lsnu's picture
Add files using upload-large-folder tool
855e245 verified
%!PS-Adobe-3.0 EPSF-3.0
%%Title: 05019.eps
%%Creator: Xcircuit v2.0
%%CreationDate: Sun Jan 6 19:27:55 2002
%%Pages: 1
%%BoundingBox: 68 68 396 209
%%DocumentNeededResources: font Helvetica font Helvetica-Oblique
%%+ font Times-Roman
%%EndComments
%%BeginProlog
%
% PostScript prolog for output from xcircuit
% Version: 2.0
%
% Electrical circuit (and otherwise general) drawing program
%
% Written by Tim Edwards 8/5/93--2/25/99 (tim@bach.ece.jhu.edu)
% The Johns Hopkins University
%
%%BeginResource: procset XCIRCproc 2.0 2
% supporting definitions --- these are the primary xcircuit types.
/XCIRCsave save def
/topmat matrix currentmatrix def
/fontslant { /slant exch def [1 0 slant 1 0 0]
exch findfont exch makefont dup length dict /ndict exch def
{ 1 index /FID ne { ndict 3 1 roll put } { pop pop } ifelse } forall
ndict definefont pop} def
/cf { dup type /realtype eq {40 mul /fscale exch def} if dup /xfont exch def
findfont fscale scalefont setfont } def
/Ss { gsave 0.67 dup scale gsave mty neg rmoveto
glevel 1 add /glevel exch def } def
/ss { gsave 0.67 dup scale gsave mty 0.5 mul rmoveto
glevel 1 add /glevel exch def } def
/ns { currentpoint transform % preserve x position!
glevel {grestore} repeat /glevel 0 def
itransform pop currentpoint pop sub 0 rmoveto } def
/ul { showflag 1 eq { gsave
currentpoint topmat setmatrix 0 0 moveto 2 index stringwidth pop (_)
false charpath flattenpath pathbbox grestore exch pop 1 index
sub setlinewidth exch pop currentpoint 3 -1 roll add moveto 0
rlineto stroke moveto } if } def
/ol { showflag 1 eq { gsave gsave
currentpoint topmat setmatrix 2 index stringwidth pop 3 index
true charpath flattenpath pathbbox grestore exch pop
exch pop topmat setmatrix (_) true charpath pathbbox grestore
exch pop 1 index sub setlinewidth exch pop currentpoint
exch 4 1 roll exch sub add moveto pop 0 rlineto stroke
moveto } if } def
/stW { gsave true charpath flattenpath pathbbox pop exch pop sub
grestore } def
/bs { stW 0 rmoveto } def
/pspc 0 def
/qS { (aa) stW (a a) stW sub 4 div 0 rmoveto } def
/hS { qS qS } def
/textx { dup 1 add copy 0 exch { exch dup type /stringtype eq
{stringwidth pop add}{exec} ifelse } repeat neg ns } def
/mty { 0 topmat setmatrix (A) true charpath flattenpath pathbbox exch
pop exch sub exch pop neg grestore } def
/texty { gsave 2 copy pop exec mty } def
/tcenter { textx grestore 0.5 mul 0 rmoveto } def
/tright { textx grestore fspc sub 0 rmoveto } def
/tmiddle { texty 0.5 mul rmoveto } def
/ttop { texty fspc sub rmoveto } def
/tshow {{ dup type /stringtype eq {show}{exec} ifelse} repeat ns } def
/label { gsave translate 0 0 moveto rotate /just exch def just 16 and 0 gt
{0 1 dtransform gsave pagemat setmatrix idtransform exch grestore
1 0 dtransform gsave pagemat setmatrix idtransform exch grestore
dup 0 eq {pop mul 0 gt} {3 1 roll pop pop 0 lt} ifelse
{-1 /just just dup 3 and 1 ne {3 xor} if def} {1} ifelse exch 0 lt
{-1 /just just dup 12 and 4 ne {12 xor} if def} {1} ifelse scale } if
/glevel 0 def /showflag 0 def /fspc pspc def
