IP Library Granted Patent US 7,268,337
Granted Patent B2
US 7,268,337 · App. 11/103,461 · Granted Sep 11, 2007

Optical sensor, output processing method of optical sensor, display device, and electronic apparatus

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Quick Facts
Patent No.
US 7,268,337
App. No.
11/103,461
Granted
Sep 11, 2007
Kind
B2
Abstract

An optical sensor includes a light receiving element in which a current corresponding to the amount of received light flows between one end and the other end thereof, a comparator which compares a voltage at the one end of the light receiving element with a predetermined threshold voltage to output a logical signal based on the comparison result, an initialization circuit which initializes the voltage at the one end of the light receiving element to the threshold value or a voltage approximate to the threshold voltage before detecting the amount of the received light, and a voltage changing circuit which changes the voltage at the one end of the light receiving element by a predetermined voltage after completing the initialization. In the optical sensor, after changing the voltage by the voltage changing circuit, a period until the logical signal output from the comparator is logically inverted is expressed as a value corresponding to the amount of the received light.

Claims (33)

1. An optical sensor comprising:

a light receiving element in which a current corresponding to the amount of received light flows between one end and the other end thereof;

a comparator which compares a voltage at the one end of the light receiving element with a predetermined threshold voltage to output a logical signal based on the comparison result;

an initialization circuit which initializes the voltage at the one end of the light receiving element to the predetermined threshold voltage or a voltage approximate to the threshold voltage before detecting the amount of the received light, the predetermined threshold voltage or a voltage approximate to the threshold voltage being derived from the comparator; and

a voltage changing circuit which changes the voltage at the one end of the light receiving element by a predetermined voltage after completing the initialization,

wherein, after changing the voltage by the voltage changing circuit, a period until the logical signal output from the comparator is logically inverted is expressed as a value corresponding to the amount of the received light.

2. The optical sensor according to claim 1 ,

wherein the comparator is an inverter circuit which logically inverts the voltage at the one end of the light receiving element using the threshold voltage as a boundary.

3. The optical sensor according to claim 2 ,

wherein the initialization circuit is a first switch which short-circuits between an input terminal and an output terminal of the inverter circuit to initialize the voltage at the one end of the light receiving element to the threshold value or a voltage approximate to the threshold voltage.

4. The optical sensor according to claim 1 ,

wherein the voltage changing circuit selects any one of a plurality of voltages as the predetermined voltage.

5. The optical sensor according to claim 1 ,

wherein the voltage changing circuit includes:

a capacitor element which has one end connected to the one end of the light receiving element; and

a second switch which applies a first voltage to the other end of the capacitor element before detecting the amount of the received light and which applies a second voltage different from the first voltage to the other end of the capacitor element after completing the initialization.

6. The optical sensor according to claim 5 ,

wherein the voltage changing circuit selects any one of a plurality of the capacitor elements.

7. The optical sensor according to claim 6 ,

wherein, when the voltage at the one end of the light receiving element does not reach the threshold voltage in a predetermined period after changing the voltage by the voltage changing circuit, the voltage changing circuit selects the capacitor element having smaller capacitance.

8. A display device comprising:

the optical sensor according to claim 7 ;

a display panel which displays an image in the vicinity of the light receiving element; and

a control circuit which inputs data indicating a selection state of the capacitor element to control a display image according to the data.

9. A display device comprising:

the optical sensor according to claim 1 ;

a display panel which displays an image in the vicinity of the light receiving element; and

a control circuit which controls a display image according to the logical signal output from the comparator.

10. An electronic apparatus comprising the display device according to claim 8 .

11. An output processing method of an optical sensor including a light receiving element in which a current corresponding to the amount of received light flows between one end and the other end thereof and a comparator which compares a voltage at the one end of the light receiving element with a predetermined threshold voltage to output a logical signal based on the comparison result, the method comprising:

initializing the voltage at the one end of the light receiving element to the predetermined threshold voltage or a voltage approximate to the threshold voltage before detecting the amount of the received light, the predetermined threshold voltage or a voltage approximate to the threshold voltage being derived from the comparator;

changing the voltage at the one end of the light receiving element by a predetermined voltage after completing the initializing; and

expressing a period until the logical signal output from the comparator is logically inverted as a value corresponding to the amount of received light after changing the voltage by the voltage changing circuit.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2018
From: SEIKO EPSON CORPORATION
To: 138 EAST LCD ADVANCEMENTS LIMITED
Reel/Frame 046153/0397 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2005
From: OZAWA, TOKURO
To: SEIKO EPSON CORPORATION
Reel/Frame 016468/0080 →