********** * Bourns Inc * SPICE Models * SMCJxxxCA Family * 2019/11/07 ********** ********** * All rights reserved. Copyright © 2018 Bourns, Inc. * * These SPICE models model the nominal behavior within the limitations * of SPICE standard models. * * While the models strive to match actual device performance, not all * aspects of the performance of these models may correspond to actual * device behavior due to SPICE limitations. * * Simulations using these models should not be used to prove validity * of circuit design or any aspects of performance, due to inherent * inaccuracies of SPICE models. * * All simulations should be checked and correlated with actual bench * measurements of typical devices. * * These models may be updated or changed without notice. .SUBCKT SMCJ5.0CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.013meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0025 N=1.5 IBV=10m BV=6.7 CJO=6850p) .ENDS .SUBCKT SMCJ6.0CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.015meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0031 N=1.5 IBV=10m BV=7.02 CJO=6650p) .ENDS .SUBCKT SMCJ6.5CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.026meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0045 N=1.5 IBV=10m BV=7.02 CJO=6200p) .ENDS .SUBCKT SMCJ7.0CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.070meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0065 N=1.5 IBV=10m BV=8.19 CJO=5900p) .ENDS .SUBCKT SMCJ7.5CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.150meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0078 N=1.5 IBV=1m BV=8.77 CJO=5650p) .ENDS .SUBCKT SMCJ8.0CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.320meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0093 N=1.5 IBV=1m BV=9.36 CJO=5250p) .ENDS .SUBCKT SMCJ8.5CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 0.850meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0093 N=1.5 IBV=1m BV=9.92 CJO=4900p) .ENDS .SUBCKT SMCJ9.0CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 1.800meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0112 N=1.5 IBV=1m BV=10.55 CJO=4700p) .ENDS .SUBCKT SMCJ10CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 4meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0134 N=1.5 IBV=1m BV=11.70 CJO=4500p) .ENDS .SUBCKT SMCJ11CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 22meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0163 N=1.5 IBV=1m BV=12.85 CJO=4250p) .ENDS .SUBCKT SMCJ12CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 24meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0197 N=1.5 IBV=1m BV=14.00 CJO=4000p) .ENDS .SUBCKT SMCJ13CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 26meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0216 N=1.5 IBV=1m BV=15.15 CJO=3800p) .ENDS .SUBCKT SMCJ14CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 28meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0249 N=1.5 IBV=1m BV=16.40 CJO=3600p) .ENDS .SUBCKT SMCJ15CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 30meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0316 N=1.5 IBV=1m BV=17.60 CJO=3400p) .ENDS .SUBCKT SMCJ16CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 32meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0365 N=1.5 IBV=1m BV=18.75 CJO=3200p) .ENDS .SUBCKT SMCJ17CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 34meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0402 N=1.5 IBV=1m BV=19.90 CJO=3000p) .ENDS .SUBCKT SMCJ18CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 36meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0179 N=1.5 IBV=1m BV=21.05 CJO=2800p) .ENDS .SUBCKT SMCJ20CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 40meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0227 N=1.5 IBV=1m BV=23.35 CJO=2500p) .ENDS .SUBCKT SMCJ22CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 44meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0274 N=1.5 IBV=1m BV=25.65 CJO=2300p) .ENDS .SUBCKT SMCJ24CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 48meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0302 N=1.5 IBV=1m BV=28.10 CJO=2000p) .ENDS .SUBCKT SMCJ26CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 52meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0348 N=1.5 IBV=1m BV=30.40 CJO=1800p) .ENDS .SUBCKT SMCJ28CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 56meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0402 N=1.5 IBV=1m BV=32.75 CJO=1600p) .ENDS .SUBCKT SMCJ30CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 60meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0463 N=1.5 IBV=1m BV=35.05 CJO=1400p) .ENDS .SUBCKT SMCJ33CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 66meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0509 N=1.5 IBV=1m BV=38.65 CJO=1200p) .ENDS .SUBCKT SMCJ36CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 72meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0647 N=1.5 IBV=1m BV=42.10 CJO=1030p) .ENDS .SUBCKT SMCJ40CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 80meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0783 N=1.5 IBV=1m BV=46.75 CJO=930p) .ENDS .SUBCKT SMCJ43CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 86meg .MODEL Dtvs D (IS=1.0e-5 RS=0.0947 N=1.5 IBV=1m BV=50.30 CJO=830p) .ENDS .SUBCKT SMCJ45CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 90meg .MODEL Dtvs D (IS=1.0e-5 RS=0.1092 N=1.5 IBV=1m BV=52.65 CJO=770p) .ENDS .SUBCKT SMCJ48CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 96meg .MODEL Dtvs D (IS=1.0e-5 RS=0.1201 N=1.5 IBV=1m BV=56.10 CJO=700p) .ENDS .SUBCKT SMCJ51CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 102meg .MODEL Dtvs D (IS=1.0e-5 RS=0.1321 N=1.5 IBV=1m BV=59.70 CJO=650p) .ENDS .SUBCKT SMCJ54CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 108meg .MODEL Dtvs D (IS=1.0e-5 RS=0.1453 N=1.5 IBV=1m BV=63.15 CJO=610p) .ENDS .SUBCKT SMCJ58CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 116meg .MODEL Dtvs D (IS=1.0e-5 RS=0.1758 N=1.5 IBV=1m BV=67.80 CJO=570p) .ENDS .SUBCKT SMCJ60CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 120meg .MODEL Dtvs D (IS=1.0e-5 RS=0.1846 N=1.5 IBV=1m BV=70.20 CJO=550p) .ENDS .SUBCKT SMCJ64CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 128meg .MODEL Dtvs D (IS=1.0e-5 RS=0.2128 N=1.5 IBV=1m BV=74.85 CJO=530p) .ENDS .SUBCKT SMCJ70CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 140meg .MODEL Dtvs D (IS=1.0e-5 RS=0.2832 N=1.5 IBV=1m BV=81.90 CJO=490p) .ENDS .SUBCKT SMCJ75CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 150meg .MODEL Dtvs D (IS=1.0e-5 RS=0.3115 N=1.5 IBV=1m BV=87.70 CJO=460p) .ENDS .SUBCKT SMCJ78CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 156meg .MODEL Dtvs D (IS=1.0e-5 RS=0.3426 N=1.5 IBV=1m BV=91.25 CJO=430p) .ENDS .SUBCKT SMCJ85CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 170meg .MODEL Dtvs D (IS=1.0e-5 RS=0.3958 N=1.5 IBV=1m BV=99.20 CJO=400p) .ENDS .SUBCKT SMCJ90CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 180meg .MODEL Dtvs D (IS=1.0e-5 RS=0.4561 N=1.5 IBV=1m BV=105.50 CJO=370p) .ENDS .SUBCKT SMCJ100CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 200meg .MODEL Dtvs D (IS=1.0e-5 RS=0.6205 N=1.5 IBV=1m BV=117.00 CJO=340p) .ENDS .SUBCKT SMCJ110CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 220meg .MODEL Dtvs D (IS=1.0e-5 RS=0.7816 N=1.5 IBV=1m BV=128.50 CJO=330p) .ENDS .SUBCKT SMCJ120CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 240meg .MODEL Dtvs D (IS=1.0e-5 RS=0.9481 N=1.5 IBV=1m BV=140.00 CJO=300p) .ENDS .SUBCKT SMCJ130CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 260meg .MODEL Dtvs D (IS=1.0e-5 RS=0.9846 N=1.5 IBV=1m BV=151.50 CJO=280p) .ENDS .SUBCKT SMCJ150CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 300meg .MODEL Dtvs D (IS=1.0e-5 RS=0.5745 N=1.5 IBV=1m BV=176.00 CJO=240p) .ENDS .SUBCKT SMCJ160CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 320meg .MODEL Dtvs D (IS=1.0e-5 RS=0.7816 N=1.5 IBV=1m BV=187.50 CJO=220p) .ENDS .SUBCKT SMCJ170CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 2 3 Dtvs Rleak 1 2 340meg .MODEL Dtvs D (IS=1.0e-5 RS=0.9117 N=1.5 IBV=1m BV=199.00 CJO=200p) .ENDS .SUBCKT SMCJ180CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 360meg .MODEL Dtvs D (IS=1.0e-5 RS=0.9122 N=1.5 IBV=1m BV=211.50 CJO=190p) .ENDS .SUBCKT SMCJ200CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 400meg .MODEL Dtvs D (IS=1.0e-5 RS=1.2410 N=1.5 IBV=1m BV=235.50 CJO=170p) .ENDS .SUBCKT SMCJ220CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 440meg .MODEL Dtvs D (IS=1.0e-5 RS=1.6882 N=1.5 IBV=1m BV=259.00 CJO=160p) .ENDS .SUBCKT SMCJ250CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 500meg .MODEL Dtvs D (IS=1.0e-5 RS=1.9692 N=1.5 IBV=1m BV=294.00 CJO=150p) .ENDS .SUBCKT SMCJ300CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 600meg .MODEL Dtvs D (IS=1.0e-5 RS=1.1490 N=1.5 IBV=1m BV=353.00 CJO=130p) .ENDS .SUBCKT SMCJ350CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 700meg .MODEL Dtvs D (IS=1.0e-5 RS=1.8234 N=1.5 IBV=1m BV=411.50 CJO=110p) .ENDS .SUBCKT SMCJ400CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 800meg .MODEL Dtvs D (IS=1.0e-5 RS=2.8934 N=1.5 IBV=1m BV=470.50 CJO=90p) .ENDS .SUBCKT SMCJ440CA 1 2 * TERMINALS: T1 T2 Done 1 3 Dtvs Dtwo 4 3 Dtvs Dthr 4 5 Dtvs Dfou 2 5 Dtvs Rleak 1 2 880meg .MODEL Dtvs D (IS=1.0e-5 RS=3.3748 N=1.5 IBV=1m BV=517.50 CJO=80p) .ENDS *IMPORTANT NOTICE: YOUR access to SPICE MODELS created by Bourns, Inc., a California corporation (“Bourns”), is conditioned on YOUR acceptance of and agreement to comply with the terms of this SPICE Model License Agreement (this “Agreement”). *YOU confirm your acceptance of and agreement to comply with this Agreement by downloading a SPICE MODEL from the Bourns website. *AGREEMENT *1. 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