TRIUMF: Canada's national laboratory for particle and nuclear physics

Synchrotron Design Review Meeting : 23 July 1984 Craddock, M. K. (Michael Kevin) Jul 23, 1984

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s~~ .~"'~ ~..ui~ : 1.\ f~ l~"" T R I U M F TO Kaon Factory Accelerator Feasibility Working Panel DATE July 19, 1984 FILE 84-T-KFACFEA MKC/MM/JY19 FROM H.K. Craddock cc KFSC RE Synchrotron Design Review Meeting The following talks, reviewing the present status of the kaon factory synchrotron design, will be presented in the Aud i torium on Monday, 23 July. 10:30 Introduction M.K. Craddock 11:00 Synchrotron Lattice Designs J.loM. Botman 12:00 Lunch 2:00 Magnet and Power Supply Designs K.W. Lacey 2:30 Correction Magnets T. Suzuki 3:00 Beam Loading and Instabilities R. Baartman 3:30 Coffee Break 3:45 Space Charge Effects & Head-tail Instability T. Suzuki 4:15 Injection into the Accumulator by ~ Stripping G.H. Mackenzie MKC/lg F.\Vof't' of Hev;t -= ~t'",t~ /y~~r . = (w ~t'ls 0,.) I( (b,., .. "'tf'f'et) J[ (£."11 . Y.;IJ f.ut.1' ') F~c, t.ty F""'S1 C~.t Wtc~S 0e."- ~ t,4C f, (.G." ) ,..1.. .slow ~~.f &t,~t~ £.tNCt, ... KcK 1'2. //i '2.~ 2.C AG S (,,~) ~,.S' O~g 10 10 AGS 11. ~ '? ~ 30 10 10 S,W if 20 $0 z.o '2.0 -rRIVNF J[ 30 100 2.0 lc LAMt'F 11. ~~ to 30 30 COM?AR ISOtJ F~ Ca" .'! Y ~ K- 1<. ... f I G~vlc. ~Gt'V/c. fcGt'vlc. .. KFk 0,13 O.t! O.of& o f , I ....... AG~ ~O¥'l 1... 1 i- 1 AGS II /6 'f'i "fg 'f~ Sf AI U 10 190 I" 0 7(" TRIUMF It 140 35"0 '3s-c 3S"O LAMPF ,]I 90 ~oo 3co ~ ,-~ Q ~ ~ % ~ ~ i \I' ~ i -- --,. ..a ~ ~ ~ ~ % ~ • ( \» t ~ ~ ~ ! ~ -c.J V\ W Chapter 5: Accelerators Sect {on A General Description B TRIUMF Cyclotron - ahort pulse 100 pA beams - cw U- extraction C 430 MeV Accumulator llinS } D 3 GeV Booster S~chrotron } Each of these will E 3 GeV Collector Jli!!i } have 9 subsections F 30 GeV Driver S~chrotron } as follows: G 30 GeV Extender llinS } 1 Beam Dynamics - Introduction - Lattice - iF Program & Stability 2 Magnets - Priaary 2- and 4-poles - Correction Magnets - Power Supplies 3 IlF Acceleration System - Cavities 4 Vacuum 5 Beam Diagnostics 6 Controls 7 Injection Accuaulator - Other riDgs 8 Extraction 9 Transfer Lines - Power Supply B Civil Engineering I Alignment J Senices 84-F-CIlADDOC,CRAPTER-5 Craddock Mackenzie Baartman Richardson,Laxdal Craddock lotan "art1lan Lacey Ot ter ,I.eeve I.etniger Zach Worsham Lacey Mackenzie Dohan Mackenzie,lichardson Botman Botaan Stinson ~ A ~---. CAMPUS BOUNDARY r--· EXPERIMENTAL HALL ~ 10 Hz 60 Hz 23MHz \ \ " " \ \ \ " , " I • o TIMe (,tvt.,,) 100 } 30 GeV I 3GeV } 430 MeV TRIUMF ~ , ~ ~ ~ /7' -( u \J • • t::. 5 ~ ~ '-' 7 g ~ ,.. '" cl (;It. \) Z ~ lU J > 0 a. v ~ , . 84-F-ACC/GEN,KL/TBL/JN05 June 5, 1984 Cost ComEariaon fo • 1.0 Hz for TlISR with ramped DC Supply fo • 30 , 10 Hz for Res $dO' Iynchrotron DC Stretcher acs TRISIl Super Super Cond. ISR It. 30Hz 10Hz 1Hz, .3 ferric ISIl Mapeta Dipoles 17.2 17 .2 6 '.5 6 6 Quads 2.6 2.6 5 Transportation (incl.) (iec1.) .95 .2 .95 .95 ... Pover Sl-tem Choke, cap , 8W 8.9 9.0 22.4 0.3 Pover supplies 5.2 4.8 1.8 Cryogenics Ilefrigeration 1.45 2.0 Coil_ & CoDverdon 5.2 Vacuum Chamber 2.8 2.8 0.2 0.2 0.2 0.2 Tunnel 11.54 11 .54 19.06 +iDcl. vith synchrotroD+ TOTALS 48.24 47.94 48.61 15.15 14.35 7.45 Pover (KW) Hag, chk, 17.47 14.42 8.93 '- 8.3 cap, BV, ps Cryo 3 1 $xl06 /lr DF 100% 5.45 4.5 2.79 0.94 0.31 2.59 DF 75% 4.09 3.38 2.09 0.70 0.23 1.94 $x1o'/5 yr DF 100% 27.25 22.5 13.95 4.68 1.56 12.95 DF 75% 20.44 16.88 10.46 3.51 1.17 9.71 Coat RC5 + SF5R TIlISR + 151.