IP Library Granted Patent US 11,322,985
Granted Patent B2
US 11,322,985 · App. 16/645,551 · Granted May 3, 2022

Wireless power transfer system, power transmission apparatus, and power reception apparatus

Inventors: Yoshihiro Todaka (Kyoto, JP); Atsushi Tanaka (Kyoto, JP); Hiroshi Ido (Kyoto, JP)
Assignee: Maxell, Ltd.
H02J50/12B60L53/12B60L53/51H02J7/06H02J50/80H02M7/81H02J2207/40
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Quick Facts
Patent No.
US 11,322,985
App. No.
16/645,551
Granted
May 3, 2022
Kind
B2
Abstract

A wireless power transfer system can be achieved at a low cost, can be used as both a power transmission apparatus and a power reception apparatus, and can cope with a change in coupling coefficient of a resonant coil of the power transmission apparatus and a resonant coil of the power reception apparatus. The wireless power transfer system is a power transmission apparatus that is able to perform bidirectional wireless power transmission, and includes the following: a power supply; a switching circuit that includes a plurality of switching devices; a resonator that includes a coil and a capacitor; a drive control circuit that controls an ON/OFF operation of each switching device of the switching circuit; and a detector that detects a resonance current flowing through the switching circuit. The drive control circuit controls the ON/OFF of each switching device of the switching circuit to perform a power transmission operation or a power reception operation based on a resonant current waveform detected by the detector.

Claims (32)

1. A wireless power transfer system that is a power transmission apparatus that is able to perform bidirectional wireless power transmission, comprising:

a power supply;

a switching circuit composed of a full-bridge circuit that includes a plurality of switching devices;

a resonator that includes a coil and a capacitor;

a drive control circuit that controls an ON/OFF operation of each switching device of the switching circuit; and

a detector that detects a resonance current flowing through the switching circuit,

wherein the detector has a first resistor and a second resistor that respectively detect a current flowing through the switching devices located on a ground side of the full-bridge circuit, and

the drive control circuit controls the ON/OFF of each switching device of the switching circuit to perform a power transmission operation or a power reception operation based on a resonant current waveform obtained from the current flowing through the switching devices located on the ground side of the full-bridge circuit.

2. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power transmission apparatus, the drive control circuit controls the ON/OFF operation of each switching device to supply a current in a predetermined direction from the switching circuit to the resonator in accordance with a phase of the resonant current waveform detected by the detector.

3. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power transmission apparatus, the drive control circuit controls a pulse width of a drive pulse for controlling the ON/OFF operation of each switching device to be short in accordance with a phase of the resonant current waveform detected by the detector.

4. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power transmission apparatus, the drive control circuit suspends the transmission of power from the resonator by turning ON only any of the switching devices located on either the power supply side or a ground side of the switching circuit.

5. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power transmission apparatus, the drive control circuit controls the ON/OFF operation of each switching device to supply a current from the resonator to the switching circuit in accordance with a phase of the resonant current waveform detected by the detector.

6. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power reception apparatus, the drive control circuit controls the ON/OFF operation of each switching device to rectify a current output from the resonator in accordance with the phase of the resonant current waveform detected by the detector.

7. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power reception apparatus, the drive control circuit suspends the reception of power by the resonator by turning ON only any of the switching devices located on either the power supply side or the ground side of the switching circuit.

8. The wireless power transfer system according to claim 1 , wherein when the wireless power transfer system is used as a power reception apparatus, the drive control circuit controls the ON/OFF operation of each switching device to supply a current from the switching circuit to the resonator in accordance with the phase of the resonant current waveform detected by the detector.

9. The wireless power transfer system according to claim 1 , wherein the detector detects a current flowing through the switching devices located on the ground side of the switching circuit.

10. A power transmission apparatus that transmits power in a wireless manner, comprising:

a power supply;

a switching circuit composed of a full-bridge circuit that includes a plurality of switching devices;

a power transmission resonator that includes a coil and a capacitor;

a drive control circuit that controls an ON/OFF operation of each switching device of the switching circuit; and

a detector that detects a resonance current flowing through the switching circuit,

wherein the detector has a first resistor and a second resistor that respectively detect a current flowing through the switching devices located on a ground side of the full-bridge circuit, and

the drive control circuit controls the ON/OFF of each switching device of the switching circuit to perform a power transmission operation based on a resonant current waveform obtained from the current flowing through the switching devices located on the ground side of the full-bridge circuit.

11. A power reception apparatus that receives power in a wireless manner, comprising:

a power supply;

a switching circuit composed of a full-bridge circuit that includes a plurality of switching devices;

a power reception resonator that includes a coil and a capacitor;

a drive control circuit that controls an ON/OFF operation of each switching device of the switching circuit; and

a detector that detects a resonance current flowing through the switching circuit,

wherein the detector has a first resistor and a second resistor that respectively detect a current flowing through the switching devices located on a ground side of the full-bridge circuit, and

the drive control circuit controls the ON/OFF of each switching device of the switching circuit to perform a power reception operation based on a resonant current waveform obtained from the current flowing through the switching devices located on the ground side of the full-bridge circuit.

Assignments (2)
CHANGE OF NAME Recorded Dec 3, 2021
From: MAXELL HOLDINGS, LTD.
To: MAXELL, LTD.
Reel/Frame 058301/0318 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2020
From: TODAKA, YOSHIHIRO; TANAKA, ATSUSHI; IDO, HIROSHI
To: MAXELL HOLDINGS, LTD.
Reel/Frame 052062/0391 →
Priority Claims (1)
JP JP2017-176951 · Sep 14, 2017 · national
Continuity (1)
Related Publication 20200280213A1 · Sep 3, 2020
Cited By (1)
US 12,255,466