Claims
- 1. A VSAT system having an indoor unit and an outdoor unit, said outdoor unit comprising:
an amplifier operating in a saturated mode, said amplifier having an output power level which is variable by adjusting an operating bias of said amplifier, and an operating bias variation circuit coupled to said amplifier operative for varying the operating bias of said amplifier, said indoor unit comprising:
a signal generating circuit for generating a modulated power control signal, said modulated power control signal being coupled to said outdoor unit via an interfacility link,
wherein said modulated power control signal is coupled to said operating bias variation circuit so as to control said operating bias variation circuit so as to allow adjustment of the output power level of said amplifier.
- 2. The VSAT system of claim 1, wherein said modulated power control signal is a pulse-width modulated signal.
- 3. The VSAT system of claim 1, wherein said modulated power control signal is a pulse-density modulated signal.
- 4. The VSAT system of claim 1, further comprising a detection circuit in the outdoor unit for receiving and demodulating said modulated power control signal, and for generating a control signal having a voltage level which varies proportionally with a modulation level of said modulated power control signal.
- 5. The VSAT system of claim 4, wherein the modulation level of said modulated power control signal is variable by varying the duty cycle of said modulated power control signal.
- 6. The VSAT system of claim 1, wherein said output power level of said amplifier is variable in a linear manner.
- 7. The VSAT system of claim 6, wherein the said output power level of said amplifier is variable in an analog manner between 0 volts and a maximum voltage defined by a fixed power supply coupled to said amplifier.
- 8. The VSAT system of claim 7, wherein said amplifier comprises a MMIC amplifier.
- 9. The VSAT system of claim 1, where said operating bias variation circuit comprises:
a comparator having a first input coupled to an output terminal of said amplifier, and a second input coupled to said control signal, said comparator having an output terminal coupled to an input terminal of said amplifier, said amplifier and comparator forming a feedback loop which operates to equalize the voltage level of an output signal present at said output terminal of said amplifier to the voltage level of said control signal, said output signal present at said output terminal of said amplifier corresponding to said variable output power signal.
- 10. The VSAT system of claim 3, wherein said signal generating circuit includes a sigma-delta modulator.
- 11. A VSAT system having an indoor unit, and an outdoor unit, said indoor unit comprising:
a signal generating circuit for generating a modulated power control signal, said modulated power control signal comprising information regarding a desired power output level, said outdoor unit comprising:
an amplifier operating in a saturation mode, a demodulator circuit for receiving said modulated power control signal, said demodulator operative for producing a control signal having a voltage level corresponding to the modulated power control signal; biasing circuitry coupled to said amplifier and operative for adjusting an output power level of said amplifier in accordance with the voltage level of said control signal by varying a operating bias of said amplifier.
- 12. The VSAT system of claim 11, further comprising:
a comparator having a first input coupled to an output terminal of said amplifier, and a second input coupled to said demodulator circuit so as to receive said control signal, said comparator having an output terminal coupled to an input terminal of said amplifier, said amplifier and comparator forming a feedback loop which operates to equalize the voltage level of an output signal present at said output terminal of said amplifier to the voltage level of said control signal.
- 13. The VSAT system of claim 11, wherein said modulated power control signal is generated utilizing pulse-width modulation techniques.
- 14. The VSAT system of claim 13, wherein said voltage level of said control signal varies in accordance with variations in the duty cycle of said modulated power control signal.
- 15. The VSAT system of claim 11, wherein said modulated power control signal is generated utilizing pulse-density modulation techniques.
- 16. The VSAT system of claim 11, wherein the voltage level of control signal is variable in a linear manner.
- 17. The VSAT system of claim 11, wherein the voltage level of said output power signal is variable in an analog manner between 0 volts and a maximum voltage defined by a fixed power supply coupled to said amplifier.
- 18. The VSAT system of claim 11, wherein said amplifier comprises a FET.
- 19. A method for providing variable control of an output amplifier in a VSAT system having an indoor unit and an outdoor unit, said method comprising the steps of:
generating a modulated power control signal in said indoor unit, said modulated power control signal comprising information regarding a desired power output level of said amplifier, coupling said modulated power control signal to said outdoor unit; demodulating said power control signal utilizing a demodulating circuit contained in the outdoor unit so as to produce a control signal having a voltage level corresponding to the modulated power control signal; adjusting an output power level of said output amplifier in accordance with the voltage level of said control signal.
- 20. The method of claim 19, further comprises the step of forming a feedback loop which operates to equalize the voltage level of an output signal present at said output terminal of said amplifier to the voltage level of said control signal.
- 21. The method of claim 19, wherein said modulated power control signal is generated utilizing pulse-width modulation techniques.
- 22. The method of claim 21, wherein said voltage level of said control signal varies in accordance with variations in the duty cycle of said modulated power control signal.
- 23. The method of claim 19, wherein said modulated power control signal is generated utilizing pulse-density modulation techniques.
- 24. The method of claim 23, wherein said voltage level of said control signal varies in accordance with variations in the pulse density of said modulated power control signal.
- 25. The method of claim 19, wherein the voltage level of control signal is variable in a linear manner.
- 26. The method of claim 19, wherein said amplifier is operating in a saturation mode.
- 27. The VSAT system of claim 4, wherein the modulation level of said modulated power control signal is variable by varying the pulse density of said modulated power control signal.
- 28. The VSAT system of claim 15, wherein said voltage level of said control signal varies in accordance with variations in the pulse density of said modulated power control signal.
RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §119(e) to provisional application Serial No. 60/256,736 filed Dec. 20, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60256736 |
Dec 2000 |
US |