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