IP Library Granted Patent US 8,644,039
Granted Patent B2
US 8,644,039 · App. 12/832,999 · Granted Feb 4, 2014

Voltage multiplying circuit utilizing no voltage stabling capacitors

Inventors: Chen-Jung Chuang (Taipei County, TW); Chien-Kuo Wang (Hsinchu, TW)
Assignee: ILI Technology Corp.
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Quick Facts
Patent No.
US 8,644,039
App. No.
12/832,999
Granted
Feb 4, 2014
Kind
B2
Abstract

A voltage multiplying circuit comprising: a first capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the first capacitor is selectively coupled to a first voltage or a second voltage, and the second terminal is selectively coupled to the first voltage or a fourth voltage; a second capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the second capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the second capacitor is selectively coupled to a third voltage or the fourth voltage; and a third capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the third capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the third capacitor is selectively coupled to a third voltage or the fourth voltage.

Claims (36)

1. A voltage multiplying circuit, comprising:

a first capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the first capacitor is selectively coupled to a first voltage or a second voltage, and the second terminal of the first capacitor is selectively coupled to the first voltage or a fourth voltage, wherein the second voltage is from a first constant voltage source permanently providing the second voltage;

a second capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the second capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the second capacitor is selectively coupled to a third voltage or the fourth voltage, wherein the third voltage is from a second constant voltage source permanently providing third voltage; and

a third capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the third capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the third capacitor is selectively coupled to a third voltage or the fourth voltage, wherein the first terminal of the third capacitor is coupled to the fourth voltage and the second terminal of the third capacitor is coupled to the third voltage in one mode, where the first terminal of the third capacitor is coupled to the second voltage and the second terminal of the third capacitor is coupled to the fourth voltage in another mode.

2. The voltage multiplying circuit of claim 1 , wherein the first voltage, the first capacitor and the second voltage form a conductive path; the second voltage, the second capacitor and the fourth voltage form a conductive path; and the fourth voltage, the third capacitor and the third voltage form a conductive path, in a first mode.

3. The voltage multiplying circuit of claim 2 , wherein the first voltage, the first capacitor and the fourth voltage form a conductive path; the fourth voltage, the second capacitor and the third voltage form a conductive path; and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a second mode.

4. The voltage multiplying circuit of claim 3 , wherein the first voltage, the first capacitor and the second voltage form a conductive path; the fourth voltage, the second capacitor and the third voltage form a conductive path; and

the second voltage, the third capacitor and the fourth voltage form a conductive path, in a third mode.

5. The voltage multiplying circuit of claim 4 , wherein the first voltage, the first capacitor and the fourth voltage form a conductive path; the second voltage, the second capacitor and the fourth voltage form a conductive path; and the fourth voltage, the third capacitor and the third voltage form a conductive path, in a fourth mode.

6. The voltage multiplying circuit of claim 1 , wherein the first voltage, the first capacitor and the fourth voltage form a conductive path, the fourth voltage, the second capacitor and the third voltage form a conductive path, and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a second mode.

7. The voltage multiplying circuit of claim 1 , wherein the first voltage, the first capacitor and the second voltage form a conductive path; the fourth voltage, the second capacitor and the third voltage form a conductive path; and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a third mode.

8. The voltage multiplying circuit of claim 1 , wherein the first voltage, the first capacitor and the fourth voltage form a conductive path; the second voltage, the second capacitor and the fourth voltage form a conductive path; and the fourth voltage, the third capacitor and the third voltage form a conductive path, in a fourth mode.

9. The voltage multiplying circuit of claim 1 , wherein the second voltage is a positive integer multiple of the first voltage.

10. The voltage multiplying circuit of claim 1 , wherein the third voltage is a negative integer multiple of the first voltage.

