Capacitor solar container circuit patent

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본 발명을 태양광 컨테이너 장치에 관한 것으로, 더욱 상게하게는 간이 주거용 건물로 사용되는 컨테이너 장치에 개폐가 가능한 태양광 모듈을 결합하되, 날씨나 계절에 따라 상기 태양광 모듈의 개폐 및 동작

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Disclosed are embodiments for a container capacitor structure in which at least two container capacitors, e.g., an inner and outer container capacitor, are made concentric and nested with respect to one

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Disclosed are embodiments for a container capacitor structure in which at least two container capacitors, e.g., an inner and outer container capacitor, are made concentric and nested with respect to one

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Disclosed is a container capacitor structure and method of constructing it. An etch mask and etch are used to expose portions of an exterior surface of electrode ("bottom electrodes") of the container

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본 발명은 독립형 태양광 발전 시스템이 적용된 컨테이너 공간에 별도의 인허가 없이 설치가 가능하며 전기 공급이 어려운 지역에서도 태양광에 의해 생성되어 충전된 에너지를 활용할 수 있는 친환경 태양광

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Disclosed are embodiments for a container capacitor structure in which at least two container capacitors, e.g., an inner and outer container capacitor, are made concentric and nested with respect to one

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A method is provided for forming a bottom capacitor electrode. While requiring only one mask step, the process forms a container-within-container structure having a high surface area. Specifically, the

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Disclosed are embodiments for a container capacitor structure in which at least two container capacitors, e.g., an inner and outer container capacitor, are made concentric and nested with respect to one

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In another preferred implementation, the invention provides a method of forming a capacitor container over a substrate. According to a preferred aspect of this implementation, a conductive layer is

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Some previously-known capacitors include both electrostatic as well as electrolytic capacitors. Such capacitors have a relatively low capacitance, but are able to operate at voltages ranging from a few

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Disclosed are embodiments for a container capacitor structure in which at least two container capacitors, e.g., an inner and outer container capacitor, are made concentric and nested with respect to one

Capacitor solar container circuit patent

5 FAQs about [Capacitor solar container circuit patent]

What is a capacitor used for?

(Art. 99(1) European Patent Convention). The present invention relates to a capacitor used for a power conversion device etc., and more par-ticularly to a capacitor having a cooling mechanism. As one of components forming a power conver-sion device such as an inverter, a capacitor is used.

How is a metal cooling pipe arranged in a patent document 2?

In a case of the structure of Patent Document 2, although the metal cooling pipe is arranged with the metal cooling pipe passing through the capacitor case, in order to secure an insulation distance between the capacitor element and the cooling pipe, there are restric-tions on position of the cooling pipe.

Why is a capacitor cooled from only one side?

In a case of a structure of Patent Document 1, since the case of the capacitor and the wall portion pro-vided with the cooling water flow passage are different members, thermal resistances in heat transfer paths be-tween the capacitor elements and the cooling water are large. Further, the capacitor is cooled from only one side.

Does a film capacitor have a problem with heat re-sistance?

That is, although there is a concern that the film capacitor having the problem with heat re-sistance will suffer thermal damage even partly when the ambient temperature exceeds heat resistant tempera-ture of the film capacitor, the above configuration or struc-ture can effectively suppress such partial or local high-temperature.

Why is capacitor element 4 thermally protected?

In particular, since the capacitor el-ement 4 is enclosed with the refrigerant flow passages 27 at five surfaces except the opening surfaces 14 and 24, the whole of the capacitor element 4 is thermally pro-tected. This prevents the capacitor element 4 from being locally high temperature due to the ambient temperature of the atmosphere.

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