(51.) Tl.I51. + ISI.(5C5R) $dO' $x10' $x 1()6 Ite. 30Hz 10 Hz 1Hz 1 liz Capital 63.39 63.09 56.06 '2.96 5 "IT pvr. 20.44 16.88 20.17 11.63 (75% Dr) TOTAL 83.83 79.97 76.23 14.59 (-I 30GEV 10HZ RSC, R=157.8M. ! 300 250 200 100 50 o -200 -150 -100 -SO 0 50 100 150 200 ( I I , fa to I fO to I fO to I to 10 I I ........ HZ SY _NCHr~. R ' 157.8 to~~~~~~~~~~~~~~~ -200 I t -150 -100 --50 \ , o 50 100 1.50 200 I II ( / ;1 if ~ X> ;1 :c ><:>-:::> '""' ZZ :c -..... --' -~ -~~~==~--~;======-\--~ 0---" 0 C I"') ;-.; ( ~~ z~ ~l YJ, I :--.J :c ...----. . ~ to / Q) ............ U ( C t( r-< ~ .10./ 0--'; --- C'\J ifj ) ....... ~ .... o o 7 /1 Q , , an , I I , ~ , I , I :) I I ~ , , I , i , , II , ~ , , ~ • I I '"t:J -co , , :c L , , -e , , e , , W e U , , Z --i I I a: 0.. I ~ , en (Y) H , ~ Cl II , , ~ I1J -U r::: nJ ......, +-' --i e W I 115 -Q .. I an a CI II) CI -- - I - , I 4 (UJ) S3d013AN3 U~38 -." ( - ""'\ ~ J I ...., (M) ~ I -. ~ LJ , - , I .J ~ ~ 3J ..J -, .J -,~ , -< LJ <r -: ....J J -' j J J J I -' .J j I ,- J -38 ( I I I I I I I I I I I I I I I I I I f I f I~~~I --'---'---4.-I I I I I I I I I I I I -20 -i] J r I r r-I I ! L I [ i L ~ i I r-! r-I I i L L I L , Dl Po \..,E ! 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( TUNa~ y~) "" 4 '~ S·~ lO-lA- II 'l.4 J ~ :~'t\fA c-M~e ~y - O'l 0 - 0·, , v "AIt~Ot-(,~ ~S'" 2.10 UrD\O H.~~vewc,y ~",,, ~l'~ ~H~ bt·, 4b'3'+ ~~ CeLe 1~'tIw ~)( 'l-~4 'kbV/~ ~~o"·"/~ rtF VO"T~ ~ (,~~ 15'0 \c.V 1.t\'LO k V R.F tAV'T\~ { \1. ~ "0. k-V ('0 1( SO k" ~t 3'. ( 1~~tt\) to • L .. (3 It ZM) ( ~~~ lct ~ lJ;-,~ lo ~ ,~ /~ 84-F-CRADDOC.HACHINE July 16, 1984 Kaon Factory RF Parameters Machine Accusulator Booster Collector Driver Extender Energy (GeV) 0.43 0.43 + 3.0 3 3 + 30 30 Radius (m) 26.3 26.3 157.9 157.9 157.9 Jlep. Rate (Hz) 60 10 Cycle Time (ms) 16.7 100 Accel. Tiae* (ms) 12.5 75 Circ. Charge (lJC) o + 1.67 1.67 o + 10 10 10 + 0 (ppp) 1013 6x10U Circ. Current (A) o + 2.2 2.2 + 3 0+3 3 3 + 0 Ranaonic Number 35 35 210 210 210 RF Freq. (MHz) 46.1 46.1 + 61.6 61.6 61.6 + 63.4 63.4 f /f aax ain 1.00 1.34 1.00 1.03 1.00 Max. Voltage (ltV) 450 750 120 3000 10(1) *Dua1 frequency .agnet .ystem "S G.f.N ~ -f~ (, 0 t-{ 1 ) 'R'=' 2..~'1~ \ ? ) '-I 3.0 1. 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(eeV) Average radius (a) Repetition rate (Bz) IF frequency (MHz) Intensity (pC/pulse) Number of cells Number of superperiods Horizontal tune Vertical tune Max. hor. beta (a) Max. vert. beta (a) 1 Max. dispersion (a) Gamma transition Dipoles Jiumber Length (m) Min. field (T) Max~ field (T) Quads lfumber Length (.) Machine raraaeters Accumulator Booster .43 26.3 dc 46.1 20 4.24 5.24 11 11.5 2.23 3.87 20 .58 1.8 1.8 40 .3 .. -.43-3 26.3 70 46.1-61.6 1.7 20 5 4.24 5.24 16 13 8 7.71 25 2.93 .28 1.09 40 .4-Strenaths B'/Bp (.-2) .69, -1.11 .76, -.89 tong drifts Ru1I~er Length (.) 20 3.83 *) 2 dipoles per half cell. 15 3.73 Collector 3 157.8 dc 61.6 48 10.24 11.24 33 33 2./3 10.1 48 .93 1.8 1.8 96 .3 ! ! 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'-----.--.-.- -- - - ------ --Re g u 1 a r -·· 5 U per p e r ·l 0 d .