Microwave Tubes: Proceedings of the ... International Congress, Volume 31961 - Microwave tubes |
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Page viii
... Type » M « / Amplificateurs et Tubes à Onde Inverse - Type » M « O. Doehler , J. Arnaud und P. Vial , Gegenwärtiger Stand der » M « -Röhren - Technik O. P. Gandhi and J. E. Rowe , Nonlinear Analysis of Crossed - Field Amplifiers • H ...
... Type » M « / Amplificateurs et Tubes à Onde Inverse - Type » M « O. Doehler , J. Arnaud und P. Vial , Gegenwärtiger Stand der » M « -Röhren - Technik O. P. Gandhi and J. E. Rowe , Nonlinear Analysis of Crossed - Field Amplifiers • H ...
Page 161
... M - type backward - wave oscillator ; namely , an electron gun ( usually of the short op- tics design ) , a slow - wave structure possessing the requisite electromagnetic thermal and mechanical properties ( nearly al- ways of the ...
... M - type backward - wave oscillator ; namely , an electron gun ( usually of the short op- tics design ) , a slow - wave structure possessing the requisite electromagnetic thermal and mechanical properties ( nearly al- ways of the ...
Page 163
... M - type backward - wave oscillator . Although these differences are not serious enough to prevent utilization of identical delay lines for both tubes , when this is desired , it is worthwhile to point out the nature of the diffe ...
... M - type backward - wave oscillator . Although these differences are not serious enough to prevent utilization of identical delay lines for both tubes , when this is desired , it is worthwhile to point out the nature of the diffe ...
Contents
P Guénard Lignes à Retard pour Tubes Electroniques | 8 |
E A Ash and A C Studd A Planar Slow Wave Structure for Millimetre Wave Generation | 10 |
Romiguière Le Klystron Scellé 20 MW20 kW TH 2011 | 15 |
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Common terms and phrases
accelerator amplifier amplitude anode backward wave backward wave oscillator bande bandwidth beam current beam voltage Bild Bitermitron Brillouin bunching calculated Carcinotron cathode champ circuit collector section components couplage coupling courant cyclotron density drift tube effect efficiency electric field electron beam Elektronen Elektronenstrahl energy equations faisceau Faraday cage focusing frequency function gain harmonic impedance increase input interaction klystron Ladung Leistung length ligne linear loading M-type Magneten magnetic field magnetische magnetron Mc/s megawatts meters Microwave mode modulation obtained operation oscillator output cavity output gap output power parameter passband perveance peut phase plasma potential power output Proc propagation puissance pulse r. f. field radiation rendement resonant Röhre S-band shown in Fig signal slow-wave structure space charge Stanford Strahl synchronous theory trajectories traveling wave tube traveling-wave traveling-wave tubes travelling wave trons velocity Verstärkung Verzögerungsleitung vitesse Wanderfeldröhre waveguide wavelength wurde zeigt