IP Library Granted Patent US 11,200,762
Granted Patent B2
US 11,200,762 · App. 16/070,412 · Granted Dec 14, 2021

Operational monitoring and control system for a power take off

Inventors: Mark A. Bordwell (Olive Branch, MS); Jeffrey Dale King (Olive Branch, MS); Walter Harris (Olive Branch, MS)
Assignee: Parker-Hannifin Corporation
G07C5/0825B60K17/02B60K17/28G07C5/0808G07C5/0833B60Y2300/423B60Y2306/15
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Quick Facts
Patent No.
US 11,200,762
App. No.
16/070,412
Granted
Dec 14, 2021
Kind
B2
Abstract

A combined power take off and controller includes a power take off including a housing that is adapted to be supported on a housing of a source of rotational energy, an input mechanism that extends through an opening provided in the housing and is adapted to be rotatably driven by the source of rotational energy whenever the source of rotational energy is operated, and an output mechanism that is rotatably driven by the input mechanism and that is adapted to be connected to a rotatably driven accessory. The controller is responsive to one or more operating conditions of the power take off for monitoring and/or controlling the operation thereof.

Claims (28)

1. An assembly comprising:

a power take off including a housing that is adapted to be supported on a housing of a source of rotational energy, an input mechanism that extends through an opening provided in the housing and is adapted to engage and be rotatably driven by the source of rotational energy whenever the source of rotational energy is operated, an output mechanism that is adapted to rotatably drive a rotatably driven accessory, and a clutch that can be selectively engaged to cause the input mechanism to rotatably drive the output mechanism and disengaged to cause the input mechanism to not rotatably drive the output mechanism;

a first sensor that generates a signal that is representative of a rotational speed of the input mechanism;

a second sensor that generates a signal that is representative of a rotational speed of the output mechanism; and

a controller that is responsive to the signals from the first sensor and the second sensor for generating an indication that a problem has occurred when either:

(1) the rotational speeds of the input mechanism and the output mechanism differ by more than a predetermined amount when the clutch is engaged;

(2) the rotational speed of the output mechanism is more than a predetermined amount when the clutch is disengaged;

(3) the rotational speeds of the input mechanism and the output mechanism change by more than a predetermined amount when the clutch is engaged; or

(4) the output mechanism is not rotating when the clutch is engaged.

2. The assembly defined in claim 1 wherein the controller generates the indication that the problem has occurred when the rotational speeds of the input mechanism and the output mechanism differ by more than a predetermined amount when the clutch is engaged.

3. The assembly defined in claim 1 wherein the controller generates the indication that the problem has occurred when the rotational speed of the output mechanism is more than a predetermined amount when the clutch is disengaged.

4. The assembly defined in claim 1 wherein the controller generates the indication that the problem has occurred when the rotational speeds of the input mechanism and the output mechanism change by more than a predetermined amount when the clutch is engaged.

5. The assembly defined in claim 1 wherein the controller generates the indication that the problem has occurred when the output mechanism is not rotating when the clutch is engaged.

6. An assembly comprising:

a pump that, when operating properly, generates a flow of fluid when rotatably driven;

a power take off including a housing that is adapted to be supported on a housing of a source of rotational energy, an input mechanism that extends through an opening provided in the housing and is adapted to engage and be rotatably driven by the source of rotational energy whenever the source of rotational energy is operated, an output mechanism that rotatably drives the hydraulic pump, and a clutch that can be selectively engaged to cause the input mechanism to rotatably drive the output mechanism and disengaged to cause the input mechanism to not rotatably drive the output mechanism;

a first sensor that generates a signal that is representative of a rotational speed of the input mechanism;

a second sensor that generates a signal that is representative of a rotational speed of the output mechanism;

a third sensor that generates a signal that is representative of the flow of fluid generated by the pump; and

a controller that is responsive to the signals from the first, second, and third sensors for generating an indication that a problem has occurred when either:

(1) the rotational speeds of the input mechanism and the output mechanism differ by more than a predetermined amount when the clutch is engaged;

(2) the rotational speed of the output mechanism is more than a predetermined amount when the clutch is disengaged;

(3) the rotational speeds of the input mechanism and the output mechanism change by more than a predetermined amount when the clutch is engaged; or

(4) the output mechanism is not rotating when the clutch is engaged.

7. The assembly defined in claim 6 wherein the controller generates the indication that the problem has occurred when the rotational speeds of the input mechanism and the output mechanism differ by more than a predetermined amount when the clutch is engaged.

8. The assembly defined in claim 6 wherein the controller generates the indication that the problem has occurred when the rotational speed of the output mechanism is more than a predetermined amount when the clutch is disengaged.

9. The assembly defined in claim 6 wherein the controller generates the indication that the problem has occurred when the rotational speeds of the input mechanism and the output mechanism change by more than a predetermined amount when the clutch is engaged.

10. The assembly defined in claim 6 wherein the controller generates the indication that the problem has occurred when the output mechanism is not rotating when the clutch is engaged.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2018
From: BORDWELL, MARK A.; KING, JEFFREY DALE; HARRIS, WALTER
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 046814/0806 →
Continuity (3)
Provisional Application 62385972 · Sep 10, 2016
Provisional Application 62286391 · Jan 24, 2016
Related Publication 20190019359A1 · Jan 17, 2019
Cited By (2)
US 12,651,911 US 12,735,969