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path: root/js/Electrical/Switch.js
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/* autogenerated from "macros/Electrical/Switch.sci" */
function Switch() {
    Switch.prototype.define = function Switch() {
        model = scicos_model();
        Ron = 0.01;
        Roff = 1e5;
        S = [["Ron"],["Roff"]];
        Z = eval(S);
        model.sim = "Switch";
        model.blocktype = "c";
        model.dep_ut = [true,false];
        mo = modelica();
        mo.model = model.sim;
        mo.inputs = [["p"],["inp"]];
        mo.outputs = "n";
        mo.parameters = list(S,Z);
        model.equations = mo;
        model.in1 = ones(size(mo.inputs,"*"),1);
        model.out = ones(size(mo.outputs,"*"),1);
        model.rpar = Z;
        exprs = string(Z);
        gr_i = [];
        this.x = standard_define([2,2],model,exprs,list(gr_i,0));
        this.x.graphics.in_implicit = [["I"],["E"]];
        this.x.graphics.out_implicit = ["I"];
    }
    Switch.prototype.details = function Switch() {
        return this.x;
    }
    Switch.prototype.get = function Switch() {
    }
    Switch.prototype.set = function Switch() {
        this.x = arg1;
        graphics = arg1.graphics;
        exprs = graphics.exprs;
        model = arg1.model;
        while (true) {
            [ok,Ron,Roff,exprs] = scicos_getvalue("Set non-ideal electrical switch parameters",[["Resistance in On state (Ohm)"],["Resistance in Off state (Ohm)"]],list("vec",1,"vec",1),exprs);
            if (!ok) {
                break;
            }
            model.equations.parameters[2-1] = list(Ron,Roff);
            graphics.exprs = exprs;
            this.x.graphics = graphics;
            this.x.model = model;
            break;
        }
    }
}