Abstract:
A bicycle control device comprises a seat information generator and an assist controller. The seat information generator is configured to generate seat information. The assist controller is configured to control an assist actuator to assist a driving force of a bicycle based on the seat information.
Abstract:
A bicycle control apparatus is provided for controlling a bicycle assist device. The bicycle control apparatus includes a controller that is configured to control an assist motor for assisting a manual drive force of a transmission with a plurality of sprockets. The controller is configured to control the output of the assist motor based on at least one of a rotational speed of a sprocket of the plurality of sprockets and a sprocket dimension in a shift region that is provided to the sprocket when the transmission performs a shifting operation to switch a chain between two of the plurality of sprockets.
Abstract:
A bicycle transmission control device is basically provided with a transmission controller that is programmed to switch between a first control state and a second control state. The bicycle transmission control device operates in accordance with the first control state for controlling a transmission based on a first signal that is input from a first detector, which detects a rotation of a crank. The bicycle transmission control device operates in accordance with the second control state for controlling the transmission based on a second signal that is input from a second detector, which detects a value reflecting a bicycle speed.
Abstract:
A bicycle control device includes an electronic controller and a gas pressure detection device. The electronic controller receives data indicative of a detected gas pressure of a tire provided to a bicycle. The tire is configured to maintain a gas in a compressed state. The gas pressure detection device is directly attached to a valve of the tire. The gas pressure detection device includes a sensor and a wireless communication device. The sensor detects the gas pressure of the tire. The wireless communication device is configured to perform wireless communication with the electronic controller.
Abstract:
A determination device is for a human-powered vehicle. The determination device includes a processor that is configured to obtain information related to a rotational speed of an input rotational shaft of the human-powered vehicle and information related to a rotational speed of a wheel of the human-powered vehicle to determine a predetermined state in accordance with a varied amount of the rotational speed of the input rotational shaft and a varied amount of the rotational speed of the wheel in a state in which a human driving force that is applied to the human-powered vehicle is greater than or equal to a predetermined threshold value.
Abstract:
A control device is for a human-powered vehicle that includes a vehicle component and a plurality of detectors. The detectors are configured to detect information related to a vehicle speed of the human-powered vehicle in which the information related to the vehicle speed differs between the detectors. The detectors includes at least a first detector. The control device includes an electronic controller. The electronic controller is configured to control the vehicle component in accordance with an output of the first detector in a case where the output of the first detector is in a first state. The electronic controller is configured to control the vehicle component in accordance with an output of a predetermined detector that differs from the first detector among the detectors in a case where the output of the first detector is not in the first state.
Abstract:
A bicycle controller controls a motor in accordance with the riding environment of a bicycle. The bicycle controller includes an electronic control unit that is configured to control a motor that assists in propulsion of a bicycle in accordance with a manual driving force. The electronic control unit is further configured to sets a response speed of the motor with respect to a change in the manual driving force for a case in which a vehicle speed of the bicycle is less than or equal to a first speed to be different from the response speed for a case in which the vehicle speed of the bicycle exceeds the first speed.
Abstract:
A bicycle seatpost system is basically provided with a height adjustable seatpost and an electronic controller. The height adjustable seatpost includes an electric actuator. The electronic controller is configured to control the electric actuator to change a height of the height adjustable seatpost in accordance with detected information about a change of orientation of a bicycle relative to a ground.
Abstract:
A bicycle control device is configured to appropriately control a motor. The bicycle control device is provided in a bicycle driving device. A bicycle control device includes an electronic controller that controls a motor, which assists with propulsion of a bicycle. In a case where a traveling speed of the bicycle is less than or equal to a predetermined speed, the electronic controller controls the motor so that the motor assists with propulsion of the bicycle. The predetermined speed is changed in accordance with at least one of a usage environment of the bicycle and a posture of the bicycle.
Abstract:
A bicycle controller and bicycle drive device that improves the stability of the behavior of a bicycle. The bicycle controller includes an electronic control unit that reduces the output of a motor, which is configured to assist in propulsion of the bicycle, in accordance with an angular acceleration of a rotary body. The rotary body is included in a human power transmission path extending from an input for human power to a coupling portion coupled to a drive wheel.