Claims
- 1. Adapted for direct broadcast satellite applications, an integrated circuit comprising:
a variable gain amplifier (VGA) having an amplifier input to receive an input signal including a frequency within a direct broadcast satellite signal frequency range and a gain control input to receive a gain control signal, the amplifier providing a VGA output being the input signal amplified by the gain control signal; a frequency synthesizer to regulate an oscillator signal to a desired frequency; a quadrature generator coupled to the variable gain amplifier and the frequency synthesizer, the quadrature generator to receive the oscillator signal and to generate inphase and quadrature components thereof; and a plurality of mixers coupled to the quadrature generator, the plurality of mixers to mix the VGA output with the inphase and quadrature components from the quadrature generator to provide inphase and quadrature components of the VGA output.
- 2. The integrated circuit of claim 1 further comprising a terminal coupled to the gain control input, the terminal to receive the gain control signal from a source off the integrated circuit.
- 3. The integrated circuit of claim 1 further comprising amplifier coupled to each of the plurality mixers, the amplifiers to amplify the inphase and the quadrature components of the VGA output from the plurality of mixers.
- 4. The integrated circuit of claim 1 further comprising a plurality of low pass active filters coupled to the amplifiers coupled to the plurality of mixers.
- 5. The integrated circuit of claim 4, wherein a low pass range of the active filters is adjustable.
- 6. The integrated circuit of claim 1 further comprising a plurality of serial communication lines; and
a serial port coupled the plurality of serial communication lines and the frequency synthesizer, the serial port to program the frequency synthesizer to produce a synthesized frequency as a reference frequency for regulating the oscillator signal.
- 7. The integrated circuit of claim 1 further comprising a plurality of variable gain amplifiers to provide variable gain in order to adjust the VGA output before being output from the integrated circuit.
- 8. The integrated circuit of claim 7, wherein the plurality of variable gain amplifiers are controlled in conjunction with the variable gain amplifier.
- 9. The integrated circuit of claim 1 further comprising a broadband filter coupled to both the VGA and the plurality of mixers.
- 10. The integrated circuit of claim 9, wherein the broadband filter is switched on and off, depending on a frequency of the desired RF carrier.
- 11. The integrated circuit of claim 9, wherein the broadband filter is tuned electronically.
- 12. A tuner and data recovery system comprising:
a digital signal processor; and an integrated circuit coupled to the digital signal processor, the integrated circuit including
a variable gain amplifier (VGA) including (i) an amplifier input to receive a direct broadcast satellite signal, and (ii) a gain control input to receive a gain control signal, the variable gain amplifier providing as a VGA output being the input signal amplified by the gain control signal; a frequency synthesizer to regulate an oscillator signal to a desired frequency; a quadrature generator coupled to the variable gain amplifier and the frequency synthesizer, the quadrature generator to receive the oscillator signal and to generate inphase and quadrature components thereof; and a plurality of mixers coupled to the quadrature generator, the plurality of mixers to mix the VGA output with the inphase and quadrature components from the quadrature generator to provide inphase and quadrature components of the VGA output.
- 13. The tuner and data recovery system of claim 12 wherein the digital signal processor providing the gain control signal to the integrated circuit.
- 14. The tuner and data recovery system of claim 12, wherein the integrated circuit further includes at least one amplifier coupled to each of the plurality of mixers, the at least one amplifier to amplify the inphase and the quadrature components of the VGA output from the plurality of mixers.
- 15. The tuner and data recovery system of claim 12, wherein the integrated circuit further includes a filter coupled to ea ch of the at least one amplifier.
- 16. The tuner and data recovery system of claim 15, wherein a pass range of each filter is adjustable.
- 17. The tuner and data recovery system of claim 12, wherein the integrated circuit further includes a serial port coupled the plurality of serial communication lines and the frequency synthesizer, the serial port to program the frequency synthesizer to produce a synthesized frequency as a reference frequency for regulating the oscillator signal.
- 18. The tuner and data recovery system of claim 12, further comprising a plurality of variable gain amplifiers to provide variable gain to adjust the VGA output.
- 19. The tuner and data recovery system of claim 12, wherein the frequency synthesizer comprises a phase locked loop (PLL) synthesizer.
- 20. The tuner and data recovery system of claim 18, wherein the digital signal processor is programmed to provide the gain control signal to the variable gain amplifier and the plurality of variable gain amplifiers.
- 21. Adapted for direct broadcast satellite applications, a tuner comprising:
a tank circuit; and an integrated circuit coupled to the tank circuit, the integrated circuit including
a voltage controlled oscillator to provide an oscillator signal; a variable gain amplifier including (i) an amplifier input to receive a direct broadcast satellite signal, and (ii) a gain control input to receive a gain control signal, the variable gain amplifier providing, as a VGA output, the input signal amplified by the gain control signal; a frequency synthesizer to control the tank circuit in order to readjust the oscillator signal to a desired frequency; a quadrature generator coupled to the VGA and the frequency synthesizer, the quadrature generator to receive the oscillator signal and to generate inphase and quadrature components thereof; and a plurality of mixers coupled to the quadrature generator, the plurality of mixers to mix the VGA output with the inphase and quadrature components from the quadrature generator to provide inphase and quadrature components of the VGA output.
- 22. The tuner of claim 21, wherein the integrated circuit further comprising at least one amplifier coupled to each of the plurality of mixers to amplify the inphase and the quadrature components of the VGA output.
- 23. The tuner of claim 22, wherein the integrated circuit further comprising at least one filter coupled between each of the plurality of mixers and the at least one amplifier.
- 24. The tuner of claim 23, further comprising a digital signal processor to control the variable gain amplifier and the at least one amplifier associated with each of the plurality of mixers.
- 25. The tuner of claim 21, wherein the integrated circuit further comprising a filter coupled between the variable gain amplifier and the plurality of mixers.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This is a Continuation-in-Part of U.S. patent application Ser. No. 08/808,400, which was filed Feb. 28, 1997 and is owned by Assignee of the present Application.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08808400 |
Feb 1997 |
US |
Child |
09140365 |
Aug 1998 |
US |