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MT9M021 Datasheet, PDF (1/34 Pages) ON Semiconductor – CMOS Digital Image Sensor
MT9M021/MT9M031: 1/3-Inch CMOS Digital Image Sensor
Features
1/3-Inch CMOS Digital Image Sensor
MT9M021/MT9M031 Datasheet, Rev. G
For the latest datasheet revision, please visit www.onsemi.com
Features
• Superior low-light performance
• HD video (720p60)
• Global shutter
• Video/Single Frame mode
• Flexible row-skip modes
• On-chip AE and statistics engine
• Parallel and serial output
• Support for external LED or flash
• Auto black level calibration
• Context switching
Applications
• Scene processing
• Scanning and machine vision
• 720p60 video applications
General Description
The ON Semiconductor MT9M021/MT9M031 is a 1/3-
inch CMOS digital image sensor with an active-pixel
array of 1280H x 960V. It includes sophisticated camera
functions such as auto exposure control, windowing,
scaling, row skip mode, and both video and single
frame modes. It is designed for low light performance
and features a global shutter for accurate capture of
moving scenes. It is programmable through a simple
two-wire serial interface. The MT9M021/MT9M031
produces extraordinarily clear, sharp digital pictures,
and its ability to capture both continuous video and
single frames makes it the perfect choice for a wide
range of applications, including scanning and HD
video.
Table 1:
Key Parameters
Parameter
Typical Value
Optical format
1/3-inch (6 mm)
Active pixels
Pixel size
1280 x 960 = 1.2 Mp
3.75m
Color filter array
RGB Bayer or
Monochrome
Shutter type
Global shutter
Input clock range
Output pixel clock (maximum)
6 – 50 MHz
74.25 MHz
Output
Serial
Parallel
HiSPi (iBGA package only)
12-bit
Frame rate
Full resolution 45 fps
720p
60 fps
Responsivity (Monochrome)
6.1 V/lux-sec
Responsivity (Color)
5.3 V/lux-sec
SNRMAX
Dynamic range
38 dB
64 dB
I/O
1.8 or 2.8 V
Supply
voltage
Digital
Analog
1.8 V
2.8 V
HiSPi
0.4 V
Power consumption
<400 mW
Operating temperature (ambient) –30°C to +70°C
Package options
9 x 9 mm 64-pin iBGA
10x10mm 48-pin iLCC
MT9M021-MT9M031_DS Rev. G Pub. 4/15 EN
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