IP Library Granted Patent US 12676560
Granted Patent B2
US 12676560 · App. 18/685,706 · Granted Jul 7, 2026

Zero current sensor for a power converter

Inventors: Arthur Johannes Hein de Beun (Christchurch, NZ); Joseph Rex Cooper (Lyttleton, NZ)
Assignee: ENATEL
H02M7/003G01R15/183H02M7/217
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12676560
App. No.
18/685,706
Granted
Jul 7, 2026
Kind
B2
Abstract

An inductor or transformer for a switching power converter includes a primary coil and a secondary coil inside the air gap of the primary coil. A secondary core of the secondary coil is magnetized to saturation by a small current through the primary coil, such that the secondary coil produces a nonzero output voltage when the current through the primary coil crosses zero. The secondary coil may be used to detect a zero-current state of the primary coil and to actuate a switch to operate the converter in critical conduction mode (CCM) or other zero-current-triggered switching mode.

Claims (30)

1 . A switched electrical power converter comprising:

an inductor or transformer comprising:

a primary coil disposed on a ferromagnetic core, the primary coil and core defining an air gap;

a secondary coil disposed in the air gap, the secondary coil configured to generate an output voltage at a secondary coil output; and

a secondary sensor housing disposed in the air gap, wherein the secondary sensor housing defines a receiving space, the secondary coil disposed in the receiving space; and

a switch configured to regulate a current through the primary coil, the switch electrically coupled to the secondary coil output so as to switch in response to the output voltage of the secondary coil.

2 . The electrical power converter of claim 1 , wherein the primary coil defines a primary coil axis and the secondary coil defines a secondary coil axis, wherein the primary coil axis is parallel with the secondary coil axis.

3 . The electrical power converter of claim 2 , wherein the primary coil and the secondary coil are coaxial.

4 . The electrical power converter of claim 2 , wherein the primary coil and the secondary coil are not coaxial.

5 . The electrical power converter of claim 1 , wherein the core is a primary coil core, the inductor or transformer further comprising a ferromagnetic secondary coil core on which the secondary coil is disposed.

6 . The electrical power converter of claim 5 , wherein the primary coil core comprises a different material from the secondary coil core.

7 . The electrical power converter of claim 1 , wherein:

the primary coil defines a primary coil axis;

the air gap has an axial length along the primary coil axis; and

the secondary coil defines a secondary coil axis and has an axial length that is 90% or more of the air gap axial length.

8 . A switched electrical power converter comprising:

an inductor or transformer comprising:

a primary coil disposed on a first ferromagnetic core, the primary coil and first core defining an air gap;

a second ferromagnetic core disposed in the air gap;

a secondary coil disposed on the second core, the secondary coil configured to generate an output voltage at a secondary coil output; and

a secondary sensor housing disposed in the air gap, wherein the secondary sensor housing defines a receiving space, the secondary coil disposed in the receiving space; and

a switch configured to regulate a current through the primary coil, the switch electrically coupled to the secondary coil output so as to switch in response to the output voltage of the secondary coil.

9 . The electrical power converter of claim 8 , wherein the primary coil defines a primary coil axis and the secondary coil defines a secondary coil axis, wherein the primary coil axis is parallel with the secondary coil axis.

10 . The electrical power converter of claim 9 , wherein the primary coil and the secondary coil are coaxial.

11 . The electrical power converter of claim 9 , wherein the primary coil and the secondary coil are not coaxial.

12 . The electrical power converter of claim 8 , wherein the first core comprises a different material from the second core.

13 . The electrical power converter of claim 8 , wherein:

the primary coil defines a primary coil axis;

the air gap has an axial length along the primary coil axis; and

the secondary coil defines a secondary coil axis and has an axial length that is 90% or more of the air gap axial length.