Powered deployable running board
A running board assembly for a motor vehicle has a step for supporting an individual thereon. The running board assembly also includes a slide assembly extending between the step and the motor vehicle for slidably moving the step between a retracted position and an extended position. In addition, the running board assembly includes a pneumatic cylinder operatively engaging the slide assembly so that the pneumatic cylinder effects energizing movement between the retracted and the extended positions.
1. A running board assembly for a motor vehicle, said running board assembly comprising:
a step defining a tank for storing a supply of pressurized fluid;
a compressor fluidly connected to said tank;
a mounting assembly extending between said step and the motor vehicle for mounting said running board assembly on said vehicle enabling movement of said step between a retracted position and an extended position;
a pneumatic cylinder operatively engaging said mounting assembly, whereby energizing said pneumatic cylinder effects said movement of said step; and
wherein said tank has a pressure sensor operatively connected to said compressor enabling said compressor to automatically fill said tank with fluid and maintain pressure within said tank at a desired level.
2. A running board assembly as set forth in claim 1 including a spring extending between said step and the motor vehicle urging said step to said retracted position.
3. A running board assembly as set forth in claim 2 wherein said pneumatic cylinder includes a valve for fluidly communicating fluid into and out of said pneumatic cylinder.
4. A running board assembly as set forth in claim 3 including a solenoid valve for opening said tank allowing said tank to receive compressed fluids.
5. A running board assembly as set forth in claim 4 including a controller for operating said valve and said solenoid valve.
6. A running board assembly as set forth in claim 5 wherein said step has a valved port selectively providing access to pressurized air inside said tank.
7. A running board assembly as set forth in claim 6 , wherein said operative connection is via a controller.
8. A running board assembly as set forth in claim 7 , wherein the speed of said movement of said step is regulated to move at a desired rate of movement between said retracted and extended positions.
9. A running board assembly as set forth in claim 8 , wherein said cylinder has a valve operatively connected to said controller, and said controller includes a sensor mounted to measure speed of said sliding movement, whereby based on signals received from said sensor, said controller responsively opens and closes said valve to regulate said speed.