IP Library Granted Patent US 8,779,748
Granted Patent B2
US 8,779,748 · App. 13/349,084 · Granted Jul 15, 2014

Error amplification circuit, control method for error amplification circuit, and switching regulator employing error amplification circuit

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Quick Facts
Patent No.
US 8,779,748
App. No.
13/349,084
Granted
Jul 15, 2014
Kind
B2
Abstract

An error amplification circuit includes an integrated circuit and a phase compensation capacitor. The integrated circuit includes an error amplifier to amplify a difference between a predetermined reference voltage and an input feedback voltage for output; a current generator circuit to generate a bias current for supply to the error amplifier; a phase compensation resistor; a bias-current control terminal; and a phase compensation terminal connected to an output terminal of the error amplifier via the phase compensation resistor. The phase compensation capacitor is connected to the phase compensation terminal, the phase compensation capacitor being provided outside the integrated circuit.

Claims (44)

1. An error amplification circuit comprising:

an integrated circuit comprising:

an error amplifier, having an output terminal, to amplify a difference between a predetermined reference voltage and an input feedback voltage for output;

a current generator circuit to generate a bias current for supply to the error amplifier;

a phase compensation resistor,connected to the output terminal of the error amplifier;

a bias-current control terminal connected to the current generator circuit; and

a phase compensation terminal connected to the output terminal of the error amplifier via the phase compensation resistor;

a phase compensation capacitor connected to the phase compensation terminal, the phase compensation capacitor being provided outside the integrated circuit; and

a bias-current control resistor electrically connectable to the bias-current control terminal,

wherein the current generator circuit generates a first non-zero bias current when the bias-current control terminal is opened, and

the current generator circuit generates a second bias current differing from the first bias current when the bias-current control terminal is connected to the bias-current control resistor.

2. The error amplification circuit according to claim 1 , further comprising a bias-current control circuit electrically connectable to the bias-current control terminal,

wherein the current generator circuit generates a first non-zero bias current when the bias-current control terminal is opened, and

the current generator circuit generates a third bias current differing from the first bias current when a bias-current control voltage generated in the bias-current control circuit is applied to the bias-current control terminal.

3. A switching regulator comprising an integrated circuit comprising:

a reference voltage generation circuit to generate a predetermined reference voltage;

a feedback circuit to feedback a voltage for output as a feedback voltage;

the error amplification circuit of claim 1 to amplify a difference between the predetermined reference voltage and the feedback voltage for output.

4. A control method for controlling an error amplification circuit that includes an integrated circuit and a phase compensation capacitor,

the control method comprising:

generating a bias current in a current generator circuit in the integrated circuit;

controlling the bias current from outside the integrated circuit;

generating a predetermined reference voltage in the integrated circuit;

inputting a feedback voltage, the predetermined reference voltage, and the bias current to an error amplifier in the integrated circuit;

amplifying a difference between the predetermined reference voltage and the feedback voltage for output as an error voltage in the error amplifier in the integrated circuit;

applying the error voltage to a phase compensation resistor; and

compensating for phase in the error amplifier in the integrated circuit by the phase compensation resistor in the integrated circuit and the phase compensation capacitor provided outside the integrated circuit,

wherein the bias current is generated in accordance with resistance of a bias-current control resistor provided outside the integrated circuit, and the bias-current resistor is electrically connectable to the current generator circuit in the integrated circuit.

5. The control method according to claim 4 , further comprising the steps of:

generating with the current generator circuit a first non-zero bias current when a bias-current control terminal connected to the current generator circuit and electrically connectable to the bias-current control circuit is opened; and

generating with the current generator circuit a second bias current differing from the first bias current when the bias-current control terminal is connected to the bias-current control resistor.

6. A control method for controlling an error amplification circuit that includes an integrated circuit and a phase compensation capacitor,

the control method comprising:

generating a bias current in a current generator circuit in the integrated circuit;

controlling the bias current from outside the integrated circuit;

generating a predetermined reference voltage in the integrated circuit;

inputting a feedback voltage, the predetermined reference voltage, and the bias current to an error amplifier in the integrated circuit;

amplifying a difference between the predetermined reference voltage and the feedback voltage for output as an error voltage in the error amplifier in the integrated circuit;

applying the error voltage to a phase compensation resistor; and

compensating for phase in the error amplifier in the integrated circuit by the phase compensation resistor in the integrated circuit and the phase compensation capacitor provided outside the integrated circuit,

wherein the generating of the bias current is controlled by a bias-current control voltage generated in a bias-current control circuit provided outside the integrated circuit and electrically connectable to the current generator circuit in the integrated circuit.

7. The control method according to claim 6 , further comprising the steps of:

generating a first non-zero bias current with the current generator circuit when a bias-current control terminal connected to the current generator circuit and electrically connectable to the bias-current control circuit is opened; and

generating a third bias current differing from the first bias current with the current generator circuit when the bias-current control voltage is applied to the bias-current control terminal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2015
From: RICOH COMPANY, LTD.
To: RICOH ELECTRONIC DEVICES CO., LTD.
Reel/Frame 035011/0219 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2012
From: GOTOH, TAKASHI
To: RICOH COMPANY, LTD.
Reel/Frame 027545/0645 →