IP Library Granted Patent US 12685559
Granted Patent B2
US 12685559 · App. 18/114,928 · Granted Jul 21, 2026

Drive assembly for surgical robotic system

Inventors: Alexander Breton (Cambridge, MA); Allison M. Stauffer (Cambridge, MA); Maeve Devlin (East Boston, MA); Eric Kline (Malden, MA); Sammy Khalifa (Medford, MA)
Assignee: Vicarious Surgical Inc.
A61B17/34A61B34/30B25J9/126H02K7/14A61B2034/302
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Quick Facts
Patent No.
US 12685559
App. No.
18/114,928
Granted
Jul 21, 2026
Kind
B2
Abstract

A drive assembly of a surgical robotic system is disclosed herein. In some embodiments, the drive assembly includes a first drive unit having a first drive unit face, a second drive unit having a second drive unit face, and a third drive unit having a third drive unit face. Each drive unit may include a plurality of motors configured to rotate a corresponding one of a plurality of drive elements about rotational axes perpendicular to the respective the respective drive unit face. the first drive unit, the second drive unit, and the third drive unit configured to be positioned about the drive assembly common axis with respect to a vertical plane passing through the drive assembly common axis such that an orientation and position of the first drive unit face mirrors those of second drive unit face, and the third drive unit face is bisected by the vertical plane.

Claims (50)

1 . A drive assembly of a surgical robotic system comprising:

a first drive unit having:

a first drive unit face;

a plurality of first drive elements; and

a plurality of first motors each configured to rotate a corresponding one of the plurality of first drive elements about an axis perpendicular to the first drive unit face;

a second drive unit having:

a second drive unit face;

a plurality of second drive elements; and

a plurality of second motors each configured to rotate a corresponding one of the plurality of second drive elements about an axis perpendicular to the second drive unit face;

a third drive unit having:

a third drive unit face;

a plurality of third drive elements; and

a plurality of third motors each configured to rotate a corresponding one of the plurality of third drive elements about a rotation axis perpendicular to the third drive unit face; and

a drive assembly common axis corresponding to a cavity insertion axis, the first drive unit, the second drive unit, and the third drive unit configured to be positioned about the drive assembly common axis with respect to a vertical plane passing through the drive assembly common axis such that an orientation and position of the first drive unit face mirrors an orientation and position of the second drive unit face and the first drive unit face is opposite and substantially parallel to the second drive unit face, and the third drive unit face is bisected by the vertical plane and is substantially perpendicular to the first drive unit face.

2 . The drive assembly of claim 1 , wherein the first drive unit is configured to drive a first robotic arm assembly, wherein the second drive unit is configured to drive a second robotic arm assembly, and wherein the third drive unit is configured to drive a camera assembly.

3 . The drive assembly of claim 1 , wherein each of the plurality of first motors has a drive shaft perpendicular to the first drive face, each of the plurality of second motors has a drive shaft perpendicular to the second drive face, and each of the plurality of third motors has a drive shaft perpendicular to the third drive face.

4 . The drive assembly of claim 1 , wherein the plurality of first drive elements comprises a plurality of first drive-side crown elements, the plurality of second drive elements comprises a plurality of second drive-side crown elements, and the plurality of third drive elements comprises a plurality of third drive-side crown elements.

5 . The drive assembly of claim 4 , wherein a mating surface of each of the first drive-side crown elements, a mating surface of each of the second drive-side crown elements, and a mating surface of each the third drive-side crown elements is configured to engage a mating surface of a corresponding element of a drape plate to transmit rotational motion of the drive-side crown element to the corresponding element of the draft plate.

6 . The drive assembly of claim 4 , wherein the first drive unit further comprises a plurality of first motor couplings, each first motor coupling connecting one of the plurality of first drive-side crown elements to a corresponding one of the plurality of first motors to rotate the one of the plurality of first drive-side crown elements, each of the plurality of first motor couplings enabling the corresponding one of the plurality of drive-side crown elements to displace with respect to the corresponding one of the plurality of first motors to provide compliance for mating with the drive-side crown element.

