IP Library › Granted Patent US 11,621,709
Granted Patent B2
US 11,621,709 · App. 17/211,563 · Granted Apr 4, 2023

Power module with built-in drive circuits

Inventor: Ryu Araki (Nagano, JP)
Assignee: FUJI ELECTRIC CO., LTD.
H03K17/284G01R19/16538H02M1/38H02M7/53871H02P6/28H02P27/06H03K5/1534H03K5/24H02M1/0009H03K2005/00071
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Quick Facts
Patent No.
US 11,621,709
App. No.
17/211,563
Granted
Apr 4, 2023
Kind
B2
Abstract

A power module, including a high-side switching element and a low-side switching element connected to form a half bridge circuit, a high-side drive circuit which drives the high-side switching element, a low-side drive circuit which drives the low-side switching element, and a high-side current detection circuit which detects a current of the high-side switching element. The high-side drive circuit includes a high-side variable delay circuit which adjusts, according to a value detected by the high-side current detection circuit, a length of a high-side delay time from a time when a signal is inputted to the high-side drive circuit to a time when the high-side switching element is driven.

Claims (30)

1. A power module, comprising:

a high-side switching element and a low-side switching element connected to form a half bridge circuit;

a high-side drive circuit which drives the high-side switching element; and

a low-side drive circuit which drives the low-side switching element, wherein the high-side drive circuit includes

a high-side current detection circuit which detects a current of the high-side switching element, and

a high-side variable delay circuit which adjusts, according to a value of the current detected by the high-side current detection circuit, a length of a high-side delay time from a time when a signal is inputted to the high-side drive circuit to a time when the high-side switching element is driven, by setting a delay time that is shorter when the high-side switching element is turned off than when the high-side switching element is turned on, wherein

the high-side current detection circuit causes the high-side variable delay circuit to adjust the length of the high-side delay time, in accordance with whether or not the value of the current detected by the high-side current detection circuit exceeds a preset current value when the high-side switching element is turned on.

2. The power module according to claim 1 , wherein the high-side variable delay circuit includes a resistor and a capacitor, and adjusts the length of the high-side delay time by changing a resistance value of the resistor to thereby change a time constant.

3. The power module according to claim 1 , wherein the high-side variable delay circuit includes a resistor and a capacitor and adjusts the length of the high-side delay time by changing a capacitance value of the capacitor to thereby change a time constant.

4. The power module according to claim 1 , wherein when the high-side current detection circuit determines that the detected value of the current flowing through the high-side switching element exceeds the preset current value, the high-side variable delay circuit reduces the high-side delay time.

5. The power module according to claim 1 , wherein:

the high-side switching element includes a current sense element; and

the high-side current detection circuit detects a current value outputted by the current sense element as the detected value of the current flowing through the high-side switching element.

6. The power module according to claim 1 , wherein each of the high-side switching element and the low-side switching element is a voltage-controlled device.

7. The power module according to claim 6 , wherein each of the voltage-controlled devices is an insulated gate bipolar transistor (IGBT) or a power metal-oxide-semiconductor field-effect transistor (MOSFET).

8. The power module according to claim 1 , further comprising a low-side current detection circuit which detects a current of the low-side switching element, wherein

the low-side drive circuit includes a low-side variable delay circuit which adjusts, according to a value detected by the low-side current detection circuit, a length of a low-side delay time from a time when a signal is inputted to the low-side drive circuit to a time when the low-side switching element is driven.

9. The power module according to claim 1 , wherein the high-side variable delay circuit

sets a first high-side delay time to a first delay time when the value of the current does not exceed the preset current value, the first high-side delay time being a part of a high-side turn-on time of the high-side switching element, and

sets a second high-side delay time to a second delay time when the value of the current exceeds the preset current value, the second high-side delay time being a part of a high-side turn-off time of the high-side switching element and the second delay time being shorter than the first delay time.

10. A power module, comprising:

a high-side switching element and a low-side switching element connected to form a half bridge circuit;

a high-side drive circuit which drives the high-side switching element; and

a low-side drive circuit which drives the low-side switching element, wherein the high-side drive circuit includes

a high-side current detection circuit which detects a current of the high-side switching element, and

a high-side variable delay circuit which adjusts, according to a value of the current detected by the high-side current detection circuit, a length of a high-side delay time from a time when a signal is inputted to the high-side drive circuit to a time when the high-side switching element is driven;

the high-side variable delay circuit

sets a first high-side delay time to a first delay time when the value of the current does not exceed a preset current value, the first high-side delay time being a part of a high-side turn-on time of the high-side switching element, and

sets a second high-side delay time to a second delay time when the value of the current exceeds the preset current value, the second high-side delay time being a part of a high-side turn-off time of the high-side switching element and the second delay time being shorter than the first delay time; and

the high-side current detection circuit causes the high-side variable delay circuit to adjust the length of the high-side delay time, in accordance with whether or not the value of the current detected by the high-side current detection circuit exceeds the preset current value when the high-side switching element is turned on.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2021
From: ARAKI, RYU
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 055706/0221 →
Priority Claims (1)
JP JP2020-084784 · May 13, 2020 · national
Continuity (1)
Related Publication 20210359676A1 · Nov 18, 2021