MT9D131C12STC Aptina LLC, MT9D131C12STC Datasheet

SENSOR IMAGE 2MP CMOS 48-CLCC

MT9D131C12STC

Manufacturer Part Number
MT9D131C12STC
Description
SENSOR IMAGE 2MP CMOS 48-CLCC
Manufacturer
Aptina LLC
Type
CMOS Imagingr

Specifications of MT9D131C12STC

Pixel Size
2.8µm x 2.8µm
Active Pixel Array
1600H x 1200V
Frames Per Second
15
Voltage - Supply
2.5 V ~ 3.1 V
Package / Case
48-CLCC
Sensor Image Color Type
Color
Sensor Image Size
1600x1200Pixels
Operating Supply Voltage (min)
1.7/2.5V
Operating Supply Voltage (typ)
1.8/2.8V
Operating Supply Voltage (max)
1.95/3.1V
Operating Temp Range
-30C to 70C
Package Type
CLCC
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
48
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
557-1253 - KIT HEAD BOARD FOR MT9D131557-1248 - KIT DEV FOR MT9D131
Lead Free Status / RoHS Status
Compliant, Lead free / RoHS Compliant
Other names
557-1311

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MT9D131C12STC
Manufacturer:
VIKING
Quantity:
120 000
Part Number:
MT9D131C12STC
Manufacturer:
APTINA
Quantity:
20 000
Company:
Part Number:
MT9D131C12STC
Quantity:
200
Part Number:
MT9D131C12STCH ES
Manufacturer:
Aptina LLC
Quantity:
135
1/3.2-Inch System-On-A-Chip (SOC) CMOS
Digital Image Sensor
MT9D131C12STC (Color, Pb-Free)
Features
• Micron
• Superior low-light performance
• Ultra-low-power,cost-effective
• Internal master clock generated by on-chip phase-
• Electronic rolling shutter (ERS), progressive scan
• Integrated image flow processor (IFP) for single-die
• Automatic image correction and enhancement,
• Arbitrary image decimation with anti-aliasing
• Integrated real-time JPEG encoder
• Integrated microcontroller for flexibility
• Two-wire serial interface providing access to
• Selectable output data format
• Output FIFO for data rate equalization
• Programmable I/O slew rate
Applications
• Security surveillance cameras
• ePTZ cameras
• Wireless cameras
• Consumer video products
• High-resolution security cameras
PDF: 09005aef824c90ce/Source: 09005aef824c90d6
MT9D131_LDS_1.fm - Rev. B 3/07 EN
‡Products and specifications discussed herein are for evaluation and reference purposes only and are subject to change by
– ITU-R BT.601 (YCbCr)
– 565RGB
– 555RGB
– 444RGB
– JPEG 4:2:2
– JPEG 4:2:0
– Raw 10-bit
locked loop oscillator (PLL)
camera module
including lens shading correction
registers and microcontroller memory
Micron without notice. Products are only warranted by Micron to meet Micron’s production data sheet specifications.
®
DigitalClarity
®
CMOS imaging technology
MT9D131: 1/3.2-Inch 2-Mp SOC Digital Image Sensor
1
MT9D131C12STC ES
MT9D131C12STCD ES
MT9D131C12STCH ES
Table 1:
Ordering Information
Table 2:
Optical format
Active imager size
Active pixels
Pixel size
Shutter type
Maximum frame rate
Maximum data rate/
master clock
Supply voltage Analog 2.5−3.1V
ADC resolution
Responsivity
Dynamic range
Output gain
Read noise
Dark current
SNR
Power consumption
Operating temperature –30°C to +70°C
Package
Part Number
MAX
Micron Technology, Inc., reserves the right to change products or specifications without notice.
Parameter
Key Performance Parameters
Available Part Numbers
Digital
I/O
PLL
Demo kit
Demo kit headboard
48-pin CLCC (Pb-free) ES
1/3.2-inch (4:3)
4.73mm x 3.52mm
1600 x 1200 pixels (UXGA)
2.8µm x 2.8µm
Electronic rolling shutter (ERS)
15 fps at full resolution,
30 fps in preview mode,
(800 x 600)
80 MB/s
6 MHz to 80 MHz
1.7−1.95V
1.7−3.1V
2.5−3.1V
10-bit, on-die
1.0V/lux-sec (550nm)
71dB
16 e-/pix/s at 55°C
3.6 e-RMS at 16X
30 e-/pix/s at 55°C
42.3dB
348mW at 15 fps, full resolution
223mW at 30 fps, preview mode
Bare die, 48-pin CLCC
©2006 Micron Technology, Inc. All rights reserved.
Description
Value
Preliminary
Features

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MT9D131C12STC Summary of contents

Page 1

... System-On-A-Chip (SOC) CMOS Digital Image Sensor MT9D131C12STC (Color, Pb-Free) Features ® ® • Micron DigitalClarity CMOS imaging technology • Superior low-light performance • Ultra-low-power,cost-effective • Internal master clock generated by on-chip phase- locked loop oscillator (PLL) • Electronic rolling shutter (ERS), progressive scan • ...