just 1 and 0 gt {gsave just 2 and 0 gt {tright}{tcenter} ifelse}
{fspc 0 rmoveto} ifelse
just 4 and 0 gt {just 8 and 0 gt {ttop}{tmiddle} ifelse}
{0 fspc rmoveto} ifelse
/showflag 1 def tshow grestore } def
/pinlabel { hlevel 0 eq { /pspc 20 def label /pspc 0 def }
{ pop pop pop pop {pop} repeat } ifelse } def
/pinglobal { pinlabel } def
/infolabel { pinlabel } def
/begingate { /hlevel hlevel 1 add def gsave translate 0 0 moveto dup 0 lt
{neg 1 sub -1 1 scale} if rotate dup scale } bind def
/makeparm {3 string cvs dup length 1 add string /tstr exch def tstr exch
1 exch putinterval tstr 0 (v) putinterval tstr cvn} bind def
/beginparm { -1 1 {makeparm exch def} for
dup type /arraytype eq { aload length -1 1 {makeparm exch def}
for } if begingate } bind def
/endgate { /hlevel hlevel 1 sub def grestore } bind def
/hlevel 0 def
/tmpa [1 0 0 1 0 0] def
/gar {8 8 true tmpa {<c0 c0 00 00 0c 0c 00 00>} imagemask} bind
{8 8 true tmpa {<30 70 60 02 03 07 06 20>} imagemask} bind
{8 8 true tmpa {<0c 1e 1e 0c c0 e1 e1 c0>} imagemask} bind
{8 8 true tmpa {<0f 0f 0f 0f f0 f0 f0 f0>} imagemask} bind
{8 8 true tmpa {<3f f3 e1 e1 f3 3f 1e 1e>} imagemask} bind
{8 8 true tmpa {<df cf 8f 9f fd fc f8 f9>} imagemask} bind
{8 8 true tmpa {<ff 3f 3f ff ff f3 f3 ff>} imagemask} bind 7 array astore def
/ppaint { gsave clip tmpa dup setmatrix pathbbox neg exch neg 4 2 roll
neg 4 -1 roll 2 copy gt {exch} if 8 div ceiling 8 mul 4 2 roll neg 2 copy
gt {exch} if 8 div ceiling 8 mul 3 -1 roll -8 5 -1 roll
{ 3 index exch 5 exch put dup -8 3 index { 3 index
exch 4 exch put 3 index exec } for } for pop pop pop pop grestore } bind def
/setstyles {
currentlinewidth mul setlinewidth /style exch def
style 1 and 0 gt not {closepath} if
style 2 and 0 gt {currentlinewidth 4 mul dup 2 array astore 0 setdash} if
style 4 and 0 gt {0.5 currentlinewidth 4 mul 2 array astore 0 setdash} if
style dup 256 ge exch 480 lt and { gsave 1 setgray eofill grestore } if
style 16 and 0 gt { gsave style 224 and -5 bitshift dup 7 lt
{gar exch get ppaint} { pop eofill } ifelse grestore } if
style 8 and 0 gt { newpath } { stroke } ifelse grestore } def
/scb { gsave setrgbcolor } bind def /sce { grestore } bind def
/polygon { gsave /num exch def moveto num 1 sub {lineto} repeat setstyles } def
/xcarc { gsave newpath arc setstyles } def
/elb { matrix currentmatrix 7 -1 roll 7 -1 roll translate 5 1 roll 4 -1 roll
3 index div 1 scale } def
/ele { 0 4 1 roll 0 4 1 roll } bind def
/ellipse { gsave elb newpath ele arc setmatrix setstyles } def
/pellip { elb ele arc setmatrix } def
/nellip { elb ele arcn setmatrix } def
/spline { gsave moveto curveto setstyles } def
/polyc { {lineto} repeat } bind def
/beginpath { gsave moveto } bind def
/endpath { setstyles } bind def
/bop { 1 setlinecap 0 setlinejoin 6 setmiterlimit 0 setgray } def
/insertion {/PSobj save def /showpage {} def bop translate} def
/end_insert {PSobj restore} def
/setpagemat {/pagemat matrix currentmatrix def} def
/inchscale {setpagemat 0.375 mul dup scale} def
/cmscale {setpagemat 0.35433071 mul dup scale} def
%%EndResource
%%EndProlog
% XCircuit output starts here.
