template NTLJS2103P d1 d2 g s d5 d6 #****************************************** # Model Generated by ON Discrete Eval Lab * # Copyright(c) ON Semiconductor * # All Rights Reserved * # UNPUBLISHED LICENSED SOFTWARE * # Contains Proprietary Information * # * # Commercial Use or Resale Restricted * ******************************************* # Model generated on Apr 8, 08 # MODEL FORMAT: Saber # Symmetry POWER MOS Model (Version 1.0) # External Node Designations # Node d1 -> Drain # Node d2 -> Drain # Node d5 -> Drain # Node d6 -> Drain # Node g -> Gate # Node s -> Source electrical d1,d2,g,s,d3,d4 { # BODY_BEGIN spr.rl d1 d2 =1e-9 spr.r2 d1 d5 =1e-9 spr.r3 d1 d6 =1e-9 # spt.t1 d1 g s =template=NTLJS2103P-MOSFET } # template NTLJS2103P-MOSFET d g s #************************************* # Model Generated by MODPEX * #Copyright(c) Symmetry Design Systems* # All Rights Reserved * # UNPUBLISHED LICENSED SOFTWARE * # Contains Proprietary Information * # Which is The Property of * # SYMMETRY OR ITS LICENSORS * #Commercial Use or Resale Restricted * # by Symmetry License Agreement * #************************************* # Model generated on Apr 8, 08 # MODEL FORMAT: Saber # Symmetry POWER MOS Model (Version 1.0) # External Node Designations # Node d -> Drain # Node g -> Gate # Node s -> Source electrical d,g,s { # BODY_BEGIN # Default values used in MM: # The voltage-dependent capacitances are # not included. Other default values are: # LD=0 CBD=0 CBS=0 CGBO=0 spm..model mm=(type=_p, level=1,is=1e-32,rd=1e-6, vto=-0.872178,lambda=0,kp=79.7334,rs=0.0225543, cgso=1.01283e-05,cgdo=3.67093e-07) spd..model md=(is=1.06008e-07,rs=0.0193123,n=1.5,bv=12, ibv=0.00025,eg=1,xti=1,tt=2.5e-09, cjo=3.24075e-10,vj=0.5,m=0.304284,FC=0.759241) # Default values used in MD1: # RS=0 EG=1.11 XTI=3.0 TT=0 # BV=infinite IBV=1mA spd..model md1=(is=1e-32,n=50, cjo=5.32821e-10,vj=0.539382,m=0.607649,fc=1e-08) # Default values used in MD2: # EG=1.11 XTI=3.0 TT=0 CJO=0 # BV=infinite IBV=1mA spd..model md2=(is=1e-10,n=0.449574,rs=3.00002e-06) # Default values used in MD3: # EG=1.11 XTI=3.0 TT=0 CJO=0 # RS=0 BV=infinite IBV=1mA spd..model md3=(is=1e-10,n=0.449574) spm.M1 n9 n7 s s =model=mm,l=100u,w=100u spd.d1 d s =model=md spr.rds s d =1.2e+08 spr.rd n9 d =0.00232516 spr.rg g n7 =15.7 spd.d2 n5 n4 =model=md1 spd.d3 n5 0 =model=md2 spr.rl n5 n10 =1 spf.fi2 n7 n9 i(spv.vfi2) =-1 spv.vfi2 n4 0 =0 spe.ev16 n10 0 n9 n7 =1 spc.cap n11 n10 =1.5067e-09 spf.fi1 n7 n9 i(spv.vfi1) =-1 spv.vfi1 n11 n6 =0 spr.rcap n6 n10 =1 spd.d4 n6 0 =model=md3 }