Author: Batrakov, A.M.
Paper Title Page
THMPL09 VME Based Digitizers for Waveform Monitoring System of Linear Induction Accelerator (LIA-20) 1291
 
  • E.S. Kotov, A.M. Batrakov, G.A. Fatkin, A.V. Pavlenko, K.S. Shtro, M.Yu. Vasilyev
    BINP SB RAS, Novosibirsk, Russia
  • G.A. Fatkin, E.S. Kotov, A.V. Pavlenko, M.Yu. Vasilyev
    NSU, Novosibirsk, Russia
 
  Wave­form mon­i­tor­ing sys­tem plays a spe­cial role in the con­trol sys­tem of pow­er­ful pulse in­stal­la­tions pro­vid­ing the most com­plete in­for­ma­tion about the in­stal­la­tion func­tion­ing and its pa­ra­me­ters. The re­port de­scribes the fam­ily of VME mod­ules used in the wave­form mon­i­tor­ing sys­tem of a lin­ear in­duc­tion ac­cel­er­a­tor LIA-20. In order to or­ga­nize in­ter-mod­ule syn­chro­niza­tion the VME-64 bus ex­ten­sion im­ple­mented in the VME64-BINP crates is ap­plied in the wave­form dig­i­tiz­ers.  
slides icon Slides THMPL09 [1.653 MB]  
poster icon Poster THMPL09 [1.777 MB]  
DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-ICALEPCS2017-THMPL09  
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THMPL10 New VME-Based Hardware for Automation in BINP 1294
 
  • G.A. Fatkin, A.O. Baluev, A.M. Batrakov, E.S. Kotov, Ya.M. Macheret, V.R. Mamkin, A. Panov, A.V. Pavlenko, A.N. Selivanov, M.Yu. Vasilyev
    BINP SB RAS, Novosibirsk, Russia
  • G.A. Fatkin, E.S. Kotov, A.V. Pavlenko, M.Yu. Vasilyev
    NSU, Novosibirsk, Russia
 
  A new VME-based crate and mod­ules are pre­sented in this work. This hard­ware is pri­mar­ily in­tended for LIA-20 con­trol sys­tem, but we also plane to use it for the up­grade of the con­trols of ex­ist­ing com­plexes such as: VEPP-2000, VEPP-4, VEPP-5 Prein­jec­tor. Mod­ules were de­signed with an abil­ity to be used planned pro­jects such as Super c-tau fac­tory. A crate is 6U VME64x com­pat­i­ble crate with ad­di­tional syn­chro­niza­tion, daisy-chain lines and 6U RIO-mod­ules. Each crate has a built-in sta­tus mon­i­tor­ing over CAN-BUS with in­de­pen­dent power sup­ply. A fam­ily of VME mod­ules is based on the same de­sign sam­ple and in­clude: dig­i­tiz­ers, tim­ing mod­ules, CAN-in­ter­face mod­ule, in­ter­lock mod­ule. All mod­ules are cost ef­fec­tive and have TANGO de­vice servers de­vel­oped for them.  
slides icon Slides THMPL10 [7.378 MB]  
poster icon Poster THMPL10 [5.851 MB]  
DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-ICALEPCS2017-THMPL10  
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THPHA052 LIA-20 Control System Project 1485
 
  • G.A. Fatkin, A.O. Baluev, A.M. Batrakov, E.A. Bekhtenev, E.S. Kotov, Ya.M. Macheret, V.R. Mamkin, A.V. Ottmar, A. Panov, A.V. Pavlenko, A.N. Selivanov, P.A. Selivanov, A.I. Senchenko, S.S. Serednyakov, K.S. Shtro, S.R. Singatulin
    BINP SB RAS, Novosibirsk, Russia
  • E.A. Bekhtenev, G.A. Fatkin, E.S. Kotov, A.V. Pavlenko, A.I. Senchenko, S.S. Serednyakov
    NSU, Novosibirsk, Russia
 
  The pro­ject of the con­trol sys­tem of lin­ear in­duc­tion ac­cel­er­a­tor LIA-20 for ra­di­og­ra­phy is pre­sented in this paper. The ac­cel­er­a­tor is a com­plex pulsed ma­chine de­signed to pro­vide a se­ries of three con­sec­u­tive elec­tron pulses with an en­ergy up to 20 MeV, cur­rent 2 kA and lat­eral beam size less then 1 mm. To allow re­li­able op­er­a­tion of the whole com­plex, co­or­di­nated func­tion­ing of more then 700 de­vices must be guar­an­teed in time frames from mil­lisec­onds to sev­eral nanosec­onds. Total num­ber of con­trol chan­nels ex­ceeds 6000. The con­trol sys­tem is based on a va­ri­ety of spe­cially de­vel­oped VME and CAN mod­ules and crates. Tango pro­gram in­fra­struc­ture is used. The first stage of com­mis­sion­ing will take place in the end of 2017 and will in­clude launch­ing 5 MeV ver­sion of the ac­cel­er­a­tor.  
poster icon Poster THPHA052 [5.186 MB]  
DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-ICALEPCS2017-THPHA052  
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