IP Library Granted Patent US 7,741,922
Granted Patent B2
US 7,741,922 · App. 12/257,920 · Granted Jun 22, 2010

Switch, negative resistance cell, and differential voltage controlled oscillator using the same

Assignee: Electronics and Telecommunications Research Institute
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Quick Facts
Patent No.
US 7,741,922
App. No.
12/257,920
Granted
Jun 22, 2010
Kind
B2
Abstract

The present invention relates to a switch, a negative resistance cell, and a differential voltage controlled oscillator using the same. The present invention includes a first signal line provided in a first direction, a second signal line provided in parallel with the first signal line, and first to fourth gate electrodes, first to third source electrodes, and first to fourth drain electrodes formed between the first signal line and the second signal line, and provides a switch having electrodes in the order of the first gate electrode, the first drain electrode, the second gate electrode, the first source electrode, the third gate electrode, the second drain electrode, the fourth gate electrode, the second source electrode, the fifth gate electrode, the third drain electrode, the sixth gate electrode, the third source electrode, the seventh gate electrode, the fourth drain electrode, and the eighth gate electrode. According to the present invention, a differential voltage controlled oscillator for RF oscillation operation in the broadband area is realized by minimizing generation of parasitic components.

Claims (82)

1. A differential voltage controlled oscillator comprising:

a resonator for generating an oscillation frequency corresponding to an input voltage;

a first output terminal and a second output terminal, respectively coupled to a first terminal and a second terminal of the resonator, for outputting the oscillation frequency; and

a negative resistance cell driven in correspondence to the oscillation frequency, wherein

the negative resistance cell includes a switch, and

the switch includes

a first signal line extended in a first direction,

a second signal line formed to be parallel with the first signal line,

a source electrode formed between the first and second signal lines,

a first gate electrode arranged to be parallel with the source electrode and coupled to the first signal line,

a second gate electrode provided to the opposite side of the first gate electrode with respect to the source electrode, and coupled to the second signal line,

a first drain electrode provided to the opposite side of the source electrode with respect to the first gate electrode, and coupled to the second signal line, and

a second drain electrode provided to the opposite side of the source electrode with respect to the second gate electrode, and coupled to the first signal line.

2. The differential voltage controlled oscillator of claim 1 , wherein

the first signal line is coupled to a first terminal of the resonator, and the second signal line is coupled to a second terminal of the resonator.

3. The differential voltage controlled oscillator of claim 2 , wherein

the source electrode is coupled to a first power unit for supplying a first voltage.

4. A differential voltage controlled oscillator comprising:

a resonator for generating an oscillation frequency corresponding to an input voltage;

a first output terminal and a second output terminal, respectively coupled to a first terminal and a second terminal of the resonator, for outputting the oscillation frequency; and

a negative resistance cell driven in correspondence to the oscillation frequency, wherein

the negative resistance cell includes a switch, and

the switch includes

a first signal line extended in a first direction,

a second signal line formed to be parallel with the first signal line, and

a first gate electrode to a fourth gate electrode, a first source electrode to a third source electrode, and a first drain electrode to a fourth drain electrode formed between the first signal line and the second signal line,

wherein the electrodes are formed in the order of the first gate electrode, the first drain electrode, the second gate electrode, the first source electrode, the third gate electrode, the second drain electrode, the fourth gate electrode, the second source electrode, the fifth gate electrode, the third drain electrode, the sixth gate electrode, the third source electrode, the seventh gate electrode, the fourth drain electrode, and the eighth gate electrode.

5. The differential voltage controlled oscillator of claim 4 , wherein

the first, second, seventh, and eighth gate electrodes, the second and third drain electrodes are coupled to the first signal line, and

the third, fourth, fifth, and sixth gate electrodes and the first and fourth drain electrodes are coupled to the second signal line.

6. The differential voltage controlled oscillator of claim 4 , wherein

the switch forms linear symmetry with respect to the second source electrode.

7. The differential voltage controlled oscillator of claim 4 , wherein

the first signal line is coupled to a first terminal of the resonator, and the second signal line is coupled to a second terminal of the resonator.

8. The differential voltage controlled oscillator of claim 7 , wherein

the first to third source electrodes are coupled to a first power unit for supplying a first voltage.

9. A negative resistance cell, included in a differential voltage controlled oscillator for outputting an oscillation frequency corresponding to an input voltage through a first output terminal and a second output terminal, including a switch driven corresponding to the oscillation frequency,

wherein the switch includes:

a first signal line extended in a first direction;

a second signal line formed to be parallel with the first signal line;

a source electrode formed between the first and second signal lines;

a first gate electrode arranged to be parallel with the source electrode and coupled to the first signal line;

a second gate electrode provided to the opposite side of the first gate electrode with respect to the source electrode, and coupled to the second signal line;

a first drain electrode provided to the opposite side of the source electrode with respect to the first gate electrode, and coupled to the second signal line; and

a second drain electrode provided to the opposite side of the source electrode with respect to the second gate electrode, and coupled to the first signal line.

