IP Library › Granted Patent US 12,203,807
Granted Patent B2
US 12,203,807 · App. 17/250,689 · Granted Jan 21, 2025

Light receiving element and ranging system

Inventor: Tatsuki Nishino (Kanagawa, JP)
Assignee: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
G01J1/44G01S7/486G01S17/931H01L31/107G01S17/89
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Quick Facts
Patent No.
US 12,203,807
App. No.
17/250,689
Granted
Jan 21, 2025
Kind
B2
Abstract

There is provided a light receiving element and a ranging system which achieve reduction in the number of signal lines which output detection signals. The light receiving element includes a pixel array in which a plurality of pixels is arranged in a matrix, and a pixel driving unit configured to control respective pixels of the pixel array to be active pixels or non-active pixels, in which the pixel driving unit controls the pixels to be the active pixels in units of spot including N×M pixels (N>0, M>0, where N and M do not become 1 at a same time), and one signal line which outputs a detection signal is disposed at the pixel array for a plurality of spot constituent pixels of a same type within one unit where the one unit includes L×L pixels (L>1).

Claims (49)

1. A light receiving element, comprising:

a pixel array that includes a plurality of pixels in a matrix arrangement, wherein each of the plurality of pixels includes a single photon avalanche diode (SPAD);

a pixel driving unit configured to control the plurality of pixels to be one of a plurality of active pixels or a plurality of non-active pixels, wherein

the plurality of active pixels is in a plurality of pixel spots in the pixel array,

each of the plurality of pixel spots includes N×M pixels of the plurality of pixels,

N>0,

M>0, and

N and M are not equal to 1 at a same time;

one signal line configured to output a detection signal from a plurality of spot constituent pixels of a same type in one unit of pixels, wherein

the pixel array includes the one signal line and the one unit of pixels,

the one unit of pixels includes L×L pixels of the plurality of pixels,

L>1, and

the plurality of pixel spots includes the plurality of spot constituent pixels; and

a wiring that connects the plurality of spot constituent pixels of the same type in the one unit of pixels.

2. The light receiving element according to claim 1 , further comprising:

at least one element common for each of the plurality of spot constituent pixels of the same type in the one unit of pixels.

3. The light receiving element according to claim 1 , wherein

the plurality of pixel spots includes a first pixel spot and a second pixel spot, and

the pixel driving unit is further configured to determine the plurality of pixel spots based on determination that the same type of a spot constituent pixel in the first pixel spot comes at or after L number of pixels in the second pixel spot, and

the second pixel spot is adjacent to the first pixel spot in one of a horizontal direction or a vertical direction.

4. The light receiving element according to claim 1 , wherein

the one unit of pixels includes 4×4 pixels; and

each of the plurality of pixel spots includes 2×2 pixels.

5. A ranging system, comprising:

an illumination apparatus configured to radiate irradiation light; and

a light receiving element configured to receive reflected light of the irradiation light, wherein

the light receiving element includes:

a pixel array that includes a plurality of pixels in a matrix arrangement, wherein each of the plurality of pixels includes a single photon avalanche diode (SPAD);

a pixel driving unit configured to control the plurality of pixels to be one of a plurality of active pixels or a plurality of non-active pixels, wherein

the plurality of active pixels is in a plurality of pixel spots in the pixel array,

each of the plurality of pixel spots of pixels includes N×M pixels of the plurality of pixels,

N>0,

M>0, and

N and M are not equal to 1 at a same time;

one signal line configured to output a detection signal from a plurality of spot constituent pixels of a same type in one unit of pixels, wherein

the pixel array includes the one signal line and the one unit of pixels,

the one unit of pixels includes L×L pixels of the plurality of pixels,

L>1, and

the plurality of pixel spots includes the plurality of spot constituent pixels; and

a wiring that connects the plurality of spot constituent pixels of the same type in the one unit of pixels.

6. A light receiving element, comprising:

a pixel array that includes a plurality of pixels in a matrix arrangement, wherein each of the plurality of pixels includes a single photon avalanche diode (SPAD);

a pixel driving unit configured to control the plurality of pixels to be one of a plurality of active pixels or a plurality of non-active pixels, wherein

the plurality of active pixels is in a plurality of pixel spots in the pixel array, and

each of the plurality of pixel spots includes 2×2 pixels of the plurality of pixels; and

one signal line configured to output a detection signal from a plurality of spot constituent pixels of a same type in one unit of pixels, wherein

the pixel array includes the one signal line and the one unit of pixels,

the one unit of pixels includes 4×4 pixels of the plurality of pixels, and

the plurality of pixel spots includes the plurality of spot constituent pixels.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2021
From: NISHINO, TATSUKI
To: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
Reel/Frame 055333/0710 →
Priority Claims (1)
JP 2018-163585 · Aug 31, 2018 · national
Continuity (1)
Related Publication 20210325244A1 · Oct 21, 2021
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