IP Library › Granted Patent US 9,722,601
Granted Patent B2
US 9,722,601 · App. 14/833,389 · Granted Aug 1, 2017

Gate driving circuit of high-side transistor, switching output circuit, inverter device, and electronic device

Inventors: Hiroki Niikura (Kyoto, JP); Takafumi Morinaka (Kyoto, JP)
Assignee: ROHM CO., LTD.
H03K17/687H02M7/5387H02P27/06
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Quick Facts
Patent No.
US 9,722,601
App. No.
14/833,389
Granted
Aug 1, 2017
Kind
B2
Abstract

A gate driving circuit for turning on a high-side transistor when an input set pulse is asserted and turning off the high-side transistor when an input reset pulse is asserted is provided. The gate driving circuit includes first and second inverters to receive the intermediate set pulse from a level shift circuit to generate first and second set pulses; third and fourth inverters to receive the intermediate reset pulse from the level shift circuit to generate first and second reset pulses; a logic circuit to mask the first set pulse and the first reset pulse by using the second reset pulse and the second set pulse to generate an output set pulse and an output reset pulse, respectively; a flip-flop configured to receive the output set pulse and the output reset pulse to output a driving pulse; and a driver to drive the high-side transistor according to the driving pulse.

Claims (40)

1. A gate driving circuit for turning on a high-side transistor when an input set pulse is asserted, and turning off the high-side transistor when an input reset pulse is asserted, comprising:

a level shift circuit configured to level-shift each of the input set pulse and the input reset pulse to generate an intermediate set pulse and an intermediate reset pulse;

a first inverter configured to receive the intermediate set pulse to generate a first set pulse;

a third inverter configured to receive the intermediate reset pulse to generate a first reset pulse;

a logic circuit including:

a first logic unit configured to receive the first set pulse and the first reset pulse, and mask the first set pulse by using the first reset pulse to generate an output set pulse; and

a second logic unit configured to receive the first set pulse and the first reset pulse, and mask the first reset pulse by using the first set pulse to generate an output reset pulse;

a flip-flop configured to receive the output set pulse and the output reset pulse to thereby output a driving pulse of which a level transitions; and

a driver configured to drive the high-side transistor according to the driving pulse.

2. The gate driving circuit of claim 1 , wherein the gate driving circuit is integrated on a single semiconductor substrate.

3. A switching output circuit, comprising:

a bridge circuit including a high-side transistor and a low-side transistor; and

the gate driving circuit of claim 1 , configured to drive the high-side transistor and the low-side transistor.

4. An inverter device, comprising:

a bridge circuit including a high-side transistor and a low-side transistor; and

the gate driving circuit of claim 1 , configured to drive the high-side transistor and the low-side transistor.

5. An electronic device, comprising:

a bridge circuit including a high-side transistor and a low-side transistor;

the gate driving circuit of claim 1 , configured to drive the high-side transistor and the low-side transistor; and

a motor connected to the bridge circuit.

6. A gate driving circuit for turning on a high-side transistor when an input set pulse is asserted, and turning off the high-side transistor when an input reset pulse is asserted, comprising:

a level shift circuit configured to level-shift each of the input set pulse and the input reset pulse to generate an intermediate set pulse and an intermediate reset pulse;

a first inverter configured to receive the intermediate set pulse to generate a first set pulse;

a third inverter configured to receive the intermediate reset pulse to generate a first reset pulse;

a logic circuit including:

a first logic unit configured to receive the first set pulse and the first reset pulse, and invalidate assertion of the first set pulse when the first set pulse and the first reset pulse are simultaneously asserted; and

a second logic unit configured to receive the first set pulse and the first reset pulse, and invalidate assertion of the first reset pulse when the first set pulse and the first reset pulse are simultaneously asserted;

a flip-flop configured to receive the first set pulse and the first reset pulse which have passed through the logic circuit to thereby output a driving pulse of which level transitions; and

a driver configured to drive the high-side transistor according to the driving pulse.

7. The gate driving circuit of claim 6 , wherein the gate driving circuit is integrated on a single semiconductor substrate.

8. A switching output circuit, comprising:

a bridge circuit including a high-side transistor and a low-side transistor; and

the gate driving circuit of claim 6 , configured to drive the high-side transistor and the low-side transistor.

9. An inverter device, comprising:

a bridge circuit including a high-side transistor and a low-side transistor; and

the gate driving circuit of claim 6 , configured to drive the high-side transistor and the low-side transistor.

10. An electronic device, comprising:

a bridge circuit including a high-side transistor and a low-side transistor;

the gate driving circuit of claim 6 , configured to drive the high-side transistor and the low-side transistor; and

a motor connected to the bridge circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2015
From: NIIKURA, HIROKI; MORINAKA, TAKAFUMI
To: ROHM CO., LTD.
Reel/Frame 036433/0310 →
Priority Claims (1)
JP 2014-171827 · Aug 26, 2014 · national
Continuity (1)
Related Publication 20160065205A1 · Mar 3, 2016