Electromechanical control device and methods for electromechanical control of a bicycle
An electromechanical control system for a bicycle has a switch device, the switch device operating a switch between at least three positions. A control communication device transmits signals responsive to operation of the switch. The electromechanical control system includes an operation device configured to respond to signals transmitted by the control communication device. Signals transmitted by the control communication device include commands to listen and commands to operate.
1. A wireless control system for a bicycle, comprising:
a switch device configured to move from a rest position, through a first actuation position, to a second actuation position, the switch device includes a switch having two physically independent circuits, a first circuit and a second circuit; and
a control unit comprising a control processor configured to:
generate a first signal responsive to movement of the switch device from the rest position to the first actuation position closing the first circuit of the switch, the first signal configured to change a mode of a component of the bicycle; and
generate a second signal responsive to movement of the switch device from the first actuation position to the second actuation position closing the second circuit of the switch, the second signal configured to trigger operation of the component of the bicycle,
wherein the first signal is configured to change a wireless control communication device from a rest mode to a ready mode, the wireless control communication device located within the switch device.
2. The wireless control system of claim 1 , wherein the second signal triggers the wireless control communication device to transmit an operation signal, the operation signal configured to trigger operation of an operation component of the bicycle.
3. The wireless control system of claim 2 , wherein the operation component is a gear changer.
4. The wireless control system of claim 2 , wherein the operation component is an adjustable suspension component.
5. The wireless control system of claim 3 , wherein the first signal is configured to change an operation communication device within the gear changer to the ready mode.
6. The wireless control system of claim 5 , wherein the second signal is configured to trigger a shifting operation of the gear changer of the bicycle.
7. The wireless control system of claim 6 , wherein the gear changer comprises an configured to control the operation communication device of the gear changer to perform the shifting operation responsive to the second signal.
8. The wireless control system of claim 2 , wherein while in the ready mode, the wireless control communication device sends an anticipation signal to a gear changer, causing a change in operation of the gear changer of the bicycle.
9. The wireless control system of claim 8 , wherein the operation component of the bicycle is changed to trigger listening.
10. The wireless control system of claim 8 , wherein the anticipation signal is a plurality of signals.
11. The wireless control system of claim 1 , wherein the wireless control communication device configured to change from the rest mode to the ready mode responsive to the first signal and to change from the ready mode to a transmit mode responsive to the second signal.
12. The wireless control system of claim 11 , wherein the ready mode uses more energy than the rest mode but less energy than the transmit mode from a power source of the wireless control system.
13. The wireless control system of claim 1 , wherein the switch of the switch device is a dome switch.
14. The wireless control system of claim 13 , wherein the dome switch is located on a printed circuit board within the switch device.