IP Library Granted Patent US 9,983,071
Granted Patent B2
US 9,983,071 · App. 15/178,630 · Granted May 29, 2018

Tendon actuator unit

Inventors: Jason Lee (Houston, TX); Austin Lovan (Webster, TX); Roger Rovekamp (League City, TX)
Assignee: OCEANEERING INTERNATIONAL, INC.
G01L1/00F16H55/00A61B34/30G01N3/08
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 9,983,071
App. No.
15/178,630
Granted
May 29, 2018
Kind
B2
Abstract

A tendon actuator unit comprises a housing; a pulley disposed within the housing, the pulley comprising a screw-like groove about a predetermined portion of an outer surface of the pulley configured to accept a predetermined length of a cable; a motor disposed in or proximate to the housing and operatively in communication with the pulley; one or more online cable sensors; one or more sensor rollers; and one or more conduit force sensors.

Claims (31)

1. A tendon actuator unit, comprising:

a. a housing;

b. a pulley disposed within the housing, the pulley comprising a screw-like groove about a predetermined portion of an outer surface of the pulley, the pulley configured to accept a predetermined length of a cable about its outer surface at least partially within the screw-like groove;

c. a motor disposed proximate the housing and operatively in communication with the pulley;

d. a radial bearing;

e. a sensor bracket connected to the housing;

f. an online cable sensor disposed within the sensor bracket, the online cable sensor comprising a sensor output;

g. a sensor roller operatively in communication with the online cable sensor and configured to be operatively in communication with the cable when the cable is present; and

h. a conduit force sensor connected to sensor bracket and configured to be operatively in communication with the cable when the cable is present, the conduit force sensor comprising a cable conduit adapted to accept the cable therethrough.

2. The tendon actuator unit of claim 1 , wherein the online cable sensor comprises a modular sensor.

3. The tendon actuator unit of claim 1 , further comprising a distal cable sensor connected to the conduit.

4. An integrated tendon actuator unit, comprising:

a. a housing;

b. a pulley disposed fully within the housing, the pulley comprising a screw-like groove about a predetermined portion of an outer surface of the pulley, the pulley configured to accept a predetermined length of a cable about its outer surface at least partially within the screw-like groove;

c. a pulley retainer in communication with the pulley, the pulley retainer connected to the housing;

d. a pulley washer disposed intermediate the pulley and the pulley retainer;

e. an online cable sensor disposed within the housing, the online cable sensor adapted to indirectly measure tendon force, the online cable sensor comprising a sensor output;

f. a sensor roller disposed within the housing, the sensor roller operatively in communication with the online cable sensor and configured to be operatively in communication with the cable when the cable is present;

g. a conduit force sensor connected to the housing and configured to be operatively in communication with the cable when the cable is present, the conduit force sensor comprising a cable conduit adapted to accept the cable therethrough, the conduit force sensor adapted to measure compression force from conduit as the cable attempts to straighten itself; and

h. a motor disposed proximate to the housing, the motor operatively in communication with the pulley.

5. The tendon actuator unit of claim 4 , wherein the sensor comprises an integrated sensor.

6. The tendon actuator unit of claim 4 , further comprising a distal sensor operatively in communication with the cable, the distal sensor disposed at a predetermined location away from the housing.

7. The tendon actuator unit of claim 4 , further comprising a proximal cable sensor connected to the conduit.

8. The tendon actuator unit of claim 4 , further comprising a retaining ring in communication with the conduit force sensor to secure the conduit force sensor to the housing.

9. The tendon actuator unit of claim 4 , further comprising a sensor clamp adapted to secure the online cable sensor to the housing.

10. The tendon actuator unit of claim 4 , wherein the online cable sensor is positioned within the housing at a predetermined position based on sensor load capabilities and the cable's tangential angle with respect to the pulley.

11. The tendon actuator unit of claim 4 , wherein the online cable sensor is cantilevered from the pulley to account for the entire pulley length and changes in tendon angle.

12. The tendon actuator unit of claim 4 , wherein the sensor roller is configured to allow the cable to slide along the sensor roller.

13. The tendon actuator unit of claim 12 , wherein the cable is configured to travel from a first pulley groove to a last pulley groove.

14. The tendon actuator unit of claim 4 , wherein the housing comprises a sensor port configured to accept the conduit force sensor therein.

15. The tendon actuator unit of claim 4 , wherein the pulley retainer is removably connected to the housing.

Assignments (1)
SECURITY INTEREST Recorded Apr 14, 2022
From: OCEANEERING INTERNATIONAL, INC.; GRAYLOC PRODUCTS, L.L.C.; MARINE PRODUCTION SYSTEMS, LTD.; OCEANEERING CANADA LIMITED
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 059783/0204 →
Continuity (2)
Provisional Application 62173589 · Jun 10, 2015
Related Publication 20160363517A1 · Dec 15, 2016