Claims
- 1. A phase locked loop (PLL) frequency synthesizer comprising:
a primary phase locked loop circuit having a voltage controlled oscillator (VCO) circuit and a programmable divider circuit for establishing a voltage controlled oscillator output and a reference signal output at a divide ratio such that the outputs are equal to a common phase comparison frequency; and a secondary phase locked loop circuit operatively connected to the primary phased lock loop circuit, and operative for receiving and isolating an external reference signal used for the primary phase locked loop circuit, and including an oscillator for generating a voltage controlled, clean reference signal wherein said secondary phase locked loop circuit filters and synchronizes the clean reference signal with the external reference signal for producing the reference signal output to the primary phase locked loop circuit.
- 2. A phase locked loop (PLL) frequency synthesizer according to claim 1, and further comprising a filter within the secondary phase locked loop circuit for filtering the external reference signal and attenuating spurs that are outside the secondary phase locked loop circuit bandwidth.
- 3. A phase locked loop (PLL) frequency synthesizer according to claim 2, wherein the filter is operative at about 2.5 Hz.
- 4. A phase locked loop (PLL) frequency synthesizer according to claim 1, wherein said programmable divider circuit comprises chip registers that are programmable for establishing a desired divide ratio between the voltage controlled oscillator output and reference signal output.
- 5. A phase locked loop (PLL) frequency synthesizer according to claim 4, and further comprising a microcontroller operatively connected to said chip registers for establishing the desired divide ratios between the voltage controlled oscillator output and the reference signal output.
- 6. A phase locked loop (PLL) frequency synthesizer according to claim 1, and further comprising a frequency multiplier circuit operatively connected to said voltage controlled oscillator output for multiplying the frequency of the output.
- 7. A phase locked loop circuit (PLL) according to claim 1, and further comprising a printed wiring board on which the primary and secondary phase locked loop circuits are positioned, including a plurality of isolation vias that isolate any circuit components of the primary and secondary phase locked loop circuits, and a housing that is matched as to its coefficient of thermal expansion with the printed wiring board and comprising a support member on which the printed wiring board is mounted, and a housing cover having an interior surface and channelization walls on the interior surface that form channels that receive individual circuit components when the housing cover is mounted to the support member, wherein the channelization walls are juxtaposed against any isolation vias used for isolating individual circuit components.
- 8. A phase locked loop (PLL) frequency synthesizer comprising:
a primary phase locked loop circuit having a voltage controlled oscillator (VCO) circuit and a programmable divider circuit for establishing a voltage controlled oscillator output and a reference signal output at a divide ratio such that the outputs are equal to a common phase comparison frequency; and a secondary phase locked loop circuit operatively connected to the primary phase locked loop circuit, and operative for receiving and isolating an external reference signal that has been recovered from received data of a telecommunications system and may have been corrupted from noise and spurious signals and used for the primary phase locked loop circuit, and including a frequency controlled, temperature compensated crystal oscillator for generating a voltage controlled, clean reference signal wherein said secondary phase locked loop circuit filters and synchronizes the clean reference signal with the external reference signal for producing the reference signal output to the phase locked loop circuit.
- 9. A phase locked loop (PLL) frequency synthesizer according to claim 8, and further comprising a filter positioned within the secondary phase locked loop circuit for filtering the external reference signal and attenuating spurs that are outside the secondary phase locked loop circuit bandwidth.
- 10. A phase locked loop (PLL) frequency synthesizer according to claim 9, wherein the filter is operative at about 2.5 Hz.
- 11. A phase locked loop (PLL) frequency synthesizer according to claim 8, wherein said programmable divider circuit comprises chip registers that are programmable for establishing a desired divide ratio between the voltage controlled oscillator output and reference signal output.
- 12. A phase locked loop (PLL) frequency synthesizer according to claim 11, and further comprising a microcontroller operatively connected to said chip registers for establishing the desired divide ratios between the voltage controlled oscillator output and the reference signal output.
- 13. A phase locked loop (PLL) frequency synthesizer according to claim 8, and further comprising a frequency multiplier circuit operatively connected to said voltage controlled oscillator output for multiplying the frequency of the output.
- 14. A phase locked loop circuit (PLL) according to claim 7, and further comprising a printed wiring board on which the primary and secondary phase locked loop circuits are positioned, including a plurality of isolation vias that isolate any circuit components of the primary and secondary phase locked loop circuits, and a housing that is matched as to its coefficient of thermal expansion with the printed wiring board and comprising a support member on which the printed wiring board is mounted, and a housing cover having an interior surface and channelization walls on the interior surface that form channels that receive individual circuit components when the housing cover is mounted to the support member, wherein the channelization walls are juxtaposed against any isolation vias used for isolating individual circuit components.
