MT9M001C12STM,MI1300 MICRON ON APTINA130万1.3MP1/2" 5:4, 5.2µm x 5.2µm monochrome Black/White (B/W) iMage CMOS sensor SoC
2020-11-29 00:49:23
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MT9M001C12STM,MI1300 MICRON ON APTINA130万1.3MP1/2" 5:4, 5.2µm x 5.2µm monochrome Black/White (B/W) iMage CMOS sensor SoC
MT9M001C12STM ,APTINA 1.3MP SoC sensor,1/2-inch B/W , MONOCHROME sensor,1.3MP 1/2 IMAGE ,MICRON ONSEMI APTINA CMOS, INDUSTRIAL CAMERA SENSOR, Arducam mono camera module,Microsoft Kinect XBOS 360 monochrome image sensor,scanner mono sensor
Item Description:
Features:
- Microsoft xbox360 Kinect original monochrome infrared camera module
- Maxim resolution 1280 x 1024 SXGA at 30 fps
- Maxim frame rate 30fps
- Shutter type: Electronic rolling shutter (ERS)
- Optical size 1/2"
- ADC resolution 10-bit
- Supports image sizes: SXGA, VGA, QVGA, CIF, QCIF, etc
- Extreme High sensitivity for low-light operation
- Low operating voltage for embedded portable apps
- Standard I2C two wire interface
- Digital Video Port interface
- 34 pin golden finger FPC cable connector
- Easy intergrate with STM32,FPGA,DSP,Arduino etc.
If you buy this Microsoft Kinect XBOX 360 camera sensor 3D body sensing controlled console camera module, we will provide the pin definition for this module.
Features
● Micron DigitalClarity CMOS imaging technology
● Array Format (5:4): 1,280H x 1,024V (1,310,720 active pixels). Total (incl. dark pixels): 1,312H x 1,048V (1,374,976 pixels)
● Frame Rate: 30 fps progressive scan; programmable
● Shutter: Electronic Rolling Shutter (ERS)
● Window Size: SXGA; programmable to any smaller format (VGA, QVGA, CIF, QCIF, etc.)
● Programmable Controls: Gain, frame rate, frame size
Applications
● Surveillance security camera,
● PC cameras
● Industrial camera
● Electron microscope
● Image acquisition,
● Fingerprint acquisition
● Multispectral camera
● Digital video cameras
General Description
The Micron Imaging MT9M001 is an SXGA-format with a 1/2-inch CMOS active-pixel digital image sensor. The active imaging pixel array of 1,280H x 1,024V. It incorporates sophisticated camera functions on-chip such as windowing, column and row skip mode, and snapshot mode. It is programmable through a simple two-wire serial interface.
This megapixel CMOS image sensor features Digital- Clarity—Micron’s breakthrough low-noise CMOS imaging technology that achieves CCD image quality (based on signal-to-noise ratio and low-light sensitivity) while maintaining the inherent size, cost, and integration advantages of CMOS.
Table 1: Key Performance Parameters
The sensor can be operated in its default mode or programmed by the user for frame size, exposure, gain setting, and other parameters. The default mode outputs an SXGA-size image at 30 frames per second (fps). An on-chip analog-to-digital converter (ADC) provides 10 bits per pixel. FRAME_VALID and LINE_VALID signals are output on dedicated pins, along with a pixel clock that is synchronous with valid data.
Ordering Information
Parameter Value
● Optical format: 1/2-inch (5:4)
● Active imager size: 6.66mm(H) x 5.32mm(V)
● Active pixels: 1,280H x 1,024V
● Pixel size: 5.2μm x 5.2μm
● Shutter type :Electronic rolling shutter (ERS)
● Maximum data rate/master clock:48 MPS/48 MHz
● Frame rate SXGA (1280 x 1024):30 fps progressive scan;
● programmable
● ADC resolution: 10-bit, on-chip
● Responsivity: 2.1 V/lux-sec
● Dynamic range: 68.2dB
● SNR(Signal to Noise Ratio) MAX :45dB
● Supply voltage: 3.0V?3.6V, 3.3V nominal
● Power consumption: 363mW at 3.3V (operating); 294mW (standby)
● Operating temperature :0°C to +70°C
● Packaging :48-pin CLCC
Table 2: Available Part Numbers
Part Number Description
MT9M001C12STM 48-pin CLCC (lead free)
The biggest advantage of a CMOS area array sensor is that it is less expensive than a CCD sensor. A miniature spectrometer use an area array CMOS sensor MT9M001C12STM as detector was developed. The prototype uses an asymmetric cross Czerny-Turner optical structure. Its photometric accuracy and linearity were investigated, and the photometric deviation arise from stray light was analyzed. The elementary performance was tested as follows: wavelength range 380~800 nm, the integration time can be selected from 1 ms to 500 ms according to the light intensity, spectral bandwidth 6 nm , wavelength accuracy ±1 nm, photometric accuracy ±0.03 AU. Results showed that after calibration and nonlinear correction, this CMOS spectrometer is capable for routine fast analysis.
MT9M001C12STM CHIP module1/2-inch Monochrore
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