Claims
- 1. A converter comprising:
an image reject mixer configured and arranged to receive an input signal and a quadrature signal pair and to produce an output signal based on the input signal and the quadrature signal pair; and a quadrature signal generator configured and arranged to receive a first oscillator signal and a second oscillator signal and to produce the quadrature signal pair, wherein each of the quadrature signal pair is based on both the first oscillator signal and the second oscillator signal.
- 2. The converter according to claim 1, wherein the image reject mixer comprises:
a first mixer configured and arranged to receive one among the quadrature signal pair and a signal based on the input signal and to output a first mixed signal; and a second mixer configured and arranged to receive the other among the quadrature signal pair and a signal based on the input signal and to output a second mixed signal, wherein the output signal is based on the first and second mixed signals.
- 3. The converter according to claim 2, wherein the image reject mixer further comprises a phase shifter configured and arranged to receive one among the first and second mixed signals and to output a phase-shifted signal,
wherein the output signal is based on the phase-shifted signal.
- 4. The converter according to claim 3, wherein the phase shifter comprises a polyphase filter.
- 5. The converter according to claim 3, wherein the phase shifter is configured and arranged to perform a phase shift having a magnitude of ninety degrees.
- 6. The converter according to claim 2, wherein the image reject mixer further comprises:
a first phase shifter configured and arranged to receive the first mixed signal and to output a first phase-shifted signal; and a second phase shifter configured and arranged to receive the second mixed signal and to output a second phase-shifted signal, wherein the output signal is based on the first and second phase-shifted signals.
- 7. The converter according to claim 6, wherein the magnitude of a phase difference between the first and second phase-shifted signals is ninety degrees.
- 8. The converter according to claim 7, wherein at least one among the first and second phase shifters comprises a polyphase filter.
- 9. The converter according to claim 6, wherein at least one among the first and second phase shifters comprises a polyphase filter.
- 10. The converter according to claim 2, wherein the image reject mixer further comprises a combiner configured and arranged to receive a signal at least based on the first mixed signal and a signal at least based on the second mixed signal and to output the output signal.
- 11. The converter according to claim 2, wherein at least one among said first mixer an d said second mixer comprises a Gilbert cell multiplier.
- 12. The converter according to claim 1, wherein the quadrature signal generator is robust to changes in the frequency of at least one among the first and second oscillator signals.
- 13. The converter according to claim 1, wherein a frequency of at least one among the quadrature signal pair is one among a sum and a difference of a frequency of the first oscillator signal and a frequency of the second oscillator signal.
- 14. The converter according to claim 13, wherein a frequency of one among the quadrature signal pair is equal to a frequency of the other among the quadrature signal pair.
- 15. The converter according to claim 1, wherein a frequency of the input signal is greater than four hundred megahertz.
- 16. A method comprising:
receiving a first oscillator signal and a second oscillator signal; producing a quadrature signal pair based on the first oscillator signal and the second oscillator signal; receiving an input signal; and producing an output signal based on the input signal and the quadrature signal pair, wherein each of the quadrature signal pair is based on both the first oscillator signal and the second oscillator signal.
- 17. The method of claim 16, wherein a frequency of one among the quadrature signal pair is equal to a frequency of the other among the quadrature signal pair.
- 18. The method of claim 17, wherein the frequency of the quadrature signal pair is one among the sum and the difference of the frequencies of the first and second oscillator signals.
- 19. The method of claim 16, wherein producing a quadrature signal pair includes producing a quadrature signal pair whose phase difference is robust to changes in at least one among the first and second oscillator signals.
- 20. The method of claim 16, wherein producing an output signal includes producing a shifted input signal pair having the same frequency as the input signal,
wherein a phase difference between the shifted input signal pair is ninety degrees.
- 21. The method of claim 16, wherein producing an output signal includes:
mixing the input signal with one among the quadrature signal pair to obtain a first mixed signal; and mixing the input signal with the other among the quadrature signal pair to obtain a second mixed signal.
- 22. The method of claim 21, wherein producing an output signal further includes performing a phase shift on at least one among the first and second mixed signals.
- 23. The method of claim 22, wherein performing a phase shift includes performing a phase shift having a magnitude of at least forty-five degrees.
- 24. The method of claim 21, wherein producing an output signal further includes:
performing a phase shift on the first mixed signal to obtain a first phase-shifted signal; and performing a phase shift on the second mixed signal to obtain a second phase-shifted signal.
- 25. The method of claim 24, wherein the magnitude of a phase difference between the first phase-shifted signal and the second phase-shifted signal is ninety degrees.
- 26. The method of claim 24, wherein producing an output signal further includes combining the first phase-shifted signal and the second phase-shifted signal.
- 27. An integrated circuit comprising:
an image reject mixer configured and arranged to receive an input signal and a quadrature signal pair and to produce an output signal based on the input signal and the quadrature signal pair; and a quadrature signal generator configured and arranged to receive a first oscillator signal and a second oscillator signal and to produce the quadrature signal pair, wherein each of the quadrature signal pair is based on both the first oscillator signal and the second oscillator signal.
- 28. The integrated circuit according to claim 27, wherein the image reject mixer comprises:
a first mixer configured and arranged to receive one among the quadrature signal pair and a signal based on the input signal and to output a first mixed signal; and a second mixer configured and arranged to receive the other among the quadrature signal pair and a signal based on the input signal and to output a second mixed signal, wherein the output signal is based on the first and second mixed signals.
- 29. A converter comprising:
a generator configured and arranged to receive a first oscillator signal and a second oscillator signal and to output a quadrature signal pair having a frequency ωg; and an image reject mixer configured and arranged to receive the quadrature signal pair and an input signal including an information signal modulated onto a carrier having a bandwidth centered at a frequency ωc and to output an output signal, wherein each of the quadrature signal pair is based on both of the first oscillator signal and the second oscillator signal, and wherein at least one among a sum and a difference of the frequencies of the first oscillator signal and the second oscillator signal is ωg, and wherein the output signal includes the information signal modulated onto a carrier having a bandwidth centered at one among the frequencies (ωc−ωg) and (ωc+ωg), and wherein the image reject mixer is further configured and arranged to suppress a component in the input signal having the frequency (2ωg−ωc).
- 30. The converter according to claim 29, wherein the image reject mixer includes a mixer/phase shifter section, and
wherein the mixer/phase shifter section receives the input signal and one of the quadrature signal pair and produces an output component signal, and wherein the output signal is based on the output component signal.
RELATED APPLICATIONS
[0001] This application claims benefit of U.S. Provisional Patent Application No. 60/245,230, entitled “QUADRATURE GENERATOR WITH IMAGE REJECT MIXER,” filed Nov. 3, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60245230 |
Nov 2000 |
US |