- 15. A method of generating a high frequency signal comprising the steps of:
generating an output signal from a voltage controlled oscillator of a primary phase locked loop (PLL) circuit having a programmably divided, voltage controlled oscillator output and a reference signal output at a divide ratio such that the outputs are equal to a common phase comparison frequency; and isolating an external reference signal used for the phase locked loop circuit by generating a voltage controlled, clean reference signal and filtering and synchronizing the clean reference signal with the external reference signal within a secondary phase locked loop circuit to produce the reference signal output to the primary phase locked loop circuit.
- 16. A method according to claim 15, and further comprising the step of filtering the external reference signal to attenuate spurs that are outside the secondary phased lock loop bandwidth.
- 17. A method according to claim 16, wherein the step of filtering further comprises the step of filtering at about 2.5 Hz.
- 18. A method according to claim 15, wherein the phase locked loop circuit comprises a programmable divider circuit having chip registers and further comprising the step of programming the chip registers to establish any desired divide ratios between the voltage controlled oscillator output and reference signal output.
- 19. A method according to claim 18, and further comprising the step of programming the chip registers using a microcontroller operatively connected to the chip registers to establish the desired divide ratios between the voltage controlled oscillator output and reference signal output.
- 20. A method according to claim 15, and further comprising the step of frequency multiplying the output signal from the voltage controlled oscillator.
- 21. A method according to claim 15, and further comprising the step of:
positioning any circuit components of the phased lock loop circuit and secondary phased lock loop circuit on a printed wiring board; isolating the circuit components using isolation vias; and mounting the printed wiring board on a support member of a housing that is matched as to its coefficient of thermal expansion with the printed wiring board.
- 22. A method according to claim 21, and further comprising the step of covering the printed wiring board by a housing cover having an interior surface and channelization walls on the interior surface that form isolation channels that receive individual circuit components in positions such that the channelization walls are juxtaposed against any isolation vias used for isolating individual circuit components.
- 23. A method of generating a high frequency signal comprising the steps of:
generating an output signal from a voltage controlled oscillator of a primary phase locked loop (PLL) circuit having a programmably divided, voltage controlled oscillator output and a reference signal output at a divide ratio such that the outputs are equal to a common phase comparison frequency; and isolating an external reference signal that had been recovered from received data of a communications system that may have been corrupted with noise and spurious signals and used for the phase locked loop circuit by generating a clean reference signal from a voltage controlled, temperature compensated crystal oscillator and filtering and synchronizing the clean reference signal with the external reference signal within a secondary phase locked loop circuit to produce the reference signal output to the primary phase locked loop circuit.
- 24. A method according to claim 23, and further comprising the step of filtering the external reference signal to attenuate spurs that are outside the secondary phased lock loop bandwidth.
- 25. A method according to claim 24, wherein the step of filtering further comprises the step of filtering within a filter of about 2.5 Hz.
- 26. A method according to claim 23, wherein the phase locked loop circuit comprises a programmable circuit having chip registers and further comprising the step of programming the chip registers to establish any desired divide ratios between the voltage controlled oscillator output and reference signal output.
- 27. A method according to claim 26, and further comprising the step of programming the chip registers using a microcontroller operatively connected to the chip registers to establish the desired divide ratios between the voltage controlled oscillator output and reference signal output.
- 28. A method according to claim 23, and further comprising the step of frequency multiplying the output signal from the voltage controlled oscillator.
- 29. A method according to claim 23, and further comprising the step of:
positioning any circuit components of the phased lock loop circuit and secondary phased lock loop circuit on a printed wiring board; isolating any circuit components using isolation vias; and mounting the printed wiring board on a support member of a housing that is matched as to its coefficient of thermal expansion with the printed wiring board.
- 30. A method according to claim 29, and further comprising the step of covering the printed wiring board by a housing cover having an interior surface and channelization walls on the interior surface that form isolation channels that receive individual circuit components in positions such that the channelization walls are juxtaposed against any isolation vias used for isolating individual circuit components.
RELATED APPLICATION
[0001] This application is based upon prior filed copending provisional application Serial No. 60/383,866 filed May 29, 2002, the disclosure which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60383866 |
May 2002 |
US |