Abstract:
An operation control apparatus and a bicycle display device are provided that are configured for improving the usability. The operation control apparatus includes a controller, which is configured to operate a bicycle electronic apparatus that can be mounted on a bicycle. The operation control apparatus is configured to cause a predetermined control target to execute a predetermined operation of the bicycle electronic apparatus according to an operation of an operating unit inputted to the controller. The controller is configured to set at least one of the predetermined control target and the predetermined operation, according to at least one of the configuration, the type and the function of the bicycle electronic apparatus.
Abstract:
A bicycle control system comprises a first bicycle component and a second bicycle component. The first bicycle component is configured to be mounted to a bicycle and to perform wireless communication. The second bicycle component is configured to be mounted to the bicycle and to perform wireless communication. At least one of the first and second bicycle components is configured to be electrically connected to a battery. One of the first and second bicycle components is configured to wirelessly output a pairing demand signal to the other of the first and second bicycle components in response to charging of the battery.
Abstract:
A bicycle control device controls a motor to assist driving of a wheel of a bicycle. The bicycle control device includes an input unit and a controller that switches, when the input unit is operated, between a ride mode that controls the motor in correspondence with manual driving force and a walk mode that drives the motor in correspondence with the operation of the input unit. After switching to the walk mode, the controller drives the motor in correspondence with the operation of the input unit.
Abstract:
A power supply system is basically provided for supplying electric power to an electric component of a bicycle. The power supply system includes a first battery, a second battery, an operating unit and a power supply controller. The power supply controller is configured to transition an operating state by electric power of the second battery and supply electric power from the first battery to the electric component when the operating unit is operated in a stopped state.
Abstract:
A bicycle control system is basically provided with a plurality of electric units. Each of the plurality of electric units is configured to be mounted to a bicycle. Each of the plurality of electric units includes a storage unit. At least two of the storage units of the plurality of electric units store at least two common pieces of information.
Abstract:
In accordance with a first aspect, a bicycle drive unit includes a first bottom bracket, a crank axle, and a first motor. The first bottom bracket is configured to be coupled to a first axial end of a bottom bracket shell of a bicycle. The crank axle is rotatably supported by the first bottom bracket with respect to a rotational axis. The crank axle has a first end portion and a second end portion. The first motor includes a first casing non-rotatably coupled to the crank axle, a second casing non-rotatably coupled to the bottom bracket shell, a first rotor having a first magnet disposed on the first casing, and a first stator non-rotatably coupled to the first bottom bracket. The first magnet and the first stator radially face with each other with respect to the rotational axis of the crank axle.