IP Library Granted Patent US 12,426,973
Granted Patent B2
US 12,426,973 · App. 18/365,268 · Granted Sep 30, 2025

Surgical robot and robotic surgical system

Inventors: Kenichirou Tanimoto (Kobe, JP); Fumiya Matsumoto (Kobe, JP); Tetsuya Nakanishi (Düsseldorf, DE)
Assignee: KAWASAKI JUKOGYO KABUSHIKI KAISHA
A61B34/37A61B34/70A61B90/03A61B2034/305
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Quick Facts
Patent No.
US 12,426,973
App. No.
18/365,268
Granted
Sep 30, 2025
Kind
B2
Abstract

A surgical robot according to this disclosure includes the joint including an electric motor, a first speed reducer configured to reduce a speed of rotation of the electric motor, and to provide the speed-reduced rotation, a gear part configured to further reduce the speed of the rotation provided from the first speed reducer, and to provide the further-speed-reduced rotation, and a second speed reducer configured to reduce the further-speed-reduced rotation provided from the gear part.

Claims (79)

1. A surgical robot comprising:

a robot arm including a free end to which a surgical instrument is attached, and a joint or joints, wherein

the joint or joints include

an electric motor,

a first speed reducer configured to reduce a speed of rotation of the electric motor, and to provide the speed-reduced rotation,

a gear part configured to further reduce the speed of the rotation provided from the first speed reducer, and to provide the further-speed-reduced rotation, and

a second speed reducer configured to reduce the further-speed-reduced rotation provided from the gear part, wherein

the joint or joints include a second joint configured to rotate about a longitudinal direction of the robot arm as a second rotation axis; and

the gear part includes helical gears configured to transmit the rotation of the electric motor in a direction parallel to the rotation axis direction of the electric motor.

2. The surgical robot according to claim 1 , wherein a speed reduction ratio of the second speed reducer is greater than a speed reduction ratio of the first speed reducer.

3. The surgical robot according to claim 2 , wherein

the first speed reducer includes a planetary speed reducer; and

the second speed reducer includes at least one of wave gear reducer, an RV speed reducer and a Cyclo drive reducer (registered trademark).

4. The surgical robot according to claim 2 , wherein a speed reduction ratio of the gear part is smaller than the speed reduction ratio of the second speed reducer and the speed reduction ratio of the first speed reducer.

5. The surgical robot according to claim 1 , wherein the electric motor and the first speed reducer are formed integrally with each other.

6. The surgical robot according to claim 1 , wherein

the robot arm further includes a cylindrical housing that accommodates the electric motor, the first speed reducer, the gear part, and the second speed reducer; and

a rotation axis of the electric motor extends in a longitudinal direction of the cylindrical housing.

7. The surgical robot according to claim 1 , wherein the joint or joints include a first joint configured to rotate about a first rotation axis to be able to bend the robot arm; and

the gear part includes bevel gears configured to transmit the rotation of the electric motor in a direction orthogonal to a rotation axis direction of the electric motor.

8. The surgical robot according to claim 7 , wherein the robot arm further includes a cylindrical first housing that accommodates the electric motor, the first speed reducer, the bevel gears, and the second speed reducer;

the electric motor, the first speed reducer and the gear part are arranged in the first housing on one side with respect to the first center line extending in a longitudinal direction of the cylindrical first housing and passing through a center of the first housing; and

the second speed reducer overlaps the first center line.

9. The surgical robot according to claim 1 , wherein the robot arm further includes a cylindrical second housing that accommodates the electric motor, the first speed reducer, the helical gears, and the second speed reducer;

the electric motor, the first speed reducer and one of the helical gears are arranged in the second housing on one side with respect to a second center line extending in a longitudinal direction of the cylindrical second housing and passing through a center of the second housing; and

another of the helical gears and the second speed reducer overlaps the second center line of the second housing.

10. A surgical robot comprising:

a robot arm including a free end to which a surgical instrument is attached, and a joint or joints, wherein

the joint or joints include

an electric motor,

a first speed reducer configured to reduce a speed of rotation of the electric motor, and to provide the speed-reduced rotation,

a gear part configured to further reduce the speed of the rotation provided from the first speed reducer, and to provide the further-speed-reduced rotation, and

a second speed reducer configured to reduce the further-speed-reduced rotation provided from the gear part, wherein

a plurality of joints are provided as the joint or joints in the robot arm,

the first speed reducers of the plurality of joints have a common speed reduction ratio,

the second speed reducers of the plurality of joints have a common speed reduction ratio, and

the gear parts of the plurality of joints have reduction ratios different from each other.

