IP Library Granted Patent US 9,832,011
Granted Patent B1
US 9,832,011 · App. 15/198,115 · Granted Nov 28, 2017

Performance indicator for phase locked loops

Inventors: Christian Wicpalek (Puchenau, AT); Tobias Buckel (Linz, AT); Andreas Menkhoff (Oberhaching, DE)
Assignee: Intel IP Corporation
H04L7/033H04L41/0681H04L43/028H03C3/095H03C3/0916H03C3/0925H03C3/0941H03C3/0958H03C3/0966H03C3/20H03L7/08H03L7/081H03L7/0802H03L7/085H03L7/087H03L7/089H03L7/0891H03L7/091H03L7/093H03L7/099H03L7/0995H03L7/104H03L7/1075H03L7/113H03L7/18H03L7/183H03L7/193H03L7/1976H03L2207/06H03L2207/50
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Quick Facts
Patent No.
US 9,832,011
App. No.
15/198,115
Granted
Nov 28, 2017
Kind
B1
Abstract

Performance indicator circuitry is provided for characterizing performance of a phase locked loop (PLL) in a phase path of a polar modulator or polar transmitter that is used to generate a phase modulated RF signal. The PLL includes an oscillator, a high pass path, and a low pass path. The low pass path includes a loop filter. The performance indicator circuitry includes first input circuitry and parameter calculation circuitry. The first input circuitry is configured to input a loop filter signal from the loop filter. The parameter calculation circuitry is configured to compute a value for a performance indicator based on the loop filter signal and control or characterize an aspect of operation of the PLL based on the value.

Claims (68)

1. Performance indicator circuitry adapted to characterize performance of a phase locked loop (PLL) comprising an oscillator, a high pass path, and a low pass path comprising loop filter circuitry, wherein the PLL is in a phase path of a phase modulator, the performance indicator circuitry comprising:

first input circuitry configured to input a signal from the loop filter circuitry;

parameter calculation circuitry configured to:

compute a value for a performance indicator based on the signal; and

control an aspect of operation of the PLL based on the value;

second input circuitry configured to input a frequency modulation signal, comprising:

a reference filter that inputs the frequency modulation signal and outputs a filtered frequency modulation signal; and

a multiplexer that selects one of the filtered frequency modulation signal or the frequency modulation signal and inputs the selected signal to the parameter calculation circuitry; and

wherein the parameter calculation circuitry is configured to calculate the value based on a correlation between the loop filter signal and the frequency modulation signal.

2. The performance indicator circuitry of claim 1 , wherein the parameter calculation circuitry is configured to store the value in a memory for use in calibrating the PLL.

3. The performance indicator circuitry of claim 1 , wherein the parameter calculation circuitry is configured to provide the value to alignment circuitry, wherein the alignment circuitry is configured to process the frequency modulation signal for two point modulation by the PLL.

4. Performance indicator circuitry adapted to characterize performance of a phase locked loop (PLL) comprising an oscillator, a high pass path, and a low pass path comprising loop filter circuitry, wherein the PLL is in a phase path of a phase modulator, wherein the loop filter circuitry comprises gain circuitry that outputs an amplified signal, a low pass filter that outputs a filtered signal, and integrator circuitry that outputs an integrated signal, the performance indicator circuitry comprising:

first input circuitry comprising a multiplexer that selects one of the amplified signal, the low pass signal, or the integrated signal; and

parameter calculation circuitry configured to:

compute a value for a performance indicator based on the selected signal; and

control an aspect of operation of the PLL based on the value.

5. Performance indicator circuitry adapted to characterize performance of a phase locked loop (PLL) comprising an oscillator, a high pass path, and a low pass path comprising loop filter circuitry, wherein the PLL is in a phase path of a phase modulator, the performance indicator circuitry comprising:

first input circuitry configured to input a signal from the loop filter circuitry;

parameter calculation circuitry configured to compute a value of a statistical characterization of the loop filter signal over time and control an aspect of operation of the PLL based on the value; and

trigger circuitry configured to detect a trigger signal, and in response, cause the parameter calculation unit to compute the statistical characterization over a predetermined time period.

