Abstract:
A contactless power feeding system comprises a power feeding device and a movable device. The movable device is installed on a power feeding case of the power feeding device, and a liquid crystal TV (E) is installed on the movable device. The liquid crystal TV (E) can be arranged at a desired position on a wall (W) in a room (R) by moving the movable device along the power feeding case. The liquid crystal TV (E) can be arranged at a desired height by moving the liquid crystal TV (E) in the axial direction of a guide pipe provided on a power receiving case. The liquid crystal TV (E) can be directed in a desired direction by rotating the liquid crystal TV (E) around the guide pipe. The contactless power feeding system feeds power to the liquid crystal TV (E) via the power feeding device and the movable device.
Abstract:
In a power supply device, a primary winding of a transformer is connected in series to a main switching element, and is connected in parallel to a series circuit of a resonance capacitor and a sub switching element. A secondary winding of the transformer is connected in series to a series circuit of a rectifying element and a resonance inductor. The capacitance of the resonance capacitor and the inductance of the resonance inductor are each set such that, when the sub switching element is in an on state, the waveform of the voltage that is generated between the first main terminal and the second main terminal of the main switching element takes a protruding curve shape, the voltage being generated due to a resonance phenomenon of at least the resonance capacitor and the resonance inductor.
Abstract:
A hinge device includes: a first and a second hinge components having a common reference axis; and a power generating device. The first and the second hinge components are engaged with each other, so as to be rotatable about the reference axis relative to each other, and so that one of the first and the second hinge components supports the other. The power generating device includes a housing and an input shaft, and generates electric power by rotation of the input shaft. The housing of the power generating device is fixed to the first hinge component, so that the input shaft of the power generating device is positioned on the reference axis. The input shaft of the power generating device is restrained to the second hinge component with respect to the direction of rotation about the reference axis, so that the input shaft of the power generating device rotates by as much as rotation of the second hinge component when the second hinge component rotates about the reference axis.
Abstract:
A contactless power supply system includes a first power transmission coil, a plug power reception coil, a plug power transmission coil, and a first power reception coil. The first power transmission coil and the plug power reception coil are configured to satisfy a relational equation of (L2a/L1)1/2=G1/K1=N2a/N1, where L1 represents a self-inductance of the first power transmission coil, L2a represents a self-inductance of the plug power reception coil, N1 represents a winding number of the first power transmission coil, N2a represents a winding number of the plug power reception coil, K1 represents a coupling coefficient of the first power transmission coil and the plug power reception coil, and G1 represents a voltage conversion gain of the voltage applied to the plug power transmission coil relative to the voltage applied to the first power transmission coil.
Abstract:
A contactless power supply system includes a first power transmission coil, a plug power reception coil, a plug power transmission coil, and a first power reception coil. The first power transmission coil and the plug power reception coil are configured to satisfy a relational equation of (L2a/L1)1/2=G1/K1=N2a/N1, where L1 represents a self-inductance of the first power transmission coil, L2a represents a self-inductance of the plug power reception coil, N1 represents a winding number of the first power transmission coil, N2a represents a winding number of the plug power reception coil, K1 represents a coupling coefficient of the first power transmission coil and the plug power reception coil, and G1 represents a voltage conversion gain of the voltage applied to the plug power transmission coil relative to the voltage applied to the first power transmission coil.
Abstract:
A contactless adapter (30) installed in a notebook computer (20) has a plug part (31), a telescopic arm (34), a power circuit part (35), and a power-receiving part (40). The power-receiving part (40) is provided with a secondary coil (41) and has a rotatably linked fixed base plate (42) and a rotating base plate (43). Power can be supplied without contact to the notebook computer (20) from a power-supply device (10) via the contactless adapter (30) by expanding the fixed base plate (42) and the rotating base plate (43) to cause the secondary coil (41) to face the primary coil (11) of the power-supply device (10) provided inside the tabletop (2) of a desk (1).
Abstract:
A contactless adapter (30) installed in a notebook computer (20) has a plug part (31), a telescopic arm (34), a power circuit part (35), and a power-receiving part (40). The power-receiving part (40) is provided with a secondary coil (41) and has a rotatably linked fixed base plate (42) and a rotating base plate (43). Power can be supplied without contact to the notebook computer (20) from a power-supply device (10) via the contactless adapter (30) by expanding the fixed base plate (42) and the rotating base plate (43) to cause the secondary coil (41) to face the primary coil (11) of the power-supply device (10) provided inside the tabletop (2) of a desk (1).
Abstract:
A power generation system includes: at least one power generating device generating electric power by rotation of an input shaft; and a power storage circuit including at least one capacitor and storing energy of the electric power generated by the power generating device. The power storage circuit has a capacitance equal to or near an energy-maximizing capacitance, the energy-maximizing capacitance indicating a capacitance maximizing an upper limit energy in characteristics of energy to capacitance, the characteristics being calculated as the upper limit energy to be stored in the power storage circuit, with respect to the capacitance of the power storage circuit. The characteristics of energy to capacitance are calculated based on: the capacitance of the power storage circuit, an electromotive force of the power generating device, an internal resistance of the power generating device, and a duration of one power generating action of the power generating device.