Claims
- 1. A phase-locked loop circuit comprising:
- a digital phase comparator with a pulsed voltage output and having a reference frequency supplied to a first input;
- a loop filter which receives an output of the phase comparator;
- a voltage-controlled oscillator (VCO) which receives an output of the loop filter;
- a feedback branch connected from an output of the VCO to a second input of the phase comparator; and
- limiting means connected to the phase comparator for limiting the amplitude of the pulsed voltage output of the phase comparator so that the phase-locked loop has a modifiable bandwidth and locking rate.
- 2. The circuit of claim 1, wherein the limiting means are located in the phase comparator, the phase comparator output voltage being adjusted by regulating supply voltage supplied to the phase comparator.
- 3. The circuit of claim 1, wherein the limiting means comprises a limiting circuit external to the phase comparator.
- 4. The circuit of claim 3, wherein the limiting circuit includes at least one diode.
- 5. The circuit of claim 3, wherein the limiting circuit includes at least one transistor.
- 6. The circuit of claim 2, wherein the phase comparator output voltage is adjusted so that the phase-locked loop bandwidth is modified to be larger during locking and smaller after locking.
- 7. The circuit of claim 3, wherein the phase comparator output voltage is adjusted while the loop is locked so as to modify the phase-locked loop gain and bandwidth.
- 8. The circuit of claim 6, wherein the limiting means is connected between the phase comparator supply voltage and the loop filter, the limiting means increasing and decreasing the phase comparator output voltage in order to modify the phase-locked loop gain and bandwidth.
- 9. The circuit of claim 5, wherein the phase comparator has two outputs, and the limiting circuit comprises two transistors, each transistor having its emitter connected through a resistance to a separate phase comparator output, and each transistor having its collector connected to a voltage supplied to the phase comparator; whereby a change in voltage applied to each transistor's base regulates an output of each transistor's emitter, thus adjusting the phase comparator output voltages.
- 10. The circuit of claim 4, wherein the phase comparator has two outputs, and the limiting circuit comprises two diodes, each diode has a cathode connected through a resistance to a separate phase comparator output; whereby a change in voltage applied to each diode's anode regulates an output of each diode's cathode, thus adjusting the phase comparator output voltages.
- 11. The circuit of claim 5, wherein the phase comparator has one output, and the limiting circuit comprises a first and a second transistor, both transistors' emitters being connected together through a resistance to the phase comparator output; the first transistor being an NPN transistor and having its collector connected to a supply voltage, the second transistor being an PNP transistor and having its collector connected to a ground potential; whereby a change in voltage applied to each transistor's base regulates an output of each transistor's emitter, thus adjusting the phase comparator output voltage.
- 12. The circuit of claim 4 wherein the phase comparator has one output, and the limiting circuit comprises a first and second diode, the cathode of the first diode and the anode of the second diode are connected through a resistance to the phase comparator output; whereby a change in voltage applied to the anode of the first diode and the cathode of the second diode, thus adjusting the phase comparator output voltage.
Priority Claims (1)
Number |
Date |
Country |
Kind |
870982 |
Mar 1987 |
FIX |
|
Parent Case Info
This is a continuation of PCT application No. PCT/FI88/00124, filed Aug. 4, 1988 which lists the United States as one of the designated countries.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4107624 |
Turner |
Aug 1978 |
|
4590440 |
Hague et al. |
May 1986 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
60-142624 |
Jul 1985 |
JPX |