6. A phase modulator configured to process a frequency modulation signal to generate a phase modulated radio frequency (RF) signal for recombination with an amplitude modulation signal to generate a phase and amplitude modulated RF signal, the phase modulator comprising:

alignment circuitry configured to process the frequency modulation signal to produce a low pass signal and a high pass signal;

a phase locked loop, comprising:

an oscillator configured to generate the phase modulated RF signal based on a control signal;

a loop filter comprising a series of circuitry, wherein each circuitry in the loop filter is configured to output a respective unique loop filter signal; and

summation circuitry configured to add the high pass signal to an output of the loop filter to generate the control signal; and

performance indicator circuitry comprising:

first input circuitry configured to input a selected loop filter signal;

parameter calculation circuitry configured to compute a value for a performance indicator based at least on the loop filter signal; and

second input circuitry configured to input the frequency modulation signal, comprising:

a reference filter that inputs the frequency modulation signal and outputs a filtered frequency modulation signal; and

a multiplexer that selects one of the filtered frequency modulation signal or the frequency modulation signal and inputs the selected signal to the parameter calculation circuitry, and

wherein the parameter calculation circuitry is configured to calculate the value based on a correlation between the loop filter signal and the frequency modulation signal.

7. The phase modulator of claim 6 , wherein the parameter calculation circuitry is configured to store the value in a memory for use in calibrating the PLL.

8. The phase modulator of claim 6 , wherein the parameter calculation circuitry is configured to provide the value to the alignment circuitry for use in processing the frequency modulation signal.

9. A phase modulator configured to process a frequency modulation signal to generate a phase modulated radio frequency (RF) signal for recombination with an amplitude modulation signal to generate a phase and amplitude modulated RF signal, the phase modulator comprising:

alignment circuitry configured to process the frequency modulation signal to produce a low pass signal and a high pass signal;

a phase locked loop, comprising:

an oscillator configured to generate the phase modulated RF signal based on a control signal;

a loop filter comprising gain circuitry that outputs an amplified signal, a low pass filter that outputs a filtered signal, and integrator circuitry that outputs an integrated signal; and

summation circuitry configured to add the high pass signal to the output of the loop filter to generate the control signal; and

performance indicator circuitry comprising:

input circuitry comprising a multiplexer that selects one of the amplified signal, the low pass signal, or the integrated signal; and

parameter calculation circuitry configured to compute a value for a performance indicator based at least on the selected signal.

10. A phase modulator configured to process a frequency modulation signal to generate a phase modulated radio frequency (RF) signal for recombination with an amplitude modulation signal to generate a phase and amplitude modulated RF signal, the phase modulator comprising:

alignment circuitry configured to process the frequency modulation signal to produce a low pass signal and a high pass signal;

a phase locked loop, comprising:

an oscillator configured to generate the phase modulated RF signal based on a control signal;

a loop filter comprising a series of circuitry, wherein each circuitry in the loop filter is configured to output a respective unique loop filter signal; and

summation circuitry configured to add the high pass signal to the output of the loop filter circuitry to generate the control signal; and

performance indicator circuitry comprising:

input circuitry configured to input a selected loop filter signal; and

parameter calculation circuitry configured to compute a statistical characterization of the loop filter signal over time; and

trigger circuitry configured to detect a trigger signal, and in response, cause the parameter calculation unit to compute the statistical characterization.

11. A method for use with a phase locked loop comprising an oscillator configured to generate a phase modulated signal based on a control signal and a loop filter comprising a series of circuitry, wherein each circuitry in the loop filter is configured to output a respective unique loop filter signal, the method comprising:

inputting a loop filter signal from the loop filter;

inputting a frequency modulation signal;

filtering the frequency modulation signal;

computing a value for a performance indicator based on a correlation between the loop filter signal and the filtered frequency modulation signal; and

characterizing performance of the PLL based on the value.

12. The method of claim 11 , comprising storing the value in a memory for use in calibrating the PLL.

13. The method of claim 11 , comprising providing the value to alignment circuitry configured to process the frequency modulation signal for two point modulation by the PLL.

14. The method of claim 11 , further comprising detecting a trigger signal, and in response, calculating a statistical characterization of the loop filter signal over a predetermined time period.

15. A method for use with a phase locked loop comprising an oscillator configured to generate a phase modulated signal based on a control signal and a loop filter comprising a gain circuitry that outputs an amplified signal, a low pass filter that outputs a filtered signal, and integrator circuitry that outputs an integrated signal, the method comprising:

selecting one of the amplified signal, the low pass signal, or the integrated signal;

inputting the selected signal; and

computing a value for a performance indicator based on the selected signal; and

characterizing performance of the PLL based on the value.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 053307/0500 →
CONFIRMATORY ASSIGNMENT Recorded Jun 25, 2020
From: INTEL IP CORPORATION
To: INTEL CORPORATION
Reel/Frame 053051/0139 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2016
From: WICPALEK, CHRISTIAN; BUCKEL, TOBIAS; MENKHOFF, ANDREAS
To: INTEL IP CORPORATION
Reel/Frame 039054/0193 →