Version 4 SHEET 1 3156 2100 WIRE 544 48 464 48 WIRE 608 48 544 48 WIRE 544 112 544 48 WIRE -912 128 -992 128 WIRE -800 128 -832 128 WIRE -480 128 -576 128 WIRE -368 128 -400 128 WIRE -48 128 -144 128 WIRE 80 128 32 128 WIRE 784 160 688 48 WIRE 848 160 784 160 WIRE -992 176 -992 128 WIRE -576 176 -576 128 WIRE -144 176 -144 128 WIRE 544 256 544 192 WIRE 544 256 480 256 WIRE 608 256 544 256 WIRE 688 256 784 160 WIRE -992 352 -992 256 WIRE -576 352 -576 256 WIRE -576 352 -992 352 WIRE -144 352 -144 256 WIRE -144 352 -576 352 WIRE -576 448 -576 352 WIRE -288 448 -576 448 WIRE -48 448 -208 448 WIRE 96 448 32 448 WIRE 576 464 480 464 WIRE -576 480 -576 448 WIRE 624 512 576 464 WIRE -576 592 -576 560 WIRE -288 592 -576 592 WIRE -48 592 -208 592 WIRE 96 592 32 592 WIRE 624 624 624 592 WIRE 624 624 480 624 WIRE 736 624 624 624 WIRE 864 624 816 624 WIRE 624 656 624 624 WIRE -576 704 -576 592 WIRE -528 704 -576 704 WIRE -416 704 -448 704 WIRE -576 736 -576 704 WIRE 576 784 624 736 WIRE 576 784 480 784 WIRE 464 976 464 960 WIRE -400 1024 -544 1024 WIRE -256 1024 -400 1024 WIRE -112 1024 -256 1024 WIRE 96 1024 -112 1024 WIRE 128 1024 96 1024 WIRE 464 1072 464 1056 WIRE -544 1104 -544 1024 WIRE -400 1104 -400 1024 WIRE -256 1104 -256 1024 WIRE -928 1216 -1056 1216 WIRE -752 1216 -848 1216 WIRE -656 1216 -752 1216 WIRE -544 1216 -544 1168 WIRE -544 1216 -656 1216 WIRE -912 1264 -960 1264 WIRE -752 1264 -752 1216 WIRE -656 1264 -656 1216 WIRE -864 1280 -864 1264 WIRE 592 1344 464 1344 WIRE 768 1344 672 1344 WIRE 864 1344 768 1344 WIRE 976 1344 864 1344 WIRE 1120 1344 1040 1344 WIRE -112 1360 -112 1024 WIRE 96 1360 96 1024 WIRE -928 1376 -1056 1376 WIRE -752 1376 -752 1328 WIRE -752 1376 -848 1376 WIRE -400 1376 -400 1168 WIRE -400 1376 -752 1376 WIRE 608 1392 560 1392 WIRE 768 1392 768 1344 WIRE 864 1392 864 1344 WIRE 656 1408 656 1392 WIRE -912 1424 -960 1424 WIRE -752 1424 -752 1376 WIRE -864 1440 -864 1424 WIRE 592 1504 464 1504 WIRE 768 1504 768 1456 WIRE 768 1504 672 1504 WIRE 976 1504 768 1504 WIRE 1120 1504 1120 1344 WIRE 1120 1504 1040 1504 WIRE 1200 1504 1120 1504 WIRE 1360 1504 1200 1504 WIRE 1424 1504 1360 1504 WIRE -928 1536 -1056 1536 WIRE -752 1536 -752 1488 WIRE -752 1536 -848 1536 WIRE -656 1536 -656 1328 WIRE -656 1536 -752 1536 WIRE -256 1536 -256 1168 WIRE -256 1536 -656 1536 WIRE 608 1552 560 1552 WIRE 768 1552 768 1504 WIRE 656 1568 656 1552 WIRE -912 1584 -960 1584 WIRE -864 1600 -864 1584 WIRE -544 1600 -544 1216 WIRE -400 1600 -400 1376 WIRE -256 1600 -256 1536 WIRE 1200 1616 1200 1504 WIRE 1360 1616 1360 1504 WIRE 592 1664 464 1664 WIRE 768 1664 768 1616 WIRE 768 1664 672 1664 WIRE 864 1664 864 1456 WIRE 864 1664 768 1664 WIRE 976 1664 864 1664 WIRE 1120 1664 1120 1504 WIRE 1120 1664 1040 1664 WIRE 608 1712 560 1712 WIRE 656 1728 656 1712 WIRE -688 1744 -736 1744 WIRE -544 1744 -544 1664 WIRE -544 1744 -608 1744 WIRE -400 1744 -400 1664 WIRE -400 1744 -544 1744 WIRE -256 1744 -256 1664 WIRE -256 1744 -400 1744 WIRE -112 1744 -112 1424 WIRE -112 1744 -256 1744 WIRE 96 1744 96 1440 WIRE 96 1744 -112 1744 WIRE 128 1744 96 1744 WIRE 1200 1824 1200 