IP Library Granted Patent US 9,627,966
Granted Patent B2
US 9,627,966 · App. 13/666,303 · Granted Apr 18, 2017

Power converter having an advanced control IC

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Quick Facts
Patent No.
US 9,627,966
App. No.
13/666,303
Granted
Apr 18, 2017
Kind
B2
Abstract

There are disclosed herein various implementations of a power converter having an advanced control integrated circuit (IC). The power converter includes the control IC and a power switch. The control IC includes a driving stage for driving the power switch, and a sensing stage coupled to the driving stage. The sensing stage is configured to produce a control signal for the driving stage based on an output current of the power converter sensed at a high side bus of the power converter.

Claims (31)

1. A control integrated circuit (IC) for use in a power converter, the control IC comprising:

a driving stage configured to drive a power switch;

a high side current sense pin configured to be coupled to a sense resistor, the sense resistor coupled between a high side bus and the power switch;

a voltage regulation device; and

a sensing stage coupled between the high side current sense pin and the driving stage, the sensing stage configured to produce a control signal for the driving stage based on an output current flowing through the sense resistor, wherein

the sensing stage comprises a comparator with a first input coupled to the high side current sense pin, and a second input coupled to the voltage regulation device.

2. The control IC of claim 1 , wherein the sensing stage is coupled across the sense resistor.

3. The control IC of claim 1 , wherein said sensing stage is implemented in a high voltage block of said control IC.

4. The control IC of claim 1 , further comprising a level shifter coupled between said sensing stage and said driving stage, said level shifter configured to produce a level shifted signal corresponding to said control signal.

5. The control IC of claim 1 , wherein said driving stage comprises a frequency limiting block configured to receive a level shifted signal corresponding to said control signal.

6. The control IC of claim 1 , wherein said power converter comprises a buck converter.

7. The control IC of claim 1 , wherein said power converter is a light-emitting diode (LED) driver.

8. The control IC of claim 1 , wherein a load in series with an inductor is coupled between the sense resistor and the power switch.

9. The control IC of claim 8 , further comprising the load, wherein the load comprises an LED.

10. The control IC of claim 1 , further comprising the power switch.

11. A method comprising:

sensing an output current of a power converter, the output current flowing through a load; and

producing a control signal for driving a power switch in the power converter based on the sensed output current, wherein

the sensing the output current comprises sensing a voltage across a sense resistor coupled between a high side bus and the load, the load coupled between the sense resistor and a ground terminal.

12. The method of claim 11 , further comprising level shifting the control signal to produce a level shifted signal for use in generating a drive signal for the power switch.

13. The method of claim 12 , further comprising limiting a frequency of the level shifted signal before generating the drive signal.

14. A circuit comprising:

a power switch coupled between a load and a ground terminal;

a driving circuit coupled to the power switch and configured to generate a control signal for driving the power switch; and

a current sensing circuit operatively coupled to the driving circuit, wherein the current sensing circuit is configured to sense a load current configured to flow through the load by sensing a voltage across a sense resistor, the sense resistor coupled between a high side bus and the load.

15. The circuit of claim 14 , further comprising a level shifter coupled between the current sensing circuit and the driving circuit.

16. The circuit of claim 14 , further comprising the sense resistor.

17. The circuit of claim 14 , further comprising the load, wherein the load comprises an LED.

18. The circuit of claim 14 , wherein the driving circuit comprises a comparator configured to receive a high voltage reference.

19. The control IC of claim 5 , wherein the frequency limiting block is configured to limit a frequency of an output signal of the frequency limiting block to below 150 kHz.

20. The circuit of claim 14 , further comprising an inductor coupled between the load and the power switch.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Apr 13, 2016
From: INFINEON TECHNOLOGIES NORTH AMERICA CORP.; INTERNATIONAL RECTIFIER CORPORATION; INTERNATIONAL RECTIFIER CORPORATION
To: INFINEON TECHNOLOGIES AMERICAS CORP.
Reel/Frame 038463/0859 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2012
From: GREEN, PETER B.
To: INTERNATIONAL RECTIFIER CORPORATION
Reel/Frame 029227/0139 →