IP Library Granted Patent US 7,724,095
Granted Patent B2
US 7,724,095 · App. 11/949,985 · Granted May 25, 2010

Floating DC-offset circuit for phase detector

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Quick Facts
Patent No.
US 7,724,095
App. No.
11/949,985
Granted
May 25, 2010
Kind
B2
Abstract

A floating DC-offset circuit for a phase detector. The circuit may provide a floating DC-offset to the phase detector, or to the voltage-controlled oscillator of the phase-locked loop. The circuit includes a voltage comparator, clock, digital resistor, and offset line to a DC-offset branch of the phase detector. The voltage comparator detects when the voltage at the output of the loop filter of the phase-locked loop has gone outside of a designated range, and activates the clock when the voltage is outside the designated range. The clock emits impulses that are counted by the digital resistor. The digital resistor shifts DC-offset at the DC-offset branch of the phase detector. The new DC-offset level is maintained once the loop filter output voltage has returned within the designated range. In an alternate embodiment, the DC-offset branch is connected to rough-tuning input of a wide-tuned voltage-controlled oscillator.

Claims (39)

1. A floating DC-offset circuit electronically connected to components of a standard phase-locked loop circuit, the standard phase-locked loop comprising:

a phase detector;

a loop filter; and

a voltage-controlled oscillator,

wherein the phase detector, loop filter and voltage-controlled oscillator are connected in series in a loop configuration,

the floating DC-offset circuit comprising:

a voltage comparator electronically connected to the output of the loop filter;

clock circuit receiving an output of the voltage comparator; and,

a digital resistor connected to outputs of both the voltage comparator and the clock circuit, the digital resistor connected to the phase detector.

2. The floating DC-offset circuit of claim 1 , wherein the circuit further comprises an alarm branch coupled to one output of the voltage comparator.

3. A method of applying a floating DC-offset to a phase-locked loop, the loop comprising a phase detector, loop filter and voltage-controlled oscillator connected in series in a loop configuration, the method comprising the steps of:

setting a designated range at a voltage comparator, the voltage comparator being connected to the output of the loop filter, the designated range having an upper limit lower than the highest voltage at the output of the loop filter, the lower limit higher than the lowest voltage at the output of the loop filter;

setting the voltage comparator to output one of three signals, the signals being:

loop filter output voltage is above the designated range, loop filter output voltage is below the designated range, and loop filter output voltage is within the designated range;

detecting the output signal of the voltage comparator at a clock;

activating the clock if the voltage comparator outputs a signal that the loop filter output voltage is above or below the designated range;

detecting, at a digital resistor, clock pulses from an output of the clock, detecting a direction signal from the voltage comparator, and shifting the resistance of the digital resistor, shifting the DC-offset at the phase detector in the phase-locked loop according to the direction signal from the voltage comparator;

deactivating the clock when the voltage comparator indicates that the output voltage is within the designated range; and

maintaining the new DC-offset value at the phase detector when the clock stops.

4. The method of claim 3 , further comprising setting the designated range to a narrow band to prevent the voltage-controlled oscillator from operating at a harmonic or a multiple of the phase-locked loop's reference frequency.

5. A floating DC-offset circuit electronically connected to components of a standard phase-locked loop circuit, the standard phase-locked loop comprising:

a phase detector;

a loop filter; and

a wide-band voltage-controlled oscillator, the wide-band voltage-controlled oscillator being connected at a first input to the output of the loop filter,

wherein the phase detector, loop filter and voltage-controlled oscillator are connected in series in a loop configuration,

the floating DC-offset circuit comprising:

a voltage comparator electronically connected to the output of the loop filter;

a clock circuit receiving an output of the voltage comparator;

a digital resistor connected to outputs of both the voltage comparator and the clock circuit; the digital resistor being connected to a second input of the wide-band voltage-controlled oscillator.

6. A method of applying a floating DC-offset to a phase-locked loop, the loop comprising a phase detector, loop filter and a first input of a voltage-controlled oscillator connected in series in a loon configuration, the method comprising the steps of:

setting a designated range at a voltage comparator, the voltage comparator being connected to the output of the loop filter and the first input of the voltage-controlled oscillator, the designated range having an upper limit lower than the highest voltage at the output of the loop filter, the lower limit higher than the lowest voltage at the output of the loop filter;

setting the voltage comparator to output one of three signals, the signals being:

loop filter output voltage is above the designated range, loop filter output voltage is below the designated range, and loop filter output voltage is within the designated range;

detecting the output signal of the voltage comparator at a clock;

activating the clock if the voltage comparator emits a signal that the loop filter output voltage is above or below the designated range;

detecting, at a digital resistor, clock pulses from an output of the clock, detecting a direction signal from the voltage comparator, counting the number of clock pulses in the direction provided by the voltage comparator and adjusting the DC-offset at a second input of the voltage-controlled oscillator according to the output of the digital resistor;

deactivating the clock when the voltage comparator indicates that the output voltage is within the designated range; and

maintaining the new DC-offset value at the second input of the voltage-controlled oscillator when the clock is deactivated.

7. The method of claim 6 , further comprising setting the designated range to a narrow band to prevent the voltage-controlled oscillator from operating at a harmonic or a multiple of the phase-locked loop's reference frequency.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jun 11, 2019
From: COMERICA BANK
To: ITS ELECTRONICS INC.
Reel/Frame 049436/0044 →
SECURITY AGREEMENT Recorded Dec 20, 2012
From: ITS ELECTRONICS INC.
To: COMERICA BANK, A TEXAS BANKING ASSOCIATION AND AUTHORIZED FOREIGN BANK UNDER THE BANK ACT (CANADA)
Reel/Frame 029530/0061 →
RELEASE OF SECURITY INTEREST Recorded Feb 2, 2010
From: HSBC BANK CANADA
To: ITS ELECTRONICS INC.
Reel/Frame 023888/0052 →
SECURITY INTEREST AND LIEN Recorded Apr 2, 2009
From: ITS ELECTRONICS INC.
To: HSBC BANK CANADA
Reel/Frame 022508/0924 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2008
From: EVSTRATOV, LEONID V.
To: ITS ELECTRONICS INC.
Reel/Frame 020560/0355 →
Continuity (2)
Provisional Application 6087247700 · Dec 4, 2006
Related Publication 20080129355A1 · Jun 5, 2008