IP Library › Granted Patent US 12,424,928
Granted Patent B2
US 12,424,928 · App. 18/134,099 · Granted Sep 23, 2025

Resistor-less pre-charging techniques

Inventors: Basheer Qattum (Peoria, IL); Dachuan Yu (Dunlap, IL)
Assignee: Caterpillar Inc.
H02M1/32H02M1/36
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Quick Facts
Patent No.
US 12,424,928
App. No.
18/134,099
Granted
Sep 23, 2025
Kind
B2
Abstract

Techniques that eliminate the need for a dedicated pre-charge resistor by using the main power path of the AC/DC, DC/DC, or DC/AC converter. By eliminating the pre-charge resistor, the techniques increase the maximum allowable current rating of the converter as well as increase the impedance and inductance of the converter.

Claims (54)

1. A power conversion circuit configured to limit inrush current during startup without using resistors, the power conversion circuit comprising:

a first terminal configured to couple to an energy storage device;

a converter circuit coupled to the first terminal, the converter circuit including an electronic switch and a protection diode coupled across the electronic switch;

a switch circuit configured to couple to an AC voltage;

a second terminal coupled to the switch circuit;

a filter circuit coupled between the converter circuit and the second terminal and configured to filter the AC voltage, the filter circuit including:

a first inductor coupled to the converter circuit; and

a capacitor coupled between the first inductor and the second terminal; and

a protection inductor coupled to the first terminal or the second terminal, wherein the protection inductor does not include a transformer, wherein the protection inductor is configured to limit inrush current during startup without using resistors, and wherein the protection inductor is configured to saturate at a current less than a current rating of the protection diode.

2. The power conversion circuit of claim 1 , wherein the protection inductor is coupled to the second terminal, and wherein the filter circuit further comprises:

a second inductor coupled between the capacitor and the second terminal, wherein the first inductor and the second inductor are coupled in series.

3. The power conversion circuit of claim 2 , wherein the protection inductor is further coupled between an input terminal and an output terminal of the switch circuit.

4. The power conversion circuit of claim 1 , wherein the protection inductor is coupled to the second terminal, and wherein the filter circuit further comprises:

a second inductor coupled in series with the first inductor, and wherein the second inductor includes the protection inductor.

5. The power conversion circuit of claim 1 , wherein the protection inductor includes a toroidal inductor.

6. The power conversion circuit of claim 1 , wherein the protection inductor is coupled to the second terminal, and wherein the first inductor includes a toroidal inductor.

7. The power conversion circuit of claim 1 , wherein the converter circuit is a 3-phase converter circuit.

8. The power conversion circuit of claim 1 , wherein the protection inductor includes a 3-phase toroidal inductor, and wherein the first inductor includes a 3-phase inductor.

9. The power conversion circuit of claim 1 , wherein the switch circuit is a first switch circuit, the circuit further comprising:

a second switch circuit coupled between the energy storage device and the first terminal,

wherein the protection inductor is coupled to 1) the first terminal through the second switch circuit and 2) the energy storage device.

10. The power conversion circuit of claim 1 , wherein the protection inductor is configured to saturate at a current between 1 time and 10 times that of a charging current of the capacitor.

11. A method of limiting inrush current to a power conversion circuit during startup without using resistors, the method comprising:

coupling a first terminal of the power conversion circuit to an energy storage device;

coupling the first terminal to a converter circuit, wherein the converter circuit includes an electronic switch and a protection diode coupled across the electronic switch;

coupling a switch circuit to an AC voltage;

coupling a second terminal to the switch circuit;

coupling a filter circuit between the converter circuit and the second terminal, wherein the filter circuit is configured to filter the AC voltage; and

saturating a protection inductor coupled to the first terminal or the second terminal at a current less than a current rating of the protection diode, wherein the protection inductor is configured to limit inrush current during startup without using resistors, and wherein the protection inductor does not include a transformer.

12. The method of claim 11 , wherein the filter circuit includes a capacitor, a first inductor, and a second inductor, the method comprising:

coupling the protection inductor to the second terminal; and

coupling a second inductor between the capacitor and the second terminal, wherein the first inductor and the second inductor are coupled in series.

