IP Library Granted Patent US 12,374,983
Granted Patent B2
US 12,374,983 · App. 18/330,754 · Granted Jul 29, 2025

Control device for a switching voltage regulator having improved control performance and control method

Inventors: Stefano Castorina (Milan, IT); Elena Brigo (Milan, IT); Ivan Floriani (Milan, IT)
Assignee: STMICROELECTRONICS S.r.l.
H02M1/0025H02M1/0009H02M1/0012H02M1/0019
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Quick Facts
Patent No.
US 12,374,983
App. No.
18/330,754
Granted
Jul 29, 2025
Kind
B2
Abstract

Provided is a control device is for a switching voltage regulator having a switching circuit. The control device receives input and output voltages of the switching circuit and a measurement signal indicative of a current of the switching circuit. The control device has: a feedback module that detects an error signal indicative of a difference between the output voltage and a nominal voltage, and provides a control signal as a function of the error signal; a threshold-correction module that provides offset and ramp signals; and a driving-signal generation module coupled to the feedback and threshold-correction modules, which receives the measurement signal, compares the measurement signal with a threshold and, in response, provides a modulated signal for driving the switching circuit. The threshold is a function of the control, offset and ramp signals. The threshold-correction module provides the offset signal as a function of the input or output voltages.

Claims (61)

1. A control device for a switching voltage regulator,

wherein the switching voltage regulator includes a switching circuit configured to receive an input voltage and output an output voltage,

wherein the control device is configured to receive the input voltage, the output voltage and a measurement signal indicative of a current that flows in the switching circuit, and

wherein the control device comprises:

a feedback stage configured to:

detect an error signal indicative of a difference between the output voltage and a nominal voltage; and

provide a control signal as a function of the error signal;

a threshold correction stage configured to provide an offset signal and a ramp signal; and

a driving signal generation stage coupled to the feedback stage and the threshold correction stage and configured to:

receive the measurement signal;

compare the measurement signal with a threshold, the threshold being a function of the control signal, the offset signal and the ramp signal; and

in response to comparing the measurement signal with the threshold, provide a modulated signal for driving the switching circuit,

wherein the threshold correction stage is configured to provide the offset signal as a function of the input voltage or the output voltage.

2. The control device according to claim 1 , wherein the threshold correction stage is configured to:

provide the offset signal as a function of a difference between the input voltage and the output voltage.

3. The control device according to claim 1 , wherein the offset signal is proportional to the input voltage and the output voltage.

4. The control device according to claim 1 , wherein the switching circuit includes a resistive element, wherein the driving signal generation stage includes a comparator having a first input configured to be coupled to a first terminal of the resistive element and a second input configured to be coupled to a second terminal of the resistive element, and wherein the comparator is configured to receive the control signal and the ramp signal at the first input and the offset signal at the second input.

5. The control device according to claim 1 , wherein the feedback stage includes a compensation stage and a voltage-to-current conversion stage, wherein the compensation stage is configured to generate a control voltage based on the error signal, and wherein the voltage-to-current conversion stage is configured to generate the control signal starting from the control voltage.

6. The control device according to claim 1 , wherein the ramp signal has a slope, and the threshold correction stage is configured to modify the slope of the ramp signal as a function of the input voltage or the output voltage.

7. The control device according to claim 1 , wherein the ramp signal has a slope, and the threshold correction stage is configured to modify the slope of the ramp signal as a function of a difference between the input voltage and the output voltage.

8. The control device according to claim 1 , wherein the threshold correction stage includes an offset generator and a ramp generator coupled to the offset generator, wherein the offset generator is configured to provide the offset signal, based on the input voltage and the output voltage, and a slope control signal indicative of a difference between the input voltage and the output voltage, and wherein the ramp generator is configured to generate the ramp signal based on the slope control signal.