1680 WIRE 1200 1824 464 1824 WIRE 1360 1824 1360 1696 WIRE 1360 1824 1200 1824 WIRE 1440 1824 1360 1824 FLAG -800 128 L1 IOPIN -800 128 Out FLAG 80 128 L3 IOPIN 80 128 Out FLAG -368 128 L2 IOPIN -368 128 Out FLAG -576 736 0 FLAG 464 48 L1 IOPIN 464 48 In FLAG 480 256 L3 IOPIN 480 256 In FLAG 848 160 L2 IOPIN 848 160 In FLAG 480 464 L1 IOPIN 480 464 In FLAG 864 624 L2 IOPIN 864 624 In FLAG 480 784 L3 IOPIN 480 784 In FLAG 480 624 N IOPIN 480 624 In FLAG 96 448 N IOPIN 96 448 Out FLAG 96 592 PE IOPIN 96 592 Out FLAG -416 704 PE FLAG 464 1664 L3 IOPIN 464 1664 In FLAG 464 1504 L2 IOPIN 464 1504 In FLAG 464 1344 L1 IOPIN 464 1344 In FLAG 464 1824 N IOPIN 464 1824 In FLAG 656 1408 0 FLAG 656 1568 0 FLAG 656 1728 0 FLAG 560 1392 pon FLAG 560 1552 pon FLAG 560 1712 pon FLAG 464 1072 0 FLAG 464 960 pon FLAG -1056 1536 L3 IOPIN -1056 1536 In FLAG -1056 1376 L2 IOPIN -1056 1376 In FLAG -1056 1216 L1 IOPIN -1056 1216 In FLAG -864 1280 0 FLAG -864 1440 0 FLAG -864 1600 0 FLAG -960 1264 pon FLAG -960 1424 pon FLAG -960 1584 pon FLAG -736 1744 0 FLAG 128 1024 VOUT+ IOPIN 128 1024 Out FLAG 128 1744 VOUT- IOPIN 128 1744 Out FLAG 1424 1504 Vout IOPIN 1424 1504 Out FLAG 1440 1824 N IOPIN 1440 1824 In SYMBOL voltage -992 160 R0 WINDOW 123 0 0 Left 0 WINDOW 39 24 132 Left 0 SYMATTR SpiceLine Rser={R_WIRE} SYMATTR InstName V1 SYMATTR Value SINE(0 {Vpeak} {FREQ} 0 0 0) SYMBOL voltage -144 160 R0 WINDOW 123 0 0 Left 0 WINDOW 39 24 132 Left 0 SYMATTR SpiceLine Rser={R_WIRE} SYMATTR InstName V3 SYMATTR Value SINE(0 {Vpeak} {FREQ} 0 0 120) SYMBOL voltage -576 160 R0 WINDOW 123 0 0 Left 0 WINDOW 39 24 132 Left 0 SYMATTR SpiceLine Rser={R_WIRE} SYMATTR InstName V2 SYMATTR Value SINE(0 {Vpeak} {FREQ} 0 0 240) SYMBOL res 528 96 R0 SYMATTR InstName RD13 SYMATTR Value 230 SYMBOL res 592 64 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName RD12 SYMATTR Value 230 SYMBOL res 592 272 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName RD23 SYMATTR Value 230 SYMBOL res 608 496 R0 SYMATTR InstName RS1 SYMATTR Value 230 SYMBOL res 608 640 R0 SYMATTR InstName RS2 SYMATTR Value 230 SYMBOL res 720 640 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName RS3 SYMATTR Value 230 SYMBOL res -304 464 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName R_N SYMATTR Value {R_WIRE} SYMBOL res -304 608 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName R_PE SYMATTR Value {R_WIRE} SYMBOL res -592 464 R0 SYMATTR InstName Rshort SYMATTR Value 1µ SYMBOL res -544 720 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName R_dummy1 SYMATTR Value 1G SYMBOL res 1344 1600 R0 SYMATTR InstName R_LOAD1 SYMATTR Value 230 SYMBOL cap 1184 1616 R0 WINDOW 39 24 92 Left 0 SYMATTR SpiceLine Rser=0.1 SYMATTR InstName CDC1 SYMATTR Value 470µ SYMBOL sw 688 1344 M270 SYMATTR InstName S1 SYMATTR Value SW1 SYMBOL sw 688 1504 M270 SYMATTR InstName S2 SYMATTR Value SW1 SYMBOL sw 688 1664 M270 SYMATTR InstName S3 SYMATTR Value SW1 SYMBOL voltage 464 960 R0 WINDOW 123 0 0 Left 0 WINDOW 39 0 0 Left 0 SYMATTR InstName VCTRL1 SYMATTR Value PULSE(0 1 1u 1u 1u 1k 2k) SYMBOL res 80 1344 R0 SYMATTR InstName