IP Library Granted Patent US 7,557,622
Granted Patent B2
US 7,557,622 · App. 11/542,756 · Granted Jul 7, 2009

Precision triangle waveform generator

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Quick Facts
Patent No.
US 7,557,622
App. No.
11/542,756
Granted
Jul 7, 2009
Kind
B2
Abstract

A triangle waveform generator is set forth that comprises a capacitive element, a regulator, and a control circuit. The regulator is configured to charge the capacitive element in responsive to a first control signal and to discharge the capacitive element in response to a second control signal. The control circuit is responsive to a reference waveform to generate the first and second control signals. In one example, the control circuit generates the first and second control signals in response to the amplitude, frequency, phase, and symmetry of the reference waveform.

Claims (80)

1. A triangle waveform generator comprising:

a capacitive element;

a regulator configured to charge and discharge the capacitive element, where the regulator is responsive to a first control signal to charge the capacitive element and a second control signal to discharge the capacitive element; and

a control circuit responsive to a frequency and phase of a reference waveform to generate the first and second control signals, where the control circuit comprises

a first set of charge pumps adapted to generate the first control signal, and

a second set of charge pumps adapted to generate the second control signal,

where the first and second set of charge pumps are cross-coupled with one another to generate the first and second control signals.

2. The triangle waveform generator of claim 1 , where the control circuit comprises:

a window detection circuit generating a window comparator signal in response to a generated triangle waveform;

a first phase frequency detector generating an output signal in response to the window comparator signal and the reference waveform; and

a second phase frequency detector generating an output signal in response to an inverted version of the window comparator signal and an inverted version of the reference waveform.

3. The triangle waveform generator of claim 2 , where the control circuit further comprises:

a first set of charge pumps adapted to generate the first control signal; and

a second set of charge pumps adapted to generate the second control signal.

4. The triangle waveform generator of claim 3 , where the first and second sets of charge pumps are cross-coupled with one another to generate the first and second control signals.

5. The triangle waveform generator of claim 3 , where the first set of charge pumps comprises:

a main charge pump responsive to the output signal of the first phase frequency detector and an inverted version of the output signal of the first phase frequency detector, where the main charge pump provides a switched current Ir for use in generating the first control signal; and

a secondary charge pump responsive to the output signal of the second phase frequency detector and an inverted version of the output signal of the second phase frequency detector, where the secondary charge pump provides a switched current K*Ir for use in generating the first control signal.

6. The triangle waveform generator of claim 5 , where the second set of charge pumps comprises:

a further main charge pump responsive to the output signal of the second phase frequency detector and an inverted version of the output signal of the second phase frequency detector, where the further main charge pump provides a switched current Ir for use in generating the second control signal; and

a further secondary charge pump responsive to the output signal of the first phase frequency detector and an inverted version of the output signal of the first phase frequency detector, where the secondary charge pump provides a switched current K*Ir for use in generating the second control signal.

7. The triangle waveform generator of claim 2 , where the window detection circuit comprises:

a first comparator disposed to compare the generated triangle waveform with an upper threshold voltage to generate a corresponding output signal;

a second comparator disposed to compare the generated triangle waveform with a lower threshold voltage to generate a corresponding output signal; and

a flip-flop responsive to the output signals of the first and second comparators to generate the window comparator signal.

8. The triangle waveform generator of claim 7 , where the flip-flop is further responsive to the output signals of the first and second comparators to generate the inverted version of the window comparator signal.

9. A triangle waveform generator comprising:

means for storing an electrical charge;

regulator means for charging and discharging the means for storing, where the regulator means is responsive to a first control signal to charge the means for storing and a second control signal to discharge the means for storing; and

control means for generating the first and second control signals in response to a frequency and phase of a reference waveform, where the control means comprises

a first charge pump means for generating the first control signal, and

a second charge pump means for generating the second control signal,

where the first and second charge pump means are cross-coupled with one another to generate the first and second control signals.

10. The triangle waveform generator of claim 9 , where the control means further comprises:

window detection means for generating a window comparator signal in response to a generated triangle waveform;

first phase frequency detector means for generating an output signal in response to the window comparator signal and the reference waveform; and

second phase frequency detector means for generating an output signal in response to an inverted version of the window comparator signal and an inverted version of the reference waveform.

11. The triangle waveform generator of claim 9 , where the control means further comprises:

first charge pump means for generating the first control signal; and

second charge pump means for generating the second control signal.

12. The triangle waveform generator of claim 11 , where the first and second charge pump means are cross-coupled with one another to generate the first and second control signals.

13. The triangle waveform generator of claim 11 , where the first charge pump means comprises:

main charge pump means for providing a switched current Ir for use in generating the first control signal in response to the output signal of the first phase frequency detector means and an inverted version of the output signal of the first phase frequency detector means; and

secondary charge pump means for providing a switched current K*Ir for use in generating the first control signal in response to the output signal of the second phase frequency detector means and an inverted version of the output signal of the second phase frequency detector means.

14. The triangle waveform generator of claim 13 , where the second charge pump means comprises:

further main charge pump means for providing a switched current Ir for use in generating the second control signal in response to the output signal of the second phase frequency detector means and an inverted version of the output signal of the second phase frequency detector means; and

further secondary charge pump means for providing a switched current K*Ir for use in generating the second control signal in response to the output signal of the first phase frequency detector and an inverted version of the output signal of the first phase frequency detector, where the secondary charge pump provides.

15. The triangle waveform generator of claim 12 , where the window detection means comprises:

first comparator means for generating an output signal in response to a comparison between the generated triangle waveform and an upper threshold voltage;

second comparator means for generating an output signal in response to a comparison between the generated triangle waveform and a lower threshold voltage; and

a flip-flop responsive to the output signals of the first and second comparator means to generate the window comparator signal.