10. The negative resistance cell of claim 9 , wherein the differential voltage controlled oscillator including a resonator for generating the oscillation frequency corresponding to the input voltage, wherein

the first signal line is coupled to a node of a first terminal of the resonator and the first output terminal, and the second signal line is coupled to a node of a second terminal of the resonator and the second output terminal.

11. The negative resistance cell of claim 10 , wherein

the source electrode is coupled to a first power unit for supplying a first voltage.

12. A negative resistance cell, included in a differential voltage controlled oscillator for outputting an oscillation frequency corresponding to an input voltage through a first output terminal and a second output terminal, including a switch driven corresponding to the oscillation frequency,

wherein the switch includes:

a first signal line extended in a first direction;

a second signal line formed to be parallel with the first signal line; and

a first gate electrode to a fourth gate electrode, a first source electrode to a third source electrode, and a first drain electrode to a fourth drain electrode formed between the first signal line and the second signal line, and

wherein the electrodes are formed in the order of the first gate electrode, the first drain electrode, the second gate electrode, the first source electrode, the third gate electrode, the second drain electrode, the fourth gate electrode, the second source electrode, the fifth gate electrode, the third drain electrode, the sixth gate electrode, the third source electrode, the seventh gate electrode, the fourth drain electrode, and the eighth gate electrode.

13. The negative resistance cell of claim 12 , wherein

the first, second, seventh, and eighth gate electrodes, the second and third drain electrodes are coupled to the first signal line, and

the third, fourth, fifth, and sixth gate electrodes and the first and fourth drain electrodes are coupled to the second signal line.

14. The negative resistance cell of claim 12 , wherein

the switch forms linear symmetry with respect to the second source electrode.

15. The negative resistance cell of claim 12 , wherein the differential voltage controlled oscillator including a resonator for generating the oscillation frequency corresponding to the input voltage, wherein

the first signal line is coupled to a node of a first terminal of the resonator and the first output terminal, and the second signal line is coupled to a node of a second terminal of the resonator and the second output terminal.

16. The negative resistance cell of claim 15 , wherein

the first to third source electrodes is coupled to a first power unit for supplying a first voltage.

17. A switch comprising:

a first signal line extended in a first direction;

a second signal line formed to be parallel with the first signal line;

a source electrode formed between the first and second signal lines;

a first gate electrode arranged to be parallel with the source electrode and coupled to the first signal line;

a second gate electrode provided to the opposite side of the first gate electrode with respect to the source electrode, and coupled to the second signal line;

a first drain electrode provided to the opposite side of the source electrode with respect to the first gate electrode, and coupled to the second signal line; and

a second drain electrode provided to the opposite side of the source electrode with respect to the second gate electrode, and coupled to the first signal line.

18. A switch comprising:

a first signal line extended in a first direction;

a second signal line formed to be parallel with the first signal line; and

a first gate electrode to a fourth gate electrode, a first source electrode to a third source electrode, and a first drain electrode to a fourth drain electrode formed between the first signal line and the second signal line,

wherein the electrodes are formed in the order of the first gate electrode, the first drain electrode, the second gate electrode, the first source electrode, the third gate electrode, the second drain electrode, the fourth gate electrode, the second source electrode, the fifth gate electrode, the third drain electrode, the sixth gate electrode, the third source electrode, the seventh gate electrode, the fourth drain electrode, and the eighth gate electrode.

19. The switch of claim 18 , wherein

the first, second, seventh, and eighth gate electrodes are the second and third drain electrodes are coupled to the first signal line, and

the third, fourth, fifth, and sixth gate electrodes are coupled to the second signal line.

20. The switch of claim 18 , wherein

the switch forms linear symmetry with respect to the second source electrode.

Assignments (4)
LICENSE Recorded Mar 17, 2014
From: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
To: INTELLECTUAL DISCOVERY CO., LTD.
Reel/Frame 032456/0991 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2010
From: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY (KAIST)
To: ELECTRONICS AND TELECOMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 024178/0801 →
MERGER Recorded Oct 13, 2009
From: RESEARCH AND INDUSTRIAL COOPERATION GROUP, INFORMATION AND COMMUNICATIONS UNIVERSITY
To: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY (KAIST)
Reel/Frame 023366/0368 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2008
From: LEE, IN YOUNG; YUN, SEOK-JU; LEE, SANG-GUG; KIM, CHANG SUN
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE; INFORMATION AND COMMUNICATIONS UNIVERSITY RESEARCH AND INDUSTRIAL COOPERATION GROUP
Reel/Frame 022072/0602 →
Priority Claims (1)
KR 10-2007-0107435 · Oct 24, 2007 · national
Continuity (1)
Related Publication 20090108946A1 · Apr 30, 2009