R_LOAD SYMATTR Value 230 SYMBOL cap -128 1360 R0 WINDOW 39 24 92 Left 0 SYMATTR SpiceLine Rser=0.1 SYMATTR InstName CDC SYMATTR Value 470µ SYMBOL sw -832 1216 M270 SYMATTR InstName SL1 SYMATTR Value SW1 SYMBOL sw -832 1376 M270 SYMATTR InstName SL2 SYMATTR Value SW1 SYMBOL sw -832 1536 M270 SYMATTR InstName SL3 SYMATTR Value SW1 SYMBOL diode -560 1168 M180 WINDOW 0 24 72 Left 0 WINDOW 3 24 0 Left 0 SYMATTR InstName D1 SYMATTR Value MR760 SYMBOL res -704 1760 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 0 56 VBottom 0 SYMATTR InstName R_dummy2 SYMATTR Value 1G SYMBOL ind -496 144 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 5 56 VBottom 0 SYMATTR InstName L_L2 SYMATTR Value {L_WIRE} SYMATTR SpiceLine Rser=1m Rpar=1e6 SYMBOL ind -64 144 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 5 56 VBottom 0 SYMATTR InstName L_L3 SYMATTR Value {L_WIRE} SYMATTR SpiceLine Rser=1m Rpar=1e6 SYMBOL ind -928 144 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 5 56 VBottom 0 SYMATTR InstName L_L1 SYMATTR Value {L_WIRE} SYMATTR SpiceLine Rser=1m Rpar=1e6 SYMBOL cap -768 1264 R0 SYMATTR InstName CL12 SYMATTR Value .1µ SYMATTR SpiceLine Rser=0.1 SYMBOL cap -768 1424 R0 SYMATTR InstName CL23 SYMATTR Value .1µ SYMATTR SpiceLine Rser=0.1 SYMBOL cap -672 1264 R0 SYMATTR InstName CL13 SYMATTR Value .1µ SYMATTR SpiceLine Rser=0.1 SYMBOL cap 752 1392 R0 SYMATTR InstName CL12C SYMATTR Value .1µ SYMATTR SpiceLine Rser=0.1 SYMBOL cap 752 1552 R0 SYMATTR InstName CL23C SYMATTR Value .1µ SYMATTR SpiceLine Rser=0.1 SYMBOL cap 848 1392 R0 SYMATTR InstName CL13C SYMATTR Value .1µ SYMATTR SpiceLine Rser=0.1 SYMBOL ind -64 464 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 5 56 VBottom 0 SYMATTR InstName L_N SYMATTR Value {L_WIRE} SYMATTR SpiceLine Rser=1m Rpar=1e6 SYMBOL ind -64 608 R270 WINDOW 0 32 56 VTop 0 WINDOW 3 5 56 VBottom 0 SYMATTR InstName L_PE SYMATTR Value {L_WIRE} SYMATTR SpiceLine Rser=1m Rpar=1e6 SYMBOL diode -416 1168 M180 WINDOW 0 24 72 Left 0 WINDOW 3 24 0 Left 0 SYMATTR InstName D2 SYMATTR Value MR760 SYMBOL diode -272 1168 M180 WINDOW 0 24 72 Left 0 WINDOW 3 24 0 Left 0 SYMATTR InstName D3 SYMATTR Value MR760 SYMBOL diode -560 1664 M180 WINDOW 0 24 72 Left 0 WINDOW 3 24 0 Left 0 SYMATTR InstName D4 SYMATTR Value MR760 SYMBOL diode -416 1664 M180 WINDOW 0 24 72 Left 0 WINDOW 3 24 0 Left 0 SYMATTR InstName D5 SYMATTR Value MR760 SYMBOL diode -272 1664 M180 WINDOW 0 24 72 Left 0 WINDOW 3 24 0 Left 0 SYMATTR InstName D6 SYMATTR Value MR760 SYMBOL diode 976 1328 M90 WINDOW 0 0 32 VBottom 0 WINDOW 3 32 32 VTop 0 SYMATTR InstName D7 SYMATTR Value MR760 SYMBOL diode 976 1488 M90 WINDOW 0 0 32 VBottom 0 WINDOW 3 32 32 VTop 0 SYMATTR InstName D8 SYMATTR Value MR760 SYMBOL diode 976 1648 M90 WINDOW 0 0 32 VBottom 0 WINDOW 3 32 32 VTop 0 SYMATTR InstName D9 SYMATTR Value MR760 TEXT -1072 -248 Left 0 !.tran 0 100m 20u 10u TEXT -992 -8 Left 0 ;Three phase system in clockwise configuration.