Claims
- 1. A phase synchronous circuit in which a phase of a reference signal and a phase of a compared signal that corresponds to an oscillation signal output by an oscillator are compared with each other, comprising:
- a phase comparator for outputting a phase comparison output signal which corresponds to a phase difference between said reference signal and said compared signal, to said oscillator via a filter; and
- a control circuit placed between said phase comparator and said filter which enables an output value of said phase comparison output signal to vary nonlinearly in accordance with the phase difference,
- wherein the output value of said phase comparison output signal does not vary when said phase difference is small.
- 2. The phase synchronous circuit as claimed in claim 1, wherein said control circuit controls said phase comparison output signal so that a phase comparison sensitivity that specifies the output value of said phase comparison output signal with respect to the phase difference becomes small as the phase difference becomes small.
- 3. The phase synchronous circuit as claimed in claim 1, wherein said control circuit controls said phase comparison output signal so that a variation in an amplitude of said phase comparison output signal becomes small as the phase difference becomes small.
- 4. A phase synchronous circuit in which a phase of a reference signal and a phase of a compared signal that corresponds to an oscillation signal output by an oscillator are compared with each other, comprising:
- a first phase comparator for outputting a phase comparison output signal which corresponds to a phase difference between said reference signal and said compared signal, to said oscillator via a filter; and
- a control circuit placed between said first phase comparator and said filter which enables an output value of said phase comparison output signal to vary nonlinearly in accordance with the phase difference,
- wherein said control circuit comprises:
- a ripple filter circuit smoothing said phase comparison output signal;
- a switch circuit selectively outputting an output signal of said ripple filter circuit using a switch signal; and
- a second phase comparator outputting said switch signal in accordance with a phase difference between a signal obtained by delaying said reference signal and said compared signal.
- 5. The phase synchronous circuit as claimed in claim 1, wherein said oscillation signal includes a modulating signal.
- 6. A circuit device comprising:
- a phase comparator comparing a phase of a reference signal with a phase of a compared signal that corresponds to an oscillation signal output by an oscillator, and outputting a phase comparison output signal that corresponds to a phase difference between said reference signal and said compared signal;
- a control circuit causing an output value of said phase comparison output signal to vary nonlinearly in accordance with the phase difference;
- wherein the output value of said phase comparison output signal does not vary when said phase difference is small; and
- a terminal connectable to an external filter which is connectable between an output of said control circuit and an input of said oscillator.
- 7. A circuit device comprising:
- a first phase comparator comparing a phase of a reference signal with a phase of a compared signal that corresponds to an oscillation signal output by an oscillator, and outputting a phase comparison output signal that corresponds to a phase difference between said reference signal and said compared signal;
- a control circuit causing an output value of said phase comparison output signal to vary nonlinearly in accordance with the phase difference; and
- a terminal connectable to an external filter which is connectable between an output of said control circuit and an input of said oscillator,
- wherein said control circuit comprises:
- a ripple filter circuit smoothing said phase comparison output signal;
- a switch circuit selectively outputting an output signal of said ripple filter circuit using a switch signal; and
- a second phase comparator outputting said switch signal in accordance with a phase difference between a signal obtained by delaying said reference signal and said compared signal.
- 8. A circuit device comprising:
- a first phase comparator comparing a phase of a reference signal with a phase of a compared signal that corresponds to an oscillation signal output by an oscillator, and outputting a phase comparison output signal that corresponds to a phase difference between said reference signal and said compared signal;
- a control circuit causing an output value of said phase comparison output signal to vary nonlinearly in accordance with the phase difference; and
- a terminal connectable to an external filter which is connectable between an output of said control circuit and an input of said oscillator,
- wherein said control circuit comprises:
- a terminal connectable to a ripple filter circuit smoothing said phase comparison output signal;
- a switch circuit selectively outputting an output signal of said ripple filter circuit using a switch signal; and
- a second phase comparator outputting said switch signal in accordance with a phase difference between a signal obtained by delaying said reference signal and said compared signal.
- 9. The circuit device as claimed in claim 6, wherein said control circuit controls said phase comparison output signal so that a phase comparison sensitivity which specifies the output value of said phase comparison output signal with respect to the phase difference becomes small as the phase difference becomes small.
- 10. The circuit device as claimed in claim 6, wherein said control circuit controls said phase comparison output signal so that a variation in an amplitude of said phase comparison output signal becomes small as the phase difference becomes small.
- 11. The circuit device as claimed in claim 6, wherein said oscillation signal includes a modulating signal.
- 12. An electronic apparatus comprising:
- a modulating circuit whose output signal has a frequency that varies in accordance with a modulating signal;
- a mixer circuit converting said output signal from said modulating circuit to have a transmit signal frequency;
- an amplifier amplifying an output signal of said mixer circuit; and
- an antenna transmitting an output signal of said amplifier,
- wherein said modulating circuit includes a phase synchronous circuit,
- wherein a phase of a reference signal and a phase of a compared signal which corresponds to an output signal of said modulating circuit output via an oscillator are compared with each other by a phase comparator, and said oscillator is controlled by feeding a phase comparison output signal that corresponds to a phase difference between said reference signal and said compared signal to said oscillator via a filter; and
- wherein said phase synchronous circuit comprises a control circuit placed between said phase comparator and said filter which functions to cause an output value of said phase comparison output signal to vary nonlinearly in accordance with the phase difference,
- wherein the output value of said phase comparison output signal does not vary when said phase difference is small.
- 13. The electronic apparatus as claimed in claim 12, wherein said control circuit controls said phase comparison output signal so that a phase comparison sensitivity which specifies the output value of said phase comparison output signal with respect to the phase difference becomes small as the phase difference becomes small.
- 14. The electronic apparatus as claimed in claim 12, wherein said control circuit controls said phase comparison output signal so that a variation in an amplitude of said phase comparison output signal becomes small as the phase difference becomes small.
- 15. The electronic apparatus as claimed in claim 12, wherein said modulating signal is an audio signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
7-016268 |
Feb 1995 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/518,312, filed Aug. 23, 1995, now abandoned.
US Referenced Citations (12)
Continuations (1)
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Number |
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Parent |
518312 |
Aug 1995 |
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