DocumentCode
3439669
Title
Injection-locked coherent pulsed IMPATT oscillators with a high stability of RF-parameters
Author
Kasatkin, L.V. ; Tsvir, A.V.
Volume
2
fYear
2001
fDate
2001
Firstpage
753
Abstract
The essential features of power pulsed IMPATT oscillators include variation of diode junction temperature within the pulse width and operation with high pulse bias current density and, as a consequence, the approach of the avalanche resonant diode frequency to the oscillator\´s operating frequency. These features lead to considerable change in diode RF impedance during the pulse width and, as result, to variation of the output signal amplitude and phase, and thus requirements for high stability of RF parameters cannot be fulfilled for many applications. This paper describes methods for RF parameter stabilization of injection-locked pulsed IMPATT oscillators during a pulse width over a wide locking band used in Science Research Institute "Orion" (Kiev, Ukraine) for developing power pulsed coherent oscillators at an 8-mm wavelength for electronic paramagnetic resonant spectrometers
Keywords
IMPATT oscillators; injection locked oscillators; millimetre wave oscillators; stability; 8 mm; RF parameter stabilization; RF-parameter stability; avalanche resonant diode frequency; diode RF impedance; diode junction temperature; electronic paramagnetic resonant spectrometers; injection-locked coherent pulsed IMPATT oscillators; injection-locked pulsed IMPATT oscillators; locking band; oscillator operating frequency; output signal amplitude; output signal phase; power pulsed IMPATT oscillators; power pulsed coherent oscillators; pulse bias current; pulse width; Current density; Diodes; Impedance; Injection-locked oscillators; RF signals; Radio frequency; Resonance; Resonant frequency; Space vector pulse width modulation; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Physics and Engineering of Millimeter and Sub-Millimeter Waves, 2001. The Fourth International Kharkov Symposium on
Conference_Location
Kharkov
Print_ISBN
0-7803-6473-2
Type
conf
DOI
10.1109/MSMW.2001.947299
Filename
947299
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