IP Library Granted Patent US 6,981,372
Granted Patent B2
US 6,981,372 · App. 10/227,261 · Granted Jan 3, 2006

Hydraulic actuating device for a convertible top assembly of a vehicle

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Quick Facts
Patent No.
US 6,981,372
App. No.
10/227,261
Granted
Jan 3, 2006
Kind
B2
Abstract

A hydraulic actuating device for a convertible top assembly of a motor vehicle. The actuating device comprises a hydraulic pump with an associated electric pump motor and one or more hydraulic actuators, each for driving an associated movable part of the convertible top assembly. The actuating device also comprises a control circuit for effecting a defined sequence of movements of the one or more actuators and feedback means, which are connected to the control unit, for feeding information relating to the sequence of movements of an actuator back to the control unit. The feedback means comprise means for measuring the electric power consumed by the pump motor, which means transmit a feedback signal to the control unit.

Claims (28)

1. A hydraulic actuating device for a convertible top assembly of a motor vehicle, which actuating device comprises:

a hydraulic pump with an associated electric pump motor,

one or more hydraulic actuators, each for driving an associated moveable part of the convertible top assembly,

a control circuit for effecting a defined sequence of movements of the one or more hydraulic actuators,

which control circuit includes a feedback circuit for producing a feedback signal corresponding to a magnitude of current intensity in the pump motor and a control unit that receives the feedback signal from the feedback circuit, wherein the feedback signal provides an indication of the sequence of movements of an actuator back to the control unit, and wherein the control unit monitors the feedback signal to control the movements of the one or more hydraulic actuators to effect movement of the convertible top assembly, and wherein the control circuit further establishes within a predetermined time period starting after a predetermined time since activation of the actuator has elapsed weather a moving actuator has reached a limit position by determining whether the feedback signal conforms to at least one of a predefined value and an extent of change.

2. A hydraulic actuating device according to claim 1 , in which at least one electrically actuable hydraulic valve is provided for the purpose of activating the one or more hydraulic actuators, and in which the control unit is connected to the valve and controls the action thereof for the purpose of effecting a defined sequence of movements of the one or more actuators.

3. A hydraulic actuating device according to claim 1 , in which at least one electrically actuable hydraulic valve is provided for the purpose of activating the one or more hydraulic actuators, and in which the control unit is connected to the pump motor and controls the action thereof for the purpose of effecting a defined sequence of movements of the one or more actuators.

4. A hydraulic actuating device according to claim 1 , in which the control unit comprises a memory, in which a predefined, desired behaviour of the feedback signal is stored, which behaviour at least relates to a section of the sequence of movements of the one or more actuators, and in which the control unit is designed to compare the feedback signal with the predefined, desired behaviour of the said feedback signal.

5. A hydraulic actuating device according to claim 1 , in which the control unit comprises a memory, in which a predefined, desired behaviour of the feedback signal is stored, which behaviour at least relates to a section of the sequence of movements of the one or more actuators, and in which the control unit is designed to compare the feedback signal with the predefined, desired behaviour of the said feedback signal, and in which the predefined, desired behaviour comprises at least one of the value of the feedback signal and the extent of change in the feedback signal.

6. A hydraulic actuating device according to claim 1 , in which the control unit is designed—when executing a sequence of movements by the one or more actuators—to establish, on the basis of the feedback signal, on the one hand, and the elapsed time, on the other hand, whether an actuator has reached a defined position.

7. A hydraulic actuating device according to claim 1 , in which the control unit is designed to establish whether a moving actuator has reached a selected position, by detecting whether the feedback signal conforms to at least one of a predefined value and extent of change.

8. A hydraulic actuating device according to claim 1 , in which the control unit is designed to establish whether a moving actuator has reached a limit position, by detecting whether the feedback signal conforms to at least one of a predefined value and extent of change.

9. A hydraulic actuating device according to claim 1 , in which the feedback circuit further comprises at least one position sensor, which is arranged at an actuator for detecting the position of the actuator.

10. A hydraulic actuating device according to claim 1 , in which the feedback circuit further comprises at least one position sensor, which is arranged at a part of the convertible top assembly for detecting the position of the part of the convertible top assembly.

11. A hydraulic actuating device according to claim 1 , in which the feedback circuit further comprises at least one position sensor, and in which the control unit is designed to control the action of the valve means on the basis of both the feedback signal and a second feedback signal from the position sensor.

