Electrostatic capacitance detection device

US10288598B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10288598-B2
Application numberUS-201615290347-A
CountryUS
Kind codeB2
Filing dateOct 11, 2016
Priority dateOct 30, 2015
Publication dateMay 14, 2019
Grant dateMay 14, 2019

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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Abstract

Official abstract text for this publication.

An electrostatic capacitance detection device includes: an electrostatic capacitance sensor; and a control device that controls the electrostatic capacitance sensor, wherein the control device has a plurality of detection modes for detecting a capacitance change amount corresponding to a change amount of electrostatic capacitance of the electrostatic capacitance sensor, detects the capacitance change amount in each of the plurality of detection modes, and determines presence or absence of contact or approach of an object to the electrostatic capacitance sensor based on the capacitance change amount.

First claim

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What is claimed is: 1. An electrostatic capacitance detection device comprising: an electrostatic capacitance sensor; and a control device that controls the electrostatic capacitance sensor, wherein the control device has a plurality of detection modes for detecting a capacitance change amount corresponding to a change amount of electrostatic capacitance of the electrostatic capacitance sensor, detects the capacitance change amount in each of the plurality of detection modes, and determines presence or absence of contact or approach of an object to the electrostatic capacitance sensor based on the capacitance change amount wherein the control device has a high-resolution detection mode and a low-resolution detection mode in which resolution of detection of the electrostatic capacitance is different, as the plurality of detection modes, wherein the control device includes a standard capacitor connected to the electrostatic capacitance sensor in series, wherein when the standard capacitor and the electrostatic capacitance sensor are intermittently connected at a first time, the number of connections until a middle potential between the standard capacitor and the electrostatic capacitance sensor reaches a set potential from an initial potential is detected as a first number of connections, wherein when the standard capacitor and the electrostatic capacitance sensor are intermittently connected at a second time distant from the first time by a predetermined time, the number of connections until the middle potential between the standard capacitor and the electrostatic capacitance sensor reaches the set potential from the initial potential is detected as a second number of connections, and wherein the capacitance change amount is derived as a number-of-times difference between the first number of connections and the second number of connections. 2. The electrostatic capacitance detection device according to claim 1 , wherein based on the capacitance change amount detected in the low-resolution detection mode, the control device determines whether an object is in a contact state indicating a state in which the object is in contact with the electrostatic capacitance sensor. 3. The electrostatic capacitance detection device according to claim 1 , wherein based on the capacitance change amount detected in the high-resolution detection mode, the control device determines whether the object is in an approach state which is a state in which the object is not in contact with the electrostatic capacitance sensor and a state in which the object is approaching the electrostatic capacitance sensor. 4. An electrostatic capacitance detection device comprising: an electrostatic capacitance sensor; and a control device that controls the electrostatic capacitance sensor, wherein the control device has a plurality of detection modes for detecting a capacitance change amount corresponding to a change amount of electrostatic capacitance of the electrostatic capacitance sensor, detects the capacitance change amount in each of the plurality of detection modes, and determines presence or absence of contact or approach of an object to the electrostatic capacitance sensor based on the capacitance change amount, wherein the control device has a high-resolution detection mode and a low-resolution detection mode in which resolution of detection of the electrostatic capacitance is different, as the plurality of detection modes, and wherein the control device determines whether the object is in a contact state indicating the state in which the object is in contact with the electrostatic capacitance sensor, an approach state indicating a state in which the object is not in contact with the electrostatic capacitance sensor and a state in which the object is approaching the electrostatic capacitance sensor, or a non-detection state indicating a state in which the object does not approach the electrostatic capacitance sensor in each of a plurality of the capacitance change amounts obtained continuously in the high-resolution detection mode, and determines a kind of object in contact with the electrostatic capacitance sensor based on a pattern of determination results in the plurality of capacitance change amounts. 5. The electrostatic capacitance detection device according to claim 4 , wherein when a determination result when the object in contact with the electrostatic capacitance sensor or the object approaching the electrostatic capacitance sensor is specified based on the pattern of the determination result is water, the control device stops the determination based on the high-resolution detection mode. 6. The electrostatic capacitance detection device according to claim 1 , wherein the standard capacitor is configured to include a plurality of sub-capacitors, wherein the control device has at least two coupling modes in which the electrostatic capacitance of the standard capacitor is different, as capacitance coupling modes of the plurality of sub-capacitors, wherein in the high-resolution detection mode, the plurality of sub-capacitors are coupled in a first coupling mode and the capacitance change amount is detected, and wherein in the low-resolution detection mode, the plurality of sub-capacitors are coupled in a second coupling mode in which the electrostatic capacitance of the standard capacitor is less than in the first coupling mode and the capacitance change amount is detected. 7. The electrostatic capacitance detection device according to claim 1 , wherein the set potential when the number of connections until the middle potential reaches the set potential from the initial potential is detected as the first number of connections or the second number of connections is set to be changeable, and wherein the control device sets the set potential as a first set potential and detects the capacitance change amount in the high-resolution detection mode, and sets the set potential as a second set potential higher than the first set potential and detects the capacitance change amount in the low-resolution detection mode. 8. An electrostatic capacitance detection device comprising: an electrostatic capacitance sensor; and a control device that controls the electrostatic capacitance sensor, wherein the control device has a plurality of detection modes for detecting a capacitance change amount corresponding to a change amount of electrostatic capacitance of the electrostatic capacitance sensor, detects the capacitance change amount in each of the plurality of detection modes, and determines presence or absence of contact or approach of an object to the electrostatic capacitance sensor based on the capacitance change amount, wherein a plurality of the electrostatic capacitance sensors are included, and a first electrostatic capacitance sensor which is one of the plurality of the electrostatic capacitance sensors and a second electrostatic capacitance sensor which is another electrostatic capacitance sensor of the plurality of the electrostatic capacitance sensors are disposed away by a set distance from each other, and wherein the control device detects the capacitance change amounts of the first and second electrostatic capacitance sensors, determines whether the object is in a contact state indicating a state in which the object is in contact with the electrostatic capacitance sensor, an approach state indicating a state in which the object is not in contact with the electrostatic capacitance sensor and a state in which the object is approaching the electrostatic capacitance sensor, or a non-detection state indicating a state in which the object does not approach the electrostatic capacitance sensor based on the capacitance change amounts, and detects motions of the object

Assignees

Inventors

Classifications

  • Measuring capacitance (capacitive sensors G01D5/24) · CPC title

  • H03K17/955Primary

    using a capacitive detector · CPC title

  • Capacitive touch switches · CPC title

  • of solid biological material, e.g. tissue samples, cell cultures (tissue in vivo A61B5/00; cell suspensions G01N33/48735) · CPC title

  • by investigating the dielectric properties (using microwaves G01N22/00; measuring loss factors or dielectric constants per se G01R27/26) · CPC title

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What does patent US10288598B2 cover?
An electrostatic capacitance detection device includes: an electrostatic capacitance sensor; and a control device that controls the electrostatic capacitance sensor, wherein the control device has a plurality of detection modes for detecting a capacitance change amount corresponding to a change amount of electrostatic capacitance of the electrostatic capacitance sensor, detects the capacitance …
Who is the assignee on this patent?
Aisin Seiki
What technology area does this patent fall under?
Primary CPC classification H03K17/955. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 14 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).