11. The voltage multiplying circuit of claim 1 , wherein the second voltage is twice of the first voltage.

12. The voltage multiplying circuit of claim 1 , wherein the third voltage is negative twice of the first voltage.

13. The voltage multiplying circuit of claim 1 , wherein the fourth voltage is a ground voltage level.

14. A voltage multiplying circuit, comprising:

a first capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the first capacitor is selectively coupled to a first voltage or a second voltage, and the second terminal of the first capacitor is selectively coupled to the first voltage or a fourth voltage, wherein the second voltage is from a first constant voltage source;

a second capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the second capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the second capacitor is selectively coupled to a third voltage or the fourth voltage, wherein the third voltage is from a second constant voltage source; and

a third capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the third capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the third capacitor is selectively coupled to the third voltage or the fourth voltage;

wherein the first voltage, the first capacitor and the second voltage form a conductive path; the fourth voltage, the second capacitor and the third voltage form a conductive path; and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a third mode.

15. The voltage multiplying circuit of claim 14 , wherein the first voltage, the first capacitor and the fourth voltage form a conductive path; the second voltage, the second capacitor and the fourth voltage form a conductive path; and the fourth voltage, the third capacitor and the third voltage form a conductive path, in a fourth mode.

16. A voltage multiplying circuit, comprising:

a first capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the first capacitor is selectively coupled to a first voltage or a second voltage, and the second terminal of the first capacitor is selectively coupled to the first voltage or a fourth voltage, wherein the second voltage is from a first constant voltage source;

a second capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the second capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the second capacitor is selectively coupled to a third voltage or the fourth voltage, wherein the third voltage is from a second constant voltage source; and

a third capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the third capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the third capacitor is selectively coupled to the third voltage or the fourth voltage;

wherein the first voltage, the first capacitor and the fourth voltage form a conductive path, the fourth voltage, the second capacitor and the third voltage form a conductive path, and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a second mode.

17. A voltage multiplying circuit, comprising:

a first capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the first capacitor is selectively coupled to a first voltage or a second voltage, and the second terminal of the first capacitor is selectively coupled to the first voltage or a fourth voltage, wherein the second voltage is from a first constant voltage source;

a second capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the second capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the second capacitor is selectively coupled to a third voltage or the fourth voltage, wherein the third voltage is from a second constant voltage source; and

a third capacitor, comprising a first terminal and a second terminal, wherein the first terminal of the third capacitor is selectively coupled to the second voltage or the fourth voltage, and the second terminal of the third capacitor is selectively coupled to the third voltage or the fourth voltage;

wherein the first voltage, the first capacitor and the second voltage form a conductive path; the second voltage, the second capacitor and the fourth voltage form a conductive path; and the fourth voltage, the third capacitor and the third voltage form a conductive path, in a first mode;

wherein the first voltage, the first capacitor and the fourth voltage form a conductive path; the fourth voltage, the second capacitor and the third voltage form a conductive path; and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a second mode;

wherein the first voltage, the first capacitor and the second voltage form a conductive path; the fourth voltage, the second capacitor and the third voltage form a conductive path; and the second voltage, the third capacitor and the fourth voltage form a conductive path, in a third mode.

18. The voltage multiplying circuit of claim 17 , wherein the first voltage, the first capacitor and the fourth voltage form a conductive path; the second voltage, the second capacitor and the fourth voltage form a conductive path; and the fourth voltage, the third capacitor and the third voltage form a conductive path, in a fourth mode.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2022
From: ILI TECHNOLOGY HOLDING CORPORATION
To: ILI TECHNOLOGY CORP.
Reel/Frame 060262/0911 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2021
From: ILI TECHNOLOGY CORP.
To: ILI TECHNOLOGY HOLDING CORPORATION
Reel/Frame 055257/0614 →
CHANGE OF NAME Recorded Dec 20, 2016
From: MRISE TECHNOLOGY INC.
To: ILI TECHNOLOGY CORP.
Reel/Frame 040676/0700 →
MERGER Recorded Nov 28, 2016
From: ILI TECHNOLOGY CORP.
To: MRISE TECHNOLOGY INC.
Reel/Frame 040688/0263 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2010
From: CHUANG, CHEN-JUNG; WANG, CHIEN-KUO
To: ILI TECHNOLOGY CORP.
Reel/Frame 024656/0074 →
Priority Claims (1)
TW 99118795 A · Jun 9, 2010 · national
Continuity (1)
Related Publication 20110304221A1 · Dec 15, 2011