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/* autogenerated from "macros/Electrical/Diode.sci" */
function Diode() {
Diode.prototype.define = function Diode() {
this.Ids = 1.e-6;
this.Vt = 0.04;
this.Maxexp = 15;
this.R = 1.e8;
this.model = scicos_model();
this.model.rpar = new ScilabDouble([this.Ids],[this.Vt],[this.Maxexp],[this.R]);
this.model.in = new ScilabDouble([1]);
this.model.out = new ScilabDouble([1]);
this.model.sim = new ScilabString(["Diode"]);
this.model.blocktype = new ScilabString(["c"]);
this.model.dep_ut = new ScilabDouble([true,false]);
var mo = modelica();
mo.model = "Diode";
mo.inputs = "p";
mo.outputs = "n";
mo.parameters = list(["Ids","Vt","Maxexp","R"],list(this.Ids,this.Vt,this.Maxexp,this.R));
this.model.equations = new ScilabDouble([mo]);
this.exprs = string([[this.Ids],[this.Vt],[this.Maxexp],[this.R]]);
this.gr_i = new ScilabString(["xstringb(orig(1),orig(2),\"Diode\",sz(1),sz(2));"]);
this.x = standard_define([2,1],this.model,this.exprs,list(this.gr_i,0));
this.x.graphics.in_implicit = ["I"];
this.x.graphics.out_implicit = ["I"];
return new BasicBlock(this.x);
}
Diode.prototype.details = function Diode() {
return this.x;
}
Diode.prototype.get = function Diode() {
var options = {
Ids:["Saturation cuurent (A)",this.Ids],
Vt:["Voltage equivalent to temperature (Volt)",this.Vt],
Maxexp:["Max exponent for linear continuation",this.Maxexp],
R:["R (ohm)",this.R],
}
return options;
}
Diode.prototype.set = function Diode() {
this.Ids = parseFloat(arguments[0]["Ids"])
this.Vt = parseFloat(arguments[0]["Vt"])
this.Maxexp = parseFloat(arguments[0]["Maxexp"])
this.R = parseFloat(arguments[0]["R"])
this.exprs = arguments[0]["exprs"]
this.exprs = this.graphics.exprs;
while (true) {
[ok,this.Ids,this.Vt,this.Maxexp,this.R,this.exprs] = scicos_getvalue("Set Diode block parameter",["Saturation cuurent (A)","Voltage equivalent to temperature (Volt)","Max exponent for linear continuation","R (ohm)"],list("vec",1,"vec",1,"vec",1,"vec",1),this.exprs);
if (!ok) {
break;
}
this.model.rpar = new ScilabDouble([this.Ids],[this.Vt],[this.Maxexp],[this.R]);
this.model.equations.parameters = list(["Ids","Vt","Maxexp","R"],list(this.Ids,this.Vt,this.Maxexp,this.R));
this.graphics.exprs = new ScilabDouble([this.exprs]);
this.x.graphics = this.graphics;
this.x.model = this.model;
break;
}
return new BasicBlock(this.x);
}
}
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