Anti-theft electronic parking brake actuator
10773694 ยท 2020-09-15
Assignee
Inventors
Cpc classification
B60R25/1001
PERFORMING OPERATIONS; TRANSPORTING
B60R25/102
PERFORMING OPERATIONS; TRANSPORTING
B60R25/08
PERFORMING OPERATIONS; TRANSPORTING
B60T7/16
PERFORMING OPERATIONS; TRANSPORTING
B60T2250/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60T7/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An anti-theft electronic parking brake actuator includes a key switch for activating and de-activating the parking brake, and preventing theft of a vehicle. The electronic parking brake actuator further includes a cell phone interface to both notify an owner when the parking brake is released. The electronic parking brake actuator may further include a GPS device monitoring vehicle location and notifying the owner if the vehicle is moved while the parking brake is actuated, and reporting vehicle location.
Claims
1. An electronic parking brake actuator comprising: a linear actuator mechanically connected to mechanical parking brakes; a controller electronically connected to the linear actuator and providing a control signal to the linear actuator; a key switch electronically connected to the controller, the key switch requiring a key to change the switch from an ON position and an OFF position, the mechanical parking brakes activated in the ON position and de-activated in the OFF position; and a wireless remote control, wherein the parking brake may be released remotely by the remote control without switching the key switch from ON to OFF, wherein: the controller includes a Global Positioning Satellite (GPS) module sensing vehicle position and providing an alarm if the vehicle is moved while the electronic parking brake is ON; and the GPS module sensing vehicle position and wirelessly transmits the alarm to the remote control if the vehicle is moved while the electronic parking brake is ON.
2. The electronic parking brake actuator of claim 1, further including a wireless remote control, wherein the parking brake may be released remotely by the wireless remote control without switching the key switch from ON to OFF.
3. The electronic parking brake actuator of claim 2, further wherein the wireless remote control is a cell phone.
4. The electronic parking brake actuator of claim 1, wherein the GPS module sensing vehicle position and provides vehicle location to the remote control if the vehicle is moved while the electronic parking brake is ON.
5. The electronic parking brake actuator of claim 1, wherein the GPS module senses the vehicle position and wirelessly transmits the alarm to the remote control if the vehicle is moved while the electronic parking brake is ON without front wheels or rear wheels turning.
6. The electronic parking brake actuator of claim 1, wherein the GPS module senses the vehicle position and wirelessly transmits the alarm to the remote control if the vehicle is dragged onto a car hauler while the electronic parking brake is ON.
7. An electronic parking brake actuator comprising: a linear actuator mechanically connected to mechanical parking brakes; a controller electronically connected to the linear actuator and providing a control signal to the linear actuator; a key switch requiring a key, the key switch electronically connected to the controller, the key switch having an ON position and an OFF position, the mechanical parking brakes activated in the ON position and de-activated in the OFF position; and a Global Positioning Satellite (GPS) module sensing vehicle position and transmitting a wireless alarm to a vehicle owner if the vehicle is moved while the electronic parking brake is ON.
8. The electronic parking brake actuator of claim 7, wherein the GPS module senses the vehicle position and transmitting a wireless alarm to the vehicle owner if the vehicle is moved while the electronic parking brake is ON without front wheels or rear wheels turning.
9. The electronic parking brake actuator of claim 7, wherein the GPS module senses the vehicle position and transmitting a wireless alarm to the vehicle owner if the vehicle is dragged onto a car hauler while the electronic parking brake is ON.
10. An electronic parking brake actuator comprising: a linear actuator mechanically connected to mechanical parking brakes; a controller electronically connected to the linear actuator and providing a control signal to the linear actuator; a key switch requiring a key electronically connected to the controller, the key switch requiring a key to change the switch from an ON position and an OFF position, the mechanical parking brakes activated in the ON position and de-activated in the OFF position; a wireless remote control, wherein the parking brake may be released remotely by the wireless remote control without switching the key switch from ON to OFF; and a Global Positioning Satellite (GPS) module sensing vehicle position and wirelessly transmitting an alarm and vehicle position to the wireless remote control if the vehicle is moved while the electronic parking brake is ON.
11. The electronic parking brake actuator of claim 10, wherein the GPS module senses the vehicle position and wirelessly transmits the alarm to the remote control if the vehicle is moved while the electronic parking brake is ON without front wheels or rear wheels turning.
12. The electronic parking brake actuator of claim 10, wherein the GPS module senses the vehicle position and wirelessly transmits the alarm to the remote control if the vehicle is dragged onto a car hauler while the electronic parking brake is ON.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) The above and other aspects, features and advantages of the present invention will be more apparent from the following more particular description thereof, presented in conjunction with the following drawings wherein:
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(9) Corresponding reference characters indicate corresponding components throughout the several views of the drawings.
DETAILED DESCRIPTION OF THE INVENTION
(10) The following description is of the best mode presently contemplated for carrying out the invention. This description is not to be taken in a limiting sense, but is made merely for the purpose of describing one or more preferred embodiments of the invention. The scope of the invention should be determined with reference to the claims.
(11) Where the terms about or generally are associated with an element of the invention, it is intended to describe a feature's appearance to the human eye or human perception, and not a precise measurement.
(12) A vehicle 10 having a parking brake for resisting rotation of the front wheels 12 or rear wheels 14 is shown in
(13) A first prior art manually actuated parking brake system 20a is shown in
(14) A second prior art manually actuated parking brake system 20b is shown in
(15) An electrically actuated parking brake system 40 according to the present invention is shown in
(16) An indicator 53 is connected to the intelligent controller 48 by wires 51. The indicator 53 provides a visual or audible indication that the electrically actuated parking brake system 40 has been turned ON or OFF, and when the electrically actuated parking brake system 40 completes the transition from OFF to ON or from ON to OFF. For example, the indicator 53 may be a light and the light blinks during the transition from OFF to ON or from ON to OFF. In one embodiment, the light blinks during the transition from OFF to ON and is a solid when the electrically actuated parking brake system 40 is ON, and the light blinks during the transition from ON to OFF and is a solid when the electrically actuated parking brake system 40 is OFF. The light may be a single color, or may be two colors, for example, may be red during actuation and green during deactivation.
(17) The intelligent controller 48 may be integrated into a switch housing of the switch 42 and need not be a separate device. The signals received from vehicle devices may be: vehicle speed, a throttle position (gas pedal) signal, an engine on signal, a transmission not in park signal, an accessories on signal, or one or more electrical signal from any electrical device of the vehicle 10. For example, the parking brake may be inhibited when the vehicle speed is not zero.
(18) Further, in some instances such as parking on a slope, the parking brakes alone may not hold the vehicle. The intelligent controller 48 may continue to monitor vehicle speed after turning ON. If a non-zero vehicle speed is sensed, an alarm may be issued to warn that the vehicle is moving. The alarm may be a visual alarm or an audio alarm or both. For example, a vehicle horn may be sounded. Additionally, intelligent controller 48 may send an electronic signal to a wireless monitor if the vehicle speed is not zero after the parking brake is fully actuated.
(19) An electrically actuated parking brake system 40 having a wireless remote control 60 according to the present invention is shown in
(20) A controller 48 including a Global Positioning Satellite (GPS) module 70 is shown in
(21) A method for preventing vehicle theft is described in
(22) While the invention herein disclosed has been described by means of specific embodiments and applications thereof, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope of the invention set forth in the claims.