IP Library Granted Patent US 8,360,387
Granted Patent B2
US 8,360,387 · App. 12/732,321 · Granted Jan 29, 2013

Actuator including mechanism for converting rotary motion to linear motion

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Quick Facts
Patent No.
US 8,360,387
App. No.
12/732,321
Granted
Jan 29, 2013
Kind
B2
Abstract

An active vibration control device is provided that is configured to control the position of a body relative to a reference frame. The control device includes sensors that provide input signals corresponding to movement of the body in at least one direction, a rotary motor configured to control the position of the body, and four-bar linkage connecting the rotary motor to the body. The linkage converts the rotary motion output from the motor into a linear motion of the body. The controller, based on the input signals from the reference frame sensors, provides control signals to the rotary motor which acts through the linkage to position the body in the at least one direction relative to the position of the reference frame.

Claims (25)

1. An active vibration control device configured to control the position of a body, the device comprising:

at least one sensor configured to provide input signals corresponding to movement of the body in at least one direction;

a rotary motor configured to control the position of the body, and

a linkage comprising at least two pivotably-joined links connecting the rotary motor to the body, the linkage connected to and driven by the rotary motor, the linkage configured to convert rotary motion output from the motor into a linear motion of the body,

a controller which, based on the input signals from the at least one sensor, provides control signals to the rotary motor which acts through the linkage to position the body in the at least one direction.

2. The active vibration control device of claim 1 wherein the torque required by the motor to provide a constant force at the body is substantially constant over a 100 degree angular rotation of an output shaft of the rotary motor.

3. The active vibration control device of claim 1 wherein the linkage is configured to convert the rotary motion of an output shaft of the motor to linear motion such that the motion of the body is substantially proportional to the angular displacement of the output shaft over a 180 degree rotation of the output shaft.

4. The active vibration control device of claim 1 wherein the linkage is configured to convert the rotary motion of an output shaft of the motor into linear motion such that the torque required by the motor to produce a constant force at the body is substantially constant over a range of displacement of the body of at least four inches.

5. The active vibration control device of claim 1 wherein the controller provides output signals to the rotary motor which acts through the linkage to position the body such that an attitude of the body controlled.

6. The active vibration control device of claim 1 wherein the linkage is connected to an output shaft of the motor on one side of the motor, and the device further comprises a second linkage connected to the output shaft of the motor on a side of the motor opposed to the one side.

7. The active vibration control device of claim 1 further comprising a second rotary motor and a second linkage configured to control the position of the body, the first and second rotary motors arranged such that their respective rotor axes are parallel.

8. The active vibration control device of claim 1 further comprising a second rotary motor and a second linkage configured to control the position of the body, the first and second rotary motors arranged such that their respective rotor axes are co-linear.

9. The active vibration control device of claim 1 wherein the body comprises a vehicle seat.

10. The active vibration control device of claim 9 wherein the seat is disposed in a vehicle, and the motor, fixed relative to a floor of the vehicle, is disposed between the floor and the seat.

11. The active vibration control device of claim 9 wherein the linear travel of the seat is at least 4 inches.

12. The active vibration control device of claim 1 wherein the controller provides control signals to the rotary motor to minimize the acceleration sensed by the at least one sensor.

13. An active vibration control device configured to control the position of a body, the device comprising:

at least one sensor configured to provide input signals corresponding to movement of the body in at least one direction;

a rotary motor configured to control the position of the body, and

a linkage comprising at least two pivotably-joined links connecting the rotary motor to the body, the linkage configured to convert rotary motion output from the motor into a linear motion of the body,

a controller which, based on the input signals from the at least one sensor, provides control signals to the rotary motor which acts through the linkage to position the body in the at least one direction, wherein;

the body comprises a vehicle seat, the seat is disposed in a vehicle, and the motor is disposed between a floor in the vehicle and the seat.

14. The active vibration control device of claim 13 wherein the controller provides output signals to the rotary motor which acts through the linkage to position the seat such that an attitude of the seat controlled.

