IP Library Granted Patent US 12,651,967
Granted Patent B2
US 12,651,967 · App. 18/407,478 · Granted Jun 9, 2026

Detecting output inductor opened for buck converter

Inventors: Chih-Chen Li (Hsinchu City, TW); Jin-Yan Syu (Hsinchu City, TW)
Assignee: MEDIATEK INC.
H02M3/158G01R31/70
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Quick Facts
Patent No.
US 12,651,967
App. No.
18/407,478
Granted
Jun 9, 2026
Kind
B2
Abstract

A buck converter includes a first transistor, a second transistor, an inductor and a capacitor. The first transistor, the second transistor and the inductor are coupled to a switching node. A method includes charging the switching node for a predetermined duration using a first charging current, detecting a voltage at the switching node to obtain a first detection voltage, and determining the connection status of the inductor according to at least the first detection voltage.

Claims (67)

1 . A method for detecting a connection status of an inductor of a buck converter, the buck converter comprising a first transistor, a second transistor, the inductor and a capacitor, the first transistor, the second transistor and the inductor being coupled to a switching node, the capacitor coupled to the switching node through the inductor, the method comprising:

charging the switching node for a predetermined duration using a first charging current;

detecting a voltage at the switching node to obtain a first detection voltage; and

determining the connection status of the inductor according to at least the first detection voltage;

wherein determining the connection status of the inductor according to at least the first detection voltage comprises:

when the first detection voltage is less than a voltage threshold during the predetermined duration, determining that the connection status of the inductor is normal; or

when the first detection voltage exceeds a voltage threshold during the predetermined duration, determining that the connection status of the inductor is abnormal.

2 . The method of claim 1 , further comprising: discharging the capacitor outside the predetermined duration.

3 . The method of claim 2 , further comprising:

charging the switching node using a second charging current for the predetermined duration, the second charging current being different from the first charging current; and

detecting the voltage at the switching node during the switching node is charged by the second charging current for the predetermined duration to obtain a second detection voltage;

wherein determining the connection status of the inductor according to at least the first detection voltage comprises:

determining the connection status of the inductor according to the first detection voltage and the second detection voltage;

when the first detection voltage and the second detection voltage are less than a voltage threshold during the predetermined duration, determining that the connection status of the inductor is normal; and

when the first detection voltage and the second detection voltage exceeds the voltage threshold during the predetermined duration, determining that the connection status of the inductor is abnormal.

4 . The method of claim 1 , further comprising:

charging the switching node using a second charging current bigger than the first charging current for the predetermined duration; and

detecting the voltage at the switching node during the switching node is charged by the second charging current, to obtain a second detection voltage;

wherein when the second detection voltage is less than the voltage threshold during the switching node is charged by the second charging current for the predetermined duration, the connection status of the inductor is determined to be normal; and

when the second detection voltage exceeds the voltage threshold during the switching node is charged by the second charging current for the predetermined duration, the connection status of the inductor is determined to be abnormal.

5 . The method of claim 1 , wherein:

the first charging current is less than a predetermined current threshold;

wherein the predetermined current threshold is determined according to the voltage threshold, a capacitance of the capacitor and the predetermined duration.

6 . The method of claim 1 , wherein:

the first detection voltage at the switching node is obtained during the predetermined duration.

7 . A buck converter comprising:

a first transistor comprising a first terminal configured to receive an input voltage, and a second terminal coupled to a switching node;

a second transistor comprising a first terminal coupled to the switching node, and a second terminal coupled to a ground;

an inductor comprising a first terminal coupled to the switching node, and a second terminal configured to output an outputting voltage;

a capacitor comprising a first terminal coupled to the second terminal of the inductor, and a second terminal coupled to the ground;

a current generator configured to provide a first charging current and charge the switching node using the first charging current for a predetermined duration; and

a voltage detector configured to detect a voltage at the switching node to obtain a first detection voltage, and determine a connection status of the inductor according to at least the first detection voltage;

wherein determining the connection status of the inductor according to at least the first detection voltage comprises:

when the first detection voltage is less than a voltage threshold during the predetermined duration, the voltage detector is configured to determine that the connection status of the inductor is normal; or

when the first detection voltage exceeds a voltage threshold during the predetermined duration, the voltage detector is configured to determine that the connection status of the inductor is abnormal.

