IP Library › Granted Patent US 11,796,402
Granted Patent B2
US 11,796,402 · App. 17/260,727 · Granted Oct 24, 2023

Tactile sensor

Inventors: Atsushi Kitamura (Shizuoka, JP); Shigeyuki Adachi (Shizuoka, JP); Toshiaki Asakawa (Shizuoka, JP); Satoshi Suzuki (Tokyo, JP); Shinya Yamaguchi (Tokyo, JP); Hirotsugu Iijima (Tokyo, JP)
Assignee: MINEBEA MITSUMI Inc.
G01L1/205B25J13/084G01L1/2287G01L5/0028
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Quick Facts
Patent No.
US 11,796,402
App. No.
17/260,727
Granted
Oct 24, 2023
Kind
B2
Abstract

A tactile sensor includes a support member with a curved surface, a sensor body disposed on the support member, and a buffer member with which the sensor body is coated, the buffer member being configured to, in response to contacting an object, transfer a force applied from the object to the sensor body. The sensor body includes an insulating layer, multiple first resistive portions of which a longitudinal direction is directed to a first direction of each and that are juxtaposed on one side of the insulating layer, multiple second resistive portions of which a longitudinal direction of each is directed to a second direction intersecting with the first direction and that are juxtaposed on another side of the insulating layer, and a pair of electrodes provided at both end portions of each of the first resistive portions and the second resistive portions. The press force applied from the object is transferred to the sensor body, and at least one given resistive portion among the first resistive portions and the second resistive portions is pressed, so that a resistance value between a given pair of electrodes associated with the pressed at least one given resistive portion among the first resistive portions and the second resistive portions constantly varies in accordance with a magnitude of the press force.

Claims (37)

1. A tactile sensor comprising:

a support member with a curved surface;

a sensor body disposed on the support member; and

a buffer member with which the sensor body is coated, the buffer member being configured to, in response to contacting an object, transfer a force applied from the object to the sensor body,

wherein the sensor body includes:

an insulating layer;

multiple first resistive portions of which a longitudinal direction of each is directed to a first direction and that are juxtaposed on one side of the insulating layer;

multiple second resistive portions of which a longitudinal direction of each is directed to a second direction intersecting with the first direction and that are juxtaposed on another side of the insulating layer; and

a pair of electrodes provided at both end portions of each of the first resistive portions and the second resistive portions,

wherein the press force applied from the object is transferred to the sensor body, and at least one given resistive portion among the first resistive portions and the second resistive portions is pressed, so that a resistance value between a given pair of electrodes associated with the pressed at least one given resistive portion among the first resistive portions and the second resistive portions constantly varies in accordance with a magnitude of the press force, and

wherein each of the first resistive portions and the second resistive portions is formed of a film containing Cr, CrN and Cr 2 N.

2. The tactile sensor according to claim 1 , wherein location detection with respect to the first direction and the second direction is capable of being performed based on a variation in a resistance value of a given first resistive portion and a variation in a resistance value of a given second resistive portion.

3. The tactile sensor according to claim 1 , wherein the buffer member is formed of an elastic body.

4. The tactile sensor according to claim 1 , wherein each of the first resistive portions and the second resistive portions is disposed in a zigzag pattern that is formed between a given pair of electrodes.

5. The tactile sensor according to claim 1 , wherein a main component of each of the first resistive portions and the second resistive portions is alpha-chromium.

6. The tactile sensor according to claim 5 , wherein each of the first resistive portions and the second resistive portions includes alpha-chromium at 80% by weight or more.

7. The tactile sensor according to claim 1 , further comprising a functional layer formed of a metal, an alloy, or a metal compound, in a lower layer of each of the first resistive portions and the second resistive portions.

8. The tactile sensor according to claim 7 , wherein the functional layer includes a function of promoting crystal growth of each of the first resistive portions and the second resistive portions.

9. A tactile sensor comprising:

a support member having a hemisphere shape with a curved surface;

a sensor body attached to the curved surface of the support member and protruding toward an object; and

a buffer member with which the sensor body is coated, the buffer member being configured to, in response to contacting the object, transfer a force applied from the object to the sensor body,

wherein the sensor body includes:

an insulating layer;

multiple first resistive portions of which a longitudinal direction of each is directed to a first direction and that are juxtaposed on one side of the insulating layer;

multiple second resistive portions of which a longitudinal direction of each is directed to a second direction intersecting with the first direction and that are juxtaposed on another side of the insulating layer; and

a pair of electrodes provided at both end portions of each of the first resistive portions and the second resistive portions,

wherein the press force applied from the object is transferred to the sensor body, and at least one given resistive portion among the first resistive portions and the second resistive portions is pressed, so that a resistance value between a given pair of electrodes associated with the pressed at least one given resistive portion among the first resistive portions and the second resistive portions constantly varies in accordance with a magnitude of the press force.

10. The tactile sensor according to claim 9 , wherein location detection with respect to the first direction and the second direction is capable of being performed based on a variation in a resistance value of a given first resistive portion and a variation in a resistance value of a given second resistive portion.

11. The tactile sensor according to claim 9 , wherein the buffer member is formed of an elastic body.

12. The tactile sensor according to claim 9 , wherein each of the first resistive portions and the second resistive portions is disposed in a zigzag pattern that is formed between a given pair of electrodes.

13. The tactile sensor according to claim 9 , wherein each of the first resistive portions and the second resistive portions is formed of a Cr composite film.

14. The tactile sensor according to claim 13 , wherein a main component of each of the first resistive portions and the second resistive portions is alpha-chromium.

15. The tactile sensor according to claim 14 , wherein each of the first resistive portions and the second resistive portions includes alpha-chromium at 80% by weight or more.

16. The tactile sensor according to claim 14 , wherein each of the first resistive portions and the second resistive portions includes chromium nitride.

17. The tactile sensor according to claim 9 , further comprising a functional layer formed of a metal, an alloy, or a metal compound, in a lower layer of each of the first resistive portions and the second resistive portions.

18. The tactile sensor according to claim 17 , wherein the functional layer includes a function of promoting crystal growth of each of the first resistive portions and the second resistive portions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2023
From: KITAMURA, ATSUSHI; ADACHI, SHIGEYUKI; ASAKAWA, TOSHIAKI; SUZUKI, SATOSHI; YAMAGUCHI, SHINYA; IIJIMA, HIROTSUGU
To: MINEBEA MITSUMI INC.
Reel/Frame 064901/0931 →
Priority Claims (1)
JP 2018-137451 · Jul 23, 2018 · national
Continuity (1)
Related Publication 20210270683A1 · Sep 2, 2021