11. A surgical robot comprising:

a robot arm including a free end to which a surgical instrument is attached, and a joint or joints, wherein

the joint or joints include

an electric motor,

a first speed reducer configured to reduce a speed of rotation of the electric motor, and to provide the speed-reduced rotation,

a gear part configured to further reduce the speed of the rotation provided from the first speed reducer, and to provide the further-speed-reduced rotation, and a second speed reducer configured to reduce the further-speed-reduced rotation provided from the gear part, wherein

the joint is a bending joint,

a rotation axis of the electric motor agrees with a rotation axis of the first speed reducer,

a rotation axis of the bending joint agrees with a rotation axis of the second speed reducer,

the rotation axis of the first speed reducer and the rotation axis of the second speed reducer are orthogonal to each other, and

the gear part transmits rotation of the first speed reducer into a direction orthogonal to the rotation axis of the first speed reducer.

12. A surgical robot according to claim 1 , comprising:

a robot arm including a free end to which a surgical instrument is attached, and a joint or joints, wherein

the joint or joints include

an electric motor,

a first speed reducer configured to reduce a speed of rotation of the electric motor, and to provide the speed-reduced rotation,

a gear part configured to further reduce the speed of the rotation provided from the first speed reducer, and to provide the further-speed-reduced rotation, and a second speed reducer configured to reduce the further-speed-reduced rotation provided from the gear part, wherein

the joint is a twisting joint,

a rotation axis of the electric motor agrees with a rotation axis of the first speed reducer,

a rotation axis of the twisting joint agrees with a rotation axis of the second speed reducer,

the rotation axis of the first speed reducer and the rotation axis of the second speed reducer are parallel to each other, and

the gear part transmits rotation of the first speed reducer into a direction parallel to the rotation axis of the first speed reducer.

13. A surgical robot comprising a robot arm including a fore end to which a surgical instrument is attached, and bending and twisting joints, wherein

the bending joint includes

a first electric motor,

a first speed reducer configured to reduce a speed of rotation of the first electric motor, and to provide the speed-reduced rotation,

a first gear part configured to further reduce the speed of the rotation provided from the first speed reducer, and to provide the further-speed-reduced rotation, and

a second speed reducer configured to reduce the further-speed-reduced rotation provided from the first gear part, and

the twisting joint includes

a second electric motor,

a third speed reducer configured to reduce a speed of rotation of the second electric motor, and to provide the speed-reduced rotation,

a second gear part configured to further reduce the speed of the rotation provided from the third speed reducer, and to provide the further-speed-reduced rotation, and

a fourth speed reducer configured to reduce the further-speed-reduced rotation provided from the second gear part.

14. The surgical robot according to claim 13 , wherein each of the first and third speed reducers includes a planetary speed reducer;

the first gear part includes bevel gears;

the second gear part includes helical gears; and

each of the second and fourth speed reducers includes at least one of wave gearing reducer, an RV speed reducer and a Cyclo drive reducer (registered trademark).

15. The surgical robot according to claim 13 , wherein a speed reduction ratio of the second speed reducer is greater than a speed reduction ratio of the first speed reducer, a speed reduction ratio of the fourth speed reducer is greater than a speed reduction ratio of the third speed reducer.

16. The surgical robot according to claim 15 further comprising each of the first and third speed reducers includes a planetary speed reducer, wherein

each of the second and fourth speed reducers includes at least one of wave gearing reducer, an RV speed reducer and a Cyclo drive reducer (registered trademark).

17. The surgical robot according to claim 15 , wherein a speed reduction ratio of the first gear part is smaller than a speed reduction ratio of the first speed reducer, and a speed reduction ratio of the second gear part is smaller than a speed reduction ratio of the third speed reducer.

18. The surgical robot according to claim 17 , wherein the first gear part includes bevel gears, and the second gear part includes helical gears.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2023
From: TANIMOTO, KENICHIROU; MATSUMOTO, FUMIYA; NAKANISHI, TETSUYA
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 065263/0694 →
Priority Claims (1)
JP 2022-125756 · Aug 5, 2022 · national
Continuity (1)
Related Publication 20240041549A1 · Feb 8, 2024
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