\nClockwise: Peak Order V1, V2, V3 TEXT 144 -584 Left 0 ;Some references\n---------------------------\nhttp://www.allaboutcircuits.com/vol_2/chpt_10/3.html\nhttp://www.zum.de/dwu/depot/pem112f.gif\nREVIEW: \nPhase rotation, or phase sequence, is the order in which the voltage waveforms\n of a polyphase AC source reach their respective peaks. For a three-phase system,\n there are only two possible phase sequences: 1-2-3 and 3-2-1, corresponding to the\n two possible directions of alternator rotation. \nPhase rotation has no impact on resistive loads, but it will have impact on unbalanced \nreactive loads, as shown in the operation of a phase rotation detector circuit. \nPhase rotation can be reversed by swapping any two of the three "hot" leads supplying\n three-phase power to a three-phase load. TEXT -504 568 Left 0 ;Safety Ground TEXT -1072 -416 Left 0 !.PARAM R_WIRE=0.5 TEXT -760 -416 Left 0 ;Value depends mainly on your inhouse wire length and wire cross section.\nSet R_WIRE to 1u (micro) for the ideal case and 0.5 Ohm for your home. TEXT -1040 160 Left 0 ;U TEXT -616 160 Left 0 ;V TEXT -192 160 Left 0 ;W TEXT -1040 288 Left 0 ;X TEXT -608 280 Left 0 ;Y TEXT -176 280 Left 0 ;Z TEXT -472 424 Left 0 ;Neutral TEXT 424 408 Left 0 ;Three Phase Y (Star)-Connection TEXT 416 -32 Left 0 ;Three Phase TEXT 600 -32 Left 0 ;(Delta)-Connection TEXT -544 768 Left 0 ;R_dummy1 avoids the simulator warning about single connection to net. TEXT 800 1248 Left 0 ;Half Wave Rectifier Circuit TEXT 448 1136 Left 0 !.MODEL SW1 SW(Ron=1m, Roff=1G, Vt=0.5) TEXT -568 960 Left 0 ;Full Wave Rectifier Circuit TEXT 752 1104 Left 0 ;Switch model TEXT -712 1824 Left 0 ;SPICE needs always a DC-path to net "0". R_dummy2 solves that problem. TEXT -856 224 Left 0 ;50Hz TEXT -440 224 Left 0 ;50Hz TEXT -16 224 Left 0 ;50Hz TEXT -1080 -336 Left 0 !.PARAM L_WIRE=25u TEXT -760 -336 Left 0 ;Set L_WIRE to 1u (micro)) for the ideal case and 10u..50u Henry for your \nreal case. The value depends on your total wire length( inhouse length plus \nthe distance to the next electrical power station. TEXT -1080 -128 Left 0 !.OPTIONS PLOTWINSIZE=0 TEXT 576 928 Left 0 ;Switch Control TEXT -1080 -192 Left 0 !.OPTIONS METHOD=GEAR TEXT -280 -16 Left 0 ;Power Outlet Equivalent Circuit TEXT -760 -192 Left 0 ;Simulation problem with MUR460 diode and Mod. Trap method solved with Gear.\nThe problem could be solved with Rpar=10k for every inductor too. TEXT -760 -128 Left 0 ;Switch data compression off if you do .FOUR analysis or FFT. TEXT -1056 -792 Left 0 ;THREE PHASE MAINS POWER by Helmut Sennewald, 6/12/2004 TEXT -1072 -504 Left 0 !.PARAM Veff=230 TEXT -856 -504 Left 0 !.PARAM Vpeak=Veff*sqrt(2) TEXT -1072 -472 Left 0 !.PARAM FREQ=50 TEXT 432 -136 Left 0 ;EXAMPLES FOR THREE PHASE LOADS TEXT -736 1176 Left 0 ;C-Filter TEXT 784 1312 Left 0 ;C-Filter TEXT -1064 -712 Left 0 ;Plot V(L1) V(L2) V(L3) for three phase voltage.\n \nPlot V(OUT+,OUT-) for full wave rectifier voltage. LINE Normal 572 -43 558 -23 LINE Normal 585 -23 572 -43 LINE Normal 558 -23 585 -23 RECTANGLE Normal 960 1168 368 896 2 RECTANGLE Normal 288 816 -1088 -80 2 RECTANGLE Normal 288 1904 -1184 896 2 RECTANGLE Normal 1552 1904 368 1200 2 RECTANGLE Normal 960 816 368 368 2 RECTANGLE Normal 960 320 368 -80 2