--.. -, 45 I' e , ' , , , , ' I , , , , , I , , , I t I , , I , I , , ,. , , , , e , , , I , , I , , , • I ,1" , , , , t , I I , , I , , , e , fit, , , , , , , t I , ' ,t , , t ttl -J:: - 35 x I a: t-UJ .. 25 >-I a: t-L1J CD 15 .. x I a: t-UJ CD 5 -5 I •••••••••••••••••••••••• a ••••••• » ••••••••••••••••••••••••••••••••••••••• La E .............. ... o 10 20 30 40 50 60 70 80 90 tonPACTION FACTOR. -.815E-D4 DISTANCE (M) NUX. 0.8528 NUY. 0.9387 '4-~1"4 .4.IS C'\ I - ,- --- ----- -." . ",. / -\.::-,.; . __ f , .... l. \.~ .. \~ll~ - J~~~'~\:; ~i ' ~- 30GE::V ---10HZ -- SYNC HR: -r-~.t\ \'''' . , , , , 1 , • " I I I ~ I , , , .-... WITH --R -- rS8M. '--45 I!.':..'.~!.~_' I ~~'~~'s~~'~~~' I :i:~' I ±~~~I'~~~~ " I I I " I I " I" I " " " ,,!I !I t " • " I " tIt tI " t "" " I -l:: - 35 >< I a: to--UJ . 2~ . >-I a: .... w c::c 15 .. 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I I I ; I I , I i I 7( ; I '" : : I j I I -rJ " • • -- - -REFERENCE ORBll DISPLACEMENT PLOT ·0. 300E-oiil---------~~~!P.-"----~~----· .. ------..... ----.. --------.. --...... -.,.---!!!JI'~~~~~--. HFOOFHFHFOOFGKFHFHFOOKFHFHFOOFOFHFHFOOKF -O.30OE-oa---------~-----------------------~XXXXXXXXw.----------------__ ... J' ~­O.300E-Oa--------------------------V~Vyy 8~FQQPftaFHFHFGOFHFHFGGFOKFHFHFGGKFHFHFOQFOFHFHFGQKF. ~.3OOE-02-----------------------------------------------------------V THE R"S X ORBIT DISPLACEMENT IS 11£ RIUI Y ORin DISPLACEl'lENT 18 y 0.2598E-02 0.2372£-02 \iii Hor. Vert.. ....I 1'-~ i , REFERENCE ORBIT DISPLACEMENT PLOT o. l00E-Oa~~~~~-----~-~--~---------~~---o. 100E-Oa-----~-----------------------------------------------~-------o. 100E-Oa-----~--------------------------------------------~~-~-----V -0. l00E-Oa----~--------------~-----------------------------------------THE R"S X ORBIT DISPLACE"ENT IS THE RI1S V ORBIT DISPLACEI1ENT IS -0.4697E-03 0.3072£-03 H or .. 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O. 860 a·· NUY. 0.9391 :- Iter r")=.W-:t-, .. .-t'I~4 ...... ..-.. ..-.. --3'/ c ~ L: .. 00 c / . c r- • lJ) .-I II c u 0::: 0::: 0 c t-IT --1 c LI ::J I l:: :::::> c U c -U I , 0: c: > 1.1 -W I C) ICY) c: c: C' I 0 Q C 0 C Q 0 c U') c If) c If) Q Lf) Lf) (") ('t) N N - - I -- ----- -. ---. --- ---. ---- -------------. SERPUKHOY 6 -. Q~ O.9V'R I __ .. ..... __ _ ___ ___ _ _ OOTm X I ./ - -r200m lAGS CORNELL x 6./ 6 CORNELL ES ES xCPS ~ ,_ • FNAL:6 " VxFB\:M~;~r~:;~) ~.., -KEK~k \. , 4~ x ~ / t.~DESY , -R t x COMBINED @SEPARATE ".~ HYBRID ,I!,' FUNCTION YEREYANES4" .", SNS4/PSB @PSB 'Jc)SNS SATURNE¥ SATURNE II@L.~ -R 100 90 80 70 60 50 40 30 20 II I _ ~Oo."J;erS' 19 6 BONNES"a 4 · R/t- ~ . - -~~~--I- \0 8 . 8 7 7 5 6 4- INSES .... 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'I /1 s· pole ~p rc-~) , P~/~ WIJ~ (c..M) g R 1Yl5 rt~p IIA ,.n,5 '1 «",,5. ~'tfU.T ~~~ 10 CCJ~J.Kaor ~, ~""II\" . -Iff), "-II I pfl!(K. (If) 12..1 1: ~,.,s (It) }~ X d~ Crt) IJ Co/I Cr>.-A1 t.I ~1iOYl tpal'lCllkes " l".r"5/~ 15 Co il f< t.S1S7. (~.rt..) Pwt", /b I~ f< (J<vJ) o b Co ! 0 I 7.5 i 7.5 I 30 2.5 ,. tf7 ; :(,0 I i ((,)000 , 13.?~? i 1)072 ! 1)/0.5 I I 7WI 8~ : 'By.IO " ~ II )(508' )(50(; :3~ I :z+ jqSr !1 5.4 C-o ~(/ Co 1/ 'l:C,or D .3 -,30 a-e tI 5> 'j" ell I'OTYWI J..,p,,,,,;.,,.rtI) Cu.~ H 'Olr~ ("ODIc::! ,o;.j. ~. chr"'lIl :3 ,4-(" 2.. 4-I 4-5.5 2...