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PDF AR0135CS Data sheet ( Hoja de datos )

Número de pieza AR0135CS
Descripción 1/3-inch 1.2 Mp CMOS Digital Image Sensor
Fabricantes ON Semiconductor 
Logotipo ON Semiconductor Logotipo



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No Preview Available ! AR0135CS Hoja de datos, Descripción, Manual

AR0135CS
1/3‐inch 1.2 Mp CMOS
Digital Image Sensor
with Global Shutter
Description
The AR0135CS from ON Semiconductor is a 1/3-inch 1.2 Mp
CMOS digital image sensor with an active-pixel array of
1280 (H) × 960 (V). It is designed for low light performance and
features a global shutter for accurate capture of moving scenes and
synchronization with pulsed light sources. It includes sophisticated
camera functions such as auto exposure control, windowing, scaling,
row skip mode, and both video and single frame modes. It is
programmable through a simple two-wire serial interface. The
AR0135CS produces extraordinarily clear, sharp images, 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
machine vision.
Table 1. KEY PERFORMANCE PARAMETERS
Parameter
Typical Value
Optical Format
1/3-inch (6 mm)
Active Pixels
1280 (H) × 960 (V) = 1.2 Mp
Pixel Size
3.75 mm
Color Filter Array
RGB Bayer, Monochrome
CRA
0°, 25°
Shutter Type
Global Shutter
Input Clock Range
6–50 MHz
Output Pixel Clock (Maximum)
74.25 MHz
Output
Serial
Parallel
HiSPi
12-bit
Frame Rate
Full Resolution
720p
54 fps
60 fps
Responsivity
(Under D65 with 670 nm IRCF)
RGB Bayer
Monochrome
34 ke/lux*sec
85 ke/lux*sec
SNRMAX
Dynamic Range
40.7 dB
71.1 dB
Supply Voltage
I/O
Digital
Analog
HiSPi
1.8 or 2.8 V
1.8 V
2.8 V
0.4 V
Power Consumption
< 400 mW
Operating Temperature
–30°C to + 70°C (Ambient)
–30°C to + 80°C (Junction)
Package Options
9 × 9 mm 63-pin IBGA
Bare Die
www.onsemi.com
IBGA63 9 y 9
CASE 503AZ
ORDERING INFORMATION
See detailed ordering and shipping information on page 2 of
this data sheet.
Features
ON Semiconductor’s Next Generation
Global Shutter Technology
Superior Low-light Performance
HD Video (720p60)
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
Barcode Scanner
3D Scanning
Positional Tracking
Iris Scanning
Augmented Reality
Virtual Reality
Biometrics
Machine Vision
Gesture Control
© Semiconductor Components Industries, LLC, 2016
July, 2016 − Rev. 4
1
Publication Order Number:
AR0135CS/D

1 page




AR0135CS pdf
AR0135CS
Column Readout Direction
CCCCCCCC
CCCCCCCC
CCCCCCCC
CCCCCCCC
CCCCCCCC
CCCCCCCC
Active Pixel (0, 0)
Array Pixel (112, 44)
Figure 3. Pixel Mono Pattern Detail (Top Right Corner)
Column Readout Direction
RG R GR G R G
GB G BG BG B
RG R GR G R G
GB G BG BG B
RG R GR G R G
GB G BG BG B
Active Pixel (0, 0)
Array Pixel (112, 44)
Figure 4. Pixel Color Pattern Detail (Top Right Corner)
Default Readout Order
By convention, the sensor core pixel array is shown with
the first addressable (logical) pixel (0,0) in the top right
corner (see Figure 3). This reflects the actual layout of the
array on the die. Also, the physical location of the first pixel
data read out of the sensor in default condition is that of pixel
(112, 44).
www.onsemi.com
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AR0135CS arduino
AR0135CS
Single READ from Random Location
This sequence (Figure 8) starts with a dummy WRITE to
the 16-bit address that is to be used for the READ. The
master terminates the WRITE by generating a restart
condition. The master then sends the 8-bit read slave
address/data direction byte and clocks out one byte of
register data. The master terminates the READ by
generating a no-acknowledge bit followed by a stop
condition. Figure 8 shows how the internal register address
maintained by the AR0135CS is loaded and incremented as
the sequence proceeds.
Previous Reg Address, N
Reg Address, M
S
Slave
Address
0A
Reg
Address[15:8]
A
Reg
Address[7:0]
A Sr
Slave Address
1A
S = Start Condition
P = Stop Condition
Sr = Restart Condition
A = Acknowledge
A = No-acknowledge
Slave to Master
Master to Slave
Read Data
Figure 8. Single READ from Random Location
M+1
AP
Single READ from Current Location
This sequence (Figure 9) performs a read using the
current value of the AR0135CS internal register address.
The master terminates the READ by generating
a no-acknowledge bit followed by a stop condition. The
figure shows two independent READ sequences.
Previous Reg Address, N
S Slave Address 1 A
Read Data
AP
Reg Address, N+1
S Slave Address 1 A
Read Data
N+2
AP
Figure 9. Single READ from Current Location
Sequential READ, Start from Random Location
This sequence (Figure 10) starts in the same way as the
single READ from random location (Figure 8). Instead of
generating a no-acknowledge bit after the first byte of data
has been transferred, the master generates an acknowledge
bit and continues to perform byte READs until “L” bytes
have been read.
Previous Reg Address, N
Reg Address, M
M+1
S Slave Address 0 A Reg Address[15:8] A Reg Address[7:0] A Sr Slave Address 1 A
Read Data
A
M+1
M+2 M+3
M+L−2
M+L−1
M+L
Read Data
A Read Data
A
Read Data
A
Read Data
AP
Figure 10. Sequential READ, Start from Random Location
www.onsemi.com
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