IP Library › Granted Patent US 11,139,693
Granted Patent B2
US 11,139,693 · App. 16/970,644 · Granted Oct 5, 2021

Contactless power transmission apparatus

Inventors: Goro Nakao (Inazawa, JP); Yusuke Kawai (Ichinomiya, JP); Atsushi Nomura (Ichinomiya, JP); Toshiyuki Zaitsu (Yokohama, JP)
Assignee: OMRON Corporation
H02J50/12H02J50/80
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Quick Facts
Patent No.
US 11,139,693
App. No.
16/970,644
Granted
Oct 5, 2021
Kind
B2
Abstract

A contactless power transmission apparatus includes a receiver that includes a resonant circuit that receives electric power from a transmitter. The receiver causes, in response to a measurement value of an output voltage of electric power output from the resonant circuit being out of a predetermined allowable range of voltages, a short circuit to short-circuit the resonant circuit and transmits determination information indicating that the contactless power transmission apparatus is not outputting a constant voltage. In response to the determination information, the transmitter in the contactless power transmission apparatus detects a switching frequency of alternating current power to be supplied to a transmitter coil from a power supply circuit at which the contactless power transmission apparatus outputs a constant voltage in accordance with a measurement value of a current through the transmitter coil.

Claims (53)

1. A contactless power transmission apparatus, comprising:

a transmitter; and

a receiver configured to receive electric power from the transmitter in a contactless manner, wherein:

the transmitter comprises:

a transmitter coil configured to supply electric power to the receiver;

a power supply circuit configured to supply alternating current power having an adjustable switching frequency and an adjustable voltage to the transmitter coil;

a current detection circuit configured to measure a current through the transmitter coil and determine a measurement value of the current;

a control circuit configured to control the switching frequency and the voltage of the alternating current power to be supplied to the transmitter coil from the power supply circuit; and

a first communicator configured to communicate with the receiver;

the receiver comprises:

a resonant circuit including a receiver coil configured to receive electric power from the transmitter and a resonant capacitor configured to resonate with the receiver coil in response to electric power from the transmitter;

a rectifier circuit configured to rectify electric power output from the resonant circuit;

a short circuit configured to switch between short-circuiting and opening the resonant circuit;

a voltage detection circuit configured to measure an output voltage of electric power output from the resonant circuit and determine a measurement value of the output voltage;

a coil directly connected to and in series with the receiver coil, the coil located between the resonant circuit and the rectifier circuit;

a second communicator configured to communicate with the transmitter; and

a determination circuit configured to determine whether the measurement value of the output voltage is within a predetermined allowable range of voltages, and cause the short circuit to short-circuit the resonant circuit and cause the second communicator to transmit determination information indicating that the contactless power transmission apparatus is not outputting a constant voltage in response to the measurement value of the output voltage being out of the predetermined allowable range of voltages; and

the control circuit in the transmitter detects, in response to the determination information indicating that the contactless power transmission apparatus is not outputting a constant voltage received from the receiver through the first communicator, a switching frequency of the alternating current power at which the contactless power transmission apparatus outputs a constant voltage in accordance with the measurement value of the current.

2. The contactless power transmission apparatus according to claim 1 , wherein

the receiver coil and the resonant capacitor in the resonant circuit are connected in parallel,

the short circuit has an end connected between the coil and the rectifier circuit, and

the determination circuit causes the short circuit to short-circuit the resonant circuit through the coil in response to the measurement value of the output voltage being out of the predetermined allowable range of voltages.

3. The contactless power transmission apparatus according to claim 1 , wherein

the receiver coil and the resonant capacitor in the resonant circuit are connected in series.

4. The contactless power transmission apparatus according to claim 1 , wherein

the control circuit in the transmitter determines that the contactless power transmission apparatus outputs a constant voltage at a switching frequency of the alternating current power at which the measurement value of the current is greater than or equal to a predetermined threshold.

