IP Library Granted Patent US 7,679,453
Granted Patent B2
US 7,679,453 · App. 11/940,301 · Granted Mar 16, 2010

Phase-locked loop capable of dynamically adjusting phase of output signal according to detection result of phase/frequency detector, and method thereof

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Quick Facts
Patent No.
US 7,679,453
App. No.
11/940,301
Granted
Mar 16, 2010
Kind
B2
Abstract

A phase-locked method includes: generating a selection signal according to a detection result of a phase/frequency detector (PFD) of a phase-locked loop (PLL); generating a plurality of oscillation signals according to at least a first oscillation signal generated by the PLL, wherein the plurality of oscillation signals respectively correspond to a plurality of phases; and from the plurality of oscillation signals, selecting an oscillation signal as an output signal of the PLL according to the selection signal.

Claims (37)

1. A phase-locking method comprising:

generating a selection signal according to a detection result of a phase/frequency detector of a phase-locked loop, wherein the detection result comprises a first detection signal and a second detection signal;

synthesizing the first detection signal and the second detection signal to generate a synthesized signal;

quantizing the synthesized signal;

performing a calculation upon the quantized synthesized signal to generate the selection signal;

generating a plurality of oscillation signals according to at least a first oscillation signal generated by the phase-locked loop, wherein the plurality of oscillation signals respectively correspond to a plurality of phases; and

from the plurality of oscillation signals, selecting an oscillation signal as an output signal of the phase-locked loop according to the selection signal.

2. The phase-locking method of claim 1 , wherein the step of generating the plurality of oscillation signals further comprises:

performing a phase interpolation upon a plurality of first oscillation signals generated by the phase-locked loop to generate the plurality of oscillation signals.

3. The phase-locking method of claim 1 , wherein the step of generating the plurality of oscillation signals further comprises:

delaying the first oscillation signal to generate the plurality of oscillation signals.

4. The phase-locking method of claim 1 , wherein the phase/frequency detector generates the detection result according to an input signal and a feedback signal in the phase-locked loop.

5. The phase-locking method of claim 4 , further comprising:

utilizing the input signal as the feedback signal.

6. The phase-locking method of claim 4 , further comprising:

utilizing a specific oscillation signal out of the first oscillation signal and the plurality of oscillation signals as the feedback signal.

7. The phase-locking method of claim 4 , further comprising:

utilizing the first oscillation signal as the feedback signal.

8. A phase-locked loop comprising:

a phase/frequency detector, for generating a detection result according to an input signal;

an oscillator, coupled to the phase/frequency detector, for generating at least a first oscillation signal according to the detection result;

an oscillation signal generator, coupled to the oscillator, for generating a plurality of oscillation signals according to the first oscillation signal, wherein the plurality of oscillation signals respectively correspond to a plurality of phases; and

a selection signal generator, coupled to the phase/frequency detector and the oscillation signal generator, for generating a selection signal according to the detection result, wherein the detection result comprises a first detection signal and a second detection signal, and the selection signal generator comprises:

a synthesizing unit, for synthesizing the first detection signal and the second detection signal to generate a synthesized signal;

a quantizer, coupled to the synthesizing unit, for quantizing the synthesized signal; and

a computation unit, coupled to the quantizer, for performing calculation upon the quantized synthesized signal to generate the selection signal;

wherein the oscillation signal generator selects an oscillation signal from the plurality of oscillation signals as an output signal of the phase-locked loop according to the selection signal.

9. The phase-locked loop of claim 8 , wherein the first oscillation signal comprises a plurality of first oscillation signals, and the oscillation signal generator comprises:

a phase interpolator, for performing a phase interpolation upon the plurality of first oscillation signals to generate the plurality of oscillation signals; and

a multiplexer, coupled to the phase interpolator, for selecting an oscillation signal from the plurality of oscillation signals as the output signal according to the selection signal.

10. The phase-locked loop of claim 8 , wherein the oscillation signal generator comprises:

a plurality of delay units, for generating the plurality of oscillation signals through delaying the first oscillation signal;

a multiplexer, coupled to the plurality of delay units, for selecting an oscillation signal from the plurality of oscillation signals or the plurality of oscillation signals and the first oscillation signal as the output signal according to the selection signal.

11. The phase-locked loop of claim 8 , wherein the phase/frequency detector generates the detection result according to the input signal and a feedback signal in the phase-locked loop, and the phase-locked loop utilizes the output signal as the feedback signal.

12. The phase-locked loop of claim 8 , wherein the phase/frequency detector generates the detection result according to the input signal and a feedback signal in the phase-locked loop, and the phase-locked loop utilizes a specific oscillation signal from the first oscillation signal and the plurality of oscillation signals as the feedback signal.

13. The phase-locked loop of claim 12 , wherein the specific oscillation signal is not the first oscillation signal.

14. The phase-locked loop of claim 8 , wherein the phase/frequency detector generates the detection result according to the input signal and a feedback signal in the phase-locked loop, and the phase-locked loop utilizes the first oscillation signal as the feedback signal.

Assignments (3)
SECURITY AGREEMENT Recorded Aug 14, 2009
From: HANDYLAB, INC.
To: VENTURE LENDING & LEASING IV, INC.; VENTURE LENDING & LEASING V, INC.
Reel/Frame 023102/0825 →
SECURITY AGREEMENT Recorded May 14, 2009
From: HANDYLAB, INC.
To: VENTURE LENDING & LEASING V, INC.
Reel/Frame 022696/0522 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2007
From: MIN, SHAW-N
To: REALTEK SEMICONDUCTOR CORP.
Reel/Frame 020113/0932 →