Allicdata Part #: | AR0141CS2M00SUEA0-DPBR-ND |
Manufacturer Part#: |
AR0141CS2M00SUEA0-DPBR |
Price: | $ 3.81 |
Product Category: | Sensors, Transducers |
Manufacturer: | ON Semiconductor |
Short Description: | IMAGE SENSOR 1.0MP 1/4 CIS |
More Detail: | CMOS Image Sensor 1280H x 800V 3µm x 3µm |
DataSheet: | AR0141CS2M00SUEA0-DPBR Datasheet/PDF |
Quantity: | 1000 |
2600 +: | $ 3.45633 |
Series: | -- |
Part Status: | Active |
Type: | CMOS |
Pixel Size: | 3µm x 3µm |
Active Pixel Array: | 1280H x 800V |
Frames per Second: | 60 |
Voltage - Supply: | 1.8 V ~ 2.8 V |
Operating Temperature: | -30°C ~ 70°C |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Image Sensors, Camera: AR0141CS2M00SUEA0-DPBR Application Field and Working Principle
Image sensors, cameras such as the AR0141CS2M00SUEA0-DPBR have a wide range of applications, including medical imaging, industrial inspection, machine vision, and general surveillance applications. The AR0141CS2M00SUEA0-DPBR image sensor operates according to a charge-coupled device (CCD) or a complementary metal-oxide semiconductor (CMOS) architecture. This article will identify the application field of the AR0141CS2M00SUEA0-DPBR image sensor and explain its underlying working principle.
Application Field of AR0141CS2M00SUEA0-DPBR Image Sensor
The AR0141CS2M00SUEA0-DPBR image sensor is designed for the industrial and medical imaging markets. This image sensor is used in applications such as medical imaging, industrial inspection, machine vision, and general surveillance. The AR0141CS2M00SUEA0-DPBR image sensor offers high picture quality and fast shutter speed. It also has features including back-illuminated technology, high sensitivity, and excellent image quality. Additionally, the AR0141CS2M00SUEA0-DPBR image sensor is capable of capturing long exposures, making it perfect for low light imaging.
In medical imaging applications, the image sensor is used to capture images of body organs, bones, and tissues. This image sensor is also used in industrial inspection applications to inspect equipment and its systems. In machine vision applications, it is used to capture images of objects to determine their location and size. Finally, the AR0141CS2M00SUEA0-DPBR image sensor is widely used in surveillance applications, such as video surveillance and security systems, for recording and monitoring purposes.
Working Principle of AR0141CS2M00SUEA0-DPBR Image Sensor
The AR0141CS2M00SUEA0-DPBR image sensor operates using either a CCD or CMOS architecture. CCDs are used for capture light and transfer the image as charge to the output node. The CCD structure works by collecting light in the form of photons, which are particles of light. The light is then collected by a photodiode, which converts the light into electrical charges.
The charges generated by the photodiode are transferred from one pixel to the next in the CCD until the image is eventually transferred to the output node. The transfer of the charge occurs due to a sequence of voltage nodes that are connected to the photodiode. The output is then read out and used to generate a digital image.
In CMOS architecture, the image is captured by an array of active or virtual pixels. This array is made up of a structure of junction transistors, which generate electric charges when the light is shone onto its surface. These electric charges generated by each pixel are then amplified and stored until all of the charges for each pixel are accumulated and can be read out.
The output of the image sensor can come in digital or analog format. In the digital format, the output signals are processed before being retrieved in the form of a digital image. The analog format retrieves the signal in its original electrical state, which allows for more complex image processing.
In summary, the AR0141CS2M00SUEA0-DPBR image sensor is designed for medical imaging, industrial inspection, machine vision, and surveillance applications. It is capable of capturing high quality images in low light conditions. This image sensor operates using either a CCD or CMOS architecture, and it can output either a digital or analog format. This powerful imaging device is perfect for a range of applications.
The specific data is subject to PDF, and the above content is for reference
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