Claims
- 1. A synthesizer incorporating voltage tunable capactiors, comprising:
at least one resonator coupled into a base circuit of a bipolar transistor, said at least one resonator including at least one voltage tunable capacitor; said bipolar transistor including a collector which terminates in a radial micro strip stub and an emitter which produces an output via an impedance matching circuit, a buffer amplifier and an RF filter; a frequency divider, programmable phase locked loop and loop filter receiving said output of said RF filter and providing the input to a controller; an integral switch mode power supply providing power to said base circuit via a first power supply filter, and said controller via a second power supply filter; and said controller scales the user-selected control voltage range to the levels required by said voltage tunable capacitors associated with said at leat one resonator.
- 2. The synthesizer incorporating voltage tunable capacitors of claim 1, wherein said at least one resonator is at least one at micro strip resonator.
- 3. The synthesizer incorporating voltage tunable capacitors of claim 1, wherein said bipolar transistor is a Si-bipolar transistor.
- 4. The synthesizer incorporating voltage tunable capacitors of claim 1, wherein said emitter of said bipolar transistor is further terminated into a short-circuited micro strip stub, preventing lower modes of oscillation to exist.
- 5. The synthesizer incorporating voltage tunable capacitors of claim 1, wherein said buffer amplifier is replaced with a circulator associated with said impedance matching circuit to reduce the pulling effect where needed.
- 6. The synthesizer incorporating voltage tunable capacitors of claim 1, further comprising a buffer amplifier in the output circuit to amplify the output power where needed.
- 7. The synthesizer incorporating voltage tunable capacitors of claim 1, wherein said controller is a simple one-transistor controller.
- 8. The synthesizer incorporating voltage tunable capacitors of claim 1, wherein said controller has a user-specified frequency response, thus aiding integration with phase-locked loop synthesizers.
- 10. A method of controlling an synthesizer using voltage tunable capactiors, comprising:
providing at least one resonator coupled into a base circuit of a bipolar transistor, said at least one resonator including at least one voltage tunable capacitor; said bipolar transistor including a collector which terminates in a radial micro strip stub and an emitter which produces an output via an impedance matching circuit, a buffer amplifier and an RF filter; providing a frequency divider, programmable phase locked loop and loop filter receiving said output of said RF filter and providing the input to a controller; providing an integral switch mode power supply providing power to said base circuit via a first power supply filter, and said controller via a second power supply filter; and scaling the user-selected control voltage range via said controller to the levels required by said voltage tunable capacitors associated with said at least one resonator.
- 10. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, wherein said at least one resonator is at least one at micro strip resonator.
- 11. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, wherein said bipolar transistor is a Si-bipolar transistor.
- 12. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, wherein said emitter of said bipolar transistor is further terminated into a short-circuited micro strip stub, preventing lower modes of oscillation to exist.
- 13. The method of controlling an synthesizer using voltage tunable capacitors of claim 10, further comprising the step of providing a buffer amplifier associated with said impedance matching circuit to reduce the pulling effect where needed.
- 14. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, further comprising the step of providing a circulator associated with said impedance matching circuit to reduce the pulling effect where needed.
- 15. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, further comprising the step of providing a buffer amplifier in the output circuit to amplify the output power where needed.
- 16. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, wherein said controller is a simple one-transistor controller.
- 17. The method of controlling an synthesizer using voltage tunable capacitors of claim 9, wherein said controller has a user-specified frequency response, thus aiding integration with phase-locked loop synthesizers.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to U.S. Provisional Patent Application Serial No. 60/452,422, “SYNTHESIZERS INCORPORATING PARASCAN™ VARACTORS” filed Mar. 6, 2003, by Nicolaas D du Toit.
Provisional Applications (1)
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Number |
Date |
Country |
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60452422 |
Mar 2003 |
US |