IP Library Granted Patent US 12,603,571
Granted Patent B2
US 12,603,571 · App. 18/607,408 · Granted Apr 14, 2026

Switched capacitor converter and control method

Inventors: Rui Liu (Fremont, CA); Songnan Yang (Frisco, TX); Shuang Han (Foshan City, CN); Rong Shu (Foshan City, CN); Wenrui Bai (Foshan City, CN); Qing Cui (Foshan City, CN)
Assignee: Halo Microelectronics International
H02M3/07H02M1/0025H02M3/158
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Quick Facts
Patent No.
US 12,603,571
App. No.
18/607,408
Granted
Apr 14, 2026
Kind
B2
Abstract

A switched capacitor converter includes a first energy storage branch, a second energy storage branch, a third energy storage branch comprising a third capacitor, a seventh switch, an eighth switch, a ninth switch and a tenth switch, and a control branch connected to a first terminal of each switch in the first energy storage branch, the second energy storage branch and the third energy storage branch respectively, wherein the control branch is configured to control each switch to alternately turn on and off periodically in two phases, so that a ratio of a voltage at the input terminal to a voltage at an output terminal is 2N:1, wherein in each operating cycle, the tenth switch is turned on later than at least one switch in the third energy storage branch, and wherein the at least one switch and the tenth switch are in a same phase.

Claims (143)

1 . A switched capacitor converter comprising:

a first energy storage branch comprising a first capacitor, a first switch, a second switch and a third switch;

a second energy storage branch comprising a second capacitor, a fourth switch, a fifth switch and a sixth switch, wherein an output terminal is one of common nodes of the first energy storage branch and the second energy storage branch;

a third energy storage branch comprising a third capacitor, a seventh switch, an eighth switch, a ninth switch and a tenth switch, wherein:

a third terminal of the seventh switch and a second terminal of the ninth switch is connected to a first terminal of the third capacitor;

a second terminal of the third capacitor is connected to a third terminal of the tenth switch and a second terminal of the eighth switch;

a third terminal of the eighth switch is connected to an input terminal;

a second terminal of the seventh switch is grounded;

a third terminal of the ninth switch is coupled to the first switch; and

a second terminal of the tenth switch is coupled to the fourth switch; and

a control branch connected to a first terminal of each switch in the first energy storage branch, the second energy storage branch and the third energy storage branch respectively, wherein the control branch is configured to control each switch to alternately turn on and off periodically in two phases, so that a ratio of a voltage at the input terminal to a voltage at the output terminal is 2N:1, where N is an integer greater than 1.

2 . The switched capacitor converter of claim 1 , wherein:

in each operating cycle, the tenth switch is turned on later than at least one switch in the third energy storage branch, and wherein the at least one switch and the tenth switch are in a same phase.

3 . The switched capacitor converter of claim 1 , wherein:

a third terminal of the first switch is connected to the first terminal of the first capacitor;

a second terminal of the first switch is connected to a third terminal of the second switch and further connected to the output terminal;

a second terminal of the second switch is connected to a third terminal of the third switch and a second terminal of the first capacitor;

a second terminal of the third switch is grounded;

a third terminal of the fourth switch is connected to a first terminal of the second capacitor;

a second terminal of the fourth switch is connected to a third terminal of the fifth switch, and further connected to the output terminal;

a second terminal of the fifth switch is connected to a third terminal of the sixth switch and a second terminal of the second capacitor; and

a second terminal of the sixth switch is grounded.

4 . The switched capacitor converter of claim 3 , wherein:

the control branch is configured to:

in a first half of an operating cycle, control the second switch, the fourth switch, the sixth switch, the eighth switch and the ninth switch to be turned off, and control the first switch, the third switch, the fifth switch, the seventh switch and the tenth switch to be turned on, and wherein the seventh switch is turned on earlier than the tenth switch; and

in a second half of the operating cycle, control the second switch, the fourth switch, the sixth switch, the eighth switch and the ninth switch to be turned on, and control the first switch, the third switch, the fifth switch, the seventh switch and the tenth switch to be turned off, and wherein, the ratio of the voltage at the input terminal to the voltage at the output terminal is 4:1.

