IP Library Granted Patent US 8,514,319
Granted Patent B2
US 8,514,319 · App. 13/502,417 · Granted Aug 20, 2013

Solid-state image pickup element and image pickup apparatus

Inventors: Masao Hiramoto (Osaka, JP); Toshiya Fujii (Shiga, JP); Masaaki Suzuki (Osaka, JP)
Assignee: Panasonic Corporation
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Quick Facts
Patent No.
US 8,514,319
App. No.
13/502,417
Granted
Aug 20, 2013
Kind
B2
Abstract

In a basic pixel arrangement of a solid-state image sensor, a dispersing element is arranged to face each of pixels that are located at row 1 , column 2 and row 3 , column 1 positions in order to make a light ray with a first color component incident on a horizontally adjacent pixel and also make a light ray with a complementary color component with respect to the first color component incident on that pixel that faces the dispersing element. A dispersing element is arranged to face each of pixels that are located at row 2 , column 1 and row 4 , column 1 positions in order to make a light ray with a second color component incident on a horizontally adjacent pixel and also make a light ray with a complementary color component with respect to the second color component incident on that pixel that faces the dispersing element. On the other hand, no dispersing elements are arranged to face pixels that are located at row 1 , column 1, row 2 , column 2 , row 3 , column 2 and row 4 , column 2 positions.

Claims (40)

1. A solid-state image sensor comprising:

a photosensitive cell array in which a plurality of unit blocks, each including eight photosensitive cells that are arranged in four rows and two columns, are arranged in a matrix pattern; and

a dispersing element array being arranged to face the photosensitive cell array and including a first dispersing element that is arranged to face a photosensitive cell that is located at a row 1 , column 2 position, a second dispersing element that is arranged to face a photosensitive cell that is located at a row 2 , column 1 position, a third dispersing element that is arranged to face a photosensitive cell that is located at a row 3 , column 1 position, and a fourth dispersing element that is arranged to face a photosensitive cell that is located at a row 4 , column 1 position,

wherein the first dispersing element makes a light ray with a first color component incident on a photosensitive cell at a row 1 , column 1 position and makes the rest of incoming light other than the light ray with the first color component incident on the photosensitive cell at the row 1 , column 2 position, and

wherein the second dispersing element makes a light ray with a second color component incident on a photosensitive cell at a row 2 , column 2 position and makes the rest of the incoming light other than the light ray with the second color component incident on the photosensitive cell at the row 2 , column 1 position, and

wherein the third dispersing element makes the light ray with the first color component incident on a photosensitive cell at a row 3 , column 2 position and makes the rest of the incoming light other than the light ray with the first color component incident on the photosensitive cell at the row 3 , column 1 position, and

wherein the fourth dispersing element makes the light ray with the second color component incident on a photosensitive cell at a row 4 , column 2 position and also makes the rest of the incoming light other than the light ray with the second color component incident on the photosensitive cell at the row 4 , column 1 position.

2. The solid-state image sensor of claim 1 , wherein in each said unit block,

the first dispersing element makes one and the other halves of the light ray with the first color component incident on the photosensitive cell at the row 1 , column 1 position and on a photosensitive cell that is located at a row 1 , column 1 position in a first adjacent unit block, respectively,

the second dispersing element makes one and the other halves of the light ray with the second color component incident on the photosensitive cell at the row 2 , column 2 position and on a photosensitive cell that is located at a row 2 , column 2 position in a second adjacent unit block, respectively,

the third dispersing element makes one and the other halves of the light ray with the first color component incident on the photosensitive cell at the row 3 , column 2 position and on a photosensitive cell that is located at a row 3 , column 2 position in the second adjacent unit block, respectively, and

the fourth dispersing element makes one and the other halves of the light ray with the second color component incident on the photosensitive cell at the row 4 , column 2 position and on a photosensitive cell that is located at a row 4 , column 2 position in the second adjacent unit block, respectively.

3. The solid-state image sensor of claim 1 , wherein in each said unit block,

each of the photosensitive cells that are located at the row 1 , column 1 and row 3 , column 2 positions receives not only three light rays having the first, second and third color components, respectively, which have come directly and have been transmitted through no dispersing elements, but also the light ray with the first color component, which has come from a dispersing element that faces its adjacent photosensitive cell,

each of the photosensitive cells that are located at the row 2 , column 2 and row 4 , column 2 positions receives not only the three light rays having the first, second and third color components, respectively, which have come directly and have been transmitted through no dispersing elements, but also the light ray with the second color component, which has come from a dispersing element that faces its adjacent photosensitive cell,

each of the photosensitive cells that are located at the row 1 , column 2 and row 3 , column 1 positions receives the rest of the incoming light other than the light ray with the first color component from the dispersing element that faces the photosensitive cell, and

each of the photosensitive cells that are located at the row 2 , column 1 and row 4 , column 1 positions receives the rest of the incoming light other than the light ray with the second color component from the dispersing element that faces the photosensitive cell.

