Abstract:
The present invention relates to a wireless charging system using a wireless charging system, and a device therefor. A wireless power receiving device according to one embodiment of the present invention may comprise: first to Nth receiving coils disposed to be partially overlapped on the same plane so as to receive wireless power signals; first to Nth output terminals formed to enable both ends of each of the first to Nth receiving coils to be connected thereto so as to transfer alternating current power induced by at least any one among the first to Nth receiving coils; and a rectifier for converting, into direct current power, the alternating current power to be input from the first to Nth output terminals. Therefore, the present invention has an advantage of minimizing charging interruptions and minimizing manufacturing costs of a wireless power transmitting device.
Abstract:
A charging control device includes a capacitor, a comparison unit and a switching unit. The capacitor is charged with a voltage converted from power received from a wireless power sending device. The comparison unit compares the voltage of the capacitor with a reference voltage, and generates an output signal according to the result of the comparison. The switching unit is connected to the front end of the capacitor and is switched by the output signal from the comparison unit so as to control whether to supply the converted voltage to a load terminal.
Abstract:
The present invention relates to a wireless power transmission technique and, more specifically, to a wireless power transmitter capable of improving the efficiency of wireless power transmission to improve the performance thereof. A wireless power transmitter according to an embodiment of the present invention comprises: a first transmission coil which includes a first area spaced apart from an interface surface at a first distance, and a second area spaced apart from the interface surface at a second distance; and a second transmission coil which overlaps the second area, wherein the first distance may be less than the second distance.
Abstract:
The present invention provides a method of driving a power transfer unit wirelessly transferring power, the method including: detecting a voltage and a current of the power transfer unit; detecting a change in the voltage and the current; and sensing that a battery receiving wireless power from the power transfer unit is being fully charged on the basis of the change in the voltage and the current.
Abstract:
Disclosed is a transmission unit having a wireless power transfer function, which may comprise a coil. The transmission unit may further comprise an impedance matching unit including a capacitor which resonates with the coil. Further, the transmission unit may further comprise a detection unit for detecting whether the input impedance of the coil and impedance matching unit includes an imaginary part, and thus perform an FOD through the existence of the imaginary part.
Abstract:
The present invention relates to a wireless power transmission apparatus, which comprises a first transmission coil configured to operate in a first resonance frequency band; and a second transmission coil configured to operate in a second resonance frequency band, the first and second transmission coils being arranged in the same plane. According to the present invention, a wireless power transmission apparatus may transmit power efficiently.
Abstract:
A wireless power transmission method of a wireless power transmission apparatus having a plurality of power transmission schemes can include a first detection step including transmitting a first detection signal for a first power transmission scheme and detecting a first response signal corresponding to the first detection signal during a first predetermined time period; a second detection step including transmitting a second detection signal for a second power transmission scheme and detecting a second response signal corresponding to the second detection signal during a second predetermined time period; a determination step determining a power transmission scheme of an wireless power reception apparatus between the first power transmission scheme and the second power transmission scheme; and a power transmission step transmitting a power to the wireless power reception apparatus through the power transmission scheme.
Abstract:
Disclosed are a wireless power transmitter and a power transmission method thereof. The wireless power transmitter includes a plurality of transmission resonance units, a detection power applying unit applying detection power to the transmission resonance units to detect a location of the wireless power receiver, and a current measuring unit measuring current generating from an inner part of the wireless power transmitter based on the applied detection power. The wireless power transmitter transmits the power through at least one transmitting resonance unit corresponding to the location of the wireless power receiver based on the measured current.
Abstract:
Disclosed is a wireless power transmission apparatus. The wireless power transmission apparatus includes a mounting member, an upper transmission coil on the mounting member, a lower transmission coil under the mounting member, a first terminal connected with an outer connection part of the upper transmission coil and an inner connection part of the lower transmission coil, and a second terminal connected with an inner connection part of the upper transmission coil and an outer connection part of the lower transmission coil. The upper transmission coil and the lower transmission coil are bilaterally symmetrical to each other about a central axis between the first and second terminals.
Abstract:
A wireless power transmission apparatus and a wireless power transmission method includes: activating a first wireless transmission unit having a first transmission scheme and deactivating a second transmission unit having a second transmission scheme; transmitting power by the first transmission scheme when a reception scheme of a wireless power reception apparatus is same as the first transmission scheme; deactivating the first wireless transmission unit and activating the second wireless transmission unit when the reception scheme is different from the first transmission scheme; and transmitting the power by the second transmission scheme when the reception scheme is same as the second transmission scheme. Interference between the first wireless transmission unit and the second wireless transmission unit can be prevented from occurring by selectively or sequentially activating the first wireless transmission unit and the second wireless transmission unit.