IP Library Granted Patent US 10,401,394
Granted Patent B2
US 10,401,394 · App. 15/583,044 · Granted Sep 3, 2019

Voltage sensor

Inventors: Hiroki Ishihara (Shizuoka, JP); Makoto Ishii (Shizuoka, JP); Minoru Sasaki (Aichi, JP)
Assignees: YAZAKI CORPORATION; TOYOTA SCHOOL FOUNDATION
G01R15/242
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Quick Facts
Patent No.
US 10,401,394
App. No.
15/583,044
Granted
Sep 3, 2019
Kind
B2
Abstract

A voltage sensor includes an oscillator that has a circular or roughly circular shape and is supported by a mechanical support member, a fixed electrode that has a predetermined gap between the oscillator and the fixed electrode, and a drive electrode that is placed at a position different from the fixed electrode across the oscillator, and to which an AC drive voltage is applied to make the oscillator oscillate. In the voltage sensor, an electrostatic attractive force acts on the oscillator by applying a voltage to the fixed electrode, and a resonance frequency of the oscillator changes.

Claims (28)

1. A voltage sensor, comprising:

a substrate,

an oscillator that has a circular or roughly circular shape and is supported by a mechanical support member on the substrate,

a fixed electrode that has a predetermined gap between the oscillator and the fixed electrode, and

a drive electrode that is placed at a position different from the fixed electrode across the oscillator, and to which an AC drive voltage is applied to make the oscillator oscillate,

wherein an electrostatic attractive force acts on the oscillator by applying a voltage to the fixed electrode, and a resonance frequency of the oscillator changes,

wherein the fixed electrode is formed with comb-like grooves along the oscillation direction of the oscillator,

wherein the mechanical support member supports the oscillator such that, when the oscillator oscillates in response to the AC drive voltage, the oscillator expands toward and contracts away from the fixed electrode and the oscillator expands toward and contracts away from the drive electrode, and

wherein the substrate is provided with an opening in an area where the oscillator is formed in a top view.

2. The voltage sensor according to claim 1 , wherein the support member is connected to at least one of four knobs where an oscillating amplitude is minimized among the oscillator.

3. The voltage sensor according to claim 1 , wherein the fixed electrode and the drive electrode are formed on the substrate and the oscillator is disposed immediately above the substrate.

4. The voltage sensor according to claim 1 , wherein the fixed electrode includes a first fixed electrode and a second fixed electrode,

the drive electrode includes a first drive electrode and a second drive electrode,

the first and second driving electrodes are disposed at positions opposite to each other relative to the center of the oscillator,

AC voltages with the same phase are applied to the first and second drive electrodes, and

a virtual line passing through the first and second fixed electrode is perpendicular to a virtual line passing through the first and second drive electrodes.

5. The voltage sensor of claim 1 , wherein the fixed electrode has an arc shape to match an external shape of the oscillator, and has an arc inner portion which is placed to face the oscillator with the predetermined gap.

6. The voltage sensor of claim 5 , wherein the fixed electrode is formed with the comb-like grooves at the arc inner portions along the oscillation direction of the oscillator.

7. The voltage sensor of claim 1 , wherein the mechanical support member supports the oscillator such that the oscillator contracts away from the drive electrode when the oscillator expands toward the fixed electrode, and the oscillator expands toward the drive electrode when the oscillator contracts away from the fixed electrode.

8. A voltage sensor comprising:

a substrate,

an oscillator that has a circular or roughly circular shape and is supported by a mechanical support member on the substrate,

a fixed electrode that has a predetermined gap between the oscillator and the fixed electrode, and

a drive electrode that is placed at a position different from the fixed electrode across the oscillator, and to which an AC drive voltage is applied to make the oscillator oscillate,

wherein an electrostatic attractive force acts on the oscillator by applying a voltage to the fixed electrode, and a resonance frequency of the oscillator changes,

wherein the fixed electrode is formed with comb-like grooves along the oscillation direction of the oscillator,

wherein the mechanical support member supports the oscillator such that, when the oscillator oscillates in response to the AC drive voltage, the oscillator expands toward and contracts away from the fixed electrode and the oscillator expands toward and contracts away from the drive electrode, and

wherein a part of the substrate is a circular structure disposed at an inner side of the oscillator, and the circular structure is formed with comb-like grooves which extend along the oscillation direction of the oscillator.

Assignments (2)
CHANGE OF ADDRESS Recorded Jun 5, 2023
From: YAZAKI CORPORATION
To: YAZAKI CORPORATION
Reel/Frame 063845/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2017
From: ISHIHARA, HIROKI; ISHII, MAKOTO; SASAKI, MINORU
To: YAZAKI CORPORATION; TOYOTA SCHOOL FOUNDATION
Reel/Frame 042883/0092 →
Priority Claims (1)
JP 2016-093214 · May 6, 2016 · national
Continuity (1)
Related Publication 20170322238A1 · Nov 9, 2017