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  1. Instruments and Experimental Techniques
  2. Instruments and Experimental Techniques : Volume 58
  3. Instruments and Experimental Techniques : Volume 58, Issue 4, July 2015
  4. A double-diode autodyne transceiver
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Instruments and Experimental Techniques : Volume 60
Instruments and Experimental Techniques : Volume 59
Instruments and Experimental Techniques : Volume 58
Instruments and Experimental Techniques : Volume 58, Issue 6, November 2015
Instruments and Experimental Techniques : Volume 58, Issue 5, September 2015
Instruments and Experimental Techniques : Volume 58, Issue 4, July 2015
Neutron generators based on microwave sources of heavy hydrogen nuclides (Review)
Attaining square-wave stochastic slow extraction spills from the U-70 synchrotron
Optimizing the design of a neutron dosemeter with an extended energy range for high energy accelerators
Use of cluster counting technique for particle identification in a drift chamber with the cathode strip readout
A wideband radio-frequency amplifier for investigations at temperatures from 300 to 0.1 K
An integrated circuit of a universal comparator
A nanosecond-pulse generator with an optimized diode switch
Investigation of the operating modes of a Blumlein pulse forming line
A control unit of the cold-cathode thyratron with a high pulse repetition rate
A system for measuring the current-density distribution of a completed pulsed corona discharge
A double-diode autodyne transceiver
Liquid calorimeters for measuring the energy of high-power microwave pulses
A setup for measuring characteristics of microwave electric vacuum devices with open resonance structures
A radio-frequency time-of-flight mass analyzer of ions with planar discrete electrodes
Generation of high-current large-cross-section electron beams in a vacuum diode with rod current returns
An MC-1 cascade magnetocumulative generator of multimegagauss magnetic fields—ideas and their realization
Magnetic-field strength measurements in ferromagnetic materials for determining the orthogonal biasing effect
Application of polycapillary X-ray optics in residual stress measurement
Transversally-flat dose field formation and primary radiobiological exercises with the carbon beam extracted from the U-70 synchrotron
A system for compensating microaccelerations of the Aist small spacecraft
Automated complex for vibration stability testing of devices
“Structure” facility with a linear ion source for the formation of ordered nanostructures
Thermal stabilization system for the RED-100 liquid-xenon emission detector
Instruments and Experimental Techniques : Volume 58, Issue 3, May 2015
Instruments and Experimental Techniques : Volume 58, Issue 2, March 2015
Instruments and Experimental Techniques : Volume 58, Issue 1, January 2015
Instruments and Experimental Techniques : Volume 57
Instruments and Experimental Techniques : Volume 56
Instruments and Experimental Techniques : Volume 55
Instruments and Experimental Techniques : Volume 54
Instruments and Experimental Techniques : Volume 53
Instruments and Experimental Techniques : Volume 52
Instruments and Experimental Techniques : Volume 51
Instruments and Experimental Techniques : Volume 50
Instruments and Experimental Techniques : Volume 49
Instruments and Experimental Techniques : Volume 48
Instruments and Experimental Techniques : Volume 47
Instruments and Experimental Techniques : Volume 46
Instruments and Experimental Techniques : Volume 45
Instruments and Experimental Techniques : Volume 44
Instruments and Experimental Techniques : Volume 43

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A double-diode autodyne transceiver

Content Provider Springer Nature Link
Author skov, V. Ya.
Copyright Year 2015
Abstract The principle of operation and design of an 8-mm autodyne transceiver module, based on two mutually synchronized Gunn diode oscillators, and schemes of the signal detection unit in the Gunn-diode supply circuit are described. The oscillation frequency of the autodyne is stabilized by an additional high-Q resonator, connected to the working resonator using a reflection circuit with resistive coupling. The measured data on the double-diode autodyne oscillator are presented and recommendations on its tuning are given. It is shown that the presence of quadrature signals and high stability of the oscillation frequency of the double-diode autodynes ensure some new possibilities, when they are used to solve problems of near-field radio location, checking product sizes, and measuring vibration and displacement parameters.
Starting Page 505
Ending Page 509
Page Count 5
File Format PDF
ISSN 00204412
Journal Instruments and Experimental Techniques
Volume Number 58
Issue Number 4
e-ISSN 16083180
Language English
Publisher Pleiades Publishing
Publisher Date 2015-07-24
Publisher Place Moscow
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Measurement Science and Instrumentation Electrical Engineering Physical Chemistry
Content Type Text
Resource Type Article
Subject Instrumentation
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