The present invention relates to a wind power and solar light controller. The wind power and solar light controller supplies power, which is generated from a wind power generator and a solar light generator attached to a street lamp, to an electric bulb of the street lamp or a battery by converting the power. The wind power and solar light controller includes a case fabricated through an injection molding by using a synthetic resin, in which an upper portion of the case is open to form a receiving section for receiving a PCB; the PCB to control the power of the wind power generator and the solar light generator to supply the power to the street lamp or the battery by converting and supplying the power; a heat radiation plate made of aluminum, provided between the case and the PCB and having a heat radiation pin exposed out of the case to dissipate heat generated from the PCB to the outside; and an epoxy mold injected into the case for waterproof of the PCB to prevent rain from penetrating into the PCB received in the case. The present invention having the above configuration can reduce the manufacturing processes and the manufacturing costs as compared with a conventional controller having an aluminum case, and can prevent the malfunction of a temperature sensor, which is accommodated in the PCB to sense an atmospheric temperature, by effectively dissipating the heat generated from the PCB.
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