IP Library Granted Patent US 11,685,063
Granted Patent B2
US 11,685,063 · App. 16/565,755 · Granted Jun 27, 2023

Sensor bracket and robot system

Inventors: Toshihiko Inoue (Yamanashi, JP); Tomoyuki Motokado (Yamanashi, JP); Hajime Suzuki (Yamanashi, JP); Kouichirou Hayashi (Yamanashi, JP); Shinichi Washizu (Yamanashi, JP)
Assignee: FANUC CORPORATION
B25J19/02G01D11/245F17C2205/01F17C2205/0107
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Quick Facts
Patent No.
US 11,685,063
App. No.
16/565,755
Granted
Jun 27, 2023
Kind
B2
Abstract

A sensor bracket is provided with frame members supporting an acceleration sensor, the frame members having circular arc members holding an outer periphery of a tool of a robot in a state in which circumferential-direction gaps are defined in at least one portion of the circular arc members in a circumferential direction, and a bolt thread-screwed into the frame members so as to reduce the circumferential-direction gaps.

Claims (26)

1. A sensor bracket comprising:

a frame member supporting an acceleration sensor, and having a circular arc member holding an outer periphery of a tool, which has a first end and a second end in a longitudinal direction of the tool, supported by a robot in a state in which a circumferential-direction gap is defined in at least one portion of the circular arc member in a circumferential direction;

a bolt thread-screwed into the frame member to reduce the circumferential-direction gap; and

a support member which is long in the longitudinal direction of the tool, the support member having a first end in the longitudinal direction coupled to the circular arc member of the frame member, the support member extending in the longitudinal direction of the tool,

wherein the acceleration sensor is fixed to a second end in the longitudinal direction of the support member.

2. The sensor bracket according to claim 1 , wherein the frame member comprises a first frame member and a second frame member, the bolt comprises a first bolt and a second bolt, the first bolt reduces the circumferential-direction gap between a first end of the first frame member and a first end of the second frame member, and the second bolt reduces the circumferential-direction gap between a second end of the first frame member and a second end of the second frame member.

3. The sensor bracket according to claim 1 , wherein a coupling position of the support member to the circular arc member is changeable in a longitudinal direction of the support member.

4. The sensor bracket according to claim 1 , wherein a coupling angle of the support member to the circular arc member is changeable.

5. The sensor bracket according to claim 1 , further comprising:

an elastic member provided on an inner surface of the circular arc member, the elastic member being elastically compressible.

6. The sensor bracket according to claim 1 , further comprising:

a non-slip member provided on an inner surface of the circular arc member.

7. The sensor bracket according to claim 1 , wherein the bolt is a knurled bolt.

8. The sensor bracket according to claim 1 , wherein the circular arc member holds the outer periphery of the tool at a side of the first end of the tool, wherein the first end is held by the robot.

9. The sensor bracket according to claim 8 , wherein the second end of the support member is closer to the second end of the tool than the first end of the support member.

10. A robot system comprising:

a robot;

a tool supported by a tip end of a robot arm of the robot, the tool having a first end and a second end in a longitudinal direction of the tool;

a sensor bracket attached to the tool, wherein the sensor bracket comprises:

a frame member having a circular arc member holding an outer periphery of the tool in a state in which a circumferential-direction gap is defined in at least one portion of the circular arc member in a circumferential direction; and

a bolt thread-screwed into the frame member to reduce the circumferential-direction gap, wherein the robot system further comprises:

an acceleration sensor supported by the sensor bracket; and

a support member which is long in the longitudinal direction of the tool, the support member having a first end in the longitudinal direction coupled to the circular arc member of the frame member, the support member extending in the longitudinal direction of the tool, wherein the acceleration sensor is fixed to a second end in the longitudinal direction of the support member.

11. The robot system according to claim 10 , wherein an arm member at a most distal end of the robot arm has a hole that penetrates the arm member along a rotational axis line of the arm member, and a control cable of the acceleration sensor is provided via the hole of the arm member at the most distal end.

12. The robot system according to claim 10 , wherein the circular arc member holds the outer periphery of the tool at a side of the first end of the tool, wherein the first end is held by the robot.

13. The robot system according to claim 12 , wherein the second end of the support member is closer to the second end of the tool than the first end of the support member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2019
From: INOUE, TOSHIHIKO; MOTOKADO, TOMOYUKI; SUZUKI, HAJIME; HAYASHI, KOUICHIROU; WASHIZU, SHINICHI
To: FANUC CORPORATION
Reel/Frame 050326/0918 →
Priority Claims (1)
JP 2018-190414 · Oct 5, 2018 · national
Continuity (1)
Related Publication 20200108511A1 · Apr 9, 2020