Abstract:
An input device includes a manipulation surface, a light emitting circuit disposed along the manipulation surface, and a detection circuit configured to detect an action of a finger on the manipulation surface. The light emitting circuit has first and second segment groups. The second segment group is disposed along the first segment group. The first segment group emits light at a first intensity if the detection circuit is restricted to receive a prescribed input. The first segment group emits light at a second intensity if the detection circuit is allowed to receive the prescribed input. A part of the second segment group emits light if the detection circuit detects an action of the finger alongside the first segment group while the first segment group is emitting light at the second intensity.
Abstract:
To minimize excessively high output or increases in magnetic-flux leakage by controlling power feeding on the power-feeding side if an unforeseen situation occurs. This power-feeding device (100) feeds power to an external power-receiving device (150) in a contactless manner. A power-feeding coil (103) uses electromagnetic power to feed electrical power to a power-receiving coil (154) in the power-receiving device (150). While power is being fed from said power-feeding coil (103), a power-feeding-side control unit (107) determines the amount of displacement of the power-feeding coil (103) and, on the basis of the determined displacement amount, controls the amount of electrical power being fed.
Abstract:
To minimize excessively high output or increases in magnetic-flux leakage by controlling power feeding on the power-feeding side if an unforeseen situation occurs. This power-feeding device (100) feeds power to an external power-receiving device (150) in a contactless manner. A power-feeding coil (103) uses electromagnetic power to feed electrical power to a power-receiving coil (154) in the power-receiving device (150). While power is being fed from said power-feeding coil (103), a power-feeding-side control unit (107) determines the amount of displacement of the power-feeding coil (103) and, on the basis of the determined displacement amount, controls the amount of electrical power being fed.
Abstract:
A moving body includes: a first body including at least one wheel, an electric motor and a first secondary battery; and a second body attachable to and detachable from the first body and including an electric power load and a second secondary battery. When the second body is mounted on the first body, at least one of the second secondary battery and the first secondary battery is allowed to be charged in a charging mode including at least one of a first charging mode and a second charging mode. In the first charging mode, the second secondary battery is charged using electric power output from the first secondary battery. In the second charging mode, the first secondary battery is charged using electric power output from the second secondary battery.
Abstract:
A vehicle according to the present disclosure includes a vehicle body, an armrest, a sensor, and an air blower port. The armrest is disposed along a side portion of a seat in the vehicle body. The armrest is disposed in the traveling direction. The armrest includes an upper surface on which an arm of a passenger sitting on the seat is allowed to rest. The sensor is provided on a side surface of the armrest. The sensor detects a hand of the passenger. The air blower port is provided on the side surface of the armrest and provided between the sensor and the upper surface of the armrest. The air blower sends out air from the armrest. The air sent out from the air blower port is changed on the basis of at least a detection result of the sensor.
Abstract:
A vehicle interior purification device includes: first and second outlets disposed in a housing; first and second blower fans corresponding to the first and second outlets and disposed inside the housing; and a predetermined generation device for an airflow delivered from the first outlet and the second outlet, the predetermined generation device being disposed inside the housing. The predetermined generation device includes at least one of an electrostatic atomization device that generates a mist containing charged water particles and an ozone/ion generation device that generates ozone and negative ions by corona discharge. The first outlet and the second outlet are set to be disposed along a direction of travel of the vehicle. The first rotational speed of the first blower fan and a second rotational speed of the second blower fan are settable to different rotational speeds.
Abstract:
A vehicle dispatch management method includes: acquiring, from a requester terminal of a requester who requests vehicle dispatch, vehicle dispatch request information including requester identification information of the requester; and causing the requester terminal to display dispatched vehicle information onto a display screen of the requester terminal by outputting the dispatched vehicle information to the requester terminal. The dispatched vehicle information is information about a driver of driving characteristic information similar to passenger characteristic information. The passenger characteristic information represents driving characteristics preferred by the requester identified by the requester identification information.
Abstract:
A vehicle includes: a vehicle body including a vehicle cabin; at least one wheel disposed along one direction in the vehicle body; a seat disposed inside the vehicle cabin; a first planar member that is fixed to the vehicle body, separates the vehicle cabin from an outside of the vehicle, is disposed further toward the outside of the vehicle than the seat in the one direction, and has a first transmittance for visible light; a second planar member that is allowed to be disposed between the first planar member and the seat, and has a second transmittance for visible light that is smaller than the first transmittance; and an input device. The second planar member is disposed between the first planar member and the seat in a case where a predetermined input is performed on the input device.
Abstract:
A power supply apparatus capable of appropriately supplying electrical power to a power transmission coil even if a foreign object is heated during power supply. The power supply apparatus (100) is provided with a power supply coil (103a) opposing a power-receiving unit (153) provided to a vehicle and supplying power to the power-receiving unit (153), and a casing (103b) accommodating the power supply coil (103a). In the casing (103b), a first cover (202) is formed on a surface of the casing (103b) opposing the power-receiving unit (153), and a second cover (203) opposing the first cover (202) is arranged between the first cover (202) and the power supply coil (103a).
Abstract:
Power supply device is provided with the following: a power supply unit (121) that includes a spiral coil or a solenoid coil; a frequency characteristic acquisition unit (211) that acquires the frequency characteristics of the efficiency of the supply of power from the power supply unit to the power receiving device; a peak determining unit (212) that determines peaks in the frequency characteristics of the efficiency of power supply; and a drive frequency determination unit (213) that, if two peaks have been found, determines as the drive frequency used for supplying power a frequency near the frequency that is the lower of the frequencies of the two peaks, with the lower frequency being given priority over a frequency near the higher frequency.