IP Library › Granted Patent US 6,958,614
Granted Patent B2
US 6,958,614 · App. 10/446,554 · Granted Oct 25, 2005

Capacitance type sensor and method for manufacturing same

Assignee: Nitta Corporation
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Quick Facts
Patent No.
US 6,958,614
App. No.
10/446,554
Granted
Oct 25, 2005
Kind
B2
Abstract

In a capacitance type sensor of the present invention, a capacitance element is constituted between a displacement electrode and a capacitance element electrode. A return-switch movable electrode is arranged above and spaced from the displacement electrode, to be placed in contact with the displaying electrode due to a displacement of a direction button. When the direction button is operated, the return-switch movable electrode is first displaced into contact with the displacement electrode. Then, the both make a displacement while keeping a contact state. When the displacement electrode is displaced to change the spacing to the capacitance element electrode, changed is the capacitance value of the capacitance element. Based on this change, a force is recognized. Herein, in the course of a transit from a state the displacement electrode and the return-switch electrode are not in contact to a state of their contact, the output signal varies necessarily beyond a threshold voltage.

Claims (62)

1. A capacitance type sensor comprising:

a conductive member;

a capacitance element electrode constituting a capacitance element with the conductive member; and

at least one movable electrode disposed on the side opposite to the capacitance element electrode at a distance from the conductive member, wherein, when a force is applied to the movable electrode, the movable electrode moves so as to come into contact with and displace the conductive member, and

wherein the force applied to the movable electrode is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode.

2. The capacitance type sensor according to claim 1 , wherein the movable electrode and the conductive member are formed of a conductive film, and the conductive member is formed with a hole.

3. The capacitance type sensor according to claim 2 , further comprising a mechanism for deforming into concavo-convex the movable electrode and the conductive member in a region not facing the capacitance element electrode so as to apply a tensile force thereto.

4. A capacitance type sensor comprising:

a substrate;

a detective member facing the substrate;

a conductive member disposed between the substrate and the detective member and displaceable in a displacement direction of the detective member as the detective member is displaced in a direction normal to the substrate;

a capacitance element electrode disposed on the substrate and constituting a capacitance element with the conductive member;

at least one fixed electrode disposed on the substrate; and

at least one movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, and electrically connected to the fixed electrode, wherein the movable electrode moves so as to comes into contact with and displace the conductive member, and

wherein the displacement of the detective member is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode.

5. A capacitance type sensor comprising:

a substrate;

a detective member facing the substrate;

a conductive member disposed between the substrate and the detective member and displaceable in a displacement direction of the detective member as the detective member is displaced in a direction normal to the substrate;

a capacitance element electrode disposed on the substrate and constituting a capacitance element with the conductive member;

a reference electrode disposed on the substrate and electrically connected to the conductive member and grounded;

a fixed electrode disposed on the substrate and kept at a different potential from a ground potential; and

a movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, and electrically connected to the fixed electrode, wherein the movable electrode moves so as to come into contact with and displace the conductive member, and

wherein the displacement of the detective member is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance value of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode.

6. A capacitance type sensor comprising:

a substrate;

a detective member facing the substrate;

a conductive member disposed between the substrate and the detective member and displaceable in a displacement direction of the detective member as the detective member is displaced in a direction normal to the substrate;

a capacitance element electrode formed on the substrate and constituting a capacitance element with the conductive member;

a reference electrode formed on the substrate and electrically connected to the conductive member, and kept at a different potential from a ground potential;

a fixed electrode formed on the substrate and grounded; and

a movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, and electrically connected to the fixed electrode, wherein the movable electrode moves so as to come into contact with and displace the conductive member, and

wherein the displacement of the detective member is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode.

7. A capacitance type sensor comprising:

a substrate;

a detective member facing the substrate;

a conductive member disposed between the substrate and the detective member and displaceable in a displacement direction of the detective member as the detective member is displaced in a direction normal to the substrate, wherein the conductive member is in electrically insulated;

a capacitance element electrode formed on the substrate and constituting a capacitance element with the conductive member;

a fixed electrode formed on the substrate and grounded; and

a movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, and electrically connected to the fixed electrode, wherein the movable electrode moves so as to come into contact with and displace the conductive member, and

wherein the displacement of the detective member is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode.

8. A capacitance type sensor comprising:

a substrate;

a detective member facing the substrate;

a conductive member disposed between the substrate and the detective member and displaceable in a displacement direction of the detective member as the detective member is displaced in a direction normal to the substrate, wherein the conductive member is electrically insulated;

a capacitance element electrode formed on the substrate and constituting a capacitance element with the conductive member;

a first fixed electrode formed on the substrate;

a second fixed electrode formed on the substrate;

a first movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, and electrically connected to the first fixed electrode; and

a second movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, and electrically connected to the second fixed electrode,

wherein the first fixed electrode is grounded and the second fixed electrode is kept at a different potential from a ground potential, and the first and second movable electrodes move so as to come into contact with and displace the conductive member, and

wherein the displacement of the detective member is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode.

9. A capacitance type sensor comprising:

a detective member;

a substrate facing the detective member;

a conductive member disposed between the detective member and the substrate and displaceable in a displacement direction of the detective member as the detective member is displaced in a direction normal to the substrate;

a capacitance element electrode formed on the substrate and constituting a capacitance element with the conductive member;

at least one movable electrode disposed between the detective member and the conductive member at a distance from the conductive member, wherein the movable electrode moves so as to come into contact with and displace the conductive member;

a switch substrate;

a first switch electrode formed on the switch substrate; and

a second switch electrode kept at a predetermined potential and disposed at a distance from the first switch electrode, wherein the second switch electrode moves so as to come into contact with the first switch electrode, and

wherein the displacement of the detective member is identified on the basis of a detection, using a signal input to the capacitance element electrode, of a change in capacitance of the capacitance element caused by a change in distance between the conductive member and the capacitance element electrode, and whether or not the first and the second switch electrodes are in contact with each other is judged, by using a signal input to the first switch electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2003
From: MORIMOTO, HIDEO
To: NITTA CORPORATION
Reel/Frame 014127/0460 →
Priority Claims (3)
JP 2002-155251 · May 29, 2002 · national
JP 2002-301709 · Oct 16, 2002 · national
JP 2003-127980 · May 6, 2003 · national
Continuity (1)
Related Publication 20030222660A1 · Dec 4, 2003