/dot {
% -10 -10 20 20 bbox
begingate
248 1.00 0 0 6 0.00 360.00 xcarc
endgate
} def
/inductor {
% -14 -64 29 112 bbox
begingate
% fundamental
1 1.00 20 -28 20 -44 0 -48 0 -24 spline
1 1.00 -20 -20 -20 -32 0 -28 0 -24 spline
1 1.00 20 32 20 16 0 12 0 36 spline
1 1.00 20 12 20 -4 0 -8 0 16 spline
1 1.00 20 -8 20 -24 0 -28 0 -4 spline
1 1.00 -20 20 -20 8 0 12 0 16 spline
1 1.00 -20 0 -20 -12 0 -8 0 -4 spline
1 1.00 0 -48 0 -64 2 polygon
1 1.00 0 36 0 48 2 polygon
1.000 0.000 0.000 scb
(l.1) {/Times-Roman 1.000 cf} 2 9 0 0 48 pinlabel
(l.2) {/Times-Roman 1.000 cf} 2 13 0 0 -64 pinlabel
sce
(spice:L%i %pl.1 %pl.2 1.0U) {/Times-Roman 1.000 cf} 2 0 0 -208 -160 infolabel
(sim:l %pl.1 %pl.2) {/Times-Roman 1.000 cf} 2 0 0 -208 -208 infolabel
endgate
} def
/3_phase_Y {
% -155 -162 308 324 bbox
begingate
1.00 0 -145 152 dot
1 1.00 -114 128 -143 157 2 polygon
1.00 45 -81 95 inductor
1 1.00 -38 52 -4 20 2 polygon
1 1.00 36 52 1 19 2 polygon
1.00 315 78 94 inductor
1 1.00 110 125 141 156 2 polygon
1.00 0 143 152 dot
1 1.00 0 -23 0 24 2 polygon
1.00 0 -1 24 dot
1.00 180 0 -72 inductor
1 1.00 0 -117 0 -151 2 polygon
1.00 0 -1 -152 dot
endgate
} def
/diode {
% -8 -48 36 96 bbox
begingate
% fundamental
248 1.00 -18 -16 0 16 18 -16 3 polygon
1 1.00 0 -48 0 -16 2 polygon
1 1.00 0 48 0 16 2 polygon
1 1.00 -18 16 18 16 2 polygon
1.000 0.000 0.000 scb
(d.m) {/Times-Roman 1.000 cf} 2 9 0 0 48 pinlabel
(d.p) {/Times-Roman 1.000 cf} 2 13 0 0 -48 pinlabel
sce
endgate
} def
/jumper {
% -4 -14 18 28 bbox
begingate
1 1.00 0 0 10 -90.00 90.00 xcarc
1 1.00 0 10 0 16 2 polygon
1 1.00 0 -10 0 -16 2 polygon
1.000 0.000 0.000 scb
(a) {/Times-Roman 1.000 cf} 2 1 0 0 16 pinlabel
(a) {/Times-Roman 1.000 cf} 2 13 0 0 -16 pinlabel
sce
endgate
} def
/gnd {
% -32 -60 64 68 bbox
begingate
1 1.00 0 0 0 -32 2 polygon
1 1.00 -32 -32 32 -32 2 polygon
1 1.00 -18 -46 18 -46 2 polygon
1 1.00 -4 -60 4 -60 2 polygon
1.000 0.000 0.000 scb
(GND) {/Times-Roman 1.000 cf} 2 1 0 0 0 pinglobal
sce
endgate
} def
%%Page: 1 1
%%PageOrientation: Portrait
/pgsave save def bop
% 874 546 offsets
% 32.00 8.00 gridspace
0.7000 inchscale
2.6000 setlinewidth
1.00 0 732 522 3_phase_Y
1.00 0 618 514 inductor
1 2.00 570 466 32 0.00 360.00 xcarc
1 2.00 538 434 32 0.00 360.00 xcarc
1 1.00 602 578 554 530 570 498 618 562 spline
1 1.00 618 418 586 402 570 434 618 450 spline
240 1.00 487 473 508 454 520 463 498 485 4 polygon
240 1.00 519 505 540 486 552 495 530 517 4 polygon
1.00 0 458 546 dot
1.00 0 458 482 dot
1 1.00 474 482 474 498 506 466 458 482 spline
1 1.00 474 546 490 546 538 498 458 546 spline
1.00 270 1018 610 diode
1.00 270 1178 610 diode
1.00 270 1018 546 diode
1.00 270 1178 546 diode
1.00 270 1018 482 diode
1.00 270 1178 482 diode
1 1.00 970 610 970 482 2 polygon
1 1.00 1226 610 1226 482 2 polygon
1.00 0 1226 546 dot
1.00 0 970 546 dot
1 1.00 1066 610 1130 610 2 polygon
1 1.00 1066 546 1130 546 2 polygon
1 1.00 1066 482 1130 482 2 polygon
1.00 0 1066 610 dot
1 1.00 1066 610 1066 690 874 690 874 674 4 polygon
1.00 0 1098 610 jumper
1 1.00 586 674 586 722 1098 722 1098 626 4 polygon
1 1.00 1098 594 1098 546 2 polygon
1.00 0 1098 546 dot
1 1.00 730 370 730 354 1130 354 1130 482 4 polygon
1.00 0 1130 482 dot
1.00 0 906 514 gnd
1 1.00 906 514 906 546 970 546 3 polygon
1 1.00 1226 546 1322 546 2 polygon
1.00 0 1322 546 dot
0.600 0.600 0.600 scb
4 1.00 474 738 474 338 1306 338 1306 738 4 polygon
sce
(Typical alternator) {/Helvetica 1.000 cf} 2 16 0 698 754 label
1 5.00 618 514 426 322 2 polygon
(shaft) {/Helvetica-Oblique 1.000 cf} 2 16 0 362 274 label
("field") {/Helvetica 1.000 cf} 2 16 0 298 530 label
(terminals) {/Helvetica 1.000 cf} 2 16 0 274 490 label
("battery") {/Helvetica 1.000 cf} 2 16 0 1338 554 label
(terminal) {/Helvetica 1.000 cf} 2 16 0 1346 514 label
pgsave restore showpage
%%Trailer
XCIRCsave restore
%%EOF