IP Library Patent Application 18343531
Patent Application
App. No. 18/343,531

BUCK-BOOST CONVERTER REDUCING INDUCTOR CURRENT

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 None
App. No.
18/343,531
Abstract

A buck-boost converter includes a first switch connected between an input terminal that receives an input voltage and a first terminal of an inductor, a second switch connected between the first terminal of the inductor and an output terminal that outputs an output voltage, a third switch connected between a second terminal of the inductor and a ground terminal, and a fourth switch connected between the second terminal of the inductor and an inverting input terminal that receives an inverted input voltage obtained by inverting the input voltage.

Claims (63)

1 . A buck-boost converter comprising:

a first switch connected between an input terminal that receives an input voltage and a first terminal of an inductor;

a second switch connected between the first terminal of the inductor and an output terminal that outputs an output voltage;

a third switch connected between a second terminal of the inductor and a ground terminal; and

a fourth switch connected between the second terminal of the inductor and an inverting input terminal that receives an inverted input voltage obtained by inverting the input voltage.

2 . The buck-boost converter of claim 1 , wherein

during a first time, an inductor current in the inductor gradually rises, when the first switch and the third switch are turned on, the second switch and the fourth switch are turned off, a voltage of the first terminal of the inductor rises to the input voltage, and a voltage of the second terminal of the inductor is maintained at a ground level, and

during a second time following the first time, the inductor current gradually falls, when the second switch and the fourth switch are turned on, the first switch and the third switch are turned off, the voltage of the first terminal of the inductor falls to the output voltage, and the voltage of the second terminal of the inductor falls to the inverted input voltage.

3 . The buck-boost converter of claim 2 , wherein

when the input voltage is greater than an absolute value of the output voltage,

during a third time, the inductor current gradually rises, when the first switch and the third switch are turned on, the second switch and the fourth switch are turned off, the voltage of the first terminal of the inductor rises to the input voltage, and the voltage of the second terminal of the inductor is maintained at the ground level, and

during a fourth time following the third time, the inductor current gradually falls, when the second switch and the third switch are turned on, the first switch and the fourth switch are turned off, the voltage of the first terminal of the inductor falls to the output voltage, and the voltage of the second terminal of the inductor is maintained at the ground level.

4 . The buck-boost converter of claim 3 , wherein

when the input voltage is less than the absolute value of the output voltage,

during a fifth time, the inductor current gradually rises, when the first switch and the third switch are turned on, the second switch and the fourth switch are turned off, the voltage of the first terminal of the inductor rises to the input voltage, and the voltage of the second terminal of the inductor rises to the ground level, and

during a sixth time following the fifth time, the inductor current gradually falls, the second switch and the fourth switch are turned on, the first switch and the third switch are turned off, the voltage of the first terminal of the inductor falls to the output voltage, and the voltage of the second terminal of the inductor falls to the inverted input voltage.

5 . A buck-boost converter comprising:

a first switch connected between an input terminal that receives an input voltage and a first terminal of an inductor;

a second switch connected between the first terminal of the inductor and an output terminal that outputs an output voltage;

a third switch connected between a second terminal of the inductor and a ground terminal;

a fourth switch connected between the second terminal of the inductor and an inverting input terminal that receives an inverted input voltage obtained by inverting the input voltage; and

a controller configured to control a rising slope and a falling slope of an inductor current by adjusting operating timings of the third switch and the fourth switch according to a comparison result of the input voltage and an absolute value of the output voltage.

6 . The buck-boost converter of claim 5 , wherein

the controller comprises:

a comparator configured to output a comparison result signal of the input voltage and an absolute value of the output voltage,

an OR operation device configured to output a value, obtained by performing an OR operation of a control signal of the first switch and the comparison result signal, as a control signal of the third switch, and

an AND operation device configured to output a value, obtained by performing an AND operation of a control signal of the second switch and an inverted comparison result signal obtained by inverting the comparison result signal, as a control signal of the fourth switch.

