294 lines
7.3 KiB
Plaintext
Executable File
294 lines
7.3 KiB
Plaintext
Executable File
* Copyright © Linear Technology Corp. 2011. All rights reserved.
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*
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.subckt LT1962-1.5 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N011 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N011 4 10K
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C2 1 N004 25p
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Q5 1 N009 N010 0 FB temp=27
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R6 N010 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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R9 2 N009 57K
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R10 N009 4 244K
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962-1.5
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*
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.subckt LT1962-1.8 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N011 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N011 4 10K
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C2 1 N004 25p
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Q5 1 N009 N010 0 FB temp=27
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R6 N010 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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R9 2 N009 117K
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R10 N009 4 244K
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962-1.8
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*
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.subckt LT1962-2.5 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N011 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N011 4 10K
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C2 1 N004 25p
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Q5 1 N009 N010 0 FB temp=27
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R6 N010 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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R9 2 N009 256K
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R10 N009 4 244K
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962-2.5
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*
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.subckt LT1962-3.3 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N011 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N011 4 10K
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C2 1 N004 25p
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Q5 1 N009 N010 0 FB temp=27
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R6 N010 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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R9 2 N009 415K
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R10 N009 4 244K
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962-3.3
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*
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.subckt LT1962-3 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N011 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N011 4 10K
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C2 1 N004 25p
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Q5 1 N009 N010 0 FB temp=27
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R6 N010 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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R9 2 N009 356K
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R10 N009 4 244K
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962-3
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*
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.subckt LT1962-5 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N011 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N011 4 10K
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C2 1 N004 25p
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Q5 1 N009 N010 0 FB temp=27
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R6 N010 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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R9 2 N009 755K
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R10 N009 4 244K
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962-5
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*
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.subckt LT1962 1 2 3 4 5 6 7 8
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Q1 N007 N005 8 0 PN
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Q2 N005 N003 4 0 NA
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Q3 N003 N004 N010 0 NP temp=27
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C1 N003 N004 27p Rser=225K
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Q4 N004 N004 3 0 NP 10 temp=27
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R2 3 4 12K
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R3 N010 4 10K
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C2 1 N004 25p
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Q5 1 2 N009 0 FB temp=27
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R6 N009 3 107K
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A1 5 4 4 4 4 4 N002 4 SCHMITT Vt=.8 Vh=1m tau=10u
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G2 8 N004 N002 4 1.2µ
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G1 8 N003 N002 4 1.2µ
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R1 8 N005 600K
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R8 N007 1 .2
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A2 N006 0 N003 N003 N003 N003 4 N003 VARISTOR
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D3 0 N006 F
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G3 0 N006 1 N007 20m
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Q7 N004 N005 N007 0 P 1m
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D1 8 1 X
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C5 2 4 1p
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C6 1 4 10p
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C7 8 4 10p
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G4 0 N006 8 0 table(1.3 1m 2.4 3m 10 4m)
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C4 8 N003 5p Rser=.6G
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C8 3 4 1p
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G5 N006 0 N002 4 table(0 4m 1 0)
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C9 8 N004 300p Rser=.37G Rpar=6G
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D2 5 4 S
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.model P PNP(BF=100)
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.model NP NPN(Cje=1p Cjc=1p BF=150)
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.model NA NPN(BF=1Meg Cje=2p Cjc=2p Re=20)
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.model PN PNP(BF=30 Cje=300p Cjc=300p Tf=10n)
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.model FB NPN(Cje=5p Cjc=5p BF=150)
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.model F D(Ron=1m Roff=10K)
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.model X D(Ron=10 Vfwd=30 epsilon=.5)
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.model S D(Ron=3Meg Roff=100Meg Vfwd=.9 epsilon=.2 Ilimit=1u)
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.ends LT1962
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