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WIRELESS POWER TRANSFER APPARATUS

  • US 20150214788A1
  • Filed: 04/08/2015
  • Published: 07/30/2015
  • Est. Priority Date: 10/11/2012
  • Status: Active Grant
First Claim
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1. A wireless power transfer apparatus constituted by a power sending device including a power sending coil, and a power receiving device including a power receiving coil, the wireless power transfer apparatus comprising:

  • at least one resonant capacitor that is connected equivalently in series to the power sending coil to constitute a power sending-side resonant circuit;

    a power sending-side switching circuit including a switching element that is connected to the power sending-side resonant circuit, and that is turned on and off to intermittently apply DC power to the power sending-side resonant circuit and to generate a resonant current in the power sending-side resonant circuit, and a switching control circuit that controls the switching element;

    at least one resonant capacitor that is connected equivalently in series to the power receiving coil to constitute a power receiving-side resonant circuit; and

    a power receiving-side rectification circuit connected to the power receiving-side resonant circuit and including a rectification element that rectifies a resonant current and supplies the current to a load,wherein at least one of the power sending coil and the power receiving coil is a loop coil having a sufficiently larger diameter than a conductor line and being equivalent to a single turn,the loop coil is electrically directly connected to the switching element or the rectification circuit,the power sending coil takes out electric energy from the DC power and generates periodically-varying electromagnetic field resonance energy in a space,the power receiving coil takes out, as electric energy, the periodically-varying electromagnetic field resonance energy from the space and supplies electric power to the load,electric power is transmitted from the power sending device to the power receiving device through an electromagnetic field resonant coupling that is formed through a process of equivalently forming a mutual inductance between the power sending coil and the power receiving coil with mutual induction, causing the power sending-side resonant circuit and the power receiving-side resonant circuit to resonate with each other, and generating the resonant current flowing through the mutual inductance, andthe current flowing through the loop coil flows only as a resonant current containing mainly a switching frequency component due to resonant operation while currents of higher-order frequency components exhibiting large impedances are cut by an electromagnetic resonant coupling circuit.

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