Tire monitoring sensor, system and conrol method thereof, and vehicle having the same
US-2024416687-A1 · Dec 19, 2024 · US
US9892846B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9892846-B2 |
| Application number | US-201214123470-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 24, 2012 |
| Priority date | Jun 8, 2011 |
| Publication date | Feb 13, 2018 |
| Grant date | Feb 13, 2018 |
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Disclosed is a wireless power transmitter. A wireless power transmitter includes a transmission coil for generating a magnetic field by receiving power from a power source, a transmission resonant coil for transmitting power to a receiving coil by using the magnetic field generated from the transmission coil by using resonance, a detection unit for detecting an approach of the receiving coil and a power regulator for adjusting an output of the power source, which supplies the power, based on the approach of the receiving coil detected by the detection unit.
Opening claim text (preview).
The invention claimed is: 1. A wireless power transmitter comprising: a first coil; a second coil coupled to the first coil to transmit power by using resonance; a detection unit for detecting a state of a receiving side; and a power regulator for adjusting the transmit power according to the detection result of the detection unit, wherein the detection unit comprises: a first power detector for detecting a first power of a power source and outputting a first signal; a second power detector for detecting a second power of the second coil and outputting a second signal; a third coil coupled to the second coil to detect an intensity of a magnetic field of the second coil, wherein the intensity of the magnetic field of the second coil is converted into the second signal by the second power detector; and a comparator for outputting a control signal according to the comparing result of the first signal with the second signal; wherein the first power detector detects the first power of the power source before the first power is transmitted to the first coil. 2. The wireless power transmitter of claim 1 , wherein the state of the receiving side is a location of the receiving side. 3. The wireless power transmitter of claim 2 , wherein the detection unit detects the location of the receiving side based on an intensity of a magnetic field of the second coil. 4. The wireless power transmitter of claim 1 , wherein the first power is used as a reference value. 5. The wireless power transmitter of claim 1 , wherein if the second signal is higher than the first signal such that the receiving side moves far away from the transmitter, the power regulator reduces a power or makes a power as zero. 6. The wireless power transmitter of claim 1 , wherein if the second signal is lower than the first signal such that the receiving side is accessible to the transmitter, the power regulator increases a power. 7. A wireless power transmitter which wirelessly transmits power to a wireless power receiver, the wireless power transmitter comprising: a power source for generating an AC electrical current; a power transmission coil for converting the AC electrical current to a magnetic field and transmitting the power to the wireless power receiver; a detection unit for detecting an environmental condition of the power transmission coil; and an impedance matching circuit comprising a capacitor, wherein the wireless power transmitter controls the power according to the environmental condition of the power transmission coil detected by the detection unit; wherein the detection unit compares a first voltage signal based on the AC electrical current with a second voltage signal based on the environmental condition, wherein the wireless power transmitter is configured to reduce or terminate transmission of the power if a result of the comparison performed by the detection unit is below a predetermined value, and wherein the first voltage signal compared by the detection unit is a signal prior to any impedance matching by the impedance matching circuit. 8. The wireless power transmitter of claim 7 , wherein if the result of the comparison is below the predetermined value, the detection unit sends a signal to the power transmission coil causing the power transmission coil to reduce or terminate power transfer to the wireless power receiver. 9. The wireless power transmitter of claim 7 , wherein the environmental condition comprises a position of an object in relation to the wireless power transmitter. 10. The wireless power transmitter of claim 9 , wherein the wireless power transmitter is configured to automatically reduce the power transmitted, based on the environmental condition, to inhibit power loss. 11. A wireless power transmission method comprising: generating an AC electrical current from a power source; converting, by a power transmission coil of a wireless power transmitter, the AC electrical current to a magnetic field; transmitting, by the power transmission coil, the power to a wireless power receiver; determining, by a detection unit, an environmental condition of the power transmission coil; and comparing, by the detection unit, a first voltage signal based on the AC electrical current with a second voltage signal based on the environmental condition; wherein the wireless power transmitter is configured to reduce or terminate transmission of the power if a result of the comparison performed by the detection unit is below a predetermined value, and wherein the first voltage signal compared by the detection unit is a signal prior to any impedance matching. 12. The wireless power transmission method of claim 11 , wherein if the result of the comparison is below the predetermined value, the detection unit sends a signal to the power transmission coil causing the power transmission coil to reduce or terminate power transfer to the wireless power receiver. 13. The wireless power transmission method of claim 11 , wherein the environmental condition comprises a position of an object in relation to the wireless power transmitter. 14. The wireless power transmission method of claim 13 , wherein the wireless power transmitter is configured to automatically reduce the power transmitted, based on the environmental condition, to inhibit power loss.
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