IP Library › Granted Patent US 9,905,595
Granted Patent B2
US 9,905,595 · App. 15/208,279 · Granted Feb 27, 2018

Photoelectric sensor

Inventors: Hiroshi Hatanaka (Chiyoda-ku, JP); Minoru Tanaka (Chiyoda-ku, JP)
Assignee: AZBIL CORPORATION
H01L27/14605G01S7/4913G01S17/48G05F3/02H01L27/14643
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Quick Facts
Patent No.
US 9,905,595
App. No.
15/208,279
Granted
Feb 27, 2018
Kind
B2
Abstract

A photoelectric sensor includes a current division control circuit that sequentially sets a reference voltage for each current divider circuit along one of the arrangement directions of photodiodes so that the reference voltage for the current divider circuit is equal to or larger than the voltage value of the reference voltage set for a current divider circuit in the preceding stage, and sets one common control voltage for all of the current divider circuits, the common control voltage falling within a range that includes all of the reference voltages.

Claims (29)

1. A photoelectric sensor having a detection range for a detection object set by using a set distance, the photoelectric sensor comprising:

a multi-segment photodiode in which a plurality of photodiodes are arranged;

a plurality of current divider circuits respectively connected to the plurality of photodiodes, each having a current division ratio set in accordance with a difference between a reference voltage and a control voltage; and

a current division control circuit configured to sequentially set the reference voltage for each current divider circuit among the plurality of current divider circuits along one of arrangement directions of the photodiodes so that the reference voltage for the current divider circuit is equal to or larger than a voltage value of the reference voltage set for a current divider circuit in an immediately preceding stage among the plurality of current divider circuits, and set the control voltage, which is one common control voltage, for all of the plurality of current divider circuits, the common control voltage falling within a range that includes all of the reference voltages.

2. The photoelectric sensor according to claim 1 , wherein the current division control circuit includes

a plurality of reference voltage generation resistors connected in series between two voltages,

a plurality of reference voltage output lines to output voltages divided by the reference voltage generation resistors as the reference voltages,

a control voltage generation circuit that has a function of the reference voltage generation resistors and is configured to generate the control voltage that falls between connected voltages, and

a switch group configured to replace one of the reference voltage generation resistors with the control voltage generation circuit.

3. The photoelectric sensor according to claim 2 , wherein the current division control circuit further includes

a plurality of resistors respectively connected in parallel to the reference voltage generation resistors.

4. The photoelectric sensor according to claim 1 , wherein the current division control circuit includes

a plurality of reference voltage generation resistors that are connected in series between two voltages,

a control voltage generation circuit that is connected in series to or between the reference voltage generation resistors, and has a function of the reference voltage generation resistors and is configured to generate the control voltage that falls between connected voltages, and

a switch switching circuit configured to distribute voltages divided by the reference voltage generation resistors and the control voltage generation circuit as the reference voltages for the respective current divider circuits.

5. The photoelectric sensor according to claim 4 , wherein the current division control circuit further includes

a plurality of resistors, one of the resistors being connected in parallel to the control voltage generation circuit, resistors among the resistors other than the one of the resistors being respectively connected in parallel to the reference voltage generation resistors.

6. The photoelectric sensor according to claim 2 , wherein the control voltage generation circuit includes

a plurality of control voltage generation resistors connected in series between the connected voltages, and

a switch group configured to select one of voltages divided by the control voltage generation resistors as the control voltage.

7. The photoelectric sensor according to claim 2 , wherein the control voltage generation circuit includes

a plurality of first control voltage generation resistors connected in series between the connected voltages,

a voltage divider circuit configured to generate the control voltage that falls between connected second voltages, and

a switch group configured to replace one of the first control voltage generation resistors with the voltage divider circuit, wherein

the voltage divider circuit includes a plurality of second control voltage generation resistors connected in series between the connected second voltages, and

a switch group configured to select one of voltages divided by the second control voltage generation resistors as the control voltage.

8. The photoelectric sensor according to claim 2 , wherein the current division control circuit further includes

a buffer circuit configured to output the reference voltages, and

a buffer circuit configured to output the control voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2016
From: HATANAKA, HIROSHI; TANAKA, MINORU
To: AZBIL CORPORATION
Reel/Frame 039315/0290 →
Priority Claims (1)
JP 2015-139601 · Jul 13, 2015 · national
Continuity (1)
Related Publication 20170018586A1 · Jan 19, 2017