IP Library Granted Patent US 10,483,057
Granted Patent B2
US 10,483,057 · App. 16/186,270 · Granted Nov 19, 2019

Input device

Inventors: Masaki Sawada (Osaka, JP); Hideki Takahashi (Osaka, JP); Hiroyuki Hoshino (Kanagawa, JP); Takashi Aoki (Osaka, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
H01H19/14G06F3/0362G06F3/03547G06F3/044G06F3/0416H01H15/06H01H19/02H01H19/08H01H89/00G06F2203/04103H01H25/00
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Quick Facts
Patent No.
US 10,483,057
App. No.
16/186,270
Granted
Nov 19, 2019
Kind
B2
Abstract

An input device has a first electrode, a second electrode, and a third electrode. The second electrode opposes to the first electrode while being spaced apart therefrom. The third electrode is spaced apart from the first electrode and rotatably or slidably provided relative to the second electrode. By the third electrode being brought into contact with or spaced apart from the second electrode, an electrical state between the first electrode and the second electrode changes. Based on this electrical change, a rotary manipulation or a slide manipulation is detected.

Claims (116)

1. An input device comprising:

a projection; and

a concavity-convexity portion that contacts the projection,

wherein the concavity-convexity portion includes a plurality of concavities, each of which changes position with respect to the projection,

wherein the concavity-convexity portion includes a plurality of convexities, each of which changes position with respect to the projection,

each of the plurality of concavities and each of the plurality of convexities is arranged alternately with each other, and

wherein the input device further comprises:

a first electrode;

a second electrode which opposes the first electrode;

a third electrode in contact with or spaced apart from the second electrode; and

a contact electrically connected to the second electrode and in contact with the third electrode; and

an insulating surface in contact with the contact, wherein:

when the projection is positioned at one of the plurality of concavities, the third electrode is spaced apart from the second electrode,

when the projection is positioned at one of the plurality of convexities, the third electrode is in contact with the second electrode,

second electrode is fixed with respect to the first electrode,

the contact is movable on the third electrode and the insulating surface,

when the projection is positioned at the one of the plurality of concavities, the contact is in contact with the insulating surface, and

when the projection is positioned at the one of the plurality of convexities, the contact is in contact with the third electrode.

2. The input device according to claim 1 , further comprising:

a click spring including the projection,

wherein the click spring generates clicking when the projection moves from one of the plurality of convexities to one of the plurality of concavities adjacent to the one of the plurality of convexities.

3. The input device according to claim 1 , comprising:

a plurality of insulating surfaces; and

a plurality of third electrodes; wherein:

the insulating surface is one of the plurality of insulating surfaces,

the third electrode is one of the plurality of third electrodes, and

each of the plurality of insulating surfaces and each of the plurality of third electrodes is arranged alternately with each other.

4. The input device according to claim 1 , wherein:

the projection is movable along the concavity-convexity portion,

in a first state where the projection is positioned on one of the plurality of convexities, the second electrode and the third electrode are electrically connected to each other, and

in a second state where the projection is positioned on one of the plurality of concavities, the second electrode and third electrode are electrically disconnected from each other.

5. The input device according to claim 4 , further comprising:

a manipulation knob for applying an operation force and alternately switching between the first state and the second state,

wherein, when the operation force is removed while in the first state, the first state is switched to the second state.

6. An input device comprising:

a projection; and

a concavity-convexity portion that contacts the projection, wherein:

the concavity-convexity portion includes a plurality of concavities, each of which changes position with respect to the projection,

the concavity-convexity portion includes a plurality of convexities, each of which changes position with respect to the projection,

each of the plurality of concavities and each of the plurality of convexities is arranged alternately with each other,

the input device further comprises:

a first electrode;

a second electrode which opposes the first electrode;

a third electrode in contact with or spaced apart from the second electrode;

a contact electrically connected to the third electrode and in contact with the second electrode; and

an insulating surface in contact with the contact,

when the projection is positioned at one of the plurality of concavities, the third electrode is spaced apart from the second electrode,

when the projection is positioned at one of the plurality of convexities, the third electrode is in contact with the second electrode,

the second electrode is fixed with respect to the first electrode,

the contact is movable on the second electrode and the insulating surface,

when the projection is positioned at the one of the plurality of concavities, the contact is in contact with the insulating surface, and

when the projection is positioned at the one of the plurality of convexities, the contact is in contact with the second electrode.

