IP Library Granted Patent US 7,026,881
Granted Patent B2
US 7,026,881 · App. 10/755,294 · Granted Apr 11, 2006

Wideband variable frequency voltage controlled oscillator

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Quick Facts
Patent No.
US 7,026,881
App. No.
10/755,294
Granted
Apr 11, 2006
Kind
B2
Abstract

In a wideband variable frequency voltage controlled oscillator, an LC resonance circuit determines an oscillation frequency based on an externally inputted voltage signal. A negative resistance generating circuit generates a signal having the oscillation frequency determined by the LC resonance circuit. A buffer circuit transfers the oscillation frequency generated by the negative resistance generating circuit to a load. A variable capacitor connecting circuit connects the negative resistance generating circuit and the buffer circuit to transfer the signal having the oscillation frequency from the negative resistance generating circuit to the buffer circuit.

Claims (17)

1. A wideband variable frequency voltage controlled oscillator comprising:

an LC resonance circuit for determining an oscillation frequency based on an externally inputted voltage signal;

a negative resistance generating circuit for generating a signal having the oscillation frequency determined by the LC resonance circuit;

a buffer circuit for transferring the signal having the oscillation frequency generated by the negative resistance generating circuit to a load; and

a variable capacitor connecting circuit for connecting the negative resistance generating circuit and the buffer circuit to transfer the signal having the oscillation frequency from the negative resistance generating circuit to the buffer circuit,

wherein the variable capacitor connecting circuit is variably controlled to have a smallest capacitance and a largest capacitance when the oscillation frequency reaches a maximum frequency and a minimum frequency in the oscillation circuit, respectively, thereby increasing a capacitance variation range which determines an oscillation frequency bandwidth.

2. The oscillator of claim 1 , wherein the variable capacitor connecting circuit implements a variable capacitance depending on a reverse voltage applied to a P-N junction between a base and a collector in a bipolar junction transistor.

3. The oscillator of claim 1 , wherein the variable capacitor connecting circuit implements a variable capacitance depending on a reverse voltage applied a to a P-N junction between a base and an emitter in a bipolar junction transistor.

4. The oscillator of claim 1 , wherein the variable capacitor connecting circuit implements a variable capacitance depending on a reverse voltage applied a to a Schottky P-N junction.

5. A Colpitts wideband variable frequency voltage controlled oscillator comprising:

an LC resonance circuit for determining an oscillation frequency based on an externally inputted voltage signal;

a negative resistance generating circuit for generating the oscillation frequency determined by the LC resonance circuit; and

a variable capacitor connecting circuit for connecting the LC resonance circuit and the negative resistance generating circuit,

wherein the variable capacitor connecting circuit is variably controlled to have a smallest capacitance and a largest capacitance when the oscillation frequency reaches a maximum frequency and a minimum frequency in the oscillation circuit, respectively, thereby increasing a capacitance variation range which determines an oscillation frequency bandwidth.

6. The oscillator of claim 5 , wherein the variable capacitor connecting circuit implements a variable capacitance depending on a reverse voltage applied a to a P-N junction between a base and a collector in a bipolar junction transistor.

7. The oscillator of claim 5 , wherein the variable capacitor connecting circuit implements a variable capacitance depending on a reverse voltage applied a to a P-N junction between a base and an emitter in a bipolar junction transistor.

8. The oscillator of claim 5 , wherein the variable capacitor connecting circuit implements a variable capacitance depending on a reverse voltage applied a to a Schottky P-N junction.

Assignments (2)
MERGER Recorded Oct 1, 2009
From: RESEARCH AND INDUSTRIAL COOPERATION GROUP, INFORMATION AND COMMUNICATIONS UNIVERSITY
To: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY (KAIST)
Reel/Frame 023312/0614 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2004
From: KIM, YONG HAK; PARK, CHUL SOON
To: INFORMATION AND COMMUNICATIONS UNIVERSITY EDUCATIONAL FOUNDATION
Reel/Frame 014886/0568 →