IP Library › Granted Patent US 10,541,707
Granted Patent B2
US 10,541,707 · App. 16/041,648 · Granted Jan 21, 2020

Apparatus for reducing wandering spurs in a fractional-N frequency synthesizer

Inventors: Hongjia Mo (Cork, IE); Michael Peter Kennedy (Cork, IE)
Assignee: UNIVERSITY COLLEGE CORK, NUI, CORK
H03M3/414H03M3/324H03M3/394H03M3/434
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Quick Facts
Patent No.
US 10,541,707
App. No.
16/041,648
Granted
Jan 21, 2020
Kind
B2
Abstract

The present invention provides a fractional-N frequency synthesizer comprising a divider controller comprising a multistage noise Shaping (MASH) digital delta-sigma modulator comprising L stages, wherein the Lth stage is configured to receive as an input a high amplitude dither signal.

Claims (20)

1. A fractional-N frequency synthesizer comprising a divider controller comprising a multistage noise shaping (MASH) digital delta-sigma modulator comprising L stages, wherein the Lth stage is configured to receive as an input the sum of the output of the preceding stage and a high amplitude dither signal,

wherein the high amplitude dither signal comprises an integer dither signal which is uniformly distributed in the range [0, 1, . . . , M−1], wherein M corresponds to the modulus of the MASH digital delta-sigma modulator.

2. The fractional-N frequency synthesizer of claim 1 , wherein the MASH digital delta-sigma modulator comprises a MASH digital delta-sigma modulator with additive first-order dither.

3. The fractional-N frequency synthesizer of claim 2 , wherein the MASH digital delta-sigma modulator comprises a MASH 1-1-1 architecture.

4. The fractional-N frequency synthesizer of claim 1 , wherein each of the L stages comprises a first order error feedback modulator (EFM).

5. A fractional-N frequency synthesizer comprising a divider controller comprising a multistage noise shaping (MASH) digital delta-sigma modulator comprising L stages, wherein the Lth stage is configured to receive as an input the sum of the output of a preceding stage and a high amplitude dither signal,

wherein the high amplitude dither signal comprises a dither signal which is uniformly distributed in the range [0, 1, . . . , 2 K −1]*M/2 K , wherein M=2 B , and wherein M corresponds to the modulus of the MASH digital delta-sigma modulator, B corresponds to the number of bits, and K comprises an integer between 1 and 6.

6. The fractional-N frequency synthesizer of claim 5 , wherein the MASH digital delta-sigma modulator comprises a MASH digital delta-sigma modulator with additive first-order dither.

7. The fractional-N frequency synthesizer of claim 6 , wherein the MASH digital delta-sigma modulator comprises a MASH 1-1-1 architecture.

8. The fractional-N frequency synthesizer of claim 5 , wherein each of the L stages comprises a first order error feedback modulator (EFM).

9. A fractional-N frequency synthesizer comprising a divider controller comprising a multistage noise shaping (MASH) digital delta-sigma modulator comprising L stages, wherein the Lth stage is configured to receive as an input the sum of the output of a preceding stage and a high amplitude dither signal,

wherein the MASH digital delta-sigma modulator comprises a MASH digital delta-sigma modulator with additive first-order dither,

wherein the MASH digital delta-sigma modulator comprises a MASH 1-1-1 architecture,

wherein the MASH 1-1-1 architecture with additive first-order dither comprises a first stage, a second stage and a third stage, and

wherein the third stage of the MASH architecture is configured to receive as an input the sum of the output of the preceding stage and the high amplitude dither signal.

10. The fractional-N frequency synthesizer of claim 9 , wherein the high amplitude dither signal is filtered in accordance with the equation:

Y ( z )=(1/ M )*[ X ( z )+(1− z −1 ) D 1 ( z )+(1− z −1 ) 2 D 2 ( z )]+(1− z −1 ) 3 E q3 ( z ),

where Y corresponds to the z transform of an output signal of the MASH 1-1-1 architecture; X corresponds to the z transform of an input signal to the MASH 1-1-1 architecture; D 1 corresponds to the z transform of an additive first order dither signal; D 2 corresponds to the z transform of the high amplitude dither signal; and E q3 corresponds to the z transform of a quantization error of the third stage of the MASH 1-1-1 architecture.

11. The fractional-N frequency synthesizer of claim 9 , wherein the second stage of the MASH architecture is configured to receive as an input a binary dither signal.

12. The fractional-N frequency synthesizer of claim 9 , wherein each of the L stages comprises a first order error feedback modulator (EFM).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2019
From: MO, HONGJIA; KENNEDY, MICHAEL PETER
To: UNIVERSITY COLLEGE CORK - NATIONAL UNIVERSITY OF IRELAND, CORK
Reel/Frame 051252/0958 →
Continuity (2)
Provisional Application 62536370 · Jul 24, 2017
Related Publication 20190089368A1 · Mar 21, 2019