+ 71 ( +- x/b )( 1:2, 5 r""J;./ c.."J (4,5 30 6-e. II --17 CC)f'/ EdJ j o<w) ?l.75 .' ' -I~ YO/<I! EMy f<w) /'f ' Y()I<~ HyS~5 (I<~ ~o TIr«( p~~ .. ~w) ~.53 1· 5 22..3 ~I Copper v.J r. ~,j) ;-;,~ol , 1,7"7 I) 707 ~~~Z5~r~~~~w~r-,--~~~~~)~------~~~0~e-10~1 -1~~) '-g~b~------4-.IOJ73Z I I I I I I I I I I I I I I I I I I I - -- - - - 9 RP (II if - ~"-9- - - -L;. VI,",,, -y"Vu. ,n - --200Tm X I 4--100 90 80 70 60 R f CORNELL lAGS ES x Xp~ x/: 4 COR~Ell ES _. ---__ ~/( /i01'I - , > X COMBINED ®SEPARATE ~~Ct:-<C.t/ FNALB4 V. FB I - " > 50 ~~ -KEK~~ 41ll. X ® / . -DESY , YEREVANESA X ~ SNS4/PSB " • x', HYBRID ' .... FUNCTION ®PSB 'Jc)SNS -R I 200m 100 90 80 70 60 50 40 30 120 10 9 8 7 6 SAT~RNEi' SATURN~::~<~5 '" /4 BONNESx. R If ·~ ~ Lab t ito 8 4 KEKB I xKEKB ~ 4 +-INSES~X 4 I ~ 1, I Iii I I I I "- RIp t~ ~ 4 5 o 1 2 . - - -- - -4 8 10 6 ~Q (A) \t,3 2 R /3 ~ ew-J ~~~ Q(1-)VS R ~ ~ A~~3(E>~ ( ;;~~ ~ "'1"'1"" NNN ~ .. .. .. ) [). e. .c; t:J /' t:l 0 ~ S , -<-M ,{e.. C' . ~ ,,,.(,,/7 L..M «WI. ~ ~ t I",'-. 9 .A~ l....c.l-J.. <:. ... 1sJ ~ACJi A/<frl ~Ctt L M ~ M4.jY\er /nd IA..C'ln ce pe.r p~w~~ 5 LA.PI'); J-cH ;: A. I...tv\ =- ChD/<fC J~d (.( C-;-4.1I1 ce f'er power S upp!;/ Lp = LC<r '1-/....,.. '" P",y,'//.,! = .1;., 1...,., (-£:2. ) Ittc... , A.~ 7, ~---7o f'o C I = (II "'-I ) C~ 7 [£ = (!l±L) 7r Lm Fa rae. 1c.. Y\ ~ "'" e2..C ~ - h e.'c. 0 84-F-ACC/GEN,KL/TBL/JN05 .Juae S. 1M4 Co. t Coa2ariaon fo - 1.0 Ia for lIlSR witk r..,ed DC Supply fo - 30 , 10 Ia for ICS $d06 Synchrotron DC SU'eteller ICS TRISIl Super Super Co". ISR It .. JOb 10Hz 1Hz, n-3 ferric IU "pet. tipolea 17.2 17 .2 6 6.5 6 6 Qaacla 2.6 2.6 5 TranaJ)OrtaUon (incl.) (incl~) .95 .2 .95 .'5 Pover Slatem Choke, cap & 8W 8.9 9.0 22.4 0.3 Power auppl1es 5.2 4.8 1.8 Crlosenics aefrlgeratlon 1.45 2.0 Coils & Conversion 5.2 Vacuum Chamber 2.' 2.8 0.2 0.2 0.2 0.2 Tunnel 11.54 1l.S4 19.06 +lncl. with aynchrotroD+ TOTALS 4$.24 47.94 48.61 15.15 14.35 7.45 Pover (HW) Mag, chk, 17.47 l.o4 .42 1.93 8.3 cap, Mr, .. Cryo 3 1 $d06 /lr DF 100% 5.45 4.5 2.79 0.94 0.31 2.59 Dr 75% 4.(!)9. 3 .. 38 2.09 0.70 0.23 1.94 idOS/5 l! DF 100% 27 • .25 22.5 13.'5 4.68 1.56 12.95 J)F 75% 2'e.44 1 ••• 10.46 3.51 1.17 9.71 Coat KS + SI'SI. nlSIl + ISIl(SIl) TRISIl + ISIl(SCSll) . ,xlCD' $xl06 $x 1()6 Item lOk 10 Hz 1Hz 1Hz Capital '3.)9 63.09 56.06 62.96 5 'JT pvr. •• 44 '6 .• 20.17 11.63 (75% IJI') TOTAL 13.83 7~.'7 76.23 84.59 ,. .. r. i , .gnet Stored IeerC (KJ): Power (iii) ("gneta, chokes, cap, Colt ($ x 106) (Inltalled fo Dipoles Quadrupoles fit ps) cap, choke) Dipoles Quads res (LAMPl II) TRISR 30 Hz 10 liz 2 Hz 1 Hz 4.98 21.09 0.70 17.47 14.42 11.07 8.92 7.41 29.38 1.04 I</Holll [)c~Z(i-Al -:z.. T!<.l:5p., Fi::w~T /.( 02.... C J..e,kt.-:> g. CI(~(lr;'O RESO"*lNT POWER SUPPL.Y EL.EfwENT COSTS =======c======================================================================= Md=rlo .of 0 96 I lac =pK Iac( 1675 J4.J0V'5 Mf=no .of F 96 I Idc=dc I( am 2075 ~ L.d=Ind.O m " • " 1 :5625 /.'1 I $/MJcap 800000 L.f=Ind.F m 0. " 1 :5625 "Y I Cap.inst.f 1.8 R=no .cells 4 I $/MJchK 400000 L.m= Ind. /ce 0. 75 ~y I ChK.inst.f 1.2 L.mt =Total 3 kY I ******************** Im= IpK( amp 3750~1 K=L.ch/L.m ********** 10 = Irrrnin( a 400 Ih<pI n=Tl/T2 ********** =============================================================================== I TOTAL. CAPACITY COST I CHOKE K n 1 2 3 4 5 I 1 6733501.9 11783622. 