5 . The switched capacitor converter of claim 4 , wherein the control branch is further configured to:

in the first half of the operating cycle, control at least one of the first switch, the third switch and the fifth switch to be turned on earlier than the tenth switch; and

in the second half of the operating cycle, control at least one of the fourth switch and the sixth switch to be turned on earlier than the other switches in the same phase, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 4:1.

6 . The switched capacitor converter of claim 1 , wherein:

a third terminal of the first switch is connected to the first terminal of the first capacitor;

a second terminal of the first switch is connected to a third terminal of the second switch and further connected to the output terminal;

a second terminal of the second switch is connected to a third terminal of the third switch and a second terminal of the first capacitor;

a second terminal of the third switch is grounded;

a third terminal of the fourth switch is connected to a first terminal of the second capacitor;

a second terminal of the fourth switch is connected to a third terminal of the fifth switch, and further connected to the output terminal;

a second terminal of the fifth switch is connected to a third terminal of the sixth switch and a second terminal of the second capacitor; and

a second terminal of the sixth switch is grounded, and wherein:

the first energy storage branch further includes a twelfth switch and a fourth capacitor; and

the second energy storage branch further includes a thirteenth switch and a fifth capacitor, and wherein:

a second terminal of the twelfth switch is connected to a third terminal of the first switch;

a third terminal of the twelfth switch is connected to a first terminal of the fourth capacitor and the third terminal of the ninth switch;

a second terminal of the fourth capacitor is connected to a terminal of the second capacitor;

a second terminal of the thirteenth switch is connected to a third terminal of the fourth switch;

a third terminal of the thirteenth switch is connected to a first terminal of the fifth capacitor and the third terminal of the tenth switch; and

a second terminal of the fifth capacitor is connected to a terminal of the first capacitor.

7 . The switched capacitor converter of claim 6 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the first switch, the third switch, the fifth switch, the eighth switch, the ninth switch and the thirteenth switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the seventh switch, the tenth switch and the twelfth switch to be turned on, wherein the seventh switch is turned on earlier than the tenth switch; and

in a second half of the operating cycle, control the first switch, the third switch, the fifth switch, the eighth switch, the ninth switch and the thirteenth switch to be turned on, and control the second switch, the fourth switch, the sixth switch, the seventh switch, the tenth switch and the twelfth switch to be turned off, and wherein, the ratio of the voltage at the input terminal to the voltage at the output terminal is 6:1.

8 . The switched capacitor converter of claim 7 , wherein the control branch is further configured to:

in the first half of the operating cycle, control at least one of the second switch and the sixth switch to be turned on earlier than the tenth switch; and

in the second half of the operating cycle, control at least one of the first switch and the third switch to be turned on earlier than the other switches of the same phase, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 6:1.

9 . The switched capacitor converter of claim 1 , wherein:

a third terminal of the first switch is connected to the first terminal of the first capacitor;

a second terminal of the first switch is connected to a third terminal of the second switch and further connected to the output terminal;

a second terminal of the second switch is connected to a third terminal of the third switch and a second terminal of the first capacitor;

a second terminal of the third switch is grounded;

a third terminal of the fourth switch is connected to a first terminal of the second capacitor;

a second terminal of the fourth switch is connected to a third terminal of the fifth switch, and further connected to the output terminal;

a second terminal of the fifth switch is connected to a third terminal of the sixth switch and a second terminal of the second capacitor; and

a second terminal of the sixth switch is grounded, and wherein:

the first energy storage branch further includes a twelfth switch, a fourth capacitor, a fourteenth switch and a sixth capacitor; and

the second energy storage branch further includes a thirteenth switch, a fifth capacitor, a fifteenth switch and a seventh capacitor, and wherein:

a second terminal of the twelfth switch is connected to a third terminal of the first switch;

a third terminal of the twelfth switch is connected to a first terminal of the fourth capacitor;

a second terminal of the fourth capacitor is connected to a terminal of the second capacitor;

a second terminal of the thirteenth switch is connected to a third terminal of the fourth switch;

a third terminal of the thirteenth switch is connected to a first terminal of the fifth capacitor;

a second terminal of the fifth capacitor is connected to a terminal of the first capacitor;

a second terminal of the fourteenth switch is connected to the third terminal of the twelfth switch;

a third terminal of the fourteenth switch is connected to a first terminal of the sixth capacitor and the third terminal of the ninth switch;

a second terminal of the sixth capacitor is connected to a terminal of the fifth capacitor;

a second terminal of the fifteenth switch is connected to the third terminal of the thirteenth switch;

a third terminal of the fifteenth switch and a first terminal of the seventh capacitor are connected to the third terminal of the tenth switch; and

a second terminal of the seventh capacitor is connected to a terminal of the fourth capacitor.