4. A solid-state image sensor comprising:

a photosensitive cell array in which a plurality of unit blocks, each including eight photosensitive cells that are arranged in four rows and two columns, are arranged in a matrix pattern; and

a dispersing element array being arranged to face the photosensitive cell array and including a first dispersing element that is arranged to face a photosensitive cell that is located at a row 1 , column 2 position, a second dispersing element that is arranged to face a photosensitive cell that is located at a row 2 , column 1 position, a third dispersing element that is arranged to face a photosensitive cell that is located at a row 3 , column 2 position, and a fourth dispersing element that is arranged to face a photosensitive cell that is located at a row 4 , column 2 position,

wherein the first dispersing element makes a light ray with a first color component incident on a photosensitive cell at a row 1 , column 1 position and makes the rest of incoming light other than the light ray with the first color component incident on the photosensitive cell at the row 1 , column 2 position, and

wherein the second dispersing element makes a light ray with a second color component incident on a photosensitive cell at a row 2 , column 2 position and makes the rest of the incoming light other than the light ray with the second color component incident on the photosensitive cell at the row 2 , column 1 position, and

wherein the third dispersing element makes the light ray with the first color component incident on a photosensitive cell at a row 3 , column 1 position and makes the rest of the incoming light other than the light ray with the first color component incident on the photosensitive cell at the row 3 , column 2 position, and

wherein the fourth dispersing element makes the light ray with the second color component incident on a photosensitive cell at a row 4 , column 1 position and makes the rest of the incoming light other than the light ray with the second color component incident on the photosensitive cell at the row 4 , column 2 position.

5. The solid-state image sensor of claim 4 , wherein in each said unit block,

the first dispersing element makes one and the other halves of the light ray with the first color component incident on the photosensitive cell at the row 1 , column 1 position and on a photosensitive cell that is located at a row 1 , column 1 position in a first adjacent unit block, respectively,

the second dispersing element makes one and the other halves of the light ray with the second color component incident on the photosensitive cell at the row 2 , column 2 position and on a photosensitive cell that is located at a row 2 , column 2 position in a second adjacent unit block, respectively,

the third dispersing element makes one and the other halves of the light ray with the first color component incident on the photosensitive cell at the row 3 , column 1 position and on a photosensitive cell that is located at a row 3 , column 1 position in the first adjacent unit block, respectively, and

the fourth dispersing element makes one and the other halves of the light ray with the second color component incident on the photosensitive cell at the row 4 , column 1 position and on a photosensitive cell that is located at a row 4 , column 1 position in the first adjacent unit block, respectively.

6. The solid-state image sensor of claim 4 , wherein in each said unit block,

each of the photosensitive cells that are located at the row 1 , column 1 and row 3 , column 1 positions receives not only three light rays having the first, second and third color components, respectively, which have come directly and have been transmitted through no dispersing elements, but also the light ray with the first color component, which has come from a dispersing element that faces its adjacent photosensitive cell,

each of the photosensitive cells that are located at the row 2 , column 2 and row 4 , column 1 positions receives not only the three light rays having the first, second and third color components, respectively, which have come directly and have been transmitted through no dispersing elements, but also the light ray with the second color component, which has come from a dispersing element that faces its adjacent photosensitive cell,

each of the photosensitive cells that are located at the row 1 , column 2 and row 3 , column 2 positions receives the rest of the incoming light other than the light ray with the first color component from the dispersing element that faces the photosensitive cell, and

each of the photosensitive cells that are located at the row 2 , column 1 and row 4 , column 2 positions receives the rest of the incoming light other than the light ray with the second color component from the dispersing element that faces the photosensitive cell.

7. The solid-state image sensor of one of claim 1 , wherein the first color component is one of red and blue components, and

wherein the second color component is the other of the red and blue components.

8. An image capture device comprising:

the solid-state image sensor of one of claim 1 ;

an optical system that forms an image on an imaging area of the solid-state image sensor; and

a signal processing section that processes the output signal of the solid-state image sensor to generate color information.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2014
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 033033/0163 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2012
From: HIRAMOTO, MASAO; FUJII, TOSHIYA; SUZUKI, MASAAKI
To: PANASONIC CORPORATION
Reel/Frame 028652/0389 →
Priority Claims (1)
JP 2010-187250 · Aug 24, 2010 · national
Continuity (1)
Related Publication 20120206637A1 · Aug 16, 2012