12. A hydraulic actuating device for a convertible top assembly of a motor vehicle, which actuating device comprises:

a hydraulic pump with an associated electric pump motor,

one or more hydraulic actuators, each for driving an associated moveable part of the convertible top assembly,

a control circuit for effecting a defined sequence of movements of the one or more hydraulic actuators,

which control circuit includes a feedback circuit for producing a feedback signal corresponding to a magnitude of current intensity in the pump motor and a control unit that receives the feedback signal from the feedback circuit, wherein the feedback signal provides an indication of the sequence of movements of an actuator back to the control unit, and wherein the control unit monitors the feedback signal to control the movements of the one or more hydraulic actuators to effect movement of the convertible top assembly, and wherein the feedback circuit further comprises at least one position sensor, which is arranged at an actuator for detecting the position of the actuator, and in which the control unit is designed to establish within a predefined time period whether a moving actuator has reached a limit position by detecting whether the feedback signal conforms to at least one of a predefined value and an extent of change, and in which the predefined period of time within which the control units detects tat the limit position has been reached starts after a second feedback signal from the position sensor indicates that the actuator has reached a predefined position.

13. A hydraulic actuating device according to claim 12 , in which at least one electrically actuable hydraulic valve is provided for the purpose of activating the one or more hydraulic actuators, and in which the control unit is connected to the valve and controls the action thereof for the purpose of effecting a defined sequence of movements of the one or more actuators.

14. A hydraulic actuating device according to claim 12 , in which at least one electrically actuable hydraulic valve is provided for the purpose of activating the one or more hydraulic actuators, and in which the control unit is connected to the pump motor and controls the action thereof for the purpose of effecting a defined sequence of movements of the one or more actuators.

15. A hydraulic actuating device according to claim 12 , in which the control unit comprises a memory, in which a predefined, desired behaviour of the feedback signal is stored, which behaviour at least relates to a section of the sequence of movements of the one or more actuators, and in which the control unit is designed to compare the feedback signal with the predefined, desired behaviour of the said feedback signal.

16. A hydraulic actuating device according to claim 12 , in which the control unit comprises a memory, in which a predefined, desired behaviour of the feedback signal is stored, which behaviour at least relates to a section of the sequence of movements of the one or more actuators, and in which the control unit is designed to compare the feedback signal wit the predefined, desired behaviour of the said feedback signal, and in which the predefined, desired behaviour comprises at least one of the value of the feedback signal and the extent of change in the feedback signal.

17. A hydraulic actuating device according to claim 12 , in which the control unit is designed—when executing a sequence of movements byte one or more actuators—to establish, on the basis of the feedback signal, on the one hand, and the elapsed time, on the other hand, whether an actuator has reached a defined position.

18. A hydraulic actuating device according to claim 12 , in which the control unit is designed to establish whether a moving actuator has reached a selected position, by detecting whether the feedback signal conforms to at least one of a predefined value and extent of change.

19. A hydraulic actuating device according to claim 12 , in which the control unit is designed to establish whether a moving actuator has reached a limit position, by detecting whether the feedback signal conforms to at least one of a predefined value and extent of change.

20. Actuating device according to claim 12 , in which the predefined position lies in the vicinity of the intended limit position of the actuator.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Aug 11, 2021
From: SJC DLF III-S, LLC
To: B.W. ELLIOTT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
Reel/Frame 057151/0118 →
RELEASE OF ABL PATENT SECURITY AGREEMENT Recorded Aug 11, 2021
From: PNC BANK, NATIONAL ASSOCIATION
To: B.W. ELLIOTT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
Reel/Frame 057177/0659 →
ASSIGNMENT FOR SECURITY - - PATENTS Recorded Nov 21, 2019
From: B.W. ELLIOT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
To: SJC DLF III-S, LLC, AS COLLATERAL AGENT
Reel/Frame 051080/0398 →
SECURITY AGREEMENT Recorded Nov 8, 2019
From: B.W. ELLIOTT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
To: PNC BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 050969/0258 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2019
From: ACTUANT CORPORATION
To: POWER PACKER NORTH AMERICA, INC.
Reel/Frame 049862/0028 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2019
From: MENTINK, LAURENTIUS ANDREAS GERARDUS; WIGGEMANS, JOHNNY ANTONIUS JACOBUS
To: ACTUANT CORPORATION
Reel/Frame 049828/0151 →