IP Library › Granted Patent US 12,556,176
Granted Patent B2
US 12,556,176 · App. 18/663,108 · Granted Feb 17, 2026

Gate drive circuit

Inventors: Ping-Liang Chen (Hsinchu, TW); Li-Di Lo (Hsinchu, TW); Chien-Fu Tang (Hsinchu, TW)
Assignee: RICHTEK TECHNOLOGY CORP.
H03K17/08122H03K2017/0806
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Quick Facts
Patent No.
US 12,556,176
App. No.
18/663,108
Granted
Feb 17, 2026
Kind
B2
Abstract

A gate drive circuit includes a voltage summer, a driver, a power transistor and a resistor. The voltage summer includes a first input terminal for receiving a reference voltage, a second input terminal for receiving a common source voltage, and an output terminal for generating a summed voltage according to the common source voltage and the reference voltage. The driver includes a first input terminal coupled to the output terminal of the voltage summer, a second input terminal for receiving a pulse width modulation (PWM) signal, and an output terminal for generating a gate voltage according to the summed voltage and the pulse width modulation signal. The power transistor includes a first terminal, a second terminal, and a control terminal coupled to the output terminal of the driver. The resistor is coupled between the second terminal of the power transistor and a ground terminal.

Claims (88)

1 . A gate drive circuit comprising:

a voltage summer comprising:

a first input terminal for receiving a reference voltage;

a second input terminal for receiving a common source voltage;

an output terminal for generating a summed voltage according to the common source voltage and the reference voltage;

a multiplier coupled to the second input terminal of the voltage summer, configured to multiply the common source voltage by a multiple factor to generate a multiple common source voltage; and

an adder coupled to the multiplier, the first input terminal of the voltage summer, and the output terminal of the voltage summer, configured to generate the summed voltage according to the multiple common source voltage and the reference voltage;

a driver comprising:

a first input terminal coupled to the output terminal of the voltage summer;

a second input terminal for receiving a pulse width modulation (PWM) signal; and

an output terminal for generating a gate voltage according to the summed voltage and the pulse width modulation signal;

a power transistor, comprising:

a first terminal;

a second terminal; and

a control terminal coupled to the output terminal of the driver; and

a resistor coupled between the second terminal of the power transistor and a ground terminal.

2 . The gate drive circuit of claim 1 , wherein the driver is configured to track the common source voltage and soft-start the gate voltage.

3 . The gate drive circuit of claim 1 , wherein the driver further comprises:

a source follower coupled to the first input terminal of the driver, configured to generate a source follower voltage according to the summed voltage; and

a driver buffer coupled to the source follower and the output terminal of the driver, configured to generate the gate voltage according to the source follower voltage.

4 . The gate drive circuit of claim 3 , wherein the source follower is further configured to soft-start the gate voltage and track the common source voltage.

5 . The gate drive circuit of claim 1 , wherein the driver further comprises:

a temperature compensation circuit coupled to the first input terminal of the driver, configured to generate a temperature compensation voltage according to the summed voltage;

a source follower configured to generate a source follower voltage according to the temperature compensation voltage; and

a driver buffer coupled to the source follower and the output terminal of the driver, configured to generate the gate voltage according to the source follower voltage.

6 . The gate drive circuit of claim 5 , wherein the source follower is further configured to soft-start the gate voltage and track the common source voltage.

7 . The gate drive circuit of claim 1 , wherein the driver further comprises:

a source follower coupled to the first input terminal of the driver, configured to generate a source follower voltage according to the summed voltage;

a current limiter circuit configured to generate a current limiter signal according a circuit voltage; and

a driver buffer coupled to the source follower, the current limiter circuit and the output terminal of the driver, configured to generate the gate voltage according to the source follower voltage and the current limiter signal.

8 . The gate drive circuit of claim 7 , wherein the source follower is further configured to soft-start the gate voltage and track the common source voltage.

