Claims
- 1. A hybrid loop filter comprising:
an integrator having an input and an output, said output forming an output of said hybrid loop filter; a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having an input and an output, each output of said plurality of transconductance amplifiers coupled to said input of said integrator; a switched capacitor low pass chain having an input and a plurality of branches, each of said plurality of branches coupled to said input of a separate one of said plurality of transconductance amplifiers; and a feedthrough branch having an input and an output, said input coupled to said input of said switched capacitor low pass chain to from an input of said hybrid loop filter, and said output coupled to said input of a separate one of said plurality of transconductance amplifiers.
- 2. A hybrid loop filter as in claim 1, wherein each of said plurality of transconductance amplifiers is a single ended transconductance amplifier.
- 3. A hybrid loop filter as in claim 1, wherein said integrator is an op-amp having an input forming said input of said integrator and an output forming said output of said integrator, and a feedback capacitor coupled between said input of said op-amp and said output of said op-amp.
- 4. A hybrid loop filter as in claim 1, wherein said integrator is a loading capacitor having a first plate and a second plate, said first plate coupled to each output of said plurality of transconductance amplifiers and forming said output of said hybrid loop filter, and said second plate coupled to a reference potential.
- 5. A hybrid loop filter as in claim 1, wherein each of said plurality of branches in said switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 6. A hybrid loop filter as in claim 1, wherein a first of said plurality of branches in said switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said switched capacitor low pass chain and by a second switch to a second capacitor.
- 7. A hybrid loop filter as in claim 1, wherein said feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 8. A hybrid loop filter comprising:
a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having an input and an output, each output of said plurality of transconductance amplifiers coupled together to form an output of hybrid loop filter; and a switched capacitor low pass chain having an input and a plurality of branches, said input forming an input of said hybrid loop filter, and each of said plurality of branches coupled to said input of a separate one of said plurality of transconductance amplifiers.
- 9. A hybrid loop filter as in claim 8, wherein each of said plurality of transconductance amplifiers is a differential input single ended output transconductance amplifier.
- 10. A hybrid loop filter as in claim 8, wherein each of said plurality of branches in said switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 11. A hybrid loop filter as in claim 8, wherein a first of said plurality of branches in said switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said switched capacitor low pass chain and by a second switch to a second capacitor.
- 12. A hybrid loop filter comprising:
an integrator having an input and an output, said output forming an output of said hybrid loop filter; a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having a first input, a second input and an output, each output of said plurality of transconductance amplifiers coupled to said input of said integrator; a first switched capacitor low pass chain having an input and a plurality of branches, each of said plurality of branches coupled to said first input of a separate one of said plurality of transconductance amplifiers; a second switched capacitor low pass chain having an input and a plurality of branches, each of said plurality of branches coupled to said second input of a separate one of said plurality of transconductance amplifiers; a first feedthrough branch having an input and an output, said input coupled to said input of said first switched capacitor low pass chain to form a first input of said hybrid loop filter, and said output coupled to said first input of a separate one of said plurality of transconductance amplifiers; and a second feedthrough branch having an input and an output, said input coupled to said input of said second switched capacitor low pass chain to form a second input of said hybrid loop filter, and said output coupled to said second input of a separate one of said plurality of transconductance amplifiers.
- 13. A hybrid loop filter as in claim 12, wherein each of said plurality of transconductance amplifiers is a differential input single ended output transconductance amplifier.
- 14. A hybrid loop filter as in claim 12, wherein said integrator is an op-amp is having an input forming said input of said integrator and an output forming said output of said integrator, and a feedback capacitor coupled between said input of said op-amp and said output of said op-amp.
- 15. A hybrid loop filter as in claim 12, wherein said integrator is a loading capacitor having a first plate and a second plate, said first plate coupled to each output of said plurality of transconductance amplifiers and forming said output of said hybrid loop filter, and said second plate coupled to a reference potential.
- 16. A hybrid loop filter as in claim 12, wherein each of said plurality of branches in said first switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 17. A hybrid loop filter as in claim 12, wherein each of said plurality of branches in said second switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 18. A hybrid loop filter as in claim 12, wherein a first of said plurality of branches in said first switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said first switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said first switched capacitor low pass chain and by a second switch to a second capacitor.
- 19. A hybrid loop filter as in claim 12, wherein said first feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 20. A hybrid loop filter as in claim 12, wherein a first of said plurality of branches in said second switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said second switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said second switched capacitor low pass chain and by a second switch to a second capacitor.
- 21. A hybrid loop filter as in claim 12, wherein said second feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 22. A hybrid loop filter comprising:
a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having a first input, a second input and an output, each output of said plurality of transconductance amplifiers coupled together to form an output of said hybrid loop filter; a first switched capacitor low pass chain having an input and a plurality of branches, said input forming a first input of said hybrid loop filter, and each of said plurality of branches coupled to said first input of a separate one of said plurality of transconductance amplifiers; and a second switched capacitor low pass chain having an input and a plurality of branches, said input forming a second input of said hybrid loop filter, and each of said plurality of branches coupled to said second input of a separate one of said plurality of transconductance amplifiers.
