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Title: Microwave amplifier tube coherency test set



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Claims: What is claimed is:

1. An apparatus for testing the coherency of an electronic device including an input and an output comprising:

pulse means connected to the input of said electronic device for energizing said electronic device with an input series of pulses;

first means coupled between said pulse means and said electronic device input for providing a first signal indicative of the input to said electronic device;

second means coupled to the output of said electronic device for providing a second signal indicative of the output of said electronic device;

detector means having first and second detector inputs and first and second detector outputs;

said first detector input being coupled to said first means such that said detector means receives said first signal and said second detector input being coupled to said second means such that said detector means receives said second signal;

whereby in response to said input series of pulses, a first series of signals are present at said first detector output and a second series of signals are present at said second detector output;

means for storing each of said first series of signals and each of said second series of signals;

a first power divider connected to said first means for providing a first power divider signal and a second divider signal which is 90.degree. phase shifted from said first power divider signal; and

a second power divider connected to said second means for providing third and fourth power divider signals.

2. The apparatus of claim 1 wherein said detector means further includes:

a first mixer for receiving said first and third power divider signals; and

a second mixer for receiving said second and fourth power divider signals.

3. The apparatus of claim 2 wherein:

said input series of pulses comprises a modulated carrier frequency signal; and

said detector means further includes first and second filters connected to said first and second mixers respectively for attenuating all signal frequencies above the carrier frequency of said modulated carrier frequency signal, the outputs of said first and second filters comprising said first and second detector outputs;

whereby each of said first and second series of signals are indicative of the amplitude and phase distortion introduced by said electronic device for each corresponding pulse of said series of pulses.

4. The apparatus of claim 1 wherein said means for storing comprises first sample and hold means for receiving and storing the series of signals from said first detector output, second sample and hold means for receiving and storing the series of signals from said second detector output;

said apparatus further including timing means for activating said first and second sample and hold means and said pulse means.

5. The apparatus of claim 1 further including:

a power supply connected to said electronic device;

said means for storing comprising first sample and hold means for receiving the series of signals from said first detector output, second sample and hold means for receiving the series of signals from said second detector output, third sample and hold means connected to said power supply for receiving signals indicative of the power supply coherency during each of said input series of pulses, and timing means for activating said first, second and third sample and hold means.
Other info:


Inventors: Phillips, Chester C. (Rockville, MD, US)
Zinger, William H. (Columbia, MD, US)
Platte, Robert F. (Laurel, MD, US)
Jesurun, Melrose M. (Silver Spring, MD, US)
Matthias, Dennis H. (Columbia, MD, US)

Application Number: 482974
Filing Date: 1974-06-25
Publication_date: 1976-02-10
Assignee: The United States of America as represented by the Secretary of the Navy (Washington, DC)
Primary Class(es): 342/169 342/194
Other Classes:
US Patent Ref:
3024460Mar, 1962Dahl et al.343/17.
3772700Nov, 1973Belli343/17.
3794999Feb, 1974Gellekink343/17.

Other Refs:
Primary Examiner: Tubbesing, T. H.
Assistant Examiner:
Attorney: Sciascia; R. S., Hodges; Q. E.