Image input system

6783073
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Inventors

Yahagi, Kouichi
Kasahara, Masumi
Nakajima, Hiroki

Application #

200162

Filed

Jul-23-2002

Published

Aug-31-2004

Current US Class

235/454
235/462.28
235/462.29
235/462.41
348/222.1
348/230.1
348/241

International Classes

G06F 007/10; H03K 003/00

Field of Search

235/454 235/462.28 235/29 235/41 235/462.24 235/462.25 235/462.26 235/462.29 348/241 348/222.1 348/230.1 348/697 348/246 348/243 327/310

Assignee

Renesas Technology Corp. (Tokyo, JP); Hitachi Tohbu Semiconductor, Ltd. (Gunma, JP)

Examiners

Frech; Karl D.

Attorney, Agent or Firm

Mattingly, Stanger & Malur, P.C.

US Patent References

5025318   Imaging apparatus...
5191435   Image pickup device
5396288   Image processing...
5736886   Input clamping me...
5757440   Method and appar...
5889553   Image pickup app...
5912703   Apparatus for read...
6072527   Dark shading corre...
6140989   Image signal contr...
6181368   Electronic endoscope
6201573   Solid state imaging...
6211914   Apparatus for read...
6477200   Multi-pair gigabit e...
6499663   Image input system
6617567   Analog pre-process...
 

Referenced by:

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Citation

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Abstract
An image input system includes a solid state image pickup device and a preprocessor for performing correlated double sampling amplification on an output of the image pickup device and outputting a video signal. The preprocessor has a correlated double sampling amplifier for outputting signal information corresponding to a difference voltage between the black level in a feedthrough period of the image pickup device and a signal level in a charge signal output period; and an offset cancelling circuit for cancelling an offset voltage corresponding to the difference voltage in a state where the image pickup device is optically interrupted to the input terminal of the correlated double sampling amplifier. The correlated double sampling amplifier cancels out the offset voltage and the offset cancelling voltage as signal components of polarities opposite to each other, so that circuits following the correlated double sampling amplifier are not influenced by the offset voltage.
 
Claims
What is claimed is:

1. A semiconductor integrated circuit device for use with a solid state image pickup device, the semiconductor integrated circuit device comprising:

an external input terminal arranged to be coupled to receive an output signal of the solid state image pickup device;

a correlated double sampling amplifier having an input coupled to the external input terminal and an output;

a gain control amplifier having an input coupled to the output of the correlated double sampling amplifier and an output;

an A/D converter having an input coupled to the output of the gain control amplifier and an output, that provides a video signal;

an external output terminal coupled to an output of the A/D converter; and



Description
TECHNICAL FIELD

The present invention relates to an image input system for optically inputting an image by using a solid state image pickup device of an X-Y address system using MOS transistors, a solid state image pickup device of a charge transfer system using a CCD (Charge Coupled Device), or the like for photoelectric conversion and charging. More particularly, the invention relates to a technique of lessening an influence of noise components of a signal outputted from a solid state image pickup device, which is exerted on a process of a correlated double sampling method at a post stage or the like and relates to, for example, a technique which is effective when applied to a video camera, a digital still camera or the like.

BACKGROUND ART

A CCD can convert an optical image formed according to the intensity of irradiated light into a charge signal according to the intensity of the light and can move the charge signal by sequentially applying pulses to a number of transfer gates so as to sequentially move the charge signal through the wells of a potential formed on the surface of a semiconductor substrate The charge signal (carrier) can be moved by, for example, controlling a number of transfer gates (insulating gates) arranged in parallel in the CCD by pulse signals of two phases which are opposite to each other An example of an outputting unit for outputting the transferred charge signal is a circuit called a GCD (Gated Charge Detector). An outputting unit of the GCD type has a floating capacitive element precharged by a precharge MOS transistor every cycle of the charge transfer by the pulse signals. A change in the potential of the floating capacitive element due to a flow of a charge signal from the CCD to the precharged floating capacitive element is detected by a source follower output circuit. When the gate capacitance of an input MOS transistor of the source follower output circuit is C3 and the capacitance of the floating capacitive element is C0, an output voltage of the source follower output circuit is generally reduced only by Qs/(C3+C0) (where Qs is a negative charge).
 
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