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/* autogenerated from "macros/Electrical/ConstantVoltage.sci" */
function ConstantVoltage() {
ConstantVoltage.prototype.define = function ConstantVoltage() {
V=0.01;
model=scicos_model();
model.rpar=V;
model.in1=1;
model.out=1;
model.sim="ConstantVoltage";
model.blocktype="c";
model.dep_ut=[false,false];
mo=modelica();
mo.model="ConstantVoltage";
mo.inputs="p";
mo.outputs="n";
mo.parameters=list("V",list(V));
model.equations=mo;
exprs=string(V);
gr_i=[];
x=standard_define([1.5,1.1],model,exprs,list(gr_i,0));
x.graphics.in_implicit=["I"];
x.graphics.out_implicit=["I"];
}
ConstantVoltage.prototype.details = function ConstantVoltage() {
}
ConstantVoltage.prototype.get = function ConstantVoltage() {
}
ConstantVoltage.prototype.set = function ConstantVoltage() {
x=arg1;
graphics=arg1.graphics;
exprs=graphics.exprs;
model=arg1.model;
while (true) {
[ok,V,exprs]=scicos_getvalue("Set ConstantVoltage block parameter","V (volt)",list("vec",1),exprs);
if (!ok) {
break;
}
model.rpar=V;
model.equations.parameters[2-1]=list(V);
graphics.exprs=exprs;
x.graphics=graphics;
x.model=model;
break;
}
}
}
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