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    • 5. 发明申请
    • EXCESS FLOW VALVE WITH FLEXIBLE DIAPHRAGM MEMBER
    • 具有柔性膜片成员的超流量阀
    • US20140097374A1
    • 2014-04-10
    • US13647542
    • 2012-10-09
    • Hyun Moon
    • Hyun Moon
    • F16K1/42B21D51/00
    • F16K17/28Y10T29/49405
    • An assembly for limiting excess flow includes a seat and a disc. The seat has an inner ring, an outer ring having a top surface tapering in a downstream direction from outer ring towards the inner ring, and a plurality of legs attaching the inner ring to the outer ring. The disc attaches to the inner ring and extends radially outwardly therefrom. The disk has an axially downstream surface that flexes into contact with the outer ring if the flow exceeds a limit around the disc, and a shoulder spacing the axially downstream surface from the inner ring to space the disc axially from the outer ring.
    • 用于限制过量流动的组件包括座椅和盘。 座椅具有内圈,外环具有从外环向内环向下游方向逐渐变细的顶表面,以及将内环连接到外圈的多个腿。 盘附接到内环并从其径向向外延伸。 如果流体超过圆盘周围的极限,则该圆盘具有一个轴向下游表面,该表面与外环弯曲成接触,而肩部间隔着内环的轴向下游表面,从而将圆盘与外圈轴向隔开。
    • 8. 发明申请
    • Aromatic enediyne derivatives, organic semiconductor thin films using the same and manufacturing methods thereof, and electronic devices incorporating such films
    • 芳香族烯衍生物,使用该衍生物的有机半导体薄膜及其制造方法以及包含这种膜的电子器件
    • US20070120120A1
    • 2007-05-31
    • US11583085
    • 2006-10-19
    • Eun JeongHyun MoonKook Han
    • Eun JeongHyun MoonKook Han
    • H01L51/00C07D409/14C07D333/28
    • H01L51/0545C07D333/18H01L51/0003H01L51/0068Y02E10/549Y02P70/521
    • Disclosed are aromatic enediyne derivatives, methods of manufacturing organic semiconductor thin films from such aromatic enediyne derivatives, and methods of fabricating electronic devices incorporating such organic semiconductor thin films. Aromatic enediyne derivatives according to example embodiments provide improved chemical and/or electrical stability which may improve the reliability of the resulting semiconductor devices. Aromatic enediyne derivatives according to example embodiments may also be suitable for deposition on various substrates via solution-based processes, for example, spin coating, at temperatures at or near room temperature to form a coating film that is then heated to form an organic semiconductor thin film. The availability of this reduced temperature processing allows the use of the aromatic enediynes derivatives on large substrate surfaces and/or on substrates not suitable for higher temperature processing. Accordingly, the organic semiconductor thin films according to example embodiments may be incorporated in thin film transistors, electroluminescent devices, solar cells, and memory devices.
    • 公开了芳族烯二炔衍生物,从这种芳族烯二炔衍生物制造有机半导体薄膜的方法,以及制造并入这种有机半导体薄膜的电子器件的方法。 根据示例性实施方案的芳族烯二炔衍生物提供改善的化学和/或电稳定性,其可以提高所得半导体器件的可靠性。 根据示例性实施方案的芳族烯二炔衍生物还可适用于通过基于溶液的方法例如旋涂,在室温或接近室温的温度下沉积在各种基材上,以形成涂膜,然后将其加热形成有机半导体薄膜 电影。 这种降低温度处理的可用性允许在大衬底表面上和/或不适于较高温度处理的衬底上使用芳族烯二炔衍生物。 因此,根据示例性实施例的有机半导体薄膜可以结合在薄膜晶体管,电致发光器件,太阳能电池和存储器件中。