10 . The switched capacitor converter of claim 9 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the second switch, the fourth switch, the sixth switch, the twelfth switch, the fifteenth switch, the eighth switch and the ninth switches to be turned off, and control the first switch, the third switch, the fifth switch, the seventh switch, the thirteenth switch, the fourteenth switch and the tenth switch to be turned on, and wherein the seventh switch is turned on earlier than the tenth switch; and

in a second half of the operating cycle, control the second switch, the fourth switch, the sixth switch, the eighth switch, the twelfth switch, the fifteenth switch and the ninth switch to be turned on, and control the first switch, the third switch, the fifth switch, the seventh switch, the thirteenth switch, the fourteenth switch and the tenth switch to be turned off, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 8:1.

11 . The switched capacitor converter of claim 10 , wherein the control branch is further configured to:

in the first half of the operating cycle, at least one of the third switch and the fifth switch is turned on earlier than the tenth switch; and

in the second half of the operating cycle, at least one of the fourth switch and the sixth switch is turned on earlier than the other switches of the same phase, and wherein the ratio of the voltage at the input terminal to the voltage of the output terminal is 8:1.

12 . The switched capacitor converter of claim 1 , wherein:

a third terminal of the first switch is connected to the first terminal of the first capacitor;

a second terminal of the first switch is connected to a third terminal of the second switch and further connected to the output terminal;

a second terminal of the second switch is connected to a third terminal of the third switch and a second terminal of the first capacitor;

a second terminal of the third switch is grounded;

a third terminal of the fourth switch is connected to a first terminal of the second capacitor;

a second terminal of the fourth switch is connected to a third terminal of the fifth switch, and further connected to the output terminal;

a second terminal of the fifth switch is connected to a third terminal of the sixth switch and a second terminal of the second capacitor; and

a second terminal of the sixth switch is grounded, and wherein:

the third energy storage branch also includes an eighth capacitor, a sixteenth switch, a seventeenth switch, an eighteenth switch and a nineteenth switch, and wherein:

a third terminal of the sixteenth switch is connected to a second terminal of the eighteenth switch and a first terminal of the eighth capacitor;

a second terminal of the eighth capacitor is connected to a third terminal of the nineteenth switch and a second terminal of the seventeenth switch;

a third terminal of the seventeenth switch is connected to the input terminal;

a second terminal of the sixteenth switch is grounded;

a third terminal of the eighteenth switch is coupled to a third terminal of the fourth switch; and

a second terminal of the nineteenth switch is coupled to a third terminal of the first switch.

13 . The switched capacitor converter of claim 12 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the second switch, the fourth switch, the sixth switch, the eighth switch, the ninth switch, the sixteenth switch and the nineteenth switch to be turned off, and control the first switch, the third switch, the fifth switch, the seventh switch, the tenth switch, the seventeenth switch and the eighteenth switch to be turned on, and wherein at least one of the seventh switch and the seventeenth switch is turned on earlier than the tenth switch; and

in a second half of the operating cycle, control the first switch, the third switch, the fifth switch, the seventh switch, the tenth switch, the seventeenth switch and the eighteenth switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the eighth switch, the ninth switch, the sixteenth switch and the nineteenth switch to be turned on, wherein at least one of the eighth switch and the sixteenth switch is turned on earlier than the nineteenth switch, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 4:1.