8 . The buck converter of claim 7 , wherein the voltage detector comprises:

a delay cell comprising an input terminal configured to receive a start pulse, and an output terminal, configured to introduce a preset delay;

a first AND gate comprising a first input terminal coupled to the output terminal of the delay cell, a second input terminal configured to receive the start pulse, and an output terminal;

a second AND gate comprising a first input terminal coupled to the switching node, a second input terminal coupled to the output terminal of the first AND gate, and an output terminal;

a pulse generator comprising an input terminal configured to receive the start pulse, and an output terminal, configured to generate a reset pulse with a fixed duration according to the start pulse, wherein the preset delay is longer than the fixed duration; and

a latch comprising a set input terminal coupled to the output terminal of the second AND gate, a reset input terminal coupled to the output terminal of the pulse generator, and an output terminal.

9 . The buck converter of claim 8 , wherein the current generator comprises:

a switch comprising a first terminal configured to receive a supply voltage, a second terminal, and a control terminal coupled to the output terminal of the first AND gate; and

a current limiter comprising a first terminal coupled to the second terminal of the switch, and a second terminal coupled to the switching node.

10 . The buck converter of claim 7 , further comprising a discharging cell coupled to the switching node, and configured to discharge the capacitor before charging the switching node or outside the predetermined duration.

11 . The buck converter of claim 2 , further comprising:

a second charging current bigger than the first charging current configured to charge the switching node for the predetermined duration; and

the voltage detector configured to detect the voltage at the switching node during the switching node is charged by the second charging current to obtain a second detection voltage.

12 . The buck converter of claim 7 , wherein:

the first charging current is less than a predetermined current threshold;

wherein the predetermined current threshold is determined according to the voltage threshold, a capacitance of the capacitor and the predetermined duration.

13 . The buck converter of claim 7 , wherein the current generator is configured to generate N candidate currents, and the first charging current is derived from the N candidate currents, N being a positive integer.

14 . The buck converter of claim 13 , wherein the current generator comprises:

N current sources configured to generate the N candidate currents and controlled by N switches;

each switch of the N switches comprising:

a control terminal controlled to turn on or off a corresponding switch, to selectively turn on or off a corresponding current source of the N current sources;

a first terminal coupled to a corresponding current source of the N current sources; and

a second terminal coupled to the switching node.

15 . The buck converter of claim 13 , wherein

the current generator is further configured to generate a second charging current, the second charging current being different from the first charging current, and charge the switching node using the second charging current for the predetermined duration; and

the voltage detector is further configured to detect the voltage at the switching node during the switching node is charged by the second charging current for the predetermined duration to obtain a second detection voltage, and determine the connection status of the inductor according to the first detection voltage and the second detection voltage.

16 . A connectivity testing circuit for detecting a connection status of an inductor of a buck converter, the buck converter comprising a first transistor, a second transistor, the inductor and a capacitor, the first transistor, the second transistor and the inductor being coupled to a switching node, the connectivity testing circuit comprising:

a current generator configured to provide a first charging current and charge the switching node using a first charging current for a predetermined duration; and

a voltage detector configured to detect a voltage at the switching node to obtain a first detection voltage, and determine a connection status of the inductor according to at least the first detection voltage;

wherein determining the connection status of the inductor according to at least the first detection voltage comprises:

when the first detection voltage is less than a voltage threshold during the predetermined duration, the voltage detector is configured to determine that the connection status of the inductor is normal; or

when the first detection voltage exceeds a voltage threshold during the predetermined duration, the voltage detector is configured to determine that the connection status of the inductor is abnormal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2024
From: LI, CHIH-CHEN; SYU, JIN-YAN
To: MEDIATEK INC.
Reel/Frame 066057/0422 →
Continuity (2)
Provisional Application 63503498 · May 22, 2023
Related Publication 20240393411A1 · Nov 28, 2024
References Cited (14)
US 9804617B2 · Turkewadikar · 2017 [cited by examiner]
US 10505441B2 · Hsieh · 2019 [cited by examiner]
US 10897203B2 · Bogue · 2021 [cited by examiner]
US 20090309559A1 · Xia · 2009 [cited by examiner]
US 20120161732A1 · Renton · 2012 [cited by examiner]
US 20130021012A1 · Oddoart · 2013 [cited by examiner]
US 20160172973A1 · Rince · 2016 [cited by examiner]
US 20170160756A1 · Hsieh · 2017 [cited by examiner]
US 20200350817A1 · De · 2020 [cited by applicant]
US 20240313637A1 · Mansri · 2024 [cited by examiner]
EP 4138290A1 · 2023 [cited by applicant]
TW 201134072A1 · 2011 [cited by applicant]
TW I635683B · 2018 [cited by applicant]
TW I697187B · 2020 [cited by applicant]