9 . A gate drive circuit comprising:

a voltage summer comprising:

a first input terminal for receiving a reference voltage;

a second input terminal for receiving a common source voltage; and

an output terminal for generating a summed voltage according to the common source voltage and the reference voltage;

a driver comprising:

a first input terminal coupled to the output terminal of the voltage summer;

a second input terminal for receiving a pulse width modulation (PWM) signal;

an output terminal for generating a gate voltage according to the summed voltage and the pulse width modulation signal;

a soft start controller configured to generate a soft start signal;

a source follower and temperature compensator, coupled to the first input terminal of the driver, configured to generate a source follower and temperature compensation voltage according to the summed voltage;

a current limiter circuit coupled to the soft start controller, configured to generate a current limiter signal according to a circuit voltage and the soft start signal; and

a driver buffer coupled to the source follower and temperature compensator, the current limiter circuit and the output terminal of the driver, configured to generate the gate voltage according to the source follower and temperature compensation voltage and the current limiter signal;

a power transistor, comprising:

a first terminal;

a second terminal; and

a control terminal coupled to the output terminal of the driver; and

a resistor coupled between the second terminal of the power transistor and a ground terminal.

10 . A gate drive circuit comprising:

a voltage summer comprising:

a first input terminal for receiving a reference voltage;

a second input terminal for receiving a common source voltage;

an output terminal for generating a summed voltage according to the common source voltage and the reference voltage;

an operational amplifier comprising:

an inverting input terminal;

a non-inverting input terminal; and

an output terminal coupled to the output terminal of the voltage summer;

a first resistor coupled between the non-inverting input terminal and the second input terminal of the voltage summer;

a second resistor coupled between the non-inverting input terminal and the ground terminal;

a third resistor coupled between the inverting input terminal and the first input terminal of the voltage summer; and

a fourth resistor coupled between the inverting input terminal and the output terminal of the voltage summer;

a driver comprising:

a first input terminal coupled to the output terminal of the voltage summer;

a second input terminal for receiving a pulse width modulation (PWM) signal; and

an output terminal for generating a gate voltage according to the summed voltage and the pulse width modulation signal;

a power transistor, comprising:

a first terminal;

a second terminal; and

a control terminal coupled to the output terminal of the driver; and

a resistor coupled between the second terminal of the power transistor and a ground terminal.

11 . The gate drive circuit of claim 1 , wherein the driver is further coupled to the ground terminal and receives a circuit voltage and a device voltage.

12 . The gate drive circuit of claim 1 , wherein the voltage summer is further coupled to the ground terminal and receives a device voltage.

13 . The gate drive circuit of claim 10 , wherein the driver is configured to track the common source voltage and soft-start the gate voltage.

14 . The gate drive circuit of claim 10 , wherein the driver further comprises:

a source follower coupled to the first input terminal of the driver, configured to generate a source follower voltage according to the summed voltage; and

a driver buffer coupled to the source follower and the output terminal of the driver, configured to generate the gate voltage according to the source follower voltage.

15 . The gate drive circuit of claim 14 , wherein the source follower is further configured to soft-start the gate voltage and track the common source voltage.

16 . The gate drive circuit of claim 10 , wherein the driver further comprises:

a temperature compensation circuit coupled to the first input terminal of the driver, configured to generate a temperature compensation voltage according to the summed voltage;

a source follower configured to generate a source follower voltage according to the temperature compensation voltage; and

a driver buffer coupled to the source follower and the output terminal of the driver, configured to generate the gate voltage according to the source follower voltage.

17 . The gate drive circuit of claim 16 , wherein the source follower is further configured to soft-start the gate voltage and track the common source voltage.

18 . The gate drive circuit of claim 10 , wherein the driver further comprises:

a source follower coupled to the first input terminal of the driver, configured to generate a source follower voltage according to the summed voltage;

a current limiter circuit configured to generate a current limiter signal according a circuit voltage; and

a driver buffer coupled to the source follower, the current limiter circuit and the output terminal of the driver, configured to generate the gate voltage according to the source follower voltage and the current limiter signal.

19 . The gate drive circuit of claim 18 , wherein the source follower is further configured to soft-start the gate voltage and track the common source voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2024
From: CHEN, PING-LIANG; LO, LI-DI; TANG, CHIEN-FU
To: RICHTEK TECHNOLOGY CORP.
Reel/Frame 067397/0054 →
Priority Claims (1)
TW 113115670 · Apr 26, 2024 · national
Continuity (1)
Related Publication 20250337402A1 · Oct 30, 2025
References Cited (3)
US 8354798B2 · Redjebian · 2013 [cited by examiner]
US 11716081B2 · Zou · 2023 [cited by applicant]
TW I334266 · 2010 [cited by applicant]