15. The active vibration control device of claim 13 wherein the linkage is connected to an output shaft of the motor on one side of the motor, and the device further comprises a second linkage connected to the output shaft of the motor on a side of the motor opposed to the one side.

16. The active vibration control device of claim 13 wherein the linear travel of the seat is at least 4 inches.

Assignments (8)
SECURITY INTEREST Recorded Sep 10, 2025
From: CLEARMOTION ACQUISITION I LLC; CLEARMOTION, INC.
To: ACADIA WOODS PARTNERS, LLC
Reel/Frame 072836/0921 →
TERMINATION OF AMENDED & RESTATED PATENT SECURITY AGREEMENT Recorded Feb 12, 2023
From: FRANKLIN STRATEGIC SERIES - FRANKLIN GROWTH OPPORTUNITIES FUND; FRANKLIN STRATEGIC SERIES - FRANKLIN SMALL CAP GROWTH FUND; FRANKLIN TEMPLETON INVESTMENT FUNDS - FRANKLIN U.S. OPPORTUNITIES FUND; NEWVIEW CAPITAL FUND I, LP; WIL FUND I, L.P.; BRIDGESTONE AMERICAS, INC.; MICROSOFT GLOBAL FINANCE; FHW LIMITED PARTNERSHIP; TEW LIMITED PARTNERSHIP; THE PRIVATE SHARES FUND; BRILLIANCE JOURNEY LIMITED
To: CLEARMOTION, INC.; CLEARMOTION ACQUISITION I LLC
Reel/Frame 062705/0684 →
TERMINATION OF AMENDED & RESTATED PATENT SECURITY AGREEMENT Recorded Feb 8, 2023
From: ACADIA WOODS PARTNERS, LLC
To: CLEARMOTION, INC.; CLEARMOTION ACQUISITION I LLC
Reel/Frame 062687/0713 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ADDING ASSIGNEE PREVIOUSLY RECORDED AT REEL: 059361 FRAME: 0433. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT. Recorded Apr 6, 2022
From: CLEARMOTION, INC.; CLEARMOTION ACQUISITION I LLC
To: ACADIA WOODS PARTNERS, LLC; FRANKLIN STRATEGIC SERIES - FRANKLIN GROWTH OPPORTUNITIES FUND; FRANKLIN TEMPLETON INVESTMENT FUNDS - FRANKLIN U.S. OPPORTUNITIES FUND; FRANKLIN STRATEGIC SERIES - FRANKLIN SMALL CAP GROWTH FUND; NEWVIEW CAPITAL FUND I, LP; WIL FUND I, L.P.; BRIDGESTONE AMERICAS, INC.; MICROSOFT GLOBAL FINANCE; FHW LIMITED PARTNERSHIP; TEW LIMITED PARTNERSHIP; THE PRIVATE SHARES FUND; BRILLIANCE JOURNEY LIMITED
Reel/Frame 060130/0001 →
AMENDED & RESTATED PATENT SECURITY AGREEMENT Recorded Mar 11, 2022
From: CLEARMOTION, INC.; CLEARMOTION ACQUISITION I LLC
To: ACADIA WOODS PARTNERS, LLC
Reel/Frame 059361/0433 →
PATENT SECURITY AGREEMENT Recorded Jan 4, 2022
From: CLEARMOTION, INC.
To: NEWVIEW CAPITAL FUND I, L.P.; ACADIA WOODS PARTNERS, LLC; WIL FUND I, L.P.; FRANKLIN STRATEGIC SERIES - FRANKLIN GROWTH OPPORTUNITIES FUND; FRANKLIN TEMPLETON INVESTMENT FUNDS - FRANKLIN U.S. OPPORTUNITIES FUND; FRANKLIN STRATEGIC SERIES - FRANKLIN SMALL CAP GROWTH FUND
Reel/Frame 058644/0007 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 20, 2018
From: BOSE CORPORATION
To: CLEARMOTION ACQUISITION I LLC
Reel/Frame 044979/0960 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2010
From: BREEN, JOHN J.; HAYNER, MARK A.
To: BOSE CORPORATION
Reel/Frame 024308/0401 →