Bi-directional DC-DC converter with load and source synchronized power control
US-10811987-B2 · Oct 20, 2020 · US
US11190052B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11190052-B2 |
| Application number | US-201816753227-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 3, 2018 |
| Priority date | Oct 3, 2017 |
| Publication date | Nov 30, 2021 |
| Grant date | Nov 30, 2021 |
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According to one aspect of the present disclosed subject matter, a receiver inductively powered by a transmitter for powering a load, the receiver comprising: a resonance circuit capable of tuning its resonance frequency for coupling with the transmitter and generate AC voltage; a power supply section configured to rectify the AC voltage and adjust a DC current and a DC voltage to the load; and a control and communication section designed to set parameters for the receiver and communicate operation points (OP) to the transmitter, wherein the parameters and the OP derived from determining a minimal power loss of the receiver.
Opening claim text (preview).
The invention claimed is: 1. A receiver inductively powered by a transmitter for powering a load, the receiver comprising: a resonance circuit configured to couple with the transmitter and generate an alternating current (AC) voltage; a power supply section configured to rectify the AC voltage and adjust a direct current (DC) voltage and a DC current to the load; and a control and communication section configured to set parameters for the receiver and communicate operation points (OP) to the transmitter, wherein the parameters and the OP are derived from calculating power losses for input voltages along a range of the receiver and determining a minimal power loss of the receiver from the power losses. 2. The receiver of claim 1 , wherein the resonance circuit comprises a coil and a serial capacitor. 3. The receiver of claim 1 , wherein the resonance circuit comprises a coil and an equivalent capacitor selected a parallel capacitor; at least resonance capacitor; or a combination thereof. 4. The receiver of claim 3 , wherein the at least one resonance capacitor is part of at least one switchable branch of resonance capacitors, wherein the control and communication section is configured to activate the at least one switchable branch of resonance capacitors for tuning resonance frequency of the resonance circuit. 5. The receiver of claim 1 , wherein the power supply section comprising a rectifier and a DC-to-DC convertor (DC2DC). 6. The receiver of claim 5 , wherein the rectifier comprises a first holding capacitor; a second holding capacitor; a first field-effect transistor (FET) switch; and a second FET switch, wherein each FET switch is separately gated for charging the holding capacitors. 7. The receiver of claim 6 , wherein a gate of the first FET is open during one half of the AC cycle for charging the first holding capacitor, wherein a gate of the second FET is open during a second half of the AC cycle for charging the second holding capacitor, wherein the first and second holding capacitors are connected to produce output voltage that is twice the absolute value of one half. 8. A method for minimizing power loss of a receiver inductively powered by a transmitter for powering a load, the method comprising: determining an operation point of the transmitter that produces a required input voltage to a DC-to-DC convertor (DC2DC); establishing switching frequency to yield a predetermined ripple requirement; determining a required output power of the receiver and a needed alternating current (AC) current for obtaining an output current; calculating power losses for input voltages along a range of the receiver; determining a minimal power loss from the power losses; and configuring the receiver and the transmitter with operation points (OP) and parameters that yield the minimal power loss. 9. The method of claim 8 , wherein a control and communication section of the receiver sets the parameters for the receiver and communicates the OP to the transmitter.
with electronic devices having internal batteries, e.g. mobile phones · CPC title
Mechanical details of housing or structure aiming to accommodate the power transfer means, e.g. mechanical integration of coils, antennas or transducers into emitting or receiving devices · CPC title
Printed inductances (printed coils for dynamo-electric machines H02K3/26; printed circuits H05K) · CPC title
including plural semiconductor devices as final control devices for a single load · CPC title
of the resonant type · CPC title
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