IP Library Granted Patent US 12671315
Granted Patent B2
US 12671315 · App. 18/238,622 · Granted Jun 30, 2026

Adaptive silicon carbide gate drivers in integrated circuit form

Inventors: Xia Du (Fayetteville, AR); Liyang Du (Fayetteville, AR); Andrea Stratta (Fayetteville, AR); Asif Faruque (Fayetteville, AR); H. Alan Mantooth (Fayetteville, AR); Yuqi Wei (Fayetteville, AR)
Assignee: BOARD OF TRUSTEES OF THE UNIVERSITY OF ARKANSAS
H02M1/088H02M1/0009H02M1/08H02M1/084H02M1/15H02M3/003H03K17/145H03K17/6871H02M1/0006
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Quick Facts
Patent No.
US 12671315
App. No.
18/238,622
Granted
Jun 30, 2026
Kind
B2
Abstract

A multiphase converter for reducing the input and output current ripples. The multiphase converter includes a system controller and power devices. Furthermore, the multiphase converter includes an active gate driver integrated circuit (IC) electrically connected to the system controller and the power devices. The active gate driver IC receives signals from the system controller and provides outputs to the power devices based, at least in part, on real-time feedback from the power devices.

Claims (18)

1 . A multiphase converter, comprising:

a system controller;

a plurality of power devices; and

an active gate driver integrated circuit (IC) electrically connected to said system controller and said plurality of power devices, wherein said active gate driver IC receives signals from said system controller and provides outputs to said plurality of power devices based, at least in part, on real-time feedback from said plurality of power devices, wherein said active gate driver IC comprises a local controller that receives said signals from said system controller and provides said outputs to said plurality of power devices, and wherein said local controller varies said outputs to said plurality of power devices according to a multilevel voltage profile.

2 . The multiphase converter as recited in claim 1 , wherein said multilevel voltage profile comprises three or more voltage levels.

3 . A multiphase converter, comprising:

a system controller;

a plurality of power devices; and

an active gate driver integrated circuit (IC) electrically connected to said system controller and said plurality of power devices, wherein said active gate driver IC receives signals from said system controller and provides outputs to said plurality of power devices based, at least in part, on real-time feedback from said plurality of power devices, wherein said active gate driver IC comprises a buffer stage, and wherein said buffer stage is implemented using totem-pole circuits used to sink and source a gate current, wherein said totem-pole circuits are configured to select a voltage level for each interval.

4 . A multiphase converter, comprising:

a system controller;

a plurality of power devices; and

an active gate driver integrated circuit (IC) electrically connected to said system controller and said plurality of power devices, wherein said active gate driver IC receives signals from said system controller and provides outputs to said plurality of power devices based, at least in part, on real-time feedback from said plurality of power devices, wherein said active gate driver IC comprises buck converters.

5 . The multiphase converter as recited in claim 4 , wherein said buck converters generate variable intermediate gate voltage levels.

6 . A power module package, comprising:

a silicon carbide (SiC) active gate driver; and

silicon carbide (SiC) power devices connected to said SiC active gate driver, wherein a die of said SiC active gate driver comprises a metal routing layer and a polysilicon routing layer.

7 . The power module package as recited in claim 6 , wherein said SiC power devices are connected to said SiC active gate driver in parallel.