7 . The drive assembly of claim 1 , wherein the first drive unit face, the second drive unit face, and the third unit face define a central channel through which the drive assembly common axis extends.

8 . The drive assembly of claim 6 , wherein the first drive unit is configured to connect with a first cassette in the central channel;

wherein the second drive unit is configured to connect with a second cassette in the central channel; and

wherein the third drive unit is configured to connect with a third cassette in the central channel.

9 . The drive assembly of claim 8 , wherein the first drive unit is configured to connect with the first cassette via a first drape plate;

wherein the second drive unit is configured to connect with the second cassette via a second drape plate; and

wherein the third drive unit is configured to connect with the third cassette via a third drape plate.

10 . The drive assembly of claim 8 , wherein the first drive unit is configured to connect with the first cassette at the first drive unit face;

wherein the second drive unit is configured to connect with the second cassette at the second drive unit face; and

wherein the third drive unit is configured to connect with the third cassette at the third drive unit face.

11 . The drive assembly of claim 10 , wherein the first drive unit is configured to connect with the first cassette via a first drape plate disposed between the first drive unit face and the first cassette;

wherein the second drive unit is configured to connect with the second cassette via a second drape plate disposed between the second drive unit face and the second cassette; and

wherein the third drive unit is configured to connect with the third cassette via a third drape plate disposed between third drive unit face and the third cassette.

12 . The drive assembly of claim 9 , wherein the drive assembly has a front end configured to be closer to a patient in use and a back end configured to be further from the patient in use; and

wherein the first drive unit is configured to connect with an interface portion of the first cassette inserted into the central channel from the back end of the drive assembly;

wherein the second drive unit is configured to connect with an interface portion of the second cassette inserted into the central channel from the back end of the drive assembly; and

wherein the third drive unit is configured to connect with an interface portion of the third cassette inserted into the central channel from the back end of the drive assembly.

13 . The drive assembly of claim 12 , wherein the first drive unit is configured to slidably receive the interface portion of the first cassette inserted into the central channel from the back end of the drive assembly in a first direction parallel to the drive assembly common axis;

wherein the second drive unit is configured to slidably receive the interface portion of the second cassette inserted into the central channel from the back end of the drive assembly in a second direction parallel to the drive assembly common axis; and

wherein the third drive unit is configured to slidably receive an interface portion of the third cassette inserted into the central channel from the back end of the drive assembly in a third direction parallel to the drive assembly common axis.

14 . A robotic subsystem for a surgical robotic system, the robotic subsystem comprising:

a drive assembly according to claim 1 , wherein the plurality of first drive elements comprises a plurality of first drive-side crown elements, the plurality of second drive elements comprises a plurality of second drive-side crown elements, and the plurality of third drive elements comprises a plurality of third drive-side crown elements;

a first cassette including a plurality of first spooley assemblies, each of the plurality of first spooley assemblies including a spool and a pulley and configured to be driven by a corresponding one of the plurality of first drive-side crown elements;

a second cassette including a plurality of second spooley assemblies, each of the plurality of second spooley assemblies including a spool and a pulley and configured to be driven by a corresponding one of the plurality of second drive-side crown elements; and

a third cassette including a plurality of third spooley assemblies, each of the plurality of third spooley assemblies including a spool and a pulley and configured to be driven by a corresponding one of the plurality of third drive-side crown elements.

15 . The robotic subsystem of claim 14 , further comprising:

a first drape plate configured to be disposed between the first drive unit and the first cassette;

a second drape plate configured to be disposed between the second drive unit and the second cassette; and

a third drape plate configured to be disposed between the third drive unit and the third cassette.

16 . The robotic subsystem of claim 14 , wherein the first cassette is a first robotic arm assembly, the second cassette is a second robotic arm assembly, and the third cassette is a camera assembly.

17 . The robotic subsystem of claim 16 , wherein the first robotic arm assembly, the second robotic arm assembly, and the camera assembly are configured for insertion via a single trocar.