IP Library Granted Patent US 7,379,002
Granted Patent B1
US 7,379,002 · App. 11/639,676 · Granted May 27, 2008

Methods and apparatus for a multi-mode analog-to-digital converter

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Quick Facts
Patent No.
US 7,379,002
App. No.
11/639,676
Granted
May 27, 2008
Kind
B1
Abstract

A multi-mode analog-to-digital converter includes a delta-sigma analog-to-digital converter circuit configured to receive the analog input and produce a digital bit-stream associated therewith, the delta-sigma analog-to-digital converter including at least one integrator configured to reset to an initial state in response to a reset signal A digital filter circuit is configured to receive the digital bit-stream and produce two filtered outputs derived from the digital bit-stream. During one mode (e.g., a DC mode) the delta-sigma analog-to-digital converter circuit is configured to receive the reset signal and produce the digital bit-stream for a predetermined number of clock cycles, and the digital output corresponds to the first filtered output. In another mode (e.g., an AC mode), the delta-sigma analog-to-digital converter is configured to continuously produce the bit-stream, and the digital output corresponds to the second filtered output.

Claims (34)

1. A multi-mode analog-to-digital converter configured to receive an analog input and produce a digital output corresponding to the analog input, comprising:

a delta-sigma analog-to-digital converter circuit configured to receive the analog input and produce a digital bit-stream associated therewith, the delta-sigma analog-to-digital converter circuit including at least one integrator configured to reset to an initial state in response to a reset signal; and

a digital filter circuit configured to receive the digital bit-stream, the digital filter circuit configured to produce a first filtered output and a second filtered output derived from the digital bit-stream;

wherein, during a first mode, the delta-sigma analog-to-digital converter circuit is configured to receive the reset signal and produce the digital bit-stream for a predetermined number of clock cycles, and wherein the digital output corresponds to the first filtered output; and

wherein, during a second mode, the delta-sigma analog-to-digital converter circuit is configured to continuously produce the digital bit-stream, and wherein the digital output corresponds to the second filtered output;

wherein the first and second modes are selectively activated such that the first mode is active when the analog input is a DC signal, and the second mode is active when the analog input is an AC signal.

2. The multi-mode analog-to-digital converter of claim 1 , wherein the delta-sigma analog-to-digital converter circuit comprises a cascade-of-integrators feed-forward (CIFF) analog-to-digital converter.

3. The multi-mode analog-to-digital converter of claim 2 , wherein the CIFF is a third-order CIFF.

4. The multi-mode analog-to-digital converter of claim 1 , wherein the digital filter circuit comprises a cascaded-integrator-comb (CIC) filter.

5. The multi-mode analog-to-digital converter of claim 4 , wherein the CIC filter includes a series of integrators, and wherein the first filtered output corresponds to the end of a subset of the series of integrators.

6. The multi-mode analog-to-digital converter of claim 5 , wherein the analog-to-digital converter is an n-th order converter, and the subset of the series of integrators includes n integrators.

7. The multi-mode analog-to-digital converter of claim 1 , wherein the first mode is configured to convert a DC signal, and the second mode is configured to convert an AC signal.

8. A method of converting an analog input to a digital output comprising:

providing a delta-sigma analog-to-digital converter circuit configured to receive the analog input and produce a digital bit-stream associated therewith, the delta-sigma analog-to-digital converter circuit including at least one integrator configured to reset to an initial state in response to a reset signal;

providing a digital filter circuit configured to receive the digital bit-stream, the digital filter circuit configured to produce a first filtered output and a second filtered output derived from the digital bit-stream;

selecting a mode of operation, wherein the mode of operation is selected from the group consisting of an AC mode and a DC mode;

if the DC mode is selected: applying the reset signal, instructing the delta-sigma converter circuit to produce the digital bit-stream for a predetermined number of clock cycles, and deriving the digital output from the first filtered output;

if the AC mode is selected: producing the digital bit-stream continuously and deriving the digital output from the second filtered output.

9. The method of claim 8 , wherein providing the delta-sigma analog-to-digital converter circuit includes providing a cascade-of-integrators feed-forward (CIFF) analog-to-digital converter, and wherein instructing the delta-sigma converter circuit includes instructing the CIFF analog-to-digital converter to produce the digital bit-stream for a predetermined number of clock cycles.