9. A switching voltage regulator, comprising:

a switching circuit configured to receive an input voltage and output an output voltage, wherein the switching circuit includes:

at least one half bridge having an intermediate node and first and second switches that are coupled in series between a connection node and a common reference potential node, wherein the first and second switches are controlled, respectively, by a first switch control signal and a second switch control signal; and

an inductor coupled to the intermediate node; and

a control device including:

a feedback stage configured to:

detect an error signal indicative of a difference between the output voltage and a nominal voltage; and

provide a control signal as a function of the error signal;

a threshold correction stage configured to provide an offset signal and a ramp signal; and

a driving signal generation stage coupled to the feedback stage and the threshold correction stage and configured to:

receive a measurement signal indicative of a current that flows in the switching circuit;

compare the measurement signal with a threshold, the threshold being a function of the control signal, the offset signal and the ramp signal;

in response to comparing the measurement signal with the threshold, provide a modulated signal for driving the switching circuit; and

generate the first switch control signal and the second switch control signal based on the modulated signal,

wherein the threshold correction stage is configured to provide the offset signal as a function of the input voltage or the output voltage.

10. The switching voltage regulator according to claim 9 , wherein:

the connection node is an input node configured to receive the input voltage,

the at least one half bridge is a first half bridge,

the switching circuit includes a second half bridge including third and fourth switches coupled in series between an output node configured to provide the output voltage and the common reference potential node,

the inductor is coupled between intermediate nodes of the first and the second half bridges,

the third and fourth switches are controlled, respectively, by third and fourth switch control signals generated by the driving signal generation stage based on the modulated signal.

11. The switching voltage regulator according to claim 9 , wherein the threshold correction stage is configured to:

provide the offset signal as a function of a difference between the input voltage and the output voltage.

12. The switching voltage regulator according to claim 9 , wherein the offset signal is proportional to the input voltage and the output voltage.

13. The switching voltage regulator according to claim 9 , wherein the switching circuit includes a resistive element, wherein the driving signal generation stage includes a comparator having a first input configured to be coupled to a first terminal of the resistive element and a second input configured to be coupled to a second terminal of the resistive element, and wherein the comparator is configured to receive the control signal and the ramp signal at the first input and the offset signal at the second input.

14. The switching voltage regulator according to claim 9 , wherein the feedback stage includes a compensation stage and a voltage-to-current conversion stage, wherein the compensation stage is configured to generate a control voltage based on the error signal, and wherein the voltage-to-current conversion stage is configured to generate the control signal starting from the control voltage.

15. The switching voltage regulator according to claim 9 , wherein the ramp signal has a slope, and the threshold correction stage is configured to modify the slope of the ramp signal as a function of the input voltage or the output voltage.

16. A method for controlling a switching voltage regulator:

detecting an error signal indicative of a difference between an output voltage of the switching voltage regulator and a nominal voltage;

providing a control signal as a function of the error signal;

providing a ramp signal;

providing an offset signal;

receiving a measurement signal indicative of a current that flows in a switching circuit of the switching voltage regulator;

comparing the measurement signal with a threshold, wherein the threshold is a function of the control signal, the offset signal and the ramp signal; and

providing a modulated signal for driving the switching circuit, in response to the comparing the measurement signal with the threshold,

wherein the offset signal is a function of an input voltage of the switching voltage regulator or the output voltage of the switching voltage regulator.

17. The method according to claim 16 , wherein the offset signal is a function of a difference between the input voltage and the output voltage.

18. The method according to claim 16 , wherein the offset signal is proportional to the input voltage and to the output voltage.

19. The method according to claim 16 , wherein the ramp signal has a slope that is a function of a difference between the input voltage and the output voltage or is proportional to the input voltage and to the output voltage.

20. The method according to claim 16 , wherein the modulated signal has a period having a duty cycle, the method comprising modifying the duty cycle of the modulated signal in response to comparing the measurement signal with the threshold.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2023
From: CASTORINA, STEFANO; BRIGO, ELENA; FLORIANI, IVAN
To: STMICROELECTRONICS S.R.L.
Reel/Frame 064410/0551 →
Priority Claims (1)
IT 102022000013240 · Jun 22, 2022 · national
Continuity (1)
Related Publication 20230421039A1 · Dec 28, 2023
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