- 23. A hybrid loop filter as in claim 22, wherein each of said plurality of transconductance amplifiers is a differential input single ended output transconductance amplifier.
- 24. A hybrid loop filter as in claim 22, wherein each of said plurality of branches in said first switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 25. A hybrid loop filter as in claim 22, wherein each of said plurality of branches in said second switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 26. A hybrid loop filter as in claim 22, wherein a first of said plurality of branches in said first switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said first switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said first switched capacitor low pass chain and by a second switch to a second capacitor.
- 27. A hybrid loop filter as in claim 22, wherein a first of said plurality of branches in said second switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said second switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said second switched capacitor low pass chain and by a second switch to a second capacitor.
- 28. A hybrid loop filter comprising:
an integrator having a first input, a second input, a first output and a second output, said first output forming a first output of said hybrid loop filter and said second output forming a second output of said hybrid loop filter; a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having a first input, a second input, a first output and a second output, each first output of said plurality of transconductance amplifiers coupled to said first input of said integrator, and each second output of said plurality of transconductance amplifiers coupled to said second input of said integrator; a first switched capacitor low pass chain having an input and a plurality of branches, each of said plurality of branches coupled to said first input of a separate one of said plurality of transconductance amplifiers; a second switched capacitor low pass chain having an input and a plurality of branches, each of said plurality of branches coupled to said second input of a separate one of said plurality of transconductance amplifiers; a first feedthrough branch having an input and an output, said input coupled to said input of said first switched capacitor low pass chain to form a first input of said hybrid loop filter, and said output coupled to said first input of a separate one of said plurality of transconductance amplifiers; and a second feedthrough branch having an input and an output, said input coupled to said input of said second switched capacitor low pass chain to form a second input of said hybrid loop filter, and said output coupled to said second input of a separate one of said plurality of transconductance amplifiers.
- 29. A hybrid loop filter as in claim 28, wherein each of said plurality of transconductance amplifiers is a differential input differential output transconductance amplifier.
- 30. A hybrid loop filter as in claim 28, wherein said integrator is an op-amp having a first input forming said first input of said integrator, a second input forming said second input of said integrator, a first output forming said first output of said integrator, and a second output forming said second output of said integrator, a first feedback capacitor coupled between said first input of said op-amp and said first output of said op-amp, and a second feedback capacitor coupled between said second input of said op-amp and said second output of said op-amp.
- 31. A hybrid loop filter as in claim 28, wherein said integrator is a loading capacitor having a first plate and a second plate, said first plate coupled to each first output of said plurality of transconductance amplifiers and forming said first output of said hybrid loop filter, and said second plate coupled to each second output of said plurality of transconductance amplifiers and forming said second output of said hybrid loop filter.
- 32. A hybrid loop filter as in claim 28, wherein each of said plurality of branches in said first switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 33. A hybrid loop filter as in claim 28, wherein each of said plurality of branches in said second switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 34. A hybrid loop filter as in claim 28, wherein a first of said plurality of branches in said first switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said first switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said first switched capacitor low pass chain and by a second switch to a second capacitor.
- 35. A hybrid loop filter as in claim 28, wherein said first feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 36. A hybrid loop filter as in claim 28, wherein a first of said plurality of branches in said second switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said second switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said second switched capacitor low pass chain and by a second switch to a second capacitor.
- 37. A hybrid loop filter as in claim 28, wherein said second feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 38. A hybrid loop filter comprising:
a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having a first input, a second input, a first output, and a second output, each first output of said plurality of transconductance amplifiers coupled together to form a first output of said hybrid loop filter, and each second output of said plurality of transconductance amplifiers coupled together to form a second output of said hybrid loop filter; a first switched capacitor low pass chain having an input and a plurality of branches, said input forming a first input of said hybrid loop filter, and each of said plurality of branches coupled to said first input of a separate one of said plurality of transconductance amplifiers; and a second switched capacitor low pass chain having an input and a plurality of branches, said input forming a second input of said hybrid loop filter, and each of said plurality of branches coupled to said second input of a separate one of said plurality of transconductance amplifiers.
- 39. A hybrid loop filter as in claim 38, wherein each of said plurality of transconductance amplifiers is a differential input differential output transconductance amplifier.
- 40. A hybrid loop filter as in claim 38, wherein each of said plurality of branches in said first switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 41. A hybrid loop filter as in claim 38, wherein each of said plurality of branches in said second switched capacitor low pass chain has a first capacitor, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor.
- 42. A hybrid loop filter as in claim 38, wherein a first of said plurality of branches in said first switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said first input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said first switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said first switched capacitor low pass chain and by a second switch to a second capacitor.
