Claims
- 1. A delta-sigma modulator employing a single loop, fourth order architecture, comprising:
an input signal section; an output signal section; four integration stages connected in a cascaded configuration and having a signal path; at least one feedback path from said output signal section; and a feed-forward path comprising a differentiator, connected to said input signal section and to said signal path prior to a fourth integration stage.
- 2. The delta-sigma modulator of claim 1, wherein said feed-forward path is also connected to said signal path prior to the third integration stage.
- 3. The delta-sigma modulator of claim 1, wherein the delta-sigma modulator has a resolution and wherein at least one of said integration stages has a ratio of gain bandwidth product to sampling frequency of less than about 0.2 times said resolution.
- 4. A method of improving error processing in a fourth order delta-sigma modulator having four integration stages, comprising connecting an input signal feed-forward path to the signal path prior to a fourth integration stage, and differentiating an input signal along said feed-forward path.
- 5. A circuit for improving error processing in a fourth order delta-sigma modulator, wherein said modulator has four integration stages, comprising a feed-forward path from an input of said delta-sigma modulator connected to the signal path prior to a fourth integration stage, wherein said feed-forward path includes a differentiator.
- 6. The circuit of claim 5, wherein said modulator comprises a single loop architecture.
- 7. The circuit of claim 5, wherein said modulator has resolution and wherein at least one of said integration stages has a ratio of gain bandwidth product to sampling frequency of less than about 0.2 times said resolution.
- 8. A fourth order delta-sigma modulator, for use in an analog to digital converter, comprising:
an input signal section; an output signal section; a plurality of integration stages connected in a cascaded configuration; and a feed-forward path coupled to said input signal section and connected to the signal path prior to a last of said plurality of integration stages, comprising a differentiator.
- 9. The delta-sigma modulator of claim 8, wherein the modulator has a single loop architecture.
- 10. A hearing aid comprising a fourth order delta-sigma modulator, wherein said modulator has a feed-forward path from an input signal section connected to the signal path prior to a final integration stage.
- 11. The hearing aid of claim 10, wherein the feed-forward path includes a differentiator.
- 12. The hearing aid of claim 10, wherein the modulator has a single loop architecture.
- 13. The hearing aid of claim 10, wherein the modulator has a resolution and a plurality of integration stages, and wherein at least one of said integration stages has a ratio of gain bandwidth product to sampling frequency of less than about 0.2 times said resolution.
- 14. An audio circuit, comprising a fourth order delta sigma modulator having a feed-forward path connected from an input signal section to the signal path prior to a final integration stage.
- 15. The audio circuit of claim 14, wherein the feed-forward path includes a differentiator.
- 16. The audio circuit of claim 14, wherein the modulator has a single loop architecture.
- 17. The audio circuit of claim 14, wherein the modulator has a plurality of integrators and a resolution, and wherein at least one of said integrators has a ratio of gain bandwidth product to sampling frequency of less than about 0.2 times said resolution.
- 18. A delta-sigma modulator, comprising:
an input signal section; an output signal section; four integration stages connected in series, each having an input and an output; a first feedback path having a first end connected to the output of the fourth integration stage and a second end connected to the input of the third integration stage; a second feedback path having a first end connected to the output signal section and a second end connected to the input signal section; a third feedback path having a first end connected to the output signal section and a second end connected to the input of the fourth integration stage; a first feed-forward path having a first end connected to the output of the first integration stage and a second end connected to the input of the fourth integration stage; a second feed-forward path having a first end connected to the output of the second integration stage and a second end connected to the input of the fourth integration stage; and a third feed-forward path having a first end connected to the input signal section and a second end connected to the input of the fourth integration stage.
- 19. The modulator of claim 18, wherein the third feed-forward path includes a differentiator.
- 20. The modulator of claim 18, further comprising a fourth feed-forward path having a first end connected to the input signal section and a second end connected to the input of the third integration stage.
- 21. A delta-sigma modulator, comprising:
an input signal section; an output signal section; four integration stages connected in a cascaded configuration and having a signal path, wherein at least one of said integration stages has a ratio of gain bandwidth product to sampling frequency of less than about 0.2 times a resolution of the modulator; at least one feedback path from said output signal section; and a feed-forward path comprising a differentiator, connected to said input signal section and to said signal path prior to a fourth integration stage.
- 22. The delta-sigma modulator of claim 21, wherein said ratio of gain bandwidth product to sampling frequency is greater than about 0.04 times said resolution.
- 23. A method of reducing power consumption and improving error processing in an audio communication product having a delta-sigma modulator with a plurality of integrators, comprising reducing a ratio of gain bandwidth product to sampling frequency of the at least one integrator to below about 0.2 times a resolution of the data converter, connecting an input signal feed-forward path to the signal path prior to a fourth integration stage, and differentiating an input signal along said feed-forward path.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/095304 entitled “DELTA-SIGMA MODULATOR WITH FEED-FORWARD PATH” filed on Mar. 8, 2002. The disclosure of the above-described filed application is hereby incorporated by reference in its entirety.
[0002] This application claims priority to U.S. Provisional Patent Application 60/393,983 entitled “DELTA SIGMA MODULATOR” and filed on Jul. 3, 2002.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60393983 |
Jul 2002 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10095304 |
Mar 2002 |
US |
Child |
10212474 |
Aug 2002 |
US |