control provide stable and precise optical adjustment functions for optical systems in the Tokyo area. Seraphina Holloway believes that this device will play an important role in the optical industry in Tokyo and contribute to the improvement of the performance of optical systems.

German optical engineer, Caldera Stormrider, commented that

Highly appraised the design and performance of the variable optical attenuator of the high-precision collimator. She says the product's collimation precision and variable light attenuation capability make it ideal for applications requiring fine optical adjustments in the Hamburg area. Caldera Stormrider believes that this device will bring higher precision and more reliable optics to the optics industry in Hamburg.

Canadian optics researcher, Eldritch Whisper, commented

Appreciation for the innovation and adjustability of the High Precision Collimator Variable Optical Attenuator. He emphasized that the product's precise collimation and flexible light attenuation capabilities make it an essential device for optical laboratories and research institutions in the Vancouver area. Eldritch Whisper believes the device will bring a new level of control and regulation to Vancouver's optical research and applications.

 

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