FIELD: electronics. SUBSTANCE: energy lead of can design has dielectric window 1 composed of disc 2 fixed in length of round waveguide 5 with cylindrical and face walls 6 and 7 and correspondingly with cylindrical protrusions 3, 4 placed uniaxially to disc 2. Their dimensions are chosen from expressions 5·10-3≅ d/λ≅ 10-2; 2≅ b/d≅ 3, where d is distance between protrusion 3 or 4 and cylindrical wall 6 of length of round waveguide 5; b is height of cylindrical protrusions; λ is working length of wave. Transmitted wave forms in length of round waveguide 5 distribution of field with maximum in its medium plane where dielectric window 1 is positioned. Annular groove at distance d forms "trap" for electrons on side of vacuum. On non-vacuum side outer surface of cylindrical protrusion 3 increases length of discharge path and prevents discharge from point of connection of metal with dielectric along lines of force of electric field. EFFECT: enhanced electric strength of energy lead. 1 dwg
Title | Year | Author | Number |
---|---|---|---|
ENERGY OUTPUT | 1979 |
|
SU807886A1 |
PARISON WINDOW FOR MICROWAVE ENERGY INPUT AND/OR OUTPUT | 2002 |
|
RU2207655C1 |
INPUT AND/OR OUTPUT OF MICROWAVE ENERGY WITH CAN-TYPE WINDOW FOR HIGH-CAPACITY ELECTRONIC INSTRUMENTS | 2009 |
|
RU2407099C1 |
JAR WINDOW FOR INPUT AND/OR OUTPUT OF MICROWAVE ENERGY | 2011 |
|
RU2451362C1 |
INPUT/OUTPUT ROUND-TO-RECTANGULAR WAVEGUIDE OF MICROWAVE ENERGY | 2019 |
|
RU2705563C1 |
WAVEGUIDE WINDOW FOR INPUT AND/OR OUTPUT OF MICROWAVE ENERGY | 2014 |
|
RU2573662C1 |
ENERGY LEAD OF POT TYPE | 1988 |
|
SU1679902A1 |
WAVEGUIDE WINDOW OF CAN TYPE | 2022 |
|
RU2784583C1 |
CAN WINDOW FOR OUTPUT OF MICROWAVE ENERGY | 2022 |
|
RU2802497C1 |
METHOD FOR MANUFACTURING AND ADJUSTING CAN WINDOW FOR ENERGY INPUT/OUTPUT OF MICROWAVE DEVICE | 2023 |
|
RU2822140C1 |
Authors
Dates
1994-02-28—Published
1987-08-10—Filed