12718829. 13046152. 13197656. I 8437505. I 2 :5050126.4 8837716.7 9539121.7 9784614.2 9898241.7 I 10179183 I 3 4489001.3 7855748.1 8479219.3 8697434.8 8798437.0 I 12481993 I 4 4208438.7 7364763.9 7949268.1 8153845.1 8248534.7 I 14925088 =============================================================================== '0 TAL. CAPACITY + . CHOKE COST K 1 15171007. 20221127. 21156334. 21483657. 21635161. 2 15229309. 19016899. 19718305. 19963797. 20077424. 3 16970994. 20337741. 20961212. 21179428. 21280430. 4 19133527. 22289852. 22874356. 23078933. 23173623. ====================================================================== TOTAL. CAPACITY + CHOKE INSTAL.L.EO COST K 1 22245310. 31335526. 33018898. 33608080. 33880786. 2 21305247. 28122909. 29385438. 29827325. 30031854. 3 23058594. 29118738. 30240986. 30633774. 30815578. 4 25485295. 31166681. 32218788. 32587027. 32757468. ====================================================================== . ~.,r4d;'A M ... ,.,s Sto't,., -r.S&4.~ I. I • l.) .,.~ -ttc. M~ ~ l ~ = In",. ) .2) Y0141h ~~c.,J, ut"1rIJ<. ~,w. ~ of(... s.s.""",~ .:o~'U.t tW4-tMftptUv. ~~ AtJ;t <~~>:o.',"WI <~ 9;>.:: 2.~ 10·" fUJ~ ~.BIs)=rsXID-f r404A1X (y. m.s.) H <~1'> "~--,, ,,;J;t <~%> z. 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V 3370 " " ~ . ;~ "Wb~: i ~ ~ j r:: ~ X :: (3.0 A)/J 0 aJ}. 1 nR 1'1" ( ~ -t--tJJ fY' ~) RF V~: -v~¢sjfAA::: ~ ~ 3MV f-~ ( ,~ S~ ~; <t-:J =: l{o.kV (~~) Q= 200 I<s/O =: 60Jl -==> Rs ::- 12 tJn p~ ~d ~ ~ ~ ::j!J"l_ 67j MV " . " ~.s N~ ~[:: Jo.hV ;= 7S-~(~,c~~~) ~/ P V<VV- :=: 7 <; X b 7 ~~ \J == S- f\~ W f{~) frn-~ I ~ j (Ju.r '" fJ~. 1tJ~~ ~~ COL ) #-- ~F . - '. tI/o..t ~) r< F M 4 ~ 1-fJ~ >'> p~ (G~) -i ~7 y> (V~¢JI ~ '») 2 ~ (J~ I A- I '" 3 A ~5 T~ ~b~ ~evv-J.~ FO"L (j,>/O ~ 60ft J ~ ~ crH/O »200~ r~ ~ ' ~~~oj ~....,u· ~. 4uNl ~ ~ ~. r~.A/.) J+ :tr LrrP ';»( '20 ~)Q. W.e ~ ib- k ~~~~oj~() ~. io~5/>JL. t := 1+ 2.1.(./.)) WoL~ '~ ~ =:: ~ J2 (a11LA '. ~) 5,~ ~~ ~~CW<J.= C> ~ It ~ ~ 'it I (r~ N~) v f~ H~ l//Y>. O. '13 GtV ~ -285~' JL 3. 0 e~ -36j'-fL 3.0 D~ -21 ~i A ~.~ It 0 'I - 310 - ?7. (2kJ.b~/) - 670 o + 7 o Option • 2 IWR- 0 EXN,EZN (M) - O. 100E-03 0 . 330E-04 EL(MRAD~EVS) - 33. 98 0.080 ACCUMULATOR O. HZ, NP- O. 104E+14 Rm ~6. 3 M, H= 35. Z/N- 5 . 0 GT- 100. 0 TCGEV) BCT) FRFCMC) ACMRAD) VRF(KV) PHIS SCR ACEVS) EX EZ 0 . 430 0 . 255 46. 252 40. 8 450. 7 0 . 0 0 . 979 0.096 94 . ~ 31 . 1 0 . 430 0. ~55 46 . 252 40. 8 450. 7 0 . 0 0 . 979 0 . 096 94. 2 31 . 1 E PHIM BUF SIGS -DGX -DGZ DP/P GSO GS/GSO -DGXI -DGZI 1. 368 133. 0.494 1. 24 0 . 018 0 . 113 0.310E-02 0 . 392E-Ol 0 . 97E+00 -0. 028 0 . 032 1. 368 133. 0.494 1. 240. 018 0 . 113 0.310E-02 0 . 392E-Ol 0 . 97E+00 -0.0280. 032 BOOSTER 60. HZ, NP- O. 104E+14 R- 26 . 3 M, H- 35. Z/N-T(GEV) B (T> FRF(MC) A(MRAD) VRF(KV) PHIS SCR ACEVS) 0 . 979 0.096 0.980 0 . 096 0 . 977 0 . 096 0 . 974 0 . 096 0 . 971 0.096 0.96B 0 . 096 0.430 0 . 255 0 . 648 0 . 328 0 . 884 0 . 400 1.131 0 . 473 1 . 387 0 . 545 1. 648 0 . 618 1. 914 0 . 691 2 . 1B2 0 . 763 2 . 453 0 . 836 2.720 0.908 3 . 000 0 . 981 E PHIM 46 . 252 40. 8 450. 7 0 . 0 1. 368 133. 1. 580 102. 1. 822 93. 2 . 069 86. 2 . 325 81 . 2 . 580 77. 2 . 852 73. 3 . 120 71 . 3 . 391 70 . 3 . 664 71. 3 . 938 135. 51 . 234 40. 8 756.9 13. 5 54 . 469 40. 8 727 . 9 18. 8 56. 638 40. B 684.6 23. 2 58. 140 40. 