/********** Copyright 1990 Regents of the University of California. All rights reserved. Author: 1985 Thomas L. Quarles Modified: September 2003 - Paolo Nenzi **********/ #include "ngspice/ngspice.h" #include "ngspice/devdefs.h" #include "capdefs.h" #include "ngspice/suffix.h" IFparm CAPpTable[] = { /* parameters */ IOPAP("capacitance", CAP_CAP, IF_REAL, "Device capacitance"), IOPAPR("cap", CAP_CAP, IF_REAL, "Device capacitance"), IOPAPR("c", CAP_CAP, IF_REAL, "Device capacitance"), IOPAU("ic", CAP_IC, IF_REAL, "Initial capacitor voltage"), IOPZU("temp", CAP_TEMP, IF_REAL, "Instance operating temperature"), IOPZ( "dtemp", CAP_DTEMP, IF_REAL, "Instance temperature difference from the rest of the circuit"), IOPAU("w", CAP_WIDTH, IF_REAL, "Device width"), IOPAU("l", CAP_LENGTH, IF_REAL, "Device length"), IOPU( "m", CAP_M, IF_REAL, "Parallel multiplier"), IOPU( "tc1", CAP_TC1, IF_REAL, "First order temp. coefficient"), IOPU( "tc2", CAP_TC2, IF_REAL, "Second order temp. coefficient"), IOP( "bv_max", CAP_BV_MAX, IF_REAL, "maximum voltage over capacitance"), IOPU( "scale", CAP_SCALE, IF_REAL, "Scale factor"), IP( "sens_cap", CAP_CAP_SENS, IF_FLAG, "flag to request sens. WRT cap."), OP( "i", CAP_CURRENT, IF_REAL, "Device current"), OP( "p", CAP_POWER, IF_REAL, "Instantaneous device power"), OPU( "sens_dc", CAP_QUEST_SENS_DC, IF_REAL, "dc sensitivity "), OPU( "sens_real", CAP_QUEST_SENS_REAL, IF_REAL, "real part of ac sensitivity"), OPU( "sens_imag", CAP_QUEST_SENS_IMAG, IF_REAL, "dc sens. & imag part of ac sens."), OPU( "sens_mag", CAP_QUEST_SENS_MAG, IF_REAL, "sensitivity of ac magnitude"), OPU( "sens_ph", CAP_QUEST_SENS_PH, IF_REAL, "sensitivity of ac phase"), OPU( "sens_cplx", CAP_QUEST_SENS_CPLX, IF_COMPLEX, "ac sensitivity") }; IFparm CAPmPTable[] = { /* names of model parameters */ IOPA( "cap", CAP_MOD_CAP, IF_REAL, "Model capacitance"), IOPA( "cj", CAP_MOD_CJ, IF_REAL, "Bottom Capacitance per area"), IOPAR( "cox", CAP_MOD_CJ, IF_REAL, "Bottom Capacitance per area"), IOPA( "cjsw", CAP_MOD_CJSW, IF_REAL, "Sidewall capacitance per meter"), IOPAR( "capsw", CAP_MOD_CJSW, IF_REAL, "Sidewall capacitance per meter"), IOPX( "defw", CAP_MOD_DEFWIDTH, IF_REAL, "Default width"), IOPXR( "w", CAP_MOD_DEFWIDTH, IF_REAL, "Default width"), IOPX( "defl", CAP_MOD_DEFLENGTH,IF_REAL, "Default length"), IOPXR( "l", CAP_MOD_DEFLENGTH,IF_REAL, "Default length"), IOPA( "narrow", CAP_MOD_NARROW, IF_REAL, "width correction factor"), IOPA( "short", CAP_MOD_SHORT, IF_REAL, "length correction factor"), IOPA( "del", CAP_MOD_DEL, IF_REAL, "length and width correction factor"), IOPA( "tc1", CAP_MOD_TC1, IF_REAL, "First order temp. coefficient"), IOPA( "tc2", CAP_MOD_TC2, IF_REAL, "Second order temp. coefficient"), IOPXU("tnom", CAP_MOD_TNOM, IF_REAL, "Parameter measurement temperature"), IOPA( "di", CAP_MOD_DI, IF_REAL, "Relative dielectric constant"), IOPA( "thick", CAP_MOD_THICK, IF_REAL, "Insulator thickness"), IOP( "bv_max", CAP_MOD_BV_MAX, IF_REAL, "maximum voltage over capacitance"), IP( "c", CAP_MOD_C, IF_FLAG, "Capacitor model") }; char *CAPnames[] = { "C+", "C-" }; int CAPnSize = NUMELEMS(CAPnames); int CAPpTSize = NUMELEMS(CAPpTable); int CAPmPTSize = NUMELEMS(CAPmPTable); int CAPiSize = sizeof(CAPinstance); int CAPmSize = sizeof(CAPmodel);