IP Library Granted Patent US 10,635,127
Granted Patent B2
US 10,635,127 · App. 16/484,539 · Granted Apr 28, 2020

Reference voltage generator circuit generating reference voltage based on band gap by controlling currents flowing in first and second voltage generator circuits

Inventor: Yohkoh Hirose (Amagasaki, JP)
Assignee: RICOH ELECTRONIC DEVICES CO., LTD.
G05F3/30G05F1/567G05F1/468
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Quick Facts
Patent No.
US 10,635,127
App. No.
16/484,539
Filed
Aug 8, 2019
Granted
Apr 28, 2020
Kind
B2
Examiner
NASH, GARY A
Art Unit
2839
USPC
323/313
Abstract

A reference voltage generator circuit is provided with a first voltage generator circuit that generates a first direct-current voltage; a second voltage generator circuit that generates a second direct-current voltage; and an operational amplifier that generates a voltage difference between the first and second direct-current voltages. The reference voltage generator circuit generates a reference voltage based on a band gap by controlling currents flowing in the first and second voltage generator circuits based on the voltage difference, and includes a third voltage generator circuit including a PNP bipolar transistor, which is connected in parallel with the first voltage generator circuit. The third voltage generator circuit generates a third direct-current voltage corresponding to a base current flowing in the PNP bipolar transistor, and applies it to the operational amplifier with the first direct-current voltage.

Claims (21)

1. A reference voltage generator circuit comprising:

a first voltage generator circuit that generates a first direct-current voltage, the first voltage generator circuit including a series connecting circuit of a first resistor and a first PN junction device;

a second voltage generator circuit that generates a second direct-current voltage, the second voltage generator circuit including a series connecting circuit of a second resistor, a third resistor, and a plurality of second PN junction devices being connected in parallel with each other; and

an operational amplifier that generates a voltage difference between the first direct-current voltage and the second direct-current voltage,

wherein the first and second PN junction devices are configured to include diode-connected first and second PNP bipolar transistors, respectively,

wherein the reference voltage generator circuit generates a reference voltage based on a band gap by controlling respective currents flowing in the first and second voltage generator circuits based on the voltage difference,

wherein the reference voltage generator circuit further comprises a third voltage generator circuit including a series connecting circuit of a fourth resistor and a third PNP bipolar transistor, the third voltage generator circuit being connected in parallel with the first voltage generator circuit, and

wherein the third voltage generator circuit generates a third direct-current voltage corresponding to a base current flowing in the third PNP bipolar transistor, and applies the third direct-current voltage to the operational amplifier together with the first direct-current voltage.

2. The reference voltage generator circuit as claimed in claim 1 , further comprising a fourth voltage generator circuit including a series connecting circuit of a fifth resistor and a fourth PNP bipolar transistor, the fourth voltage generator circuit being connected in parallel with the first voltage generator circuit,

wherein the fourth voltage generator circuit generates a fourth direct-current voltage corresponding to a base current flowing in the fourth PNP bipolar transistor, and applies the fourth direct-current voltage to the operational amplifier together with the first direct-current voltage.

3. A reference voltage generation method for a reference voltage generator circuit comprising:

a first voltage generator circuit that generates a first direct-current voltage, the first voltage generator circuit including a series connecting circuit of a first resistor and a first PN junction device;

a second voltage generator circuit that generates a second direct-current voltage, the second voltage generator circuit including a series connecting circuit of a second resistor, a third resistor, and a plurality of second PN junction devices, the plurality of second PN junction devices being connected in parallel with each other; and

an operational amplifier that generates a voltage difference between the first direct-current voltage and the second direct-current voltage,

wherein the first and second PN junction devices are configured to include diode-connected first and second PNP bipolar transistors, respectively,

wherein the reference voltage generator circuit generates a reference voltage based on a band gap by controlling respective currents flowing in the first and second voltage generator circuits based on the voltage difference, and

wherein the reference voltage generator circuit further comprises a third voltage generator circuit including a series connecting circuit of a fourth resistor and a third PNP bipolar transistor, the third voltage generator circuit being connected in parallel with the first voltage generator circuit, and

wherein the reference voltage generation method includes a step of, by the third voltage generator circuit, generating a third direct-current voltage corresponding to a base current flowing in the third PNP bipolar transistor, and applying the third direct-current voltage to the operational amplifier together with the first direct-current voltage.

4. The reference voltage generation method as claimed in claim 3 ,

wherein the reference voltage generator circuit further comprises a fourth voltage generator circuit including a series connecting circuit of a fifth resistor and a fourth PNP bipolar transistor, the fourth voltage generator circuit being connected in parallel with the first voltage generator circuit, and

wherein the reference voltage generation method includes a step of, by the fourth voltage generator circuit, generating a fourth direct-current voltage corresponding to a base current flowing in the fourth PNP bipolar transistor, and applying the fourth direct-current voltage to the operational amplifier together with the first direct-current voltage.

Assignments (3)
CHANGE OF NAME Recorded Mar 3, 2022
From: NEW JAPAN RADIO CO., LTD.
To: NISSHINBO MICRO DEVICES INC.
Reel/Frame 059311/0446 →
MERGER Recorded Feb 14, 2022
From: RICOH ELECTRONIC DEVICES CO., LTD.
To: NEW JAPAN RADIO CO., LTD.
Reel/Frame 059085/0740 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2019
From: HIROSE, YOHKOH
To: RICOH ELECTRONIC DEVICES CO., LTD.
Reel/Frame 050002/0954 →