IP Library Granted Patent US 7,940,322
Granted Patent B2
US 7,940,322 · App. 12/070,860 · Granted May 10, 2011

Focus detecting device

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Quick Facts
Patent No.
US 7,940,322
App. No.
12/070,860
Granted
May 10, 2011
Kind
B2
Abstract

A focus detecting device includes a focus detecting optical system which forms a plurality of object images. A photoelectric conversion element array includes a plurality of pixels and subjects each of the plural object images formed by the focus detecting optical system to photoelectric conversion. An electric charge transfer path transfers an electric charge obtained by the photoelectric conversion subjected by the photoelectric conversion element array. A focus detecting section performs focus detection with respect to a plurality of focus areas on the basis of a signal associated with an electric charge transferred by the electric charge transfer path. A plurality of effective pixel regions corresponding to the plural focus areas are arranged in the arrangement direction of the pixels of the photoelectric conversion element array, and ineffective pixel regions are arranged between the plural effective pixel regions.

Claims (24)

1. A focus detecting device comprising:

a focus detecting optical system which forms a plurality of object images;

a plurality of photoelectric conversion element arrays each of which includes a plurality of pixels, wherein the photoelectric conversion element arrays subject each of the plural object images formed by the focus detecting optical system to photoelectric conversion, and wherein the photoelectric conversion element arrays are arranged in parallel with each other in an arrangement direction of the pixels;

an electric charge transfer path which transfers an electric charge obtained by the photoelectric conversion performed by the photoelectric conversion element arrays; and

a focus detecting section which performs focus detection with respect to a plurality of focus areas based on a signal associated with the electric charge transferred by the electric charge transfer path;

wherein the photoelectric conversion element arrays each include a plurality of effective pixel regions corresponding to the plural focus areas and which are arranged in the arrangement direction of the pixels of the photoelectric conversion element arrays, and ineffective pixel regions which are arranged between the plural effective pixel regions; and

wherein the focus detecting device further comprises:

a plurality of monitor photodiodes which are provided between the photoelectric conversion element arrays and which are arranged so as to correspond to the plurality of effective pixel regions, the monitor photodiodes monitoring an electric charge amount obtained by each of the photoelectric conversion element arrays; and

a plurality of monitor photodiode charge detecting sections each of which is arranged in a space formed by each of the ineffective pixel regions and the effective pixel regions, wherein the monitor photodiode charge detecting sections detect electric charges of the plural monitor photodiodes.

2. The focus detecting device according to claim 1 , further comprising:

an accumulation control section which controls an electric charge accumulating operation in each photoelectric conversion element array based on an output of each monitor photodiode charge detecting section; and

a plurality of wires each of which is arranged in each ineffective pixel region, and which electrically connect each monitor photodiode charge detecting section and the accumulation control section to each other.

3. The focus detecting device according to claim 1 , wherein a width of each ineffective pixel region in a direction perpendicular to the arrangement direction of the pixels is smaller than a width of each effective pixel region in the direction perpendicular to the arrangement direction of the pixels.

4. The focus detecting device according to claim 1 , further comprising an electric charge/voltage converting section which converts an electric charge transferred thereto by each of the electric charge transfer paths into a voltage, and which outputs the voltage.

5. A focus detecting device comprising:

a focus detecting optical system which forms a plurality of object images;

a plurality of photoelectric conversion element arrays each of which includes a plurality of pixels, wherein the photoelectric conversion element arrays subject each of the plural object images formed by the focus detecting optical system to photoelectric conversion, and wherein the photoelectric conversion element arrays are arranged in parallel with each other in an arrangement direction of the pixels;

an electric charge transfer path which transfers an electric charge obtained by the photoelectric conversion performed by the photoelectric conversion element arrays; and

a focus detecting section which performs focus detection with respect to a plurality of focus areas based on a signal associated with the electric charge transferred by the electric charge transfer path;

wherein the photoelectric conversion element arrays each include a plurality of effective pixel regions corresponding to the plural focus areas and which are arranged in the arrangement direction of the pixels of the photoelectric conversion element arrays, and ineffective pixel regions which are arranged between the plural effective pixel regions;

wherein the focus detecting device further comprises:

a plurality of monitor photodiodes which are provided between the photoelectric conversion element arrays and which are arranged so as to correspond to the plurality of effective pixel regions, the monitor photodiodes monitoring an electric charge amount obtained by each of the photoelectric conversion element arrays; and

a plurality of monitor photodiode charge detecting sections each of which is arranged in a vicinity of each of the ineffective pixel regions, and wherein the monitor photodiode charge detecting sections detect electric charges of the plural monitor photodiodes; and

wherein a width of each ineffective pixel region in a direction perpendicular to the arrangement direction of the pixels is smaller than a width of each effective pixel region in the direction perpendicular to the arrangement direction of the pixels.

Assignments (5)
CHANGE OF ADDRESS Recorded Nov 29, 2017
From: RENESAS ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 044928/0001 →
CHANGE OF ADDRESS Recorded Jun 27, 2016
From: OLYMPUS CORPORATION
To: OLYMPUS CORPORATION
Reel/Frame 039344/0502 →
MERGER Recorded Aug 5, 2015
From: OLYMPUS IMAGING CORP.
To: OLYMPUS CORPORATION
Reel/Frame 036279/0239 →
CHANGE OF NAME Recorded Nov 2, 2010
From: NEC ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 025235/0497 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2008
From: KIKUCHI, TETSUO; TAMIYA, KOSEI; TSUNAI, SHIRO
To: OLYMPUS IMAGING CORP.; OLYMPUS CORPORATION; NEC ELECTRONICS CORPORATION
Reel/Frame 020596/0635 →