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Kazarezov, I.V.

Paper Title Page
MOHP04

 The Modulator for the 10 MeV 2 kA Inductive Accelerator Pulse Power Supply 

  • A.V.Akimov, P.A.Bak, I.V.Kazarezov, A.A.Korepanov
    Budker Institute of Nuclear Physics, Novosibirsk, Russia

For the 10 MeV 2 kA electron inductive accelerator pulse power supply the modulator prototype operating in two-pulse regime has been developed. The modulator is used for the resistively-inductive load supplying with the pulse voltage 20 kV, current up to 10 kA, 300 ns pulse duration. The data obtained at the nominal modulator operation regime are presented. The basic technical developments of the modulator parts and the modulator design are described.

284

MOMP02

 Electron Miniaccelerator on the Base of Tesla Transformer for the Beam of Charged Particles Nondestructive Testings 

  • V.E.Akimov, A.V.Bulatov, P.V. Logatchev, I.V.Kazarezov, A.A.Korepanov, D.A.Maliutin, A.A.Starostenko, A.A.Pachkov
    Budker Institute of Nuclear Physics, Novosibirsk, Russia

The electron miniaccelerator for the charged particles beam nondestructive diagnostics with operating voltage 200 kV, half-wave duration 4 mks and beam current within few mA is described. The primary circuit is switched by IGBT. The gun control and filament circuit power supply are performed through high frequency isolated transformer. The accelerating tube is performed from sectional welded metal ceramics insulator (ceramics 22 XC with diameter 95/85 mm). The accelerator test results are presented.

381

MOMP04

 200 KeV Pulsed Electron Beam Source For The VEPP-5 Injection Complex 

  • V.E.Akimov, A.V.Ivanov, I.V.Kazarezov, A.A.Korepanov, IA.V.Kulenko, G.I.Kuznetsov, M.I.Tiunov
    Budker Institute of Nuclear Physics, Novosibirsk, Russia

The pulsed electron beam source on voltage 200 kV and current 10 A with half-height pulse duration 3 ns is described. The gun is based on the dispenser cathode with 20 mm diameter. The current control is performed by means of molybdenum grid with the cell size 0.4x0.4 mm and optical transparency of about 0.7. The numerical optimization of cathode-grid unit is carried out. The experimental results obtained are in good agreement with project parameters.

386