Circuit and method for controlling a switching transistor of a switching regulator

US9331573B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9331573-B2
Application numberUS-201213570652-A
CountryUS
Kind codeB2
Filing dateAug 9, 2012
Priority dateAug 11, 2011
Publication dateMay 3, 2016
Grant dateMay 3, 2016

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A control circuit for controlling a switching transistor of a switching regulator includes a hysteresis comparator circuit comparing a feedback voltage according to an output signal of the switching regulator with a reference voltage and a threshold voltage and outputting a pulse width modulation signal as an output signal of the hysteresis comparator circuit, where the threshold voltage has a hysteresis according to the pulse width modulation signal. The control circuit further includes a driver driving the switching transistor based on the pulse width modulation signal, a phase comparator generating a phase difference signal based on a phase difference between a reference clock signal and a pulse signal corresponding to the pulse width modulation signal, and a loop filter generating a control voltage by filtering the phase difference signal. The hysteresis comparator circuit is further configured to control a response speed thereof depending on the control voltage.

First claim

Opening claim text (preview).

What is claimed is: 1. A control circuit for controlling a switching transistor of a switching regulator, comprising: a hysteresis comparator circuit configured to compare a feedback voltage according to an output signal of the switching regulator with a threshold voltage, and configured to output a pulse width modulation signal as an output signal of the hysteresis comparator circuit, the threshold voltage having a hysteresis according to the pulse width modulation signal, and a response speed of the hysteresis comparator circuit being controllable; a driver, to which the pulse width modulation signal is input, configured to drive the switching transistor based on the pulse width modulation signal; a phase comparator configured to generate a phase difference signal based on a phase difference between a reference clock signal and a pulse signal corresponding to the pulse width modulation signal; and a loop filter configured to generate a control voltage by filtering the phase difference signal, wherein the hysteresis comparator circuit is further configured to control the response speed thereof depending on the control voltage so that the response speed of the hysteresis comparator increases as the phase of the pulse signal lags behind the phase of the reference clock signal, and decreases as the phase of the pulse signal leads the phase of the reference clock signal, wherein the hysteresis comparator circuit includes: a comparator including a first input terminal to which the feedback voltage is input and a second input terminal to which the reference voltage is input; and one of a first feedback circuit and a second feedback circuit, wherein the first feedback circuit is configured to feed a first feedback pulse signal back to the second input terminal, and the first feedback pulse signal has a logic level opposite to a logic level of the pulse width modulation signal, wherein the second feedback circuit is configured to feed a second feedback pulse signal back to the first input terminal, and the second feedback pulse signal has the same logic level as the logic level of the pulse width modulation signal, wherein each of the first and the second feedback circuits variably controls a time constant depending on the control voltage, and wherein each of the first and the second feedback circuits includes a resistor and a capacitor which are serially connected to each other, and the resistor variably controls a resistance depending on the control voltage. 2. A control circuit for controlling a switching transistor of a switching regulator, comprising: a hysteresis comparator circuit configured to compare a feedback voltage according to an output signal of the switching regulator with a threshold voltage, and configured to output a pulse width modulation signal as an output signal of the hysteresis comparator circuit, the threshold voltage having a hysteresis according to the pulse width modulation signal, and a response speed of the hysteresis comparator circuit being controllable; a driver configured to drive the switching transistor based on the pulse width modulation signal; a phase comparator configured to generate a phase difference signal based on a phase difference between a reference clock signal and a pulse signal corresponding to the pulse width modulation signal; and a loop filter configured to generate a control voltage by filtering the phase difference signal, wherein the hysteresis comparator circuit is further configured to control the response speed thereof depending on the control voltage so that the response speed of the hysteresis comparator increases as the phase of the pulse signal lags behind the phase of the reference clock signal, and decreases as the phase of the pulse signal leads the phase of the reference clock signal, and wherein the hysteresis comparator circuit includes: a comparator including a first input terminal to which the feedback voltage is input and a second input terminal to which a reference voltage is input; and one of a first feedback circuit and a second feedback circuit, wherein the first feedback circuit is configured to feed a first feedback pulse signal back to the second input terminal, and the first feedback pulse signal has a logic level opposite to a logic level of the pulse width modulation signal, wherein the second feedback circuit is configured to feed a second feedback pulse signal back to the first input terminal, and the second feedback pulse signal has the same logic level as the logic level of the pulse width modulation signal, and wherein the comparator variably controls a bias current depending on the control voltage. 3. A control circuit for controlling a switching transistor of a switching regulator, comprising: a hysteresis comparator circuit configured to compare a feedback voltage according to an output signal of the switching regulator with a threshold voltage, and configured to output a pulse width modulation signal as an output signal of the hysteresis comparator circuit, the threshold voltage having a hysteresis according to the pulse width modulation signal, and a response speed of the hysteresis comparator circuit being controllable; a driver, to which the pulse width modulation signal is input, configured to drive the switching transistor based on the pulse width modulation signal; a phase comparator configured to generate a phase difference signal based on a phase difference between a reference clock signal and a pulse signal corresponding to the pulse width modulation signal; and a loop filter configured to generate a control voltage by filtering the phase difference signal, wherein the hysteresis comparator circuit is further configured to control the response speed thereof depending on the control voltage so that the response speed of the hysteresis comparator increases as the phase of the pulse signal lags behind the phase of the reference clock signal, and decreases as the phase of the pulse signal leads the phase of the reference clock signal, wherein the hysteresis comparator circuit includes: a comparator including a first input terminal to which the feedback voltage is input and a second input terminal to which the reference voltage is input; and one of a first feedback circuit and a second feedback circuit, wherein the first feedback circuit is configured to feed a first feedback pulse signal back to the second input terminal, and the first feedback pulse signal has a logic level opposite to a logic level of the pulse width modulation signal, wherein the second feedback circuit is configured to feed a second feedback pulse signal back to the first input terminal, and the second feedback pulse signal has the same logic level as the logic level of the pulse width modulation signal, wherein each of the first and the second feedback circuits variably controls a time constant depending on the control voltage, and wherein each of the first and the second feedback circuits includes a resistor and a capacitor which are serially connected to each other, and the capacitor variably controls a capacitance depending on the control voltage. 4. A control circuit for controlling a switching transistor of a switching regulator, comprising: a hysteresis comparator circuit configured to compare a feedback voltage according to an output signal of the switching regulator with a threshold voltage, and configured to output a pulse width modulation signal as an output signal of the hysteresis comparator circuit, the threshold voltage having a hysteresis according to the pulse width modulation signal, and a response speed of the hysteresis comparator circuit being controllable; a driver, to which the pulse width modulation signal is input, configured to drive the switching transistor based on the pulse width modulation signal; a phase compa

Assignees

Inventors

Classifications

  • including plural semiconductor devices as final control devices for a single load · CPC title

  • H02M3/1563Primary

    without using an external clock (H02M3/158 takes precedence) · CPC title

  • with automatic control of output voltage or current, e.g. switching regulators · CPC title

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What does patent US9331573B2 cover?
A control circuit for controlling a switching transistor of a switching regulator includes a hysteresis comparator circuit comparing a feedback voltage according to an output signal of the switching regulator with a reference voltage and a threshold voltage and outputting a pulse width modulation signal as an output signal of the hysteresis comparator circuit, where the threshold voltage has a …
Who is the assignee on this patent?
Yanagida Osamu, Rohm Co Ltd
What technology area does this patent fall under?
Primary CPC classification H02M3/1563. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 03 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).