8 639.5 26. 7 59. 215 40. 8 592. 8 29 . 7 60. 005 40. 8 542. 2 32. 1 60. 602 40 . B 484. 1 33. 8 61 . 062 40.8 412 . 5 34.7 61 . 423 40. B 313. 7 34. 2 61 . 712 40. 8 21.4 0 . 0 BUF SIGS -DGX -DGZ DP/P 0 . 494 1. 24 0 . 022 0 . 113 0.310E-02 0 . 376 0 . 94 0 . 024 0 . 096 0 . 317E-02 0 . 344 0 . 80 0 . 020 0 . 074 0 . 284E-02 0 . 319 0.800.016 0 . 059 0 . 259E-02 0 . 300 0 . 750. 0130. 049 0.239E-02 0 . 284 0 . 710. 0110. 041 0 . 222E-02 0 . 272 0 . 68 0 . 010 0 . 035 0 . 208E-02 0 . 263 0 . 660. 0080. 030 O. 194E-02 0.259 0.65 0 . 007 0 . 020 O. 181E-02 0.262 0 . 65 0 . 006 0.022 O. 104E-02 0 . 501 1. 20 0 . 001 0 . 012 0 . 794E-03 0.965 0 . 096 0 . 902 0 . 096 0 . 959 0 . 096 0 . 955 0 . 096 0 . 920 0 . 096 GSO GSIGSO 0 . 392E-OI0.97E+00 0.363E-OI0. 97E+00 0 . 207E-OI0. 97E+00 0.202E-OI0. 97E+00 0 . 157E-Ol 0 . 96E+00 0 . 124E-oI0. 96E+00 0 . 999E-020. 96E+00 0 . BOoE-020.95E+00 0 . 640E-020. 95E+00 O. 498E-02 O. 95E+00 O. 120E-02 0 . 89E+00 5. 0 en- 100. 0 EX EZ 94. 2 31.1 73. 4 24. 2 60. 1 19. 8 50.9 16. B . 44. 1 14. 6 38.9 12. 8 34. 8 11 . 5 31. 5 10. 4 2B. B 9 . 5 26. 5 B. 7 24. 5 8 . 1 -DGXI -DGZI -0. 028 0 . 032 -0. 0210. 025 -0.015 0 . 018 -0. 012 0 . 014 -0. 010 0 . 012 -O.OOB 0 . 010 -0.007 0.009 -0. 0060.00B -0. 0050. 007 -0. 0050.006 -0.004 0.005 TRANSF RING O. HZ, NP- 0 . 625E+14 R- 157.9 M, H- 210. Z/N- 5 . 0 GT-I000. 0 T(GEV) B(T) FRF(MC) A(MRAD) VRFCKV) PHIS SCR A(EVS) EX EZ 3 . 000 0 . 102 61 . 073 40. 8 I1B. 7 0.0 0.957 0 . 090 24 . 5 8.1 3 . 000 0 . 162 01 . 673 40. 8 118. 7 0.0 0 . 957 0 . 096 24. 5 B. l E PHIM BUF SIGS -DGX -DOl DP/P GSO OS/OSO -DOXI -DOZI 3 . 938 134. 0 . 497 1. 24-0. 040 0 . 151 0 . 801E-03 0 . 733E-02 0 . 94E+00 -0. 075 0 . 093 3 . 938 134. 0 . 497 1. 24-0. 040 0 . 151 0 . 801E-03 0 . 733E-02 0.94E+00 -0.075 0 . 093 MAIN RING 10. HZ, NP. 0.625E+14 R- 157. 9 M, H" 210. Z/N-T(GEV) B(T> FRF(MC) A(MRAD) VRF(KV) PHIS SCR A(EV5) 3 . 000 O. 102 61. 673 40 . 8 118. 7 0 . 0 0 . 957 0 . 096 5. 664 O. 277 62. 856 40 . B 2139. 4 52 . 1 0 . 977 0 . 096 8 . 354 0 . 393 63 . 176 40.B 2587. 5 60. 5 0 . 995 0 . 090 11. 053 O. 508 63. 306 40. 8 2836. 0 65 . 5 1. 032 0.096 13. 750 0.623 63 . 371 40 . B 2955. 8 08 . 9 1. 093 0 . 090 16. 462 O. 738 63.408 40. 8 2966. 9 71. 6 1. 192 0 . 096 19. 108 0 . 853 03. 432 40. B 2872.0 73. 8 1.351 0 . 090 21. 875 0 . 968 63. 447 44. 2 2671. 4 75.0 1. 515 O. 104 ~4 . 583 1. 083 63 . 458 51. 6 2331. 8 75. 0 1 . 602 O. 121 27. 291 1. 198 63. 466 57. B 1748. 9 75. 0 1 . 780 O. 136 30. 000 1. 313 63 . 472 142. 5 0.0 0 . 0 52 . 266 0 . 335 E PHIM BUF 5IGS -DOX -DOZ DP/P GSO GS/OSO 3 . 938 134. 0.497 1 . ~4-0.040 0 . 151 0 . 801E-03 0.733E-020. 94E+00 6 . 602 47. O. 173 0 . 43-0. 009 0 . 114 O. 135E-02 O. 114E-Ol 0 . 97E+00 9 . 292 36. O. 133 0 . 33-0. 007 0 . 076 O. 124E-02 0 . 683E-020.99E+00 11. 991 30. O. 110 0.27-0.006 0 . 0'7 0 . 116E-02 0 . 466E-02 0 . 10E+Ol 14. 694 2'. 0 . 093 0 . 23-0.006 0 . 045 0 . 111E-02 0.348E-02 0.11E+Ol 17. 400 22. 0 . 081 0 . 20-0. 005 0 . 038 O. 109E-02 0 . 280E-02 O. 12E+Ol 20. 106 19. 0 . 070 0 . 17-0. 0040.032 O. 109E-02 0 . 241E-02 0 . 14E+Ol 22. B13 16. 0 . 059 0 . 1'-0. 003 0 . 029 0.113E-02 0 . 224E-02 0 . 17E+Ol 25. 521 13. 0 . 049 0 . 12-0. 002 0.027 0.122E-02 0 . 227E-020. 22E+Ol 2B. 229 11 . 0 . 040 0 . 10-0. 001 0 . 026 O. 135E-02 O.24'E-020. 32E+Ol 30. 938 9 . 