5. The contactless power transmission apparatus according to claim 1 , wherein

the control circuit in the transmitter determines that the contactless power transmission apparatus outputs a constant voltage at a switching frequency of the alternating current power at which an absolute value of a difference between a phase of the measurement value of the current and a phase of the voltage of the alternating current power to be supplied to the transmitter coil is less than or equal to a predetermined threshold.

6. The contactless power transmission apparatus according to claim 1 , wherein

the control circuit in the transmitter causes, after detecting the switching frequency of the alternating current power at which the contactless power transmission apparatus outputs a constant voltage, the first communicator to transmit detection information indicating the detection of the switching frequency, and

the determination circuit in the receiver causes the short circuit to open the resonant circuit after receiving the detection information through the second communicator.

7. The contactless power transmission apparatus according to claim 6 , wherein

the control circuit in the transmitter controls, after causing the first communicator to transmit the detection information, the power supply circuit to regulate the voltage of the alternating current power to be supplied to the transmitter coil to a voltage at which the contactless power transmission apparatus outputs a constant voltage.

8. The contactless power transmission apparatus according to claim 2 , wherein

the control circuit in the transmitter determines that the contactless power transmission apparatus outputs a constant voltage at a switching frequency of the alternating current power at which the measurement value of the current is greater than or equal to a predetermined threshold.

9. The contactless power transmission apparatus according to claim 2 , wherein

the control circuit in the transmitter determines that the contactless power transmission apparatus outputs a constant voltage at a switching frequency of the alternating current power at which an absolute value of a difference between a phase of the measurement value of the current and a phase of the voltage of the alternating current power to be supplied to the transmitter coil is less than or equal to a predetermined threshold.

10. The contactless power transmission apparatus according to claim 3 , wherein

the control circuit in the transmitter determines that the contactless power transmission apparatus outputs a constant voltage at a switching frequency of the alternating current power at which the measurement value of the current is greater than or equal to a predetermined threshold.

11. The contactless power transmission apparatus according to claim 3 , wherein

the control circuit in the transmitter determines that the contactless power transmission apparatus outputs a constant voltage at a switching frequency of the alternating current power at which an absolute value of a difference between a phase of the measurement value of the current and a phase of the voltage of the alternating current power to be supplied to the transmitter coil is less than or equal to a predetermined threshold.

12. The contactless power transmission apparatus according to claim 2 , wherein

the control circuit in the transmitter causes, after detecting the switching frequency of the alternating current power at which the contactless power transmission apparatus outputs a constant voltage, the first communicator to transmit detection information indicating the detection of the switching frequency, and

the determination circuit in the receiver causes the short circuit to open the resonant circuit after receiving the detection information through the second communicator.

13. The contactless power transmission apparatus according to claim 3 , wherein

the control circuit in the transmitter causes, after detecting the switching frequency of the alternating current power at which the contactless power transmission apparatus outputs a constant voltage, the first communicator to transmit detection information indicating the detection of the switching frequency, and

the determination circuit in the receiver causes the short circuit to open the resonant circuit after receiving the detection information through the second communicator.

14. The contactless power transmission apparatus according to claim 4 , wherein

the control circuit in the transmitter causes, after detecting the switching frequency of the alternating current power at which the contactless power transmission apparatus outputs a constant voltage, the first communicator to transmit detection information indicating the detection of the switching frequency, and

the determination circuit in the receiver causes the short circuit to open the resonant circuit after receiving the detection information through the second communicator.

15. The contactless power transmission apparatus according to claim 5 , wherein

the control circuit in the transmitter causes, after detecting the switching frequency of the alternating current power at which the contactless power transmission apparatus outputs a constant voltage, the first communicator to transmit detection information indicating the detection of the switching frequency, and

the determination circuit in the receiver causes the short circuit to open the resonant circuit after receiving the detection information through the second communicator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2020
From: NAKAO, GORO; KAWAI, YUSUKE; NOMURA, ATSUSHI; ZAITSU, TOSHIYUKI
To: OMRON CORPORATION
Reel/Frame 053596/0973 →
Priority Claims (1)
JP JP2018-039730 · Mar 6, 2018 · national
Continuity (1)
Related Publication 20210013742A1 · Jan 14, 2021