IP Library Patent Application 11419257
Patent Application
App. No. 11/419,257

MULTI-PURPOSE KEY SWITCH FOR LIGHTWEIGHT UTILITY VEHICLE

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Quick Facts
Patent No.
US None
App. No.
11/419,257
Abstract

A vehicle operation control switch for a light-weight utility vehicle is provided. The vehicle operation control switch includes an ‘Off’ setting or position. When the switch is placed in the ‘Off’ position, the switch disables a vehicle prime mover that generates motive forces utilized to propel the vehicle when enabled. The switch additionally includes a ‘Forward’ setting or position, whereby when the switch is moved to the ‘Forward’ setting, the vehicle prime mover is enabled and the vehicle is configured in a ‘Forward’ movement operational mode. Furthermore, the switch includes a ‘Reverse’ setting for enabling the vehicle prime mover and placing the vehicle in a ‘Reverse’ movement operational mode.

Claims (38)

1 . A vehicle operation control switch for a light-weight utility vehicle, said switch comprising:

an ‘Off’ setting for disabling a vehicle prime mover;

a ‘Forward’ setting for enabling the vehicle prime mover and placing the vehicle in a ‘Forward’ movement mode; and

a ‘Reverse’ setting for enabling the vehicle prime mover and placing the vehicle in a ‘Reverse’ movement mode.

2 . The switch of claim 1 , wherein the switch comprises a key receptacle for receiving a key utilized to move the switch between the ‘Off’, ‘Forward’ and ‘Reverse’ settings.

3 . The switch of claim 1 , wherein the switch is configured to transition between the ‘Forward’ and the ‘Reverse’ settings without disabling the vehicle prime mover.

4 . The switch of claim 1 , wherein the switch further comprises a signal control device for receiving a power input signal and outputting a prime mover enable signal, a ‘Forward’ operational mode signal and a ‘Reverse’ operational mode signal.

5 . The switch of claim 4 , wherein the signal control device is configured to output the prime mover enable signal and the ‘Forward’ operational mode signal when the switch is placed in the ‘Forward’ setting.

6 . The switch of claim 4 , wherein the signal control device is configured to output the prime mover enable signal and the ‘Reverse’ operational mode signal when the switch is placed in the ‘Reverse’ setting.

7 . The switch of claim 4 , wherein the control device comprises one of a mechanical switching device and a switching circuit board.

8 . The switch of claim 1 , wherein the switch further comprises a ‘Neutral’ setting for enabling the vehicle prime mover and placing the vehicle in a ‘Neutral’ mode.

9 . The switch of claim 8 , wherein the switch comprises a key receptacle for receiving a key utilized to move the switch between the ‘Off’, ‘Forward’, ‘Neutral’ and ‘Reverse’ settings.

10 . The switch of claim 8 , wherein the switch is configured to transition between the ‘Forward’, the ‘Neutral’ and the ‘Reverse’ settings without disabling the vehicle prime mover.

11 . The switch of claim 8 , wherein the switch further comprises a signal control device for receiving a power input signal and outputting a prime mover enable signal, a ‘Forward’ operational mode signal and a ‘Reverse’ operational mode signal.

12 . The switch of claim 11 , wherein the signal control device is configured to output the prime mover enable signal and the ‘Forward’ operational mode signal when the switch is placed in the ‘Forward’ setting.

13 . The switch of claim 11 , wherein the signal control device is configured to output the prime mover enable signal and the ‘Reverse’ operational mode signal when the switch is placed in the ‘Reverse’ setting.

14 . The switch of claim 11 , wherein the signal control device is configured to output the prime mover enable signal when the switch is placed in the ‘Neutral’ setting.

15 . A light-weight utility vehicle comprising a vehicle operation control switch, said switch comprising:

an ‘Off’ position for disabling a vehicle prime mover;

a ‘Forward’ position for enabling the vehicle prime mover and placing the vehicle in a ‘Forward’ movement mode; and

a ‘Reverse’ position for enabling the vehicle prime mover and placing the vehicle in a ‘Reverse’ movement mode.

16 . The vehicle of claim 15 , wherein the switch comprises a key receptacle for receiving a key utilized to move the switch between the ‘Off’, ‘Forward’ and ‘Reverse’ positions.

17 . The vehicle of claim 15 , wherein the switch is configured to transition between the ‘Forward’ and the ‘Reverse’ positions without disabling the vehicle prime mover.

18 . The vehicle of claim 15 , wherein the switch is configured to output a prime mover enable signal and a ‘Forward’ operational mode signal when the switch is placed in the ‘Forward’ position.

19 . The vehicle of claim 18 , wherein the switch is configured to output the prime mover enable signal and a ‘Reverse’ operational mode signal when the switch is placed in the ‘Reverse’ position.

20 . The vehicle of claim 15 , wherein the switch further comprises a ‘Neutral’ position for enabling the vehicle prime mover and placing the vehicle in a ‘Neutral’ operational mode.

21 . The vehicle of claim 20 , wherein the switch comprises a key receptacle for receiving a key utilized to move the switch between the ‘Off’, ‘Forward’, ‘Neutral’ and ‘Reverse’ positions.

22 . The vehicle of claim 20 , wherein the switch is configured to transition between the ‘Forward’, the ‘Neutral’ and the ‘Reverse’ positions without disabling the vehicle prime mover.

23 . The vehicle of claim 20 , wherein the switch is configured to output a prime mover enable signal when the switch is placed in the ‘Neutral’ position.

24 . A method for controlling an operational mode of a light-weight utility vehicle, said method comprising:

substantially simultaneously outputting a prime mover enable signal and a ‘Forward’ operational mode signal from an operational control switch when the switch is placed in a ‘Forward’ position, thereby enabling the vehicle prime mover and placing the vehicle in a ‘Forward’ operational mode;

substantially simultaneously outputting the prime mover enable signal and a ‘Reverse’ operational mode signal from the switch when the switch is placed in a ‘Reverse’ position, thereby enabling the vehicle prime mover and placing the vehicle in a ‘Reverse’ operational mode; and

ceasing to output the prime mover enable signal when the switch is placed in an ‘Off’ position, thereby disabling the vehicle primer mover.

25 . The method of claim 24 , wherein the method further comprises inserting a key into a key receptacle of the switch to move the switch between the ‘Off’, ‘Forward’ and ‘Reverse’ positions.

26 . The method of claim 24 , wherein the method further comprises transitioning the switch between the ‘Forward’ and the ‘Reverse’ positions without ceasing to output the prime mover enable signal.

27 . The method of claim 24 , wherein the method further comprises outputting the prime mover enable signal when the switch is placed in a ‘Neutral’ position for enabling the vehicle prime mover and placing the vehicle in a ‘Neutral’ operational mode.

28 . The method of claim 27 , wherein the method further comprises inserting a key into a key receptacle of the switch to move the switch between the ‘Off’, ‘Forward’, ‘Neutral’ and ‘Reverse’ positions.

29 . The method of claim 27 , wherein the method further comprises transitioning the switch between the ‘Forward’, the ‘Neutral’ and the ‘Reverse’ positions without ceasing to output the prime mover enable signal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2009
From: TEXTRON INC.; TEXTRON RHODE ISLAND INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 022908/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2006
From: BELL, JR., OLIVER A.; SINGLETARY, ARIC; HEBERT, MICHAEL J.; CLARK, WARREN; SCHLACHTER, GREGORY
To: TEXTRON INC.
Reel/Frame 017644/0066 →