EP1560335A2

Wideband signal generators, measurement devices, methods of signal generation, and methods of signal analysis.

Abstract

A signal generator comprising a clock generator comprising a first direct digital synthesizer (DDS) configured to produce a clock signal based on a clock source signal, and a clock divider in communication with the clock generator, the clock divider comprising a second DDS, wherein the clock divider is configured to produce a divided signal based on (1) the clock signal and (2) a control signal indicating a divide ratio; and a plurality of selectable filters in communication with the clock divider, the plurality of selectable filters being configured to produce a filtered signal based on the divided signal, wherein a selection among the plurality of selectable filters is based on the divide ratio.

EP1560335A2, drawing sheet 1
Sheet 1 of 38

Term

Term ended

Projected expiry passed 22 December 2024, 1.8 years ago.

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  2. Filed
  3. Published
  4. Projected expiry
  5. Today

25 claims: 14 independent, 11 dependent

  1. 1
    A signal generator comprising:a clock generator comprising a first direct digital synthesizer (DDS) configured to produce a clock signal based on a clock source signal, and a clock divider in communication with the clock generator, the clock divider comprising a second DDS, wherein the clock divider is configured to produce a divided signal based on (1) the clock signal and (2) a control signal indicating a divide ratio;and a plurality of selectable filters in communication with the clock divider, the plurality of selectable filters being configured to produce a filtered signal based on the divided signal,    wherein a selection among the plurality of selectable filters is based on the divide ratio.
  2. 3
    A signal generator comprising:a tunable clock generator configured to produce a clock signal, and a clock divider in communication with the tunable clock generator, the clock divider comprising a direct digital synthesizer, wherein the clock divider is configured to produce a divided signal based on (1) the clock signal and (2) a control signal indicating a divide ratio;and a plurality of selectable filters in communication with the clock divider, the plurality of selectable filters being configured to produce a filtered signal based on the divided signal,    wherein a selection among the plurality of selectable filters is based on the divide ratio.
  3. 6
    A method of signal generation, said method comprising:receiving a request indicating a frequency;determining a divide ratio based on the indicated frequency and a frequency of a clock source signal;generating a control signal corresponding to the divide ratio;based on the divide ratio, selecting a bandpass filter from a set of filters;based on the control signal, producing an output signal having a principal component at the indicated frequency;and filtering the output signal with the selected bandpass filter to pass the principal component.
  4. 8
    A method of generating a signal, said method comprising:using a first direct digital synthesizer (DDS) to generate a clock signal;using a second DDS to generate a signal based on the clock signal and having a frequency that is substantially equal to one-half of the clock signal.
  5. 10
    A method of generating a signal, said method comprising:providing a first signal to a clock input of a direct digital synthesizer (DDS);using the DDS to generate an output signal based on the first signal and having a frequency that is substantially equal to one-half of the clock signal.
  6. 12
    A method of generating a signal, said method comprising:using a direct digital synthesizer (DDS) to generate an output signal having a desired frequency component and a spurious frequency component;monitoring a strength of the spurious frequency component;and changing a phase offset value of the DDS based on a result of said monitoring.
  7. 13
    A method of signal analysis, said method comprising:tuning a receiver to a plurality of frequencies;and at each of the plurality of frequencies, detecting information relating to a received signal strength,    wherein said tuning a receiver to a plurality of frequencies includes: generating a local oscillator signal, and changing a frequency of the local oscillator signal, and wherein said generating a local oscillator signal includes: generating a clock signal based on a clock source signal and a first divide ratio, and generating a divided signal based on the clock signal and a second divide ratio, and    wherein said changing a frequency of the local oscillator signal includes changing at least one of a frequency of the clock signal, the first divide ratio, and the second divide ratio.
  8. 15
    A method of signal analysis comprising:generating a first local oscillator signal at a first frequency;obtaining a first intermediate frequency signal based on the first local oscillator signal and a signal to be analyzed;detecting first information regarding a strength of at least a portion of the signal to be analyzed, based on the first intermediate frequency signal;generating a second local oscillator signal at a second frequency different than the first frequency;obtaining a second intermediate frequency signal based on the second local oscillator signal and the signal to be analyzed;and detecting second information regarding a strength of at least a portion of the signal to be analyzed, based on the second intermediate frequency signal;wherein said generating a first local oscillator signal includes: generating a first clock signal based on a first clock source signal and a first divide ratio;and generating a first divided signal based on the first clock signal and a second divide ratio, and    wherein said generating a second local oscillator signal includes: generating a second clock signal based on a second clock source signal and a third divide ratio;and generating a second divided signal based on the second clock signal and a fourth divide ratio.
  9. 17
    A signal analyzer comprising:a receiver including a local oscillator;and a detector coupled to an output of the receiver, wherein said local oscillator includes: a clock generator comprising a first direct digital synthesizer configured to produce a clock signal based on a clock source signal, and a clock divider comprising a second direct digital synthesizer configured to produce a divided signal based on the clock signal.
  10. 19
    A method of modulation, said method comprising:generating a radio-frequency signal;modulating the radio-frequency signal with a first information signal;modulating a quadrature version of the radio-frequency signal with a second information signal;and obtaining a modulated carrier based on the modulated radio-frequency signal and the modulated quadrature version,    wherein said generating a radio-frequency signal includes: generating a clock signal based on a clock source signal and a first divide ratio;and generating a divided signal based on the clock signal and a second divide ratio.
  11. 20
    A method of demodulation, said method comprising:generating a radio-frequency signal;mixing a received signal with the radio-frequency signal;and mixing the received signal with a quadrature version of the radio-frequency signal,    wherein said generating a radio-frequency signal includes: generating a clock signal based on a clock source signal and a first divide ratio;and generating a divided signal based on the clock signal and a second divide ratio.
  12. 22
    A spectrum analyzer, comprising:a local oscillator comprising at least two direct digital synthesizers (DDS) electrically coupled in series, one of said DDS synthesizers dividing a frequency of an output signal generated by other DDS according to a division ratio so as to generate an output signal of said local oscillator, a mixer circuit for combining the output of said local oscillator with a signal under test to generate an intermediate frequency signal indicative of a strength of said test signal at the local oscillator's frequency.
  13. 23
    A spectrum analyzer, comprising:a tunable local oscillator for generating a tunable output signal, said local oscillator comprising: a reference DDS generator receiving a reference clock signal and generating an output signal with a frequency at a selected fraction of the clock frequency, a plurality of secondary DDS generators each receiving the output signal of the primary DDS as a reference clock signal and each pre-configured to generate an output frequency different than the output frequency of at least another one of said secondary DDS generators, a switch coupled to said secondary DDS generators for selecting, in response to a control signal, the output of one of said secondary DDS generators, and a frequency translator receiving said local oscillator (LO) output signal and a radio frequency (RF) signal and generating an intermediate frequency (IF) signal based on said LO and RF signals.
  14. 25
    A signal generator, comprising:a reference DDS generator receiving a reference clock signal and generating an output signal with a frequency at a selected fraction of the clock frequency, a plurality of secondary DDS generators each receiving the output signal of the primary DDS as a reference clock signal and each pre-configured to generate an output frequency different than the output frequency of at least another one of said secondary DDS generators, a switch coupled to said secondary DDS generators for selecting, in response to a control signal, the output of one of said secondary DDS generators.