IP Library Granted Patent US 10,821,046
Granted Patent B2
US 10,821,046 · App. 16/060,580 · Granted Nov 3, 2020

Robot mounting arrangement

Inventors: Luke David Ronald Hares (Cambridge, GB); Keith Marshall (Cambridge, GB)
Assignee: CMR SURGICAL LIMITED
A61G13/101A61B34/70A61B90/57B25J5/007B25J9/0009B25J9/0018B25J9/047A61B34/30A61B90/50A61B2017/00477A61B2090/571B25J9/162
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Quick Facts
Patent No.
US 10,821,046
App. No.
16/060,580
Granted
Nov 3, 2020
Kind
B2
Abstract

A surgical robotic system comprising: a surgical robot arm ( 7, 8, 9 ) having at least six degrees of freedom, the arm having a distal end for attachment to a surgical tool ( 5 ) and a proximal end; and a mounting structure ( 10, 11, 12 ) configured to mate to the proximal end of the arm for holding the proximal end of the arm spatially fixed, the mounting structure comprising an electrical connection for powering the surgical robot arm; wherein the system comprises a manually operable latching mechanism ( 6 ) whereby the arm can be attached to and released from the mounting structure.

Claims (21)

1. A surgical robotic system comprising:

a surgical robot arm having at least six degrees of freedom, the arm having a distal end configured to attach to a surgical tool and a proximal end; and

amounting structure embedded within an item of operating theatre furniture or embedded within the floor, wall or ceiling of an operating theatre and configured to mate to the proximal end of the arm so as to hold the proximal end of the arm spatially fixed, the mounting structure being configured to receive the proximal end of the arm in a direction along a longitudinal axis of the arm and comprising an electrical connection configured to power the robot arm;

wherein the system comprises a manually operable latching mechanism whereby the arm can be attached to and released from the mounting structure.

2. The surgical robotic system of claim 1 , wherein the manually operable latching mechanism is integral with the surgical robot arm.

3. The surgical robotic system of claim 1 , wherein the manually operable latching mechanism is integral with the mounting structure.

4. The surgical robotic system of claim 1 , wherein the mounting structure comprises a socket.

5. The surgical robotic system of claim 1 , wherein the mounting structure has side walls that abut the proximal end of the arm when the arm is engaged with the mounting structure.

6. The surgical robotic system of claim 1 , wherein the mounting structure comprises a frustoconical socket.

7. The surgical robotic system of claim 1 , wherein the mounting structure comprises a communication connection configured to convey data signals to or from the surgical robot arm.

8. A suite of surgical robotic equipment comprising:

a surgical robot arm having at least six degrees of freedom, the arm having a distal end configured to attach to a surgical tool and a proximal end; and

a plurality of mounting structures, each mounting structure being embedded within an item of operating theatre furniture or embedded within the floor, wall or ceiling of an operating theatre and configured to mate to the proximal end of the surgical robot arm so as to hold the proximal end of the arm spatially fixed, each mounting structure being configured to receive the proximal end of the arm in a direction along a longitudinal axis of the arm and comprising an electrical connection configured to power the robot arm;

wherein the suite comprises a manually operable latching mechanism whereby the arm can be attached to and released from any of the plurality of mounting structures.

9. The suite of surgical robotic equipment of claim 8 , wherein the manually operable latching mechanism is integral with the robot arm.

10. The suite of surgical robotic equipment of claim 8 , wherein the manually operable latching mechanism is integral with the mounting structure.

11. The suite of surgical robotic equipment of claim 8 , wherein each of the plurality of mounting structures comprises a socket.

12. The suite of surgical robotic equipment of claim 8 , wherein each of the plurality of mounting structures has side walls that abut the proximal end of the arm when the arm is engaged with the mounting structure.

13. The suite of surgical robotic equipment of claim 8 , wherein each of the plurality of mounting structures comprises a frustoconical socket.

14. The suite of surgical robotic equipment of claim 8 , wherein each of the plurality of mounting structures provides a communication connection configured to convey data signals to or from the surgical robot arm.

15. The suite of surgical robotic equipment of claim 8 , comprising at least one further surgical robot arm having at least six degrees of freedom, each further arm having a distal end configured to attach to a surgical tool and a proximal end, the proximal end of the at least one further arm being configured to mate to each of the plurality of mounting structures.

Assignments (2)
SECURITY INTEREST Recorded Mar 25, 2025
From: CMR SURGICAL LIMITED
To: TRINITY CAPITAL INC., AS AGENT
Reel/Frame 070629/0172 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2018
From: HARES, LUKE DAVID RONALD; MARSHALL, KEITH
To: CMR SURGICAL LIMITED
Reel/Frame 046028/0919 →
Priority Claims (1)
GB 1521813.4 · Dec 10, 2015 · national
Continuity (1)
Related Publication 20190000706A1 · Jan 3, 2019
Cited By (15)
US 12,193,769 US 12,207,818 US 12,213,669 US 12,279,770 US 12,279,771 US 12,290,257 US 12,357,307 US 12,364,477 US 12,369,910 US 12,415,269 US 12,458,533 US 12,514,659 US 12,515,318 US 12,616,534 US 12,623,341