Pedal bar system and method
A pedal bar system includes a frame, a motor, a pedal shaft, a pedal assembly, and a tensioner. The motor is selectively operable in a forward mode and a reverse mode and is disposed on the frame. The motor shaft is rotatably coupled to the pedal shaft via a drive belt. The pedal assembly is rotatably coupled to the pedal shaft. The tensioner, in communication with the motor shaft and the pedal shaft via the drive belt, has a disengaged position and an engaged position. When the tensioner is in the disengaged position, the drive belt has insufficient tension to rotate the pedal shaft. Conversely, when the tensioner is in the engaged position, the drive belt has sufficient tension to rotate the pedal shaft. Importantly, the pedal shaft is not rotated by the motor in the reverse mode when the tensioner is in the disengaged position.
1 . A pedal bar system, comprising:
a frame;
a motor disposed on the frame and selectively operable in a forward mode and a reverse mode, the motor having a motor shaft;
a pedal shaft disposed on the frame and rotatably coupled to the motor shaft via a drive belt;
a pedal assembly disposed on the frame and rotatably coupled to the pedal shaft;
a tensioner in communication with the motor shaft and the pedal shaft via the drive belt, the tensioner having a disengaged position and an engaged position, the drive belt having insufficient tension to rotate the pedal shaft when the tensioner is in the disengaged position, and the drive belt having sufficient tension to rotate the pedal shaft when the tensioner is in the engaged position; and
a limit switch disposed adjacent to the tensioner and configured to be activated by the tensioner in the disengaged position, the limit switch configured to reverse the motor,
wherein upon the limit switch being activated by the tensioner in the disengaged position, the motor of the pedal bar system is placed into the reverse mode, but the pedal shaft is not rotated by the motor in a reverse direction due to a slack in the drive belt.
2 . The pedal bar system of claim 1 , further comprising a controller configured to operate the tensioner.
3 . The pedal bar system of claim 2 , further comprising a linear actuator configured to move the tensioner.
4 . The pedal bar system of claim 1 , wherein the motor is an electric motor.
5 . The pedal bar system of claim 1 , wherein the pedal assembly includes a sprocket, a chain, and an overrunning clutch, the overrunning clutch disposed on the pedal shaft.
6 . The pedal bar system of claim 1 , further comprising a plurality of pedal assemblies, each pedal assembly rotatably coupled to the pedal shaft.
7 . The pedal bar system of claim 1 , further comprising another pedal shaft disposed on the frame opposite of the pedal shaft.
8 . The pedal bar system of claim 7 , further comprising another plurality of pedal assemblies rotatably coupled to the another pedal shaft.
9 . The pedal bar system of claim 1 , wherein the motor is configured to be selectively coupled to and decoupled from the motor shaft.
10 . The pedal bar system of claim 9 , wherein the pedal assembly is configured to selectively provide supplemental power to the motor and the motor is configured to transmit power to wheels disposed on the frame when the motor is coupled to the motor shaft.
11 . The pedal bar system of claim 9 , wherein system is configured to receive power only from the pedal assembly when the motor is decoupled from the motor shaft.
12 . The pedal bar system of claim 9 , further comprising a coupler configured to selectively couple and decouple the motor to the motor shaft.
13 . The pedal bar system of claim 12 , wherein the coupler includes a jaw coupler.
14 . The pedal bar system of claim 12 , wherein the coupler includes a spider coupling.
15 . The pedal bar system of claim 14 , wherein the spider coupling is configured to be selectively removed to decouple the motor from the motor shaft.
16 . The pedal bar system of claim 1 , further comprising a roof disposed on the frame.
17 . The pedal bar system of claim 16 , wherein the roof is selectively movable via telescoping arms disposed on the frame.
18 . A method for using a pedal bar system comprising:
providing the pedal bar system, including:
a frame;
a motor disposed on the frame and selectively operable in a forward mode and a reverse mode, the motor having a motor shaft;
a pedal shaft disposed on the frame and rotatably coupled to the motor shaft via a drive belt;
a pedal assembly disposed on the frame and rotatably coupled to the pedal shaft;
a tensioner in communication with the motor shaft and the pedal shaft via the drive belt, the tensioner having a disengaged position and an engaged position, the drive belt having insufficient tension to rotate the pedal shaft when the tensioner is in the disengaged position, and the drive belt having sufficient tension to rotate the pedal shaft when the tensioner is in the engaged position;
a limit switch disposed adjacent to the tensioner and configured to be activated by the tensioner in the disengaged position, the limit switch configured to reverse the motor; and
a controller configured to operate the tensioner,
wherein upon the limit switch being activated by the tensioner in the disengaged position, the motor of the pedal bar system is placed into the reverse mode, but the pedal shaft is not rotated by the motor in a reverse direction due to a slack in the drive belt;
operating the pedal bar system in the forward mode with the tensioner in the engaged position;
actuating the controller to place the tensioner in the disengaged position; and
operating the pedal bar system in the reverse mode.
19 . A method for decoupling a motor of a pedal bar system including:
providing the pedal bar system, including:
a frame;
a motor disposed on the frame and selectively operable in a forward mode and a reverse mode, the motor having a motor shaft;
a pedal shaft disposed on the frame and rotatably coupled to the motor shaft via a drive belt;
a pedal assembly disposed on the frame and rotatably coupled to the pedal shaft;
a tensioner in communication with the motor shaft and the pedal shaft via the drive belt, the tensioner having a disengaged position and an engaged position, the drive belt having insufficient tension to rotate the pedal shaft when the tensioner is in the disengaged position, and the drive belt having sufficient tension to rotate the pedal shaft when the tensioner is in the engaged position; and
a limit switch disposed adjacent to the tensioner and configured to be activated by the tensioner in the disengaged position, the limit switch configured to reverse the motor,
a coupler configured to selectively couple the motor to the motor shaft, the coupler including a spider coupling,
wherein upon the limit switch being activated by the tensioner in the disengaged position, the motor of the pedal bar system is placed into the reverse mode, but the pedal shaft is not rotated by the motor in a reverse direction due to a slack in the drive belt;
operating the pedal bar system with the motor coupled to the motor shaft;
removing the spider coupling from the coupler, thereby decoupling the motor from the motor shaft.
20 . The pedal bar system of claim 3 , wherein the linear actuator is configured to automatically move the tensioner laterally between the engaged and disengaged position.