IP Library Granted Patent US 10,720,929
Granted Patent B1
US 10,720,929 · App. 16/505,469 · Granted Jul 21, 2020

Integrated circuit with oscillator signal based on switched-resistance circuitry

Inventor: Michael H. Perrott (Nashua, NH)
Assignee: SiTime Corporation
H03L7/0992H03H19/008H03L7/0802H03L7/085H03L7/087H03L7/089H03L7/091H03L7/093H03L7/113H03L7/183H03L7/1976
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Quick Facts
Patent No.
US 10,720,929
App. No.
16/505,469
Granted
Jul 21, 2020
Kind
B1
Abstract

Phase-locked loop circuitry to generate an output signal, the phase-locked loop circuitry comprising oscillator circuitry, switched resistor loop filter, coupled to the input of the oscillator circuitry (which, in one embodiment, includes a voltage-controlled oscillator), including a switched resistor network including at least one resistor and at least one capacitor, wherein an effective resistance of the switched resistor network is responsive to and increases as a function of one or more pulsing properties of a control signal (wherein pulse width and frequency (or period) are pulsing properties of the control signal), phase detector circuitry, having an output which is coupled to the switched resistor loop filter, to generate the control signal (which may be periodic or non-periodic). The phase-locked loop circuitry may also include frequency detection circuitry to provide a lock condition of the phase-locked loop circuitry.

Claims (36)

1. An integrated circuit comprising:

phase detector circuitry to output a pulsed output signal representing a detected phase difference between an input signal and a feedback signal;

switched-resistance circuitry to vary an effective resistance in dependence on pulse width and frequency of the pulsed output signal; and

oscillator circuitry to generate an oscillator signal having a frequency varied as a function of the effective resistance;

wherein the feedback signal is dependent on the oscillator signal.

2. The integrated circuit of claim 1 , further comprising a frequency-divider circuit to generate the feedback signal as a frequency-divided version of the oscillator output signal.

3. The integrated circuit of claim 1 , wherein the switched-resistance circuitry comprises at least one metal oxide semiconductor (MOS) device to be switched according to pulses of the pulsed output signal.

4. The integrated circuit of claim 3 , wherein the switched resistance circuitry comprises at least one polysilicon resistor coupled in series with the MOS switch, the effective resistance dependent on the at least one polysilicon resistor.

5. The integrated circuit of claim 1 , wherein the pulsed output signal is to have time-varying duty cycle according to time-based variation of the detected phase difference.

6. An integrated circuit comprising:

phase detector circuitry to output a pulsed output signal representing a detected phase difference between an input signal and a feedback signal;

switched-resistance circuitry comprising at least one complementary metal oxide semiconductor (CMOS) device to be switched as a function of the pulsed output signal to vary an effective resistance in dependence on pulse width and frequency of the pulsed output signal; and

oscillator circuitry to generate an oscillator signal having a frequency that is varied as a function of the effective resistance;

wherein the feedback signal is dependent on the oscillator signal.

7. The integrated circuit of claim 6 , further comprising a frequency-divider circuit to divide the oscillator output signal by a factor of at least four, to generate the feedback signal.

8. The integrated circuit of claim 7 , wherein the switched resistance circuitry comprises at least one polysilicon resistor coupled in series with the CMOS device, the effective resistance dependent on the at least one polysilicon resistor.

9. The integrated circuit of claim 6 , wherein the pulsed output signal is to have time-varying duty cycle according to time-based variation of the detected phase difference.

10. The integrated circuit of claim 6 , wherein the switched-resistance circuitry comprises one or more circuit elements forming a passive resistive-capacitive (RC) network, the passive RC network coupled in series with the CMOS device.

11. An integrated circuit comprising:

phase detector circuitry to output a pulsed output signal representing a detected phase difference between an input signal and a feedback signal;

switched-resistance circuitry to vary an effective resistance in dependence on pulse width and frequency of the pulsed output signal;

oscillator circuitry to generate an oscillator signal having a frequency varied as a function of the effective resistance; and

a frequency-divider circuit to divide the oscillator output signal by a factor of at least four, to generate the feedback signal.

12. The integrated circuit of claim 11 , wherein the switched-resistance circuitry comprises at least one complementary metal oxide semiconductor (MOS) device to be switched according to pulses of the pulsed output signal.

13. The integrated circuit of claim 12 , wherein the switched resistance circuitry comprises a network comprising at least one polysilicon resistor and at least one capacitor, the network coupled in series with the MOS switch, the effective resistance dependent on the network.

14. The integrated circuit of claim 11 , wherein the pulsed output signal has time-varying duty cycle according to time-based variation in the detected phase difference.

15. An integrated circuit comprising:

phase detector circuitry to output a pulsed output signal representing a detected phase difference between an input signal and a feedback signal;

switched-resistance circuitry comprising

at least one complementary metal oxide semiconductor (CMOS) device, and

at least one polysilicon resistor coupled in series with the CMOS device,

the at least one CMOS device to switch the at least one polysilicon resistor as a function of the pulsed output signal to vary an effective resistance provided by the switched-resistance circuitry in dependence on pulse width and frequency of the pulsed output signal; and

oscillator circuitry to generate an oscillator signal having a frequency that is varied as a function of the effective resistance;

wherein the feedback signal is dependent on the oscillator signal.

16. The integrated circuit of claim 15 , further comprising a frequency-divider circuit to divide the oscillator output signal by a factor of at least four, to generate the feedback signal.

17. The integrated circuit of claim 15 , wherein the pulsed output signal is to have time-varying duty cycle according to time-based variation of the detected phase difference.

Assignments (2)
SECURITY INTEREST Recorded Jun 30, 2026
From: SITIME CORPORATION
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 075862/0712 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2019
From: PERROTT, MICHAEL H.
To: SITIME CORPORATION
Reel/Frame 049692/0584 →
Continuity (7)
Division 16055934 · Aug 6, 2018
Division 15284302 · Oct 3, 2016
Division 14938528 · Nov 11, 2015
Division 14466988 · Aug 23, 2014
Division 13653640 · Oct 17, 2012
Division 12860875 · Aug 21, 2010
Provisional Application 61236682 · Aug 25, 2009