IP Library Granted Patent US 11,677,318
Granted Patent B2
US 11,677,318 · App. 17/248,087 · Granted Jun 13, 2023

System and method for controlling switching power supply

Inventors: Gang Chen (Taipo, HK); Rong-Shyang Ou (San Jose, CA)
Assignee: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
H02M3/156H02M1/0009H02M1/0054H02M3/1584Y02B70/10
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Quick Facts
Patent No.
US 11,677,318
App. No.
17/248,087
Granted
Jun 13, 2023
Kind
B2
Abstract

A circuit for controlling a switching power supply includes a disable signal generator generating a disable signal in response to an input clock signal, a timer circuit generating a timeout signal in response to the disable signal, a comparison signal generator generating a comparison signal in response to an output signal of the power supply, a first threshold signal generator generating a first threshold signal in response to the comparison signal, the first threshold signal having a value greater than that of the comparison signal, and a first comparator comparing the first threshold signal and a sense signal to de-assert the modulation signal when the sense signal is equal to or greater than the first threshold signal and the timeout signal has a first logic value.

Claims (40)

1. A circuit for controlling a switching power supply, comprising:

a disable signal generator configured to generate a disable signal in response to an input clock signal;

a timer circuit configured to generate a timeout signal in response to the disable signal;

a comparison signal generator configured to generate a comparison signal in response to an output signal of the switching power supply;

a first threshold signal generator configured to generate a first threshold signal in response to the comparison signal, the first threshold signal having a value greater than that of the comparison signal; and

a first comparator configured to compare the first threshold signal and a sense signal to de-assert a modulation signal when the sense signal is equal to or greater than the first threshold signal and the timeout signal has a first logic value.

2. The circuit of claim 1 , wherein the input clock signal is a first output clock signal from a first power module, and

wherein the circuit is included in a second power module coupled to the first power module.

3. The circuit of claim 2 , wherein the disable signal generator is further configured to generate a second output clock signal in response to the modulation signal and provides the second output clock signal to a third power module coupled to the second power module.

4. The circuit of claim 1 , wherein the first threshold signal generator outputs the first threshold signal to the first comparator when the modulation signal has a second logic value, and outputs the comparison signal to the first comparator when the modulation signal has the first logic value.

5. The circuit of claim 4 , wherein the first comparator is further configured to compare the comparison signal and the sense signal to assert the modulation signal when the comparison signal is equal to or greater than the sense signal and the timeout signal has the second logic value.

6. The circuit of claim 1 , further comprising a second threshold signal generator configured to generate a second threshold signal in response to the comparison signal, the second threshold signal having a value smaller than that of the comparison signal.

7. The circuit of claim 6 , further comprising a second comparator configured to compare the second threshold signal and the sense signal to assert the modulation signal when the second threshold signal is equal to or greater than the sense signal.

8. The circuit of claim 1 , wherein the first threshold signal generator generates the first threshold signal having a value equal to a sum of a value of the comparison signal and a first threshold value, the first threshold value being proportional to a value of the output signal with a first proportionality constant, the sense signal having a slew rate that is proportional to a second proportionality constant, the first proportionality constant being equal to or less than the second proportionality constant.

9. The circuit of claim 1 , wherein the timer circuit is configured to assert the timeout signal after a given time interval from a specific time at which the disable signal has been de-asserted, the given time interval being equal to a nominal switching period divided by a phase number of the switching power supply.

10. The circuit of claim 9 , wherein the timer circuit includes:

a capacitor having a first end and a second end, the first end being coupled to a ground;

a switching device coupled to the capacitor in parallel and operating in response to the disable signal;

an adaptive current source providing a current to charge the capacitor; and

a comparator comparing a voltage at the second end of the capacitor with a reference voltage and outputting the timeout signal in response to the comparison result.

11. The circuit of claim 1 , further comprising a select switching device configured to couple an output of the comparison signal generator to an input of the first comparator in response to a master select signal, the comparison signal generator being an amplifier circuit generating the comparison signal having a value that is proportional to a difference between the output signal of the switching power supply and a reference signal.

12. A switching power supply comprising:

a first power module generating a first output clock signal, the first power module including a first disable signal generator, a first timer circuit, and a first controller; and

a second power module coupled to the first power module, the second power module including a second disable signal generator, a second timer circuit, and a second controller,

wherein the second disable signal generator generates a disable signal in response to the first output clock signal, the second timer circuit generates a timeout signal in response to the disable signal, and the second controller generates a comparison signal in response to an output signal of the switching power supply, generates a first threshold signal in response to the comparison signal, compares the first threshold signal and a sense signal, and de-asserts a modulation signal when the sense signal is equal to or greater than the first threshold signal and the timeout signal has a first logic value.

13. The switching power supply of claim 12 , wherein the second power module receives the first output clock signal from the first power module at a first time, the second timer circuit outputs the timeout signal having the first logic value during a time interval equal to a nominal switching period divided by a phase number of the switching power supply, and the second disable signal generator outputs a second output clock signal at a second time corresponding to a sum of the first time and the time interval.

14. A method of controlling a switching power supply, the method comprising:

generating a disable signal in response to an input clock signal;

generating a timeout signal in response to the disable signal;

generating a comparison signal in response to an output signal of the switching power supply;

generating a first threshold signal in response to the comparison signal, the first threshold signal having a value greater than that of the comparison signal; and

comparing the first threshold signal and a sense signal to de-assert a modulation signal when the sense signal is equal to or greater than the first threshold signal and the timeout signal has a first logic value.

15. The method of claim 14 , further comprising:

outputting the first threshold signal to a comparator when the modulation signal has a second logic value; and

outputting the comparison signal to the comparator when the modulation signal has the first logic value.

16. The method of claim 15 , further comprising comparing the comparison signal and the sense signal to assert the modulation signal when the comparison signal is equal to or greater than the sense signal and the timeout signal has the second logic value.

17. The method of claim 14 , further comprising generating a second threshold signal in response to the comparison signal, the second threshold signal having a value smaller than that of the comparison signal.

18. The method of claim 17 , further comprising comparing the second threshold signal and the sense signal to assert the modulation signal when the second threshold signal is equal to or greater than the sense signal.

19. The method of claim 14 , wherein the first threshold signal has a value equal to a sum of a value of the comparison signal and a first threshold value, the first threshold value being proportional to a value of the output signal with a first proportionality constant, the sense signal having a slew rate that is proportional to a second proportionality constant, the first proportionality constant being equal to or less than the second proportionality constant.

20. The method of claim 14 , further comprising asserting the timeout signal after a given time interval from a specific time at which the disable signal has been de-asserted, the given time interval being equal to a nominal switching period divided by a phase number of the switching power supply.

Assignments (3)
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL 056595, FRAME 0177 Recorded Aug 16, 2023
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 064615/0564 →
SECURITY INTEREST Recorded Jun 15, 2021
From: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 056595/0177 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2021
From: CHEN, GANG; OU, RONG-SHYANG
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 054856/0272 →