14 . The switched capacitor converter of claim 12 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the second switch, the fourth switch, the sixth switch, the eighth switch, the ninth switch, the sixteenth switch and the nineteenth switch to be turned off, and control the first switch, the third switch, the fifth switch, the seventh switch, the tenth switch, the seventeenth switch and the eighteenth switch to be turned on, and wherein at least one of the seventh switch and the seventeenth switch is turned on earlier than the tenth switch, and at least one of the first switch and the third switch is turned on earlier than the seventh switch; and

in a second half of the operating cycle, control the first switch, the third switch, the fifth switch, the seventh switch, the tenth switch, the seventeenth switch and the eighteenth switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the eighth switch, the ninth switch, the sixteenth switch and the nineteenth switch to be turned on, wherein at least one of the eighth switch and the sixteenth switch is turned on earlier than the nineteenth switch, and at least one of the second switch and the sixth switch is turned on earlier than the sixteenth switch, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 4:1.

15 . The switched capacitor converter of claim 12 , wherein the control branch is further configured to:

control the eighth switch and the seventeenth switch to be turned on, and control the seventh switch and the sixteenth switch to be turned off;

in a first half of an operating cycle, control the second switch, the fourth switch, the sixth switch, the eighteenth switch and the nineteenth switch to be turned off, and control the first switch, the third switch, the fifth switch, the ninth switch and the tenth switch to be turned on; and

in a second half of the operating cycle, control the second switch, the fourth switch, the sixth switch, the eighteenth switch and the nineteenth switch to be turned on, and control the first switch, the third switch, the fifth switch, the ninth switch and the tenth switch to be turned off, and wherein the switched capacitor converter is reconfigured such that the ratio of the voltage at the input terminal to the voltage at the output terminal is 2:1.

16 . The switched capacitor converter of claim 12 , wherein:

the first energy storage branch further includes a twentieth switch and a ninth capacitor; and

the second energy storage branch further includes a twenty-first switch and a tenth capacitor, and wherein:

a second terminal of the twentieth switch is connected to the third terminal of the first switch;

a third terminal of the twentieth switch is connected to a first terminal of the ninth capacitor and the third terminal of the ninth switch;

a second terminal of the ninth capacitor is connected to the first terminal of the second capacitor or the second terminal of the second capacitor;

a second terminal of the twenty-first switch is connected to the third terminal of the fourth switch;

a third terminal of the twenty-first switch is connected to a first terminal of the tenth capacitor and the second terminal of the tenth switch; and

a second terminal of the tenth capacitor is connected to the first terminal of the first capacitor or the second terminal of the first capacitor.

17 . The switched capacitor converter of claim 16 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the first switch, the third switch, the fifth switch, the eighth switch, the ninth switch, the sixteenth switch, the nineteenth switch and the twenty-first switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the seventh switch, the tenth switch, the seventeenth switch, the eighteenth switch and the twentieth switch to be turned on, and wherein at least one of the seventh switch and the seventeenth switch is turned on earlier than the tenth switch; and

in a second half of the operating cycle, control the second switch, the fourth switch, the sixth switch, the seventh switch, the tenth switch, the seventeenth switch, the eighteenth switch and the twentieth switch to be turned off, and control the first switch, the third switch, the fifth switch, the eighth switch, the ninth switch, the sixteenth switch, the nineteenth switch and the twenty-first switch to be turned on, and wherein at least one of the eighth switch and the sixteenth switch is turned on earlier than the nineteenth switch, and wherein, the ratio of the voltage at the input terminal to the voltage at the output terminal is 6:1.

18 . The switched capacitor converter of claim 16 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the first switch, the third switch, the fifth switch, the eighth switch, the ninth switch, the sixteenth switch, the nineteenth switch and the twenty-first switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the seventh switch, the tenth switch, the seventeenth switch, the eighteenth switch and the twentieth switch to be turned on, and wherein at least one of the seventh switch and the seventeenth switch is turned on earlier than the tenth switch, and at least one of the second switch and the sixth switch is turned on earlier than the seventh switch; and

in a second half of the operating cycle, control the second switch, the fourth switch, the sixth switch, the seventh switch, the tenth switch, the seventeenth switch, the eighteenth switch and the twentieth switch to be turned off, and control the first switch, the third switch, the fifth switch, the eighth switch, the ninth switch, the sixteenth switch, the nineteenth switch and the twenty-first switch to be turned on, and wherein at least one of the eighth switch and the sixteenth switch is turned on earlier than the nineteenth switch, and at least one of the first switch and the third switch is turned on earlier than the sixteenth switch, and wherein, the ratio of the voltage at the input terminal to the voltage at the output terminal is 6:1.