0 . 033 0 . 08 0 . 000 0 . 025 0 . 148E-02 0.258E-020. 26E+04 STRETCHER O. HZ, NP- 0 . 625E+14 R- 157. 9 M, H- 210. Z/N-T(GEV) BCT) FRF(MC) A(MRAD) VRFCKV) 30. 000 1. 313 63 . 472 142. 5 0 . 0 30. 000 1. 313 63. 472 142. ' 0 . 0 E PHIM BUF SIGS -DO X -DGZ PHIS SCR A(EVS) 0 . 0 52.206 0 . 335 0.0 52. 260 0.335 DP/P GSO 05/050 30.938 9 . 0 . 033 0 . 080. 0000. 02' 30. 938 9 . 0 . 033 0.080. 000 0 . 025 O. 148E-02 0 . 258E-02 0 . 26E+04 O. 148E-02 0 . 258E-02 0 . 26E+04 ACCUMULATOR ZlN (OHM) 1 . 000000 5 . 0 GT-1000. 0 EX EZ 24.5 8 . 1 14. 4 4 . 7 10. 1 3 . 3 7 . 8 2 . 6 6 . 4 2 . 1 5 . 4 1.8 4.7 1.5 4 . 1 1.4 3 . 7 1. ~ 3 . 3 1.1 3 . 0 1.0 -DGXI -DOZI -0.075 0 . 093 -0. 044 0 . 056 -0. 030 0.038 -0. 0230. 029 -0. 018 0 . 024 -0. 0150. 020 -0. 013 0 . 017 -0. 012 0.015 -0. 010 0.013 -0.0090.012 -0. 009 0.011 S. O QT-I000. 0 EX EZ 3.0 1.0 3 . 0 1. 0 -DOXI -DOZI -0. 0090. 011 -0. 009 O. 011 , , " , ; , , ", .' 0 , ; ~ . , " , .00 ~ y ~) ~ ~ tJ./\£4 -) 4s~~. [3~ - F(/L~ ~J ll% = <9 . I S-~ I (]:"",,- ?/""') . gr-f5, '1 V ~~! y~~')¢~~ -=> 81 ~ -:) fJ~ ~ ~ -;> ¢s ~ ~ /JlJJ !fwJfi ~ ffr ~ ~ i'JA/A. ACCUMULATOR O. HZ. NP· O. 104E+14 R- 26. 3 M. Hz 35. Z/N- 1. 0 QT- 100. 0 T(GEV) B(l) FRF(MC) A(MRAD) VRF(KV) . PHIS SCR A(EVS) EX EZ 0 . 430 O. 255 46.~52 40.8 451 . 0 0.0 0.979 0.096 94.2 31 . 1 0.430 0.255 46. 252 40. 8 451 . 0 0 . 0 0 . 979 0.096 94. 2 31.1 E PHIM BUF 8IGS -DOX -DOZ DPIP OSO 08/0S0 -DOXI -DOZI 1 . 368 133. 0 . 494 1. 24 0.018 0.113 0.310E-02 0.392E-Ol 0.97E+00 -0. 028 0.032 1. 36S 133. 0 . 494 1 . 24 O.OlS 0 . 113 0 . 310E-02 0.392E-Ol 0 . 97E+OO -0.02S 0.032 BOOSTER 60. HZ. NP- O. 104E+14 R- 26.3 M, H- 35. Z/N- 1.0 QT- 100. 0 T(QEV) B(T) FRF(MC) A(MRAD) VRF(KV) PHIS SCR A(EVS) EX EZ 0 . 430 0 . 255 46. 252 40. S 451.0 0 . 0 0.979 0.096 94. 2 31.1 0 . 64S 0.328 ~1 . 234 40. 8 757. 2 13 . ~ 0.979 0.096 73. 4 24.2 0.BB4 0 . 400 54 . 469 40.S 72S. 3 IB. S 0.976 0.096 60. 1 19.B 1.131 0 . 473 ~6 . 638 40 . B 68~.0 23. 1 0.973 0 . 096 50.9 16. B 1.387 O. ~45 5S. 140 40. B 640. 0 26. 7 0 . 969 0.096 44.1 14.6 1. 648 0 . 618 59.215 40. S 593. 4 29. 7 0 . 966 0.096 38. 9 12. B 1.914 0.691 60.005 40. B ~42 . B 32. 0 0 . 963 0 . 096 34. B 11.~ 2 . 1B2 0.763 60. 602 40. 8 4B4.7 33. 7 0.959 0.096 31.~ 10. 4 2 . 453 0.836 61 . 062 40. 8 413. 2 34. 7 0 . 956 0 . 096 28. S 9 . 5 2 . 726 0 . 908 61 . 423 40.8 314. 4 34.1 0.951 0.096 26. 5 8.7 3.000 0.981 61.712 40. 8 21.S 0.0 0 . 911 0 . 096 24.5 B.l E PHIM BUF SIGS -DOX -DOZ DP/P 050 OS/OSO -DOXI -DOZI 1. 368 133. 0.494 1.240. 022 0 . 113 0 . 310E-02 0 . 392E-Ol 0 . 97E+00 -0. 028 0 . 032 1. 5B6102. 0 . 376 0 . 94 0 . 024 0 . 096 0 . 317E-02 0 . 363E-Ol 0 . 97E+00 -0.0210. 025 1.B22 93. 0 . 344 0 . 860. 0200. 074 0 . 284E-02 0 . 267E-Ol 0 . 97E+00 -0.015 0 . 018 2 . 069 B6 . 0 . 320 O. BO 0.016 0 . 059 0 . 258E-02 0 . 202E-Ol 0.97E+00 -0. 012 0 . 014 2.325 Sl . 0 . 300 0 . 75 0.013 0 . 049 0 . 239E-02 0.157E-Ol 0 . 96E+00 -0.010 0 . 012 2 . 586 77 . 0 . 2S5 0 . 710.0110. 041 0.222E-02 O. 124E-Ol 0 . 96E+00 -O.OOB 0 . 010 2 . B52 74 . 0 . 272 0.68 0.010 0.035 0 . 208E-02 0 . 997E-02 0 . 96E+00 -0.007 0.009 3.120 71. 0 . 264 0.660. 008 0.030 O. 194E-02 0 . 804E-02 0.95E+00 -0. 006 0.008 3 . 391 70. 0 . 259 0 . 650. 007 0 . 026 O. 180E-02 0 . 644E-02 0 . 95E+00 -0. 005 0 . 007 3 . 664 71 . 0 . 262 0 . 66 0 . 005 0.022 O. 164E-02 0 . 