Allicdata Part #: | KAI-0330-ABA-CB-AA-SINGLE-ND |
Manufacturer Part#: |
KAI-0330-ABA-CB-AA-SINGLE |
Price: | $ 99.79 |
Product Category: | Sensors, Transducers |
Manufacturer: | ON Semiconductor |
Short Description: | IMAGE SENSOR CCD VGA SGL 20CDIP |
More Detail: | CCD Image Sensor 648H x 484V 9µm x 9µm 20-CDIP |
DataSheet: | KAI-0330-ABA-CB-AA-SINGLE Datasheet/PDF |
Quantity: | 1000 |
2 +: | $ 90.72000 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Active |
Type: | CCD |
Pixel Size: | 9µm x 9µm |
Active Pixel Array: | 648H x 484V |
Frames per Second: | 120 |
Voltage - Supply: | 12 V ~ 15.5 V |
Package / Case: | 20-CDIP Module |
Supplier Device Package: | 20-CDIP |
Operating Temperature: | 40°C (TJ) |
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, KAI-0330-ABA-CB-AA-SINGLE Application Field and Working Principle
The KAI-0330-ABA-CB-AA-SINGLE (KAI for short) is a type of image sensor used in camera technology to capture digital images. It is well-known for its high imaging precision, compact size, and low power consumption. Furthermore, it is versatile and can be used for a variety of different applications. This article will provide an overview of the KAI image sensor, its application field and how it works.
Overview of the KAI image sensor
The KAI image sensor is a 3.879 mega-pixel, two-channel, CMOS imaging chipset. It utilizes the CMOS technology to process the light received into digital signals, while providing faster processing speeds and better performance than its CCD counterparts. It is capable of taking high resolution images with all the features of a standard high-end digital camera. Additionally, it has advanced feature sets that would allow it to perform more complex tasks. This includes features such as low light sensitivity, facial recognition, image stabilization, and much more. The KAI is also highly efficient and requires minimal power to operate, making it especially suitable for battery driven applications.
Application Field of KAI
The KAI image sensor can be used in a variety of applications, such as industrial, scientific, medical, security and surveillance, automobile, entertainment, and a wide array of consumer devices. It can be used to capture digital images for applications in all of those areas. For example, it can be used for industrial inspection to ensure that products meet certain quality standards. It can be used in medical applications such as imaging bodyparts and organs. Security and surveillance cameras also use images captured by the KAI as evidence. Automotive applications could use the KAI to help with navigation and driver assist functions. Entertainment applications would use the KAI to capture high quality images for displays, such as televisions and monitors.
Working Principle of KAI
The KAI operates on the principle of photodiodes. Photodiodes are semiconductor devices that are sensitive to light. When the device is exposed to light, the electrons in the device move and the flow of electrons generates a current. This current is then processed for further use. The KAI image sensor has two sets of photodiodes, each set of photodiodes has its own separate charge transfer circuit. The first set of photodiodes converts the light received into voltage. The second set of photodiodes converts the voltage into signal charge, which is then amplified for better performance. The amplified signals then drive the image processing engine which finally converts them into digital data.
Conclusion
The KAI image sensor is an excellent choice for various digital imaging applications. Its high imaging precision, compact size, and low power consumption make it very desirable. Furthermore, its two-channel CMOS imaging chipset allows it to take high resolution images with features of a standard high-end digital camera. Additionally, its advanced feature sets allow it to perform more complex tasks, such as facial recognition and image stabilization. Finally, its photodiode principle of operation makes it more sensitive and efficient than its CCD counterparts.
The specific data is subject to PDF, and the above content is for reference
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