A two phase wind power generator system for producing an electrical output having twice the voltage relative to single phase systems includes a shaft connected to an external shaft rotator, a generator aspect integral with the shaft and an output aspect connected to the generator aspect. The generat
A two phase wind power generator system for producing an electrical output having twice the voltage relative to single phase systems includes a shaft connected to an external shaft rotator, a generator aspect integral with the shaft and an output aspect connected to the generator aspect. The generator aspect includes a power source, switching commutator with integrated brushes, first rotor assembly, first stator assembly, second rotor assembly, and a second stator assembly, with the switching commutator, the first rotor assembly and second rotor assembly discretely mounted to shaft, with the rotor assemblies oriented 180 degrees out of phase. The power source energizes the rotor assemblies, and when the shaft is rotated by an external force, electricity is induced in the stator assemblies. The output aspect is operative to receive electricity induced thereby and convert it to a desired form of electrical current as well as combine it for output.
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1. A two phase wind power generator system for producing electricity from rotation force, comprising: a shaft mechanically connected to an external shaft rotator, where the external shaft rotator is a wind turbine, so as to allow the shaft to be rotated;a generator aspect having a power source, wher
1. A two phase wind power generator system for producing electricity from rotation force, comprising: a shaft mechanically connected to an external shaft rotator, where the external shaft rotator is a wind turbine, so as to allow the shaft to be rotated;a generator aspect having a power source, wherein said power source is a 12V battery, a switching commutator integrated with a pair of brushes, a first rotor assembly, a first stator assembly, a second rotor assembly, second stator assembly, wherein said switching commutator, the first rotor assembly and second rotor assembly are each mounted to the shaft at discrete locations, and said first rotor assembly and second rotor assembly define a pair of wound electromagnetic rotors, and the first stator assembly and second stator assembly define identical windings with an iron core;said generator aspect configured to generate an isolated first electrical current and an isolated second electrical current from the rotation of the shaft by the external shaft rotator, wherein the first electrical current and second electrical current are 180 degrees out of phase, wherein said commutator reverses polarity of the first rotor assembly and second rotor assembly so that the first rotor assembly and second rotor assembly remain at a 180 degree difference; andan output aspect electrically connected to said generator aspect, wherein said output aspect is configured such that when the first electrical current and second electrical current are generated by the generator aspect, the output aspect rectifies said first electrical current and second electrical current and combines said first electrical current and second electrical current to form a constant electrical output creating double the voltage of either the first electrical current or the second electrical current. 2. The two phase wind power generator system of claim 1, wherein the first rotor assembly is operatively aligned with the first stator assembly and the second rotor assembly is operatively aligned with the second stator assembly. 3. The two phase wind power generator system of claim 2, wherein said generator aspect is configured to generate the isolated first electrical current and the isolated second electrical current through the supply of electrical power from the power source to the first rotor assembly in a first direction and to the second rotor assembly in a second direction such that the rotation of the shaft causes the first rotor assembly to induce the first electrical current in the first stator assembly and the second rotor assembly to induce the second electrical current in the second stator assembly. 4. The two phase wind power generator system of claim 1, wherein said output aspect includes a plurality of rectifiers. 5. The two phase wind power generator system of claim 1, wherein said output aspect is configured such that when the first electrical current and second electrical current are generated by the generator aspect, the output aspect rectifies said first electrical current and second electrical current and combines said first electrical current and second electrical current. 6. A method of two phase electrical power generating, comprising the steps of: mechanically connecting a shaft to an external shaft rotator, where the external shaft rotator is a wind turbine, so as to allow the shaft to be rotated;providing a generator aspect having a power source, a switching commutator integrated with a pair of brushes, a first rotor assembly, a first stator assembly, a second rotor assembly, second stator assembly,mounting said switching commutator, the first rotor assembly and second rotor assembly to the shaft at discrete locations such that the first rotor assembly is operatively aligned with the first stator assembly and the second rotor assembly is operatively aligned with the second stator assembly;supplying by said power source electrical power to the first rotor assembly in a first direction and to the second rotor assembly in a second direction such that the rotation of the shaft causes the first rotor assembly to induce a first electrical current in the first stator assembly and the second rotor assembly to induce a second electrical current in the second stator assembly, wherein the first electrical current and second electrical current are 180 degrees out of phase, wherein said commutator reverses polarity of the first rotor assembly and second rotor assembly so that the first rotor assembly and second rotor assembly remain at a 180 degree difference; andwhen the first electrical current and second electrical current are generated by the generator aspect, rectifying by an output aspect electrically connected to said generator aspect said first electrical current and second electrical current, to form a constant electrical output creating double the voltage of either the first electrical current or the second electrical current. 7. The method of claim 6, additionally comprising the step of combining said first electrical current and second electrical current once each has been rectified.
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