Allicdata Part #: | MT9P031I12STM-TP-ND |
Manufacturer Part#: |
MT9P031I12STM-TP |
Price: | $ 12.80 |
Product Category: | Sensors, Transducers |
Manufacturer: | ON Semiconductor |
Short Description: | SENSOR IMAGE 5MP MONO CMOS 48LCC |
More Detail: | CMOS Image Sensor 2592H x 1944V 2.2µm x 2.2µm 48-i... |
DataSheet: | MT9P031I12STM-TP Datasheet/PDF |
Quantity: | 1000 |
2000 +: | $ 11.63010 |
Specifications
Series: | -- |
Part Status: | Active |
Type: | CMOS |
Pixel Size: | 2.2µm x 2.2µm |
Active Pixel Array: | 2592H x 1944V |
Frames per Second: | 53 |
Voltage - Supply: | 1.7 V ~ 1.9 V, 2.6 V ~ 3.1 V |
Package / Case: | 48-LCC |
Supplier Device Package: | 48-iLCC (10x10) |
Operating Temperature: | -30°C ~ 70°C |
Description
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Introduction to MT9P031I12STM-TPMT9P031I12STM-TP is a CMOS image sensor developed by Micron, which belongs to the category of Image Sensors and Camera. It has an active array of 1280 x 800 (pixels) with a diagonal field of view of 47 degrees. It has a pixel size of 5.2 × 5.2 μm which is the smallest in its range. MT9P031I12STM-TP is an ideal sensor for applications requiring high resolution and small size.MT9P031I12STM-TP Application FieldMT9P031I12STM-TP is widely used for applications requiring high resolution and small size, such as portable imaging, surveillance systems, medical and automotive imaging, and consumer applications. This sensor can be used in applications requiring high-definition recording, image processing, and low-light environments. The CMOS technology makes the sensor easier to integrate with application systems.MT9P031I12STM-TP Working PrincipleMT9P031I12STM-TP works on a CMOS image sensor. This image sensor receives light input to generate an array of electrical signals routinely used to assemble a digital image. A single CMOS image sensor consists of millions of tiny pixel arrays. The larger the pixel array, the better the resulting image quality. The MT9P031I12STM-TP CMOS image sensor is composed of 1280 x 800 pixel array that contains 1.04 million square micrometer pixels.The working principle of the MT9P031I12STM-TP can be divided into four stages. In the first stage, photons are captured and converted into electrons, which are stored in the image sensor’s pixel wells. In the second stage, the electric charge is converted into a proportional voltage. In the third stage, the voltage is amplified and converted into a digital signal. In the final stage, the digital signal is received by the application processor which then processes the image into a usable format.ConclusionIn conclusion, MT9P031I12STM-TP is an ideal sensor for applications requiring high resolution and small size. It operates on a CMOS image sensor and consists of 1.04 million square micrometer pixels. It is extensively used for applications such as portable imaging, surveillance systems, medical and automotive imaging, and consumer applications. The four stages involved in its working are capturing and converting photons into electrons, converting electric charge into a proportional voltage, amplifying and converting voltage into a digital signal, and finally receiving the digital signal by the application processor for image processing.
MT9P031I12STM-TP Application FieldMT9P031I12STM-TP is widely used for applications requiring high resolution and small size, such as portable imaging, surveillance systems, medical and automotive imaging, and consumer applications. This sensor can be used in applications requiring high-definition recording, image processing, and low-light environments. The CMOS technology makes the sensor easier to integrate with application systems.MT9P031I12STM-TP Working PrincipleMT9P031I12STM-TP works on a CMOS image sensor. This image sensor receives light input to generate an array of electrical signals routinely used to assemble a digital image. A single CMOS image sensor consists of millions of tiny pixel arrays. The larger the pixel array, the better the resulting image quality. The MT9P031I12STM-TP CMOS image sensor is composed of 1280 x 800 pixel array that contains 1.04 million square micrometer pixels.The working principle of the MT9P031I12STM-TP can be divided into four stages. In the first stage, photons are captured and converted into electrons, which are stored in the image sensor’s pixel wells. In the second stage, the electric charge is converted into a proportional voltage. In the third stage, the voltage is amplified and converted into a digital signal. In the final stage, the digital signal is received by the application processor which then processes the image into a usable format.ConclusionIn conclusion, MT9P031I12STM-TP is an ideal sensor for applications requiring high resolution and small size. It operates on a CMOS image sensor and consists of 1.04 million square micrometer pixels. It is extensively used for applications such as portable imaging, surveillance systems, medical and automotive imaging, and consumer applications. The four stages involved in its working are capturing and converting photons into electrons, converting electric charge into a proportional voltage, amplifying and converting voltage into a digital signal, and finally receiving the digital signal by the application processor for image processing.
MT9P031I12STM-TP Working PrincipleMT9P031I12STM-TP works on a CMOS image sensor. This image sensor receives light input to generate an array of electrical signals routinely used to assemble a digital image. A single CMOS image sensor consists of millions of tiny pixel arrays. The larger the pixel array, the better the resulting image quality. The MT9P031I12STM-TP CMOS image sensor is composed of 1280 x 800 pixel array that contains 1.04 million square micrometer pixels.The working principle of the MT9P031I12STM-TP can be divided into four stages. In the first stage, photons are captured and converted into electrons, which are stored in the image sensor’s pixel wells. In the second stage, the electric charge is converted into a proportional voltage. In the third stage, the voltage is amplified and converted into a digital signal. In the final stage, the digital signal is received by the application processor which then processes the image into a usable format.ConclusionIn conclusion, MT9P031I12STM-TP is an ideal sensor for applications requiring high resolution and small size. It operates on a CMOS image sensor and consists of 1.04 million square micrometer pixels. It is extensively used for applications such as portable imaging, surveillance systems, medical and automotive imaging, and consumer applications. The four stages involved in its working are capturing and converting photons into electrons, converting electric charge into a proportional voltage, amplifying and converting voltage into a digital signal, and finally receiving the digital signal by the application processor for image processing.
ConclusionIn conclusion, MT9P031I12STM-TP is an ideal sensor for applications requiring high resolution and small size. It operates on a CMOS image sensor and consists of 1.04 million square micrometer pixels. It is extensively used for applications such as portable imaging, surveillance systems, medical and automotive imaging, and consumer applications. The four stages involved in its working are capturing and converting photons into electrons, converting electric charge into a proportional voltage, amplifying and converting voltage into a digital signal, and finally receiving the digital signal by the application processor for image processing.
The specific data is subject to PDF, and the above content is for reference
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