Abstract:
A discharging control system of a vehicle that supplies power to a load device outside the vehicle via a power cable, includes a connection signal line, a detector, and a controller. The connection signal line is configured such that a potential thereof changes in response to a discharging connector provided on the power cable being connected to the vehicle. The detector is configured to detect the potential of the connection signal line. The controller is configured to control a physical quantity related to the power supplied from the vehicle to the load device, based on the potential detected by the detector.
Abstract:
A discharging control system of a vehicle that supplies power to a load device outside the vehicle via a power cable, includes a connection signal line, a detector, and a controller. The connection signal line is configured such that a potential thereof changes in response to a discharging connector provided on the power cable being connected to the vehicle. The detector is configured to detect the potential of the connection signal line. The controller is configured to control a physical quantity related to the power supplied from the vehicle to the load device, based on the potential detected by the detector.
Abstract:
A charging cable housing apparatus includes a winding core having a charging cable wound around an outer peripheral surface thereof, an end plate provided with a first slit extending from the winding core in a radial direction and having a predetermined width, and a side plate disposed to connect the base plate and the end plate and provided with a second slit having the same width as that of the first slit. One end of the charging cable wound around the winding core is being pulled out through the first slit or the second slit.
Abstract:
A charging device includes a fixing member fixed to a fixed object, a cable holder mounted on the fixing member in an attachable and detachable manner and a charging cable unit mounted on the cable holder.
Abstract:
A vehicle is provided with a connection signal line having electric potential is changed when a connector of a power charging cable is attached to a control pilot line through which a pilot signal CPLT is transmitted from the power charging cable. The charging connector is attached to a vehicle in place of the power charging cable. The power supply connector includes a first connection portion connected to the connection signal line and a second connection portion connected to the first connection portion and the control pilot line.
Abstract:
A cord housing apparatus disclosed in the present description has a cord, a drum on which the cord is wound, a biasing member for biasing the drum in a cord reel-in direction, a cord delivery device arranged on a side where the cord is reeled out from the drum, a switch for turning the cord delivery device on and off, and a selection switch for selecting a cord feeding direction of the cord delivery device. The cord delivery device is capable of delivering the cord both in a cord reel-out direction and in the cord reel-in direction.
Abstract:
A power extraction device is an extraction device configured to extract electric power from a vehicle by being connected to a first connecting portion of the vehicle, the vehicle including a storage battery and the first connecting portion to which a plug is connected so that the first connecting portion is able to perform at least one of supplying of electric power to the storage battery and discharging of electric power accumulated in the storage battery to its outside. The extraction device includes: a second connecting portion to be connected to the first connecting portion provided on an outer peripheral surface of the vehicle; and a third connecting portion to which an external connection plug configured to connect an external device to the extraction device is connectable. The third connecting portion includes a connection surface to which the external connection plug is connected.
Abstract:
The present invention has an objective to provide a charge-and-discharge connector which makes it possible to transfer of electric power mutually between vehicles and the vehicles exterior under control by a charge-and-discharge management system at normal times, and makes it possible to supply electric power from vehicles to the vehicles exterior without depending on the charge-and-discharge management system in an emergency. It is possible to make vehicles perform an electric supply operation without using a charge-and-discharge control signal in an emergency by preparing an operating part in a charge-and-discharge connector for delivering and receiving electric power between vehicles and the charge-and-discharge control device outside the vehicles and operating the operating part to make the vehicles detect that an electric supply operation is possible without using the charge-and-discharge control signal used for controlling charge and discharge at normal times.
Abstract:
A charging cable housing apparatus includes a winding core having a charging cable wound around an outer peripheral surface thereof, an end plate provided with a first slit extending from the winding core in a radial direction and having a predetermined width, and a side plate disposed to connect the base plate and the end plate and provided with a second slit having the same width as that of the first slit. One end of the charging cable wound around the winding core is being pulled out through the first slit or the second slit.
Abstract:
A charging cable housing device includes: a charging connector; a casing having an internal space and extending along a top-bottom direction; a charging cable housed in the internal space of the casing, and having one end which is extended outward from an opening provided in the casing and to which the charging connector is connected, and the other end from which electric power is supplied; and a cable reel housed in the internal space of the casing and located lower than the opening, with the other end of the charging cable wound up around the cable reel.