IP Library › Granted Patent US 10,716,638
Granted Patent B2
US 10,716,638 · App. 15/755,479 · Granted Jul 21, 2020

Robot system

Inventors: Tsuyoshi Tojo (Ibaraki, JP); Nobuyasu Shimomura (Kobe, JP)
Assignees: KAWASAKI JUKOGYO KABUSHIKI KAISHA; MEDICAROID CORPORATION
A61B34/37A61B34/32B23P19/04B23Q15/12B25J3/00B25J3/04B25J9/0081B25J9/0084B25J9/0087B25J9/161B25J9/1602B25J9/163B25J9/1612B25J9/1628B25J9/1633B25J9/1646B25J9/1653B25J9/1664B25J9/1669B25J9/1674B25J9/1682B25J9/1689B25J9/1697B25J11/008B25J13/00B25J13/003B25J13/006B25J13/02B25J13/025B25J13/06B25J13/065B25J13/08B25J13/084B25J13/085B25J13/087B25J13/088B25J18/00B25J19/023B25J19/028B25J19/04G05B19/4182G06F3/017G06T7/62G06T7/70H04N5/23219H04N7/181B23P21/00B23P21/002G05B2219/33007G05B2219/35464G05B2219/37297G05B2219/39004G05B2219/39102G05B2219/39439G05B2219/39531G05B2219/39533G05B2219/40022G05B2219/40134G05B2219/40136G05B2219/40139G05B2219/40142G05B2219/40143G05B2219/40145G05B2219/40146G05B2219/40161G05B2219/40162G05B2219/40163G05B2219/40169G05B2219/40182G05B2219/40183G05B2219/40195G05B2219/40387G05B2219/40627Y10S901/02Y10S901/03Y10S901/08Y10S901/09Y10S901/10Y10S901/27Y10S901/41Y10S901/46Y10S901/47
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,716,638
App. No.
15/755,479
Granted
Jul 21, 2020
Kind
B2
Abstract

Robot system includes robot main body including robot arm, end effector attached to robot arm, and force sensing device detecting force applied to end effector's tip end, actual reaction-force information generator generating force-sensing information according to force detected by force sensing device, and output force-sensing information as actual reaction-force information, virtual reaction-force information generator outputting force component detected by force sensing device, that has a magnitude proportional to time differentiation value, as virtual reaction-force information, adder configured to output information obtained by adding actual reaction-force information outputted from actual reaction-force information generator to virtual reaction-force information outputted from virtual reaction-force information generator, as synthetic reaction-force information, operating device outputting, when operator is made to sense a force according to synthetic reaction-force information outputted from adder and operator operates, operating information according to operation, and motion controller controlling robot main body's operation according to operating information outputted from operating device.

Claims (27)

1. A robot system, comprising:

a robot main body including a robot arm, an end effector attached to the robot arm, and a force sensing device configured to detect a force applied to a tip end of the end effector;

an actual reaction-force information generator configured to generate force-sensing information according to the force detected by the force sensing device, and output the force-sensing information as actual reaction-force information;

a virtual reaction-force information generator configured to output a component of the force detected by the force sensing device, that has a magnitude proportional to a time differentiation value, as virtual reaction-force information;

an adder configured to output information obtained by adding the actual reaction-force information outputted from the actual reaction-force information generator to the virtual reaction-force information outputted from the virtual reaction-force information generator, as synthetic reaction-force information;

an operating device configured to output, when an operator is made to sense a force according to the synthetic reaction-force information outputted from the adder and the operator operates, operating information according to the operation; and

a motion controller configured to control operation of the robot main body according to the operating information outputted from the operating device.

2. The robot system of claim 1 , wherein the robot main body is a slave arm and the operating device is a master arm, and the slave arm is remotely controlled by the master arm.

3. The robot system of claim 1 , wherein the force sensing device is attached to a base end of the end effector, and is a force sensor configured to detect a force applied to the tip end of the end effector.

4. The robot system of claim 1 , further comprising a mode selector configured to be selectable of any one of operating modes of the motion controller to control the operation of the robot main body, the operating modes including:

an automatic mode in which the operation of the robot main body is controlled using a given preset program, without reflecting the operating information in the operation of the robot main body;

a correctable automatic mode in which the operation of the robot main body is controlled using the given preset program, while the operating information is reflectable in the operation of the robot main body; and

a manual mode in which the operation of the robot main body is controlled using the operating information without using the given program,

wherein, when the operating mode is the correctable automatic mode, the motion controller controls the robot main body to perform operation corrected from the operation related to the given program, in response to the operating information while the robot main body operates using the given program.

5. The robot system of claim 1 , wherein the robot system is applied to a surgical operation system, and the end effector is a surgical instrument.

6. The robot system of claim 2 , further comprising a mode selector configured to be selectable of any one of operating modes of the motion controller to control the operation of the robot main body, the operating modes including:

an automatic mode in which the operation of the robot main body is controlled using a given preset program, without reflecting the operating information in the operation of the robot main body;

a correctable automatic mode in which the operation of the robot main body is controlled using the given preset program, while the operating information is reflectable in the operation of the robot main body; and

a manual mode in which the operation of the robot main body is controlled using the operating information without using the given program,

wherein, when the operating mode is the correctable automatic mode, the motion controller controls the robot main body to perform operation corrected from the operation related to the given program, in response to the operating information while the robot main body operates using the given program.

7. The robot system of claim 3 , further comprising a mode selector configured to be selectable of any one of operating modes of the motion controller to control the operation of the robot main body, the operating modes including:

an automatic mode in which the operation of the robot main body is controlled using a given preset program, without reflecting the operating information in the operation of the robot main body;

a correctable automatic mode in which the operation of the robot main body is controlled using the given preset program, while the operating information is reflectable in the operation of the robot main body; and

a manual mode in which the operation of the robot main body is controlled using the operating information without using the given program,

wherein, when the operating mode is the correctable automatic mode, the motion controller controls the robot main body to perform operation corrected from the operation related to the given program, in response to the operating information while the robot main body operates using the given program.

8. The robot system of claim 2 , wherein the robot system is applied to a surgical operation system, and the end effector is a surgical instrument.

9. The robot system of claim 3 , wherein the robot system is applied to a surgical operation system, and the end effector is a surgical instrument.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 13, 2025
From: MEDICAROID CORPORATION; KAWASAKI JUKOGYO KABUSHIKI KAISHA
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 072005/0013 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2018
From: TOJO, TSUYOSHI; SHIMOMURA, NOBUYASU
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA; MEDICAROID CORPORATION
Reel/Frame 046154/0178 →
Priority Claims (1)
JP 2015-165479 · Aug 25, 2015 · national
Continuity (1)
Related Publication 20180243908A1 · Aug 30, 2018