19 . The switched capacitor converter of claim 16 , wherein the control branch is further configured to:

control the eighth switch and the seventeenth switch to be turned on, and control the seventh switch and the sixteenth switch to be turned off;

in a first half of an operating cycle, control the first switch, the third switch, the fifth switch, the eighteenth switch, the nineteenth switch and the twenty-first switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the ninth switch, the tenth switch and the twentieth switch to be turned on; and

in a second half of the operating cycle, control the first switch, the third switch, the fifth switch, the eighteenth switch, the nineteenth switch and the twenty-first switch to be turned on, and control the second switch, the fourth switch, the sixth switch, the ninth switch, the tenth switch and the twentieth switch to be turned off, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 3:1.

20 . The switched capacitor converter of claim 16 , wherein:

the first energy storage branch further includes a twenty-second switch and an eleventh capacitor; and

the second energy storage branch further includes a twenty-third switch and a twelfth capacitor, and wherein:

a second terminal of the twenty-second switch is connected to the third terminal of the twentieth switch;

a third terminal of the twenty-second switch is connected to a first terminal of the eleventh capacitor and the third terminal of the ninth switch, and wherein:

when the second terminal of the ninth capacitor is connected to the second terminal of the second capacitor, a second terminal of the eleventh capacitor is connected to the second terminal of the first capacitor; and

when the second terminal of the ninth capacitor is connected to the first terminal of the second capacitor, the second terminal of the eleventh capacitor is connected to the first terminal of the tenth capacitor;

a second terminal of the twenty-third switch is connected to the third terminal of the twenty-first switch; and

a third terminal of the twenty-third switch is connected to a first terminal of the twelfth capacitor and the second terminal of the tenth switch, and wherein:

when the second terminal of the tenth capacitor is connected to the second terminal of the first capacitor, a second terminal of the twelfth capacitor is connected to the second terminal of the second capacitor; and

when the second terminal of the tenth capacitor is connected to the first terminal of the first capacitor, the second terminal of the twelfth capacitor is connected to the first terminal of the ninth capacitor.

21 . The switched capacitor converter of claim 20 , wherein the control branch is further configured to:

in a first half of an operating cycle, control the second switch, the fourth switch, the sixth switch, the eighth switch, the ninth switch, the sixteenth switch, the nineteenth switch, the twentieth switch and the twenty-third switch to be turned off, and control the first switch, the third switch, the fifth switch, the seventh switch, the tenth switch, the seventeenth switch, the eighteenth switch, the twenty-first switch and the twenty-second switch to be turned on, and wherein at least one of the seventh switch and the seventeenth switch is turned on earlier than the tenth switch; and

in a second half of the operating cycle, control the first switch, the third switch, the fifth switch, the seventh switch, the tenth switch, the seventeenth switch, the eighteenth switch, the twenty-first switch and the twenty-second switch to be turned off, and control the second switch, the fourth switch, the sixth switch, the eighth switch, the ninth switch, the sixteenth switch, the nineteenth switch, the twentieth switch and the twenty-third switch to be turned on, and wherein at least one of the eighth switch and the sixteenth switch is turned on earlier than the nineteenth switch, and wherein the ratio of the voltage at the input terminal to the voltage at the output terminal is 8:1.

22 . The switched capacitor converter of claim 21 , wherein the control branch is further configured to:

in the first half of the operating cycle, at least one of the first switch and the third switch is turned on earlier than the seventh switch; and

in the second half of the operating cycle, at least one of the second switch and the sixth switch is turned on earlier than the sixteenth switch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2024
From: LIU, RUI; YANG, SONGNAN; HAN, SHUANG; SHU, RONG; BAI, WENRUI; CUI, QING
To: HALO MICROELECTRONICS INTERNATIONAL
Reel/Frame 066802/0030 →
Continuity (3)
Continuation In Part 17455860 · Nov 19, 2021
Provisional Application 63274150 · Nov 1, 2021
Related Publication 20240275279A1 · Aug 15, 2024
References Cited (1)
US 20210099085A1 · Lau · 2021 [cited by examiner]