IP Library Granted Patent US 8,558,411
Granted Patent B2
US 8,558,411 · App. 12/842,421 · Granted Oct 15, 2013

Power supply

Inventors: David W. Baarman (Fennville, MI); William T. Stoner, Jr. (Ada, MI); Hai D. Nguyen (Grand Rapids, MI)
Assignee: Access Business Group International LLC
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Quick Facts
Patent No.
US 8,558,411
App. No.
12/842,421
Granted
Oct 15, 2013
Kind
B2
Abstract

In one aspect, the present invention provides a universal power supply for wired and wireless electronic devices. In a second aspect, the present invention provides a universal power supply that is reconfigurable to provide a wide range of power supply options.

Claims (28)

1. A multi-input wireless power supply comprising:

an AC/DC rectifier circuit capable of accepting a first input voltage or a second input voltage, wherein said AC/DC rectifier produces a rectified output;

a sensor for detecting which of said first input voltage and said second input voltage is connected to said multi-input wireless power supply;

a plurality of switching circuits each coupled to said rectified output;

a first tank circuit coupled to one of said plurality of switching circuits, wherein characteristics of said first tank circuit are selected for transferring power to a remote device as a function of said first input voltage;

a second tank circuit coupled to a different of said plurality of switching circuits, wherein characteristics of said second tank circuit are selected for transferring power to said remote device as a function of said second input voltage, wherein said characteristics of said second tank circuit are different from said characteristics of said first tank circuit;

a low power DC/DC converter coupled to said AC/DC rectifier for converting said rectified output;

a microcontroller coupled to said low power DC/DC converter, wherein said microcontroller is programmed to control said plurality of switching circuits based on output from said sensor.

2. The multi-input wireless power supply of claim 1 wherein said plurality of switching circuits are rated for whichever of said first input voltage and said second input voltage is higher.

3. The multi-input wireless power supply of claim 1 wherein said characteristics of said first tank circuit and said characteristics of said second tank circuit include a number of turns of an inductor, a gauge of wire of an inductor, a coil diameter of an inductor, an inductance value of an inductor, and a capacitance value of a capacitor.

4. The method of claim 1 wherein the multi-input wireless power supply provides intrinsic safety and high voltage isolation.

5. The multi-input wireless power supply of claim 1 wherein said first input voltage is 110VAC and said second input voltage is 220 VAC.

6. The multi-input wireless power supply of claim 1 wherein said first input voltage and said second input voltage are selected from the group comprising 110VAC, 220VAC, 19VDC, and 5VDC, wherein said first input voltage and said second input voltage are different.

7. The multi-input wireless power supply of claim 1 wherein said sensor is located in the AC/DC rectifier circuit.

8. The multi-input wireless power supply of claim 1 wherein said microprocessor includes said sensor.

9. A multi-input wireless power supply comprising:

a rectifier circuit capable of accepting a first input voltage or a second input voltage, wherein said rectifier circuit produces a rectified output;

a plurality of switching circuits each coupled to said rectified output;

a first tank circuit coupled to one of said plurality of switching circuits, wherein characteristics of said first tank circuit are selected for transferring power to a remote device as a function of said first input voltage without being converted by a DC/DC converter;

a second tank circuit coupled to a different of said plurality of switching circuits, wherein characteristics of said second tank circuit are selected for transferring power to said remote device as a function of said second input voltage without being converted by a DC/DC converter, wherein said characteristics of said second tank circuit are different from said characteristics of said first tank circuit; and

a microcontroller programmed to control said plurality of switching circuits.

10. The multi-input wireless power supply of claim 9 wherein said plurality of switching circuits are rated for whichever of said first input voltage and said second input voltage is higher.

11. The multi-input wireless power supply of claim 9 wherein said characteristics of said first tank circuit and said characteristics of said second tank circuit include a number of turns of an inductor, a gauge of wire of an inductor, a coil diameter of an inductor, an inductance value of an inductor, and a capacitance value of a capacitor.

12. The method of claim 9 wherein the multi-input wireless power supply provides intrinsic safety and high voltage isolation.

13. The multi-input wireless power supply of claim 9 wherein said first input voltage is 110VAC and said second input voltage is 220 VAC.

14. The multi-input wireless power supply of claim 9 wherein said first input voltage and said second input voltage are selected from the group comprising 110VAC, 220VAC, 19VDC, and 5VDC, wherein said first input voltage and said second input voltage are different.

15. The multi-input wireless power supply of claim 9 wherein said sensor is located in said rectifier circuit.

16. The multi-input wireless power supply of claim 9 including a sensor for detecting which of said first input voltage and said second input voltage is connected to said multi-input wireless power supply.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2018
From: ACCESS BUSINESS GROUP INTERNATIONAL LLC
To: PHILIPS IP VENTURES B.V.
Reel/Frame 045644/0810 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2010
From: BAARMAN, DAVID W.; STONER, WILLIAM T., JR.; NGUYEN, HAI D.
To: ACCESS BUSINESS GROUP INTERNATIONAL LLC
Reel/Frame 025013/0731 →
Continuity (2)
Provisional Application 61228192 · Jul 24, 2009
Related Publication 20110018360A1 · Jan 27, 2011