IP Library › Granted Patent US 10,732,061
Granted Patent B2
US 10,732,061 · App. 15/698,511 · Granted Aug 4, 2020

Unibody flexure design for displacement-based force/torque sensing

Inventors: Adam Reich (Oakland, CA); Stephen Dorow (San Francisco, CA)
Assignee: X Development LLC
G01L3/08
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Quick Facts
Patent No.
US 10,732,061
App. No.
15/698,511
Granted
Aug 4, 2020
Kind
B2
Abstract

An example device includes an inner element, an outer surrounding element, and a plurality of connecting flexural elements coupled between the inner element and the outer surrounding element. The inner element has a plurality of reflective surface areas that are configured to reflect light to a sensor. The outer surrounding element surrounds the inner element. The plurality of connecting flexural elements allow the inner element to move relative to the outer surrounding element.

Claims (37)

1. A device, comprising:

an inner element comprising a plurality of reflective surface areas, wherein the plurality of reflective surface areas are configured to reflect light to a sensor;

an outer surrounding element, wherein the outer surrounding element surrounds the inner element; and

a plurality of connecting flexural elements coupled between the inner element and the outer surrounding element, wherein the plurality of connecting flexural elements to allow the inner element to move relative to the outer surrounding element.

2. The device of claim 1 , wherein the inner element comprises a disk element, and further wherein the outer surrounding element comprises a ring element.

3. The device of claim 1 , further comprising:

the sensor, wherein the sensor is configured to determine at least one component of a load applied on the device based on a change in the light reflected by the reflective surface areas of the inner element.

4. The device of claim 3 , wherein the change in the light reflected by the reflective surface areas is based on one or more deflections of the inner element relative to the outer surrounding element when the load is applied.

5. The device of claim 3 , further comprising a printed circuit board (“PCB”) coupled to the outer surrounding element and configured to move with the outer surrounding element relative to the inner element, wherein the sensor is located on the PCB opposite the plurality of reflective surface areas, and further wherein the PCB comprises a plurality of light-emitting diodes (“LEDs”).

6. The device of claim 1 , wherein each of the plurality of connecting flexural elements comprise an arch flexural element.

7. The device of claim 1 , wherein the plurality of connecting flexural elements comprises six connecting flexural elements spaced symmetrically about the inner element and the outer surrounding element.

8. The device of claim 1 , wherein the plurality of connecting flexural elements are configured to resist relative movement between the inner element and the outer surrounding element.

9. The device of claim 1 , wherein the inner element, the outer surrounding element, and the plurality of connecting flexural elements form a single injection molded flexural component.

10. The device of claim 1 , wherein the outer surrounding element is coaxial with the inner element.

11. The device of claim 1 , wherein the outer surrounding element comprises at least a portion of each of the plurality of connecting flexural elements.

12. The device of claim 1 , further comprising:

a first adapter component coupled to a plurality of first connection points located on the inner element; and

a second adapter component coupled to a plurality of second connection points on the outer surrounding element.

13. The device of claim 12 , wherein the plurality of first connection points of the inner element and the plurality of second connections points of the outer surrounding element are configured to be accessed from a first direction.

14. The device of claim 1 , wherein an end effector of a robotic arm is coupled to a plurality of first connection points located on the inner element, and further wherein another component of the robotic arm is coupled to a plurality of second connection points on the outer surrounding element.

15. The device of claim 1 further comprising:

a seal component adjacent to the plurality of connecting flexural elements between the inner element and the outer surrounding element.

16. The device of claim 15 , wherein the seal component comprises an elastic solid material.

17. A robotic system comprising:

an inner element comprising a plurality of reflective surface areas, wherein the plurality of reflective surface areas are configured to reflect light to a sensor;

an outer surrounding element, wherein the outer surrounding element surrounds the inner element;

a plurality of connecting flexural elements coupled between the inner element and the outer surrounding element, wherein the plurality of connecting flexural elements to allow the inner element to move relative to the outer surrounding element; and

a control system configured to:

receive reflected light data from the sensor;

based on the reflected light data, determine a deflection of the inner element relative to the outer surrounding element when a load is applied on at least one of the inner element or the outer surrounding element of the robotic system; and

based on the deflection determined, determine one or more output parameters of the applied load on the robotic system.

18. The device of claim 1 , wherein each connecting flexural element allows the inner element to move in six degrees-of-freedom relative to the outer surrounding element.

19. The device of claim 1 , wherein the inner element, the outer surrounding element, and the plurality of connecting flexural elements form a single unibody flexure device.

20. A device, comprising:

an inner element comprising a plurality of reflective surface areas, wherein the plurality of reflective surface areas are configured to reflect light to a sensor;

an outer surrounding element, wherein the outer surrounding element surrounds the inner element; and

a plurality of connecting arch flexural elements coupled between the inner element and the outer surrounding element, wherein the plurality of connecting arch flexural elements allow the inner element to move relative to the outer surrounding element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2017
From: REICH, ADAM; DOROW, STEPHEN
To: X DEVELOPMENT LLC
Reel/Frame 043527/0365 →
Continuity (1)
Related Publication 20190072443A1 · Mar 7, 2019
Cited By (1)
US 12,313,485