- 43. A hybrid loop filter as in claim 38, wherein a first of said plurality of branches in said second switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a second capacitor coupled to said second input of a separate one of said plurality of transconductance amplifiers, and a switch to couple said first capacitor to said second capacitor, and each of said plurality of branches in said second switched capacitor low pass chain other than said first branch has a first capacitor that may be coupled by a first switch to another of said plurality of branches in said second switched capacitor low pass chain and by a second switch to a second capacitor.
- 44. A hybrid loop filter comprising:
an integrator having a first input, a second input, a first output and a second output, said first output forming a first output of said hybrid lop filter and said second output forming a second output of said hybrid loop filter; a plurality of transconductance amplifiers, each of said plurality of transconductance amplifiers having a first input, a second input, a first output and a second output, each first output of said plurality of transconductance amplifiers coupled to said first input of said integrator, and each second output of said plurality of transconductance amplifiers coupled to said second input of said integrator; a first switched capacitor low pass chain having an input and a plurality of primary branches, each of said plurality of primary branches coupled to said first input of a separate one of said plurality of transconductance amplifiers; a second switched capacitor low pass chain having an input and a plurality of primary branches, each of said plurality of primary branches coupled to said second input of a separate one of said plurality of transconductance amplifiers; a first feedthrough branch having an input and an output, said input coupled to said input of said first switched capacitor low pass chain to form a first input of said hybrid loop filter, and said output coupled to said first input of a separate one of said plurality of transconductance amplifiers; and a second feedthrough branch having an input and an output, said input coupled to said input of said second switched capacitor low pass chain to form a second input of said hybrid loop filter, and said output coupled to said second input of a separate one of said plurality of transconductance amplifiers.
- 45. A hybrid loop filter as in claim 44, wherein each of said plurality of transconductance amplifiers is a differential input differential output transconductance amplifier.
- 46. A hybrid loop filter as in claim 44, wherein said integrator is an op-amp having a first input forming said first input of said integrator, a second input forming said second input of said integrator, a first output forming said first output of said integrator, and a second output forming said second output of said integrator, a first feedback capacitor coupled between said first input of said op-amp and said first output of said op-amp, and a second feedback capacitor coupled between said second input of said op-amp and said second output of said op-amp.
- 47. A hybrid loop filter as in claim 44, wherein said integrator is a loading capacitor having a first plate and a second plate, said first plate coupled to each first output of said plurality of transconductance amplifiers and forming said first output of said plurality of transconductance amplifiers and forming said second output of said hybrid loop filter.
- 48. A hybrid loop filter as in claim 44, wherein each of said plurality of primary branches in said first switched capacitor low pass chain has a first capacitor, a secondary branch coupled to said first input of a separate one of said plurality of transconductance amplifiers and to a second capacitor, and a switch to couple said first capacitor to said secondary branch, said second capacitor coupled to one of said plurality of primary branches in said second switched capacitor low pass chain.
- 49. A hybrid loop filter as in claim 44, wherein each of said plurality of primary branches in said second switched capacitor low pass chain has a first capacitor, a secondary branch coupled to said first input of a separate one of said plurality of transconductance amplifiers and to a second capacitor, and a switch to couple said first capacitor to said secondary branch, said second capacitor coupled to one of said plurality of primary branches in said first switched capacitor low pass chain
- 50. A hybrid loop filter as in claim 44, wherein a first of said plurality of primary branches in said first switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a secondary branch coupled to said first input of a separate one of said plurality of transconductance amplifiers and to a second capacitor, and a switch to couple said first capacitor to said secondary branch, said second capacitor coupled to one of said plurality of primary branches in said second switched capacitor low pass chain.
- 51. A hybrid loop filter as in claim 44, wherein a first of said plurality of primary branches in said second switched capacitor low pass chain has a first capacitor coupled to said input of said hybrid loop filter, a secondary branch coupled to said first input of a separate one of said plurality of transconductance amplifiers and to a second capacitor, and a switch to couple said first capacitor to said secondary branch, said second capacitor coupled to one of said plurality of primary branches in said first switched capacitor low pass chain.
- 52. A hybrid loop filter as in claim 44, wherein said first feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second branch coupled to said first input of a separate one of said plurality of transconductance amplifiers and to a second capacitor, and a switch to couple said first capacitor to said secondary branch, said second capacitor coupled to a secondary branch in said second feedthrough branch.
- 53. A hybrid loop filter as in claim 44, wherein said second feedthrough branch has a first capacitor coupled to said input of said hybrid loop filter, a second branch coupled to said first input of a separate one of said plurality of transconductance amplifiers and to a second capacitor, and a switch to couple said first capacitor to said secondary branch, said second capacitor coupled to a secondary branch in said first feedthrough branch.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. patent application Ser. No. 09/703,501, filed Oct. 31, 2000, which is a continuation of U.S. patent application Ser. No. 09/286,261, filed Apr. 5, 1999 in the name of inventor Renyuan Huang.
Continuations (1)
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09286261 |
Apr 1999 |
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09703501 |
Oct 2000 |
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Continuation in Parts (1)
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09801013 |
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