496E-02 0 . 94E+00 -0. 005 0 . 006 3 . 938 136. 0 . 503 1.260. 0010. 012 0 . 793E-03 O. 120E-02 0.88E+00 -0.004 0 . 005 TRANSF RING O. HZ, NP- 0.625E+14 R- 157. 9 M, H= 210. Z/N- 1. 0 GT-I000.0 T(GEV) B(T) FRF(MC ) A( MRAD) VRFCKV ) PHIS SCR A(EVS) EX EZ 3 . 000 0 . 162 61 . 673 40 . 8 121 . 1 0.0 0 . 947 0 . 096 24 . 5 8.1 3 . 000 0 . 162 61 . 673 40. 8 121 . 1 0 . 0 0 . 947 0 . 096 24. 5 8 . 1 E PHIM BUF SIGS -DOX -DOZ DP/P OSO OS/OSO -DOXI -DOZI 3 . 938 134. 0 . 498 1.25-0.040 0.151 0 . 799E-03 0 . 730E-02 0 . 93E+00 -0. 075 0 . 093 3.938 134. 0 . 498 1. 25-0.040 0 . 1510. 799E-03 0 . 730E-02 0.93E+00 -0. 075 0.093 MAIN RING 10. HZ. NP- 0 . 625E+14 R- 157. 9 M, Hz 210. Z/N-T(QEV) B(T) FRF(MC) A(MRAD) VRFCKV) PHIS SCR A(EVS) 3 . 000 0 . 162 61.673 40. 8 121 . 1 0 . 0 0.947 0 . 096 ~ . 664 0 . 277 62. 856 40. 8 2147 . ~ 51 . 9 0 . 957 0 . 096 S . 354 0 . 393 63. 176 40. 8 2600 . 6 60. 0 0 . 951 0 . 096 11 . 053 0 . 508 63. 306 40. 8 2854. 4 64. 7 0 . 949 0 . 096 13. 756 0 . 623 63. 371 40. 8 2979. 7 67.8 0 . 951 0 . 096 16. 462 0.738 63.408 40. 8 2996.5 70. 0 0 . 957 0 . 096 19.168 0 . 853 63. 432 40.8 2907. 2 71 . 6 0.967 0 . 096 21 . 875 0.968 63. 447 40. 8 2701 . 4 72. 8 0 . 982 0 . 096 24 . 583 1. 083 63. 458 40. B 2348. 1 73.6 1. 003 0 . 096 27. 291 1. 198 63.466 40. 8 1758. 9 73. 8 1. 034 0 . 096 30. 000 1. 313 63. 472 40. B 0.0 0.0 2 . 649 0.096 E PHIM BUF SIOS -DOX -DOZ DP/P 050 OS/OSO 3 . 938 134. 0.498 1. 25-0. 040 0 . 1510. 799E-03 0 . 730E-02 0 . 93E+00 6 . 602 47. 0 . 174 ' 0 . 44-0. 010 0 . 113 O. 134E-02 O. 112E-Ol 0 . 95E+00 9.~92 37. 0.136 0 . 34-0. 008 0.075 O. 121E-02 0 . 655E-02 0 . 94E+00 11 . 991 31 . 0 . 114 0 . 29-0.007 0 . 056 O. 112E-02 0.431E-02 0 . 94E+00 14. 694 27. 0.100 0 . 25-0. 006 0 . 044 O. 104E-02 0 . 306E-02 0 . 94E+00 17. 400 24. 0 . 090 0 . 22-0. 006 0 . 036 0 . 978E-03 0 . 228E-02 0 . 95E+00 20. 106 22. 0.082 0 . 21-0. 0050. 030 0 . 923E-03 O. 175E-02 0 . 96E+00 22. B13 21. 0 . 077 0.19-0.005 0 . 026 0 . 871E-03 O. 138E-02 0 . 98E+00 25. 521 20. 0 . 073 0 . 18-0. 005 0 . 022 0 . 819E-03 O. 109E-02 0.10E+01 28. 229 19. 0.072 0.18-0. 0050. 020 0 . 754E-03 0.832E-03 O.lOE+Ol 30. 93B 110. 0 . 406 1. 02-0. OOB 0 . 012 O. 121E-03 0 . 202E-04 0.36E+Ol STRETCHER O. HZ. NP- 0 . 625E+14 R- 157. 9 M. H- 210. Z/N-T(QEY) B(T) FRF(MC) A(MRAD) VRF(KY) PHIS SCR A(EYS) 30. 000 1.313 63. 472 40. B 0 . 0 0 . 0 2.649 0 . 096 30. 000 1.313 63 . 472 40 . 8 0 . 0 0 . 0 2 . 649 0.096 E PHIM BUF SIGS -DOX -DOZ DP/P OSO 05/050 30. 938 110. 0 . 406 1. 02-0 . 008 0.012 O. 121E-03 0 . 202E-04 0 . 36E+Ol 30.938 110. 0 . 406 1. 02-0. 008 0.012 O. 121E- 03 0 . 202E-04 0 . 36E+Ol Ch.nge m.chine p.r.meter ACCUMULATOR ZlN (OHM) BOOSTER ZlN (OHM) 5 . 000000 5 . 000000 1. 0 GT-I000. 0 EX EZ 24 . 5 8 . 1 14. 4 4 . 7 10. 1 3 . 3 7 . 8 2 . 6 6 . 4 2.1 5 . 4 1. 8 4 . 7 1. 5 4 . 1 1.4 3.7 1.2 3 . 3 1. 1 3 . 0 1. 0 -DOXI -DOZI -0. 0750. 093 -0. 044 0 . 055 -0. 0300. 038 -0. 023 0 . 029 -0.018 0 . 024 -0.015 0 . 020 -0.013 0.017 -0 . 012 0 . 015 -0. 010 0.013 -0.0090. 012 -0.0080.011 1.0 QT-l000. 0 EX EZ 3 . 0 1. 0 3.0 1. 0 -DOXI -DOZI -0 . 008 0 . 011 -0. 008 0 . 011 ill • o rt -:iC1J7 l3y 19('c!<'1.l1Z47,o,., ",,.,013. c(;,.,,/ If V" Oo,rt '/ [ 7h~lVl~t.:l1. (U notJS'1~.'l "'1 S IftI~"(-;.ro Ii ri If II. 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