7 . The buck-boost converter of claim 6 , wherein

when the input voltage is less than the absolute value of the output voltage,

the comparison result signal output by the comparator is at a low level, and

the third switch is switched in synchronization with the first switch, and the fourth switch is switched in synchronization with the second switch.

8 . The buck-boost converter of claim 7 , wherein

when the input voltage is greater than the absolute value of the output voltage,

the comparison result signal output by the comparator is at a high level, and

the third switch is turned on during an entire operating time and the fourth switch is turned off during the entire operating time.

9 . The buck-boost converter of claim 5 , wherein

when the input voltage is greater than the absolute value of the output voltage,

during a third time, the inductor current gradually rises, when the controller turns on the first switch and the third switch and turns off the second switch and the fourth switch, a voltage of the first terminal of the inductor rises to the input voltage, and a voltage of the second terminal of the inductor is maintained at a ground level, and

during a fourth time following the third time, the inductor current gradually falls, when the controller turns on the second switch and the third switch and turns off the first switch and the fourth switch, the voltage of the first terminal of the inductor falls to the output voltage, and the voltage of the second terminal of the inductor is maintained at a ground level.

10 . The buck-boost converter of claim 5 , wherein

when the input voltage is less than the absolute value of the output voltage,

during a fifth time, the inductor current gradually rises, when the controller turns on the first switch and the third switch and turns off the second switch and the fourth switch, a voltage of the first terminal of the inductor rises to the input voltage, and a voltage of the second terminal of the inductor rises to a ground level, and

during a sixth time following the fifth time, the inductor current gradually falls, when the controller turns on the second switch and the fourth switch and turns off the first switch and the third switch, the voltage of the first terminal of the inductor falls to the output voltage, and the voltage of the second terminal of the inductor falls to the inverted input voltage.

11 . A buck-boost converter comprising:

a first switch connected between an input terminal that receives an input voltage and a first terminal of an inductor;

a second switch connected between the first terminal of the inductor and an output terminal that outputs an output voltage;

a third switch and a fourth switch connected in series between the input terminal and a ground terminal;

a charge pump capacitor connected between a third terminal, which is positioned between the third switch and the fourth switch, and a second terminal of the inductor;

a charge pump switch connected between the second terminal of the inductor and a ground terminal; and

a controller configured to control a rising slope and a falling slope of an inductor current by adjusting operating timings of the third switch, the fourth switch, and the charge pump capacitor according to a comparison result of the input voltage and an absolute value of the output voltage.

12 . The buck-boost converter of claim 11 , wherein

the controller comprises:

a comparator configured to output a comparison result signal of the input voltage and the output voltage,

an OR operation device configured to output a value, obtained by performing an OR operation of a control signal of the first switch and the comparison result signal, as a control signal of the third switch and the charge pump switch, and

an AND operation device configured to output a value, obtained by performing an AND operation of a control signal of the second switch and an inverted comparison result signal obtained by inverting the comparison result signal, as a control signal of the fourth switch.

13 . The buck-boost converter of claim 12 , wherein

when the input voltage is less than the absolute value of the output voltage,

the comparison result signal output by the comparator is at a low level, and

the third switch and the charge pump switch are switched in synchronization with the first switch, and the fourth switch is switched in synchronization with the second switch.

14 . The buck-boost converter of claim 13 , wherein

when the input voltage is greater than the absolute value of the output voltage,

the comparison result signal output by the comparator is at a high level, and

the third switch and the charge pump switch are turned on during an entire operating time, and the fourth switch is turned off during the entire operating time.

Assignments (2)
CHANGE OF NAME Recorded Aug 5, 2025
From: HANGZHOU SILICON-MAGIC SEMICONDUCTOR TECHNOLOGY CO., LTD.
To: SILICON-MAGIC SEMICONDUCTOR TECHNOLOGY (HANGZHOU) CO., LTD.
Reel/Frame 072337/0051 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2023
From: YOON, KWANG HO; LIM, SU HUN; JUNG, JIN SU
To: SILICON MITUS, INC.; HANGZHOU SILICON-MAGIC SEMICONDUCTOR TECHNOLOGY CO., LTD.
Reel/Frame 064800/0439 →