Title :
Parametric modeling of folded waveguide circuits for millimeter-wave traveling wave tubes
Author :
Booske, John H. ; Converse, Mark C. ; Gallagher, David A. ; Kreischer, Kenneth E. ; Heinen, Vernon O. ; Kory, Carol L. ; Chevalier, Christine T.
Author_Institution :
Northrop Grumman Corp., Rolling Meadows, IL, USA
Abstract :
Summary form only given. Results of different models are compared for calculating effective phase velocities and interaction impedances of folded waveguide slow wave circuits for use in millimeterwave and submillimeter-wave traveling wave tubes. These parameters are needed for 1D parametric model simulations of folded waveguide traveling wave tubes (FWTWTs). The models investigated include approximate analytic expressions, equivalent circuits, three-dimensional (3D) finite difference models, and 3D finite element models. The phase velocity predictions are compared with experimental measurements of dispersion in a 40-55 GHz folded waveguide circuit. The various model results are incorporated into the CHRISTINE1D code to obtain predictions of small signal gain and saturated power in a 40-55 GHz, 100 W FWTWT. The comparisons of CHRISTINE1D simulations and measured frequency-dependent gain provide a sensitive, confirming assessment of the accuracy of the simulation tools.
Keywords :
digital simulation; equivalent circuits; finite difference methods; finite element analysis; millimetre wave tubes; slow wave structures; submillimetre wave tubes; travelling wave tubes; 100 W; 3D finite element models; 40 to 55 GHz; CHRISTINE1D; FWTWTs; effective phase velocities; equivalent circuits; folded waveguide circuits; frequency-dependent gain; interaction impedances; millimeter-wave traveling wave tubes; parametric modeling; saturated power; slow wave circuits; small signal gain; submillimeter-wave traveling wave tubes; three-dimensional finite difference models; Circuit analysis; Circuit simulation; Equivalent circuits; Finite difference methods; Finite element methods; Impedance; Millimeter wave circuits; Parametric statistics; Submillimeter wave circuits; Submillimeter wave propagation;
Conference_Titel :
Vacuum Electronics Conference, 2002. IVEC 2002. Third IEEE International
Print_ISBN :
0-7803-7256-5
DOI :
10.1109/IVELEC.2002.999253