13. The method of claim 12 , comprising:

coupling the protection inductor between an input terminal and an output terminal of the switch circuit.

14. The method of claim 11 , wherein the filter circuit includes a capacitor, a first inductor, and a second inductor, the method comprising:

coupling the protection inductor to the second terminal; and

coupling a second inductor between the capacitor and the second terminal, wherein the first inductor and the second inductor are coupled in series, and wherein the second inductor includes the protection inductor.

15. The method of claim 11 , wherein the protection inductor includes a toroidal inductor.

16. The method of claim 11 , wherein the filter circuit includes a capacitor, a first inductor, and a second inductor, the method comprising:

coupling the protection inductor to the second terminal, and wherein the first inductor includes a toroidal inductor.

17. A power conversion circuit configured to limit inrush current during startup without using resistors, the power conversion circuit comprising:

a first terminal configured to couple to an energy storage device;

a converter circuit coupled to the first terminal, the converter circuit including an electronic switch and a protection diode coupled across the electronic switch;

a switch circuit configured to couple to an AC voltage;

a second terminal coupled to the switch circuit;

a filter circuit coupled between the converter circuit and the second terminal and configured to filter the AC voltage, the filter circuit including:

a first inductor coupled to the converter circuit; and

a capacitor coupled between the first inductor and the second terminal; and

a 3-phase protection inductor coupled to the second terminal, wherein the 3-phase protection inductor does not include a transformer, and wherein the 3-phase protection inductor is configured to limit inrush current during startup without using resistors, and wherein the 3-phase protection inductor is configured to saturate at a current less than a current rating of the protection diode.

18. The power conversion circuit of claim 17 , wherein the 3-phase protection inductor is coupled to the second terminal, and wherein the filter circuit further comprises:

a second inductor coupled between the capacitor and the second terminal, wherein the first inductor and the second inductor are coupled in series.

19. The power conversion circuit of claim 18 , wherein the 3-phase protection inductor is further coupled between an input terminal and an output terminal of the switch circuit.

20. The power conversion circuit of claim 18 , wherein the 3-phase protection inductor is coupled to the second terminal, and wherein the filter circuit further comprises:

a second inductor coupled in series with the first inductor, and wherein the second inductor includes the 3-phase protection inductor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2023
From: QATTUM, BASHEER; YU, DACHUAN
To: CATERPILLAR INC.
Reel/Frame 063312/0363 →
Continuity (1)
Related Publication 20240348154A1 · Oct 17, 2024
References Cited (17)
US 5122724A · Criss · 1992 [cited by examiner]
US 5483142A · Skibinski et al. · 1996 [cited by applicant]
US 6654262B2 · Hussein et al. · 2003 [cited by applicant]
US 10230298B2 · Hufnagel et al. · 2019 [cited by applicant]
US 11400831B1 · Wand et al. · 2022 [cited by applicant]
US 20060031406A1 · Watson et al. · 2006 [cited by applicant]
US 20110038185A1 · Swamy · 2011 [cited by examiner]
US 20150229203A1 · Esmaili et al. · 2015 [cited by applicant]
US 20150364939A1 · Talja · 2015 [cited by examiner]
US 20220402390A1 · Smolenaers · 2022 [cited by examiner]
DE 102018203388 · 2019 [cited by applicant]
JP 2020120552 · 2020 [cited by applicant]
JP 2021164286 · 2021 [cited by applicant]
KR 101146005 · 2012 [cited by applicant]
Gomes Camilo C et al: “Damping techniques for grid-connected voltage source converters based on LCL filter: An overview”, Renewable and Sustainable Energy Reviews, vol. 81, Dec. 31, 2017 (Dec. 31, 2017), pp. 116-135, XP… [cited by applicant]
Maghraby Mohamed et al: “Analysis and implementation of discrete SPWM signals for grid-connected inverter with LCL filter”, 2017 Nineteenth International Middle East Power Systems Conference {MEPCON), IEEE, Dec. 19, 201… [cited by applicant]
Written Opinion and International Search Report for Int'l. Patent Appln. No. PCT/US2024/018291, mailed Jul. 18, 2024 (15 pgs). [cited by applicant]