16. A triangle waveform generator comprising:

a capacitive element;

a regulator configured to charge and discharge the capacitive element, where the regulator is responsive to a first control signal to charge the capacitive element and a second control signal to discharge the capacitive element to thereby generate a triangle waveform; and

a control circuit responsive to a frequency and phase of a reference waveform to generate the first and second control signals, where the control circuit comprises

a window detection circuit generating a window comparator signal in response to the generated triangle waveform,

a first phase frequency detector generating an output signal in response to the window comparator signal and the reference waveform, and

a second phase frequency detector generating an output signal in response to an inverted version of the window comparator signal and an inverted version of the reference waveform.

17. The triangle waveform generator of claim 16 , where the control circuit further comprises:

a first set of charge pumps adapted to generate the first control signal; and

a second set of charge pumps adapted to generate the second control signal.

18. The triangle waveform generator of claim 17 , where the first and second sets of charge pumps are cross-coupled with one another to generate the first and second control signals.

19. The triangle waveform generator of claim 17 , where the first set of charge pumps comprises:

a main charge pump responsive to the output signal of the first phase frequency detector and an inverted version of the output signal of the first phase frequency detector, where the main charge pump provides a switched current Ir for use in generating the first control signal; and

a secondary charge pump responsive to the output signal of the second phase frequency detector and an inverted version of the output signal of the second phase frequency detector, where the secondary charge pump provides a switched current K*Ir for use in generating the first control signal.

20. The triangle waveform generator of claim 19 , where the second set of charge pumps comprises:

a further main charge pump responsive to the output signal of the second phase frequency detector and an inverted version of the output signal of the second phase frequency detector, where the further main charge pump provides a switched current Ir for use in generating the second control signal; and

a further secondary charge pump responsive to the output signal of the first phase frequency detector and an inverted version of the output signal of the first phase frequency detector, where the secondary charge pump provides a switched current K*Ir for use in generating the second control signal.

21. The triangle waveform generator of claim 16 , where the window detection circuit comprises:

a first comparator disposed to compare the generated triangle waveform with an upper threshold voltage to generate a corresponding output signal;

a second comparator disposed to compare the generated triangle waveform with a lower threshold voltage to generate a corresponding output signal; and

a flip-flop responsive to the output signals of the first and second comparators to generate the window comparator signal.

22. The triangle waveform generator of claim 21 , where the flip-flop is further responsive to the output signals of the first and second comparators to generate the inverted version of the window comparator signal.

23. A triangle waveform generator comprising:

means for storing an electrical charge;

regulator means for charging and discharging the means for storing, where the regulator means is responsive to a first control signal to charge the means for storing and a second control signal to discharge the means for storing to thereby generate a triangle waveform; and

control means for generating the first and second control signals in response to a frequency and phase of a reference waveform, where the control means comprises

window detection means for generating a window comparator signal in response to the generated triangle waveform,

first phase frequency detector means for generating an output signal in response to the window comparator signal and the reference waveform, and

second phase frequency detector means for generating an output signal in response to an inverted version of the window comparator signal and an inverted version of the reference waveform.

Assignments (5)
RELEASE Recorded Nov 14, 2012
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; HARMAN BECKER AUTOMOTIVE SYSTEMS GMBH
Reel/Frame 029294/0254 →
SECURITY AGREEMENT Recorded Feb 17, 2011
From: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; HARMAN BECKER AUTOMOTIVE SYSTEMS GMBH
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 025823/0354 →
RELEASE Recorded Feb 15, 2011
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; HARMAN BECKER AUTOMOTIVE SYSTEMS GMBH
Reel/Frame 025795/0143 →
SECURITY AGREEMENT Recorded May 8, 2009
From: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; BECKER SERVICE-UND VERWALTUNG GMBH; CROWN AUDIO, INC.; HARMAN BECKER AUTOMOTIVE SYSTEMS (MICHIGAN), INC.; HARMAN BECKER AUTOMOTIVE SYSTEMS HOLDING GMBH; HARMAN BECKER AUTOMOTIVE SYSTEMS, INC.; HARMAN CONSUMER GROUP, INC.; HARMAN DEUTSCHLAND GMBH; HARMAN FINANCIAL GROUP LLC; HARMAN HOLDING GMBH & CO. KG; HARMAN MUSIC GROUP, INCORPORATED; HARMAN SOFTWARE TECHNOLOGY INTERNATIONAL BETEILIGUNGS GMBH; HARMAN SOFTWARE TECHNOLOGY MANAGEMENT GMBH; HBAS INTERNATIONAL GMBH; HBAS MANUFACTURING, INC.; INNOVATIVE SYSTEMS GMBH NAVIGATION-MULTIMEDIA; JBL INCORPORATED; LEXICON, INCORPORATED; MARGI SYSTEMS, INC.; QNX SOFTWARE SYSTEMS (WAVEMAKERS), INC.; QNX SOFTWARE SYSTEMS CANADA CORPORATION; QNX SOFTWARE SYSTEMS CO.; QNX SOFTWARE SYSTEMS GMBH; QNX SOFTWARE SYSTEMS GMBH & CO. KG; QNX SOFTWARE SYSTEMS INTERNATIONAL CORPORATION; QNX SOFTWARE SYSTEMS, INC.; XS EMBEDDED GMBH (F/K/A HARMAN BECKER MEDIA DRIVE TECHNOLOGY GMBH)
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 022659/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2007
From: STANLEY, GERALD R
To: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED
Reel/Frame 018785/0629 →