7. The input device according to claim 6 , comprising:

a plurality of insulating surfaces; and

a plurality of second electrodes, wherein:

the insulating surface is one of the plurality of insulating surfaces,

the second electrode is one of the plurality of second electrodes,

each of the plurality of insulating surfaces and each of the plurality of second electrodes is arranged alternately with each other.

8. The input device according to claim 6 , further comprising:

a click spring including the projection,

wherein the click spring generates clicking when the projection moves from one of the plurality of convexities to one of the plurality of concavities adjacent to the one of the plurality of convexities.

9. The input device according to claim 6 , wherein:

the projection is movable along the concavity-convexity portion,

in a first state where the projection is positioned on one of the plurality of convexities, the second electrode and the third electrode are electrically connected to each other, and

in a second state where the projection is positioned on one of the plurality of concavities, the second electrode and third electrode are electrically disconnected from each other.

10. The input device according to claim 9 , further comprising:

a manipulation knob for applying an operation force and alternately switching between the first state and the second state,

wherein, when the operation force is removed while in the first state, the first state is switched to the second state.

11. An input device comprising:

a projection;

a concavity-convexity portion that contacts the projection;

a first electrode;

a second electrode which opposes the first electrode; and

a third electrode in contact with or spaced apart from the second electrode, wherein:

the concavity-convexity portion includes a plurality of concavities, each of which changes position with respect to the projection,

the concavity-convexity portion includes a plurality of convexities, each of which changes position with respect to the projection,

each of the plurality of concavities and each of the plurality of convexities is arranged alternately with each other,

when the projection is positioned at one of the plurality of concavities, the third electrode is spaced apart from the second electrode,

when the projection is positioned at one of the plurality of convexities, the third electrode is in contact with the second electrode,

the first electrode includes a receiver electrode opposing the second electrode, and a transmitter electrode opposing the receiver electrode, and

a capacitance between the receiver electrode and the transmitter electrode when the projection is positioned at the one of the plurality of convexities is larger than a capacitance between the receiver electrode and the transmitter electrode when the projection is positioned at the one of the plurality of concavities.

12. An input device comprising:

a projection;

a concavity-convexity portion that contacts the projection;

a first electrode;

a second electrode which opposes the first electrode; and

a third electrode in contact with or spaced apart from the second electrode, wherein:

the concavity-convexity portion includes a plurality of concavities, each of which changes position with respect to the projection,

the concavity-convexity portion includes a plurality of convexities, each of which changes position with respect to the projection,

each of the plurality of concavities and each of the plurality of convexities is arranged alternately with each other,

when the projection is positioned at one of the plurality of concavities, the third electrode is spaced apart from the second electrode,

when the projection is positioned at one of the plurality of convexities, the third electrode is in contact with the second electrode, and

the first electrode includes a receiver electrode which is annular and opposes the second electrode, and a transmitter electrode opposing the second electrode across the receiver electrode.

13. A manipulation unit to be arranged at a position overlapping a touch panel, comprising:

a plurality of concavities including a first concavity and a second concavity located next to the first concavity;

a projection configured to contact the plurality of concavities;

a fixed electrode; and

a variable electrode which is movable relative to the fixed electrode,

wherein the fixed electrode and the variable electrode are electrically disconnected from each other when the projection is positioned at the first concavity or at the second concavity,

the fixed electrode and the variable electrode are electrically connected to each other when the projection is positioned between the first concavity and the second concavity, and

the fixed electrode is configured to be capacitive-coupled with the second electrode.

14. The manipulation unit according to claim 13 , wherein:

the manipulation unit receives an operation force, and

in case where the projection is positioned between the first concavity and the second concavity, when the operation force is removed, the projection automatically moves into the first concavity or the second concavity.

15. An input device comprising:

a projection;

a concavity-convexity portion that contacts the projection;

a first electrode;

a second electrode which opposes the first electrode; and

a third electrode in contact with or spaced apart from the second electrode, wherein:

the concavity-convexity portion includes a plurality of concavities, each of which changes position with respect to the projection,

the concavity-convexity portion includes a plurality of convexities, each of which changes position with respect to the projection,

each of the plurality of concavities and each of the plurality of convexities is arranged alternately with each other,

when the projection is positioned at one of the plurality of concavities, the third electrode is spaced apart from the second electrode,

when the projection is positioned at one of the plurality of convexities, the third electrode is in contact with the second electrode, and

the first electrode is capacitive-coupled with the second electrode.

Priority Claims (2)
JP 2014-228083 · Nov 10, 2014 · national
JP 2015-168415 · Aug 28, 2015 · national
Continuity (2)
Continuation 15516221
Related Publication 20190080864A1 · Mar 14, 2019