10. The method of claim 9 , wherein providing the delta-sigma analog-to-digital converter circuit includes providing a third-order CIFF.

11. The method of claim 8 , wherein providing the digital filter circuit includes providing a cascaded-integrator-comb (CIFF) filter.

12. The method of claim 8 , wherein the second filtered output corresponds to the end of a series of integrators, and wherein first filtered output corresponds to the end of a subset of the series of integrators.

13. The method of claim 12 , wherein the delta-sigma analog-to-digital converter circuit is a third-order converter, and wherein the subset of the series of integrators includes three integrators in the series of integrators.

14. A multi-mode analog-to-digital converter configured to receive an analog input and produce a digital output corresponding to the analog input, comprising:

a cascade-of-integrators feed-forward (CIFF) analog-to-digital converter circuit configured to receive the analog input and produce a digital bit-stream associated therewith, the CIFF analog-to-digital converter circuit including a plurality of integrators, each configured to reset to an initial state in response to a corresponding reset signal; and

a cascaded-integrator comb (CIC) filter circuit configured to receive the digital bit-stream, produce a first filtered output after a first number of filter integrators, and produce a second filtered output after a second number of filter integrators;

wherein the CIFF analog-to-digital converter circuit and the CIC filter circuit are configured to selectively operate in an incremental mode for conversion of DC signals, and a normal mode for conversion of AC signals;

wherein, during the incremental mode, the CIFF analog-to-digital converter circuit is configured to receive the corresponding reset signals and produce the digital bit-stream for a predetermined number of clock cycles, and wherein the digital output corresponds to the first filtered output of the CIC filter circuit; and

wherein, during the normal mode, the CIFF analog-to-digital converter circuit is configured to continuously produce the digital bit-stream, and wherein the digital output corresponds to the second filtered output of the CIC filter circuit.

15. The multi-mode analog-to-digital converter of claim 14 , wherein the CIFF analog-to-digital converter circuit includes a third-order CIFF.

16. The multi-mode analog-to-digital converter of claim 15 , wherein the first number of filter integrators comprises three filter integrators, and the second number of filter integrators comprises eight filter integrators.

17. The multi-mode analog-to-digital converter of claim 14 , wherein the predetermined number of clock cycles is configurable.

18. The multi-mode analog-to-digital converter of claim 14 , wherein the CIFF analog-to-digital converter and the CIC filter circuit are integrated into a single semiconductor device.

19. The multi-mode analog-to-digital converter of claim 14 , wherein a clock coupled to the CIFF analog-to-digital converter circuit is terminated after the predetermined number of clock cycles in response to an end-of-convert signal.

Assignments (18)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 040925 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Feb 17, 2020
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP, B.V. F/K/A FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 052917/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 040928 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Jan 17, 2020
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 052915/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 037486 FRAME 0517. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS. Recorded Dec 10, 2019
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To: MORGAN STANLEY SENIOR FUNDING, INC.
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To: NXP B.V.
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CORRECTIVE ASSIGNMENT TO CORRECT THE TO CORRECT THE APPLICATION NO. FROM 13,883,290 TO 13,833,290 PREVIOUSLY RECORDED ON REEL 041703 FRAME 0536. ASSIGNOR(S) HEREBY CONFIRMS THE THE ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS.. Recorded Feb 20, 2019
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: SHENZHEN XINGUODU TECHNOLOGY CO., LTD.
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CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE PATENTS 8108266 AND 8062324 AND REPLACE THEM WITH 6108266 AND 8060324 PREVIOUSLY RECORDED ON REEL 037518 FRAME 0292. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS. Recorded Feb 1, 2017
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From: FREESCALE SEMICONDUCTOR INC.
To: NXP USA, INC.
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CHANGE OF NAME Recorded Nov 8, 2016
From: FREESCALE SEMICONDUCTOR INC.
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RELEASE OF SECURITY INTEREST Recorded Nov 7, 2016
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To: NXP B.V.
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From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP, B.V., F/K/A FREESCALE SEMICONDUCTOR, INC.
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ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS Recorded Jan 12, 2016
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To: MORGAN STANLEY SENIOR FUNDING, INC.
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To: FREESCALE SEMICONDUCTOR, INC.
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