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Número de pieza | HV7151SP | |
Descripción | CMOS Image Sensor | |
Fabricantes | Hynix Semiconductor | |
Logotipo | ||
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No Preview Available ! Confidential
HV7151SP
CMOS Image Sensor
With Image Signal Processing
CMOS Image Sensor
with
Image Signal Processing
HV7151SP
Hynix Semiconductor Inc.
Preliminary Release
Version 0.7
This document is a general product description and is subject to change without notice. Hynix
Semiconductor Inc. does not assume any responsibility for use of circuits described and no patent
licenses are implied.
- 1 - 2003 Hynix Semiconductor Inc.
1 page Confidential
HV7151SP
CMOS Image Sensor
With Image Signal Processing
General Description
HV7151SP is a highly integrated single chip CMOS color image sensor implemented by proprietary
Hynix 0.18um CMOS sensor process realizing high sensitivity and wide dynamic range. Active pixel
array is 1164x886. Each active pixel composed of 4 transistors, it has a micro-lens to enhance
sensitivity, and converts photon energy to analog pixel voltage. On-chip 11bit Analog to Digital
Converter (ADC) digitizes analog pixel voltage, and on-chip Correlated Double Sampling (CDS)
scheme reduces Fixed Pattern Noise (FPN) dramatically. General image processing functions are
implemented to diversify its applications, and various output formats are supported for the sensor to
easily interface with different video codec chips. The integration of sensor function and image
processing functions make HV7151SP especially very suitable for mobile imaging systems such as
digital still camera, PC input camera and IMT-2000 phone’s video part that requires very low power
and system compactness.
Features
n Optical Format : 1/4 inch / Pixel Size : 3.2µm x 3.2µm
n Active Pixel Array : 1170 x 886
n Multiple Video Modes : 1152x864(MEGA), 640x480(VGA), 576x432(1/4 MEGA), 352x288(CIF),
320x240(QVGA), 288x216(1/16 MEGA), 176x144(QCIF)
n Bayer RGB Color filter array / Micro-lens for high sensitivity
n On-chip Frequency Synthesizer
n On-chip 11 bit Analog to Digital Converter
n Correlated Double Sampling (CDS) for reduction of Fixed Pattern Noise (FPN)
n Automatic Flicker Cancellation (AFC)
n Automatic Black Level Calibration (ABLC)
n Gamma Correction by programmable piecewise linear approximation
n 5x5 Color Interpolation
n Color Correction by programmable 3x3 matrix operation
n Color Space Conversion from RGB to YCbCr and Reverse Conversion from YCbCr to RGB
n Image adjustment :Contrast, Brightness, Saturation, Edge Enhancement, Chroma Suppression
n Various Output Formats: CCIR-601, CCIR-656 Compatible
YCbCr 4:2:2, YCbCr 4:4:4, RGB 4:4:4, RGB 565, Bayer
n 8bit/16bit Data Bus Mode
n Automatic Exposure Control and Automatic White Balance Control
n Power Save Mode
This document is a general product description and is subject to change without notice. Hynix
Semiconductor Inc. does not assume any responsibility for use of circuits described and no patent
licenses are implied.
- 5 - 2003 Hynix Semiconductor Inc.
5 Page Confidential
Time
Integration
Plane
Frame 0
Integration
Plane
Frame 1
HV7151SP
CMOS Image Sensor
With Image Signal Processing
Scan
Plane
Frame 0
Scan
Plane
Frame 1
Integration
Time
Frame 0
Time
Frame 1
Time
On-chip Frequency Synthesizer
On-chip Frequency Synthesizer generates variable frequency according to the proportion of
Reference(PREFDIV) to Feedback(PFDDIV) Divisor. Operating frequency is fully programmable and
output range is 5MHz to 100MHz.
11bit on-chip ADC
On-chip ADC converts analog pixel voltage to 11bit digital data.
Gamma Correction
Piecewise linear approximation method is implemented. Ten piece linear segments are supported and
user-programmable.
This document is a general product description and is subject to change without notice. Hynix
Semiconductor Inc. does not assume any responsibility for use of circuits described and no patent
licenses are implied.
- 11 -
2003 Hynix Semiconductor Inc.
11 Page |
Páginas | Total 30 Páginas | |
PDF Descargar | [ Datasheet HV7151SP.PDF ] |
Número de pieza | Descripción | Fabricantes |
HV7151SP | CMOS Image Sensor | Hynix Semiconductor |
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