Page 2

General Description Micron Imaging MT9D131 is a 1/3.2 inch, 2-megapixel CMOS image sensor with an inte- grated advanced camera system. The camera system features a microcontroller (MCU) and a sophisticated image flow processor (IFP) with a real-time JPEG encoder. The ...

Page 3

Typical Connection Figure 2: Typical Configuration (Connection) Two-Wire Serial Bus 6 MHz–80 MHz Notes: 1. Resistor value 1.5KΩ is recommended, but may be greater for slower two-wire speed. 2. TEST must be connected to digital ground for normal device operation. ...

Page 4

Signal Description Table 3: Signal Description Name CLCC Pin EXTCLK 40 RESET# 39 STANDBY 38 TEST 20 SCLK ADDR D [7: 10, 11, 14, 15, 16, OUT 17 FRAME_VALID 1 LINE_VALID 48 PIXCLK 47 S ...

Page 5

Figure 3: 48-Pin CLCC Pinout D GND D 7 OUT D 6 OUT D 5 OUT D 4 OUT GND D 3 OUT D 2 OUT D 1 OUT D 0 OUT D GND PDF: 09005aef824c90ce/Source: 09005aef824c90d6 ...

Page 6

Architecture Overview Figure 4: Block Diagram Sensor Core Sensor Core The MT9D131 sensor core is a 2-megapixel CMOS image sensor with a 2.8µm pixel size designed for an optical format of 1/3.2 inches with a UXGA maximum resolution. The MT9D131 ...

Page 7

Color Pipeline Figure 5: Color Pipeline Black Level Subtraction Lens Shading Correction YUV-to-RGB/YUV Conversion Test Pattern During normal operation of MT9D131, a stream of raw image data from the sensor core is continuously fed into the color pipeline. For test ...

Page 8

Black Level Conditioning and Digital Gain Image stream processing starts with black level conditioning and multiplication of all pixel values by a programmable digital gain. Lens Shading Correction Inexpensive lenses tend to produce images whose brightness is significantly attenuated near ...

Page 9

Color Correction and Aperture Correction To achieve good color fidelity of IFP output, interpolated RGB values of all pixels are subjected to color correction. The IFP multiplies each vector of three pixel colors color correction ...

Page 10

Since decimation by skipping (that is, deletion) can cause aliasing (even if pixel binning is simultaneously enabled generally better to change image size ...

Page 11

Output Interface Control (Two-Wire Serial Interface) Camera control and JPEG configuration/control are accomplished using a two-wire serial interface. The interface supports individual access to all camera function registers and JPEG control registers. In particular, all tables located in the JPEG ...

Page 12

Auto Exposure The auto exposure (AE) algorithm performs automatic adjustments of the image bright- ness by controlling exposure time and analog gains of the sensor core as well as digital gains applied to the image. Two auto exposure algorithm modes ...

Page 13

Figure 6: Sensor Core Block Diagram Active-Pixel Sensor 1600H x 1200V Analog Processing The core of the sensor is an active-pixel array. The timing and control circuitry sequences through the rows of the array, resetting and then reading each row. ...

Page 14

Electrical Specifications Recommended die operating temperature range is from –20° to +55°C. The sensor image quality may degrade above +55°C. Table 4: AC Electrical Characteristics Symbol Definition f Input clock frequency EXTCLK1 t Input clock period EXTCLK1 f Input clock ...

Page 15

Table 6: DC Electrical Definitions and Characteristics Symbol Definition V Core digital voltage I/O digital voltage DD V Analog voltage AA VAAPIX Pixel supply voltage V PLL PLL supply voltage DD V Input high voltage IH V ...

Page 16

Table 7: Absolute Maximum Ratings VAAPIX OUT STG 1 Note: Stresses above those listed may cause permanent damage to the device. This is a stress rating ...

Page 17

Package Dimensions Figure 8: 48-Pin CLCC Package Outline D Seating plane A 11.22 47X 1.02 1.02 ±0.20 TYP 48 1 48X 0.51 ±0.05 11.22 5.61 4X 0.2 5.61 6.6 14.22 Lead finish: Au plating, 0.50 microns minimum thickness over Ni ...

Page 18

Revision History Rev ...

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