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    • 92. 发明申请
    • FLAT-PANEL DISPLAY MONITOR
    • 平板显示监视器
    • US20120057282A1
    • 2012-03-08
    • US13292204
    • 2011-11-09
    • JIN-XIN WANGCHAO-ZHONG FUJIAN LI
    • JIN-XIN WANGCHAO-ZHONG FUJIAN LI
    • H05K7/00
    • F16M13/00F16M11/10F16M11/16F16M2200/022F16M2200/041F16M2200/08
    • A flat-panel display monitor is disclosed. The flat-panel display monitor comprises a display body comprising a support portion formed at an edge thereof; and a support stand connected to the display body so that the support portion of the display body and the support cooperatively support the flat-panel display monitor, the support stand comprising a support member comprising a base portion and two arched plates extending from an end of the base portion; two friction members, each of the two friction members is rotatably clamped by each of the two arched plates; a first connecting bracket connected to first of the two friction members; and a second connecting bracket connected to second of the two friction members, wherein the second connecting bracket is detachably attached to the first connecting bracket.
    • 公开了一种平板显示器。 平板显示监视器包括显示体,该显示体包括形成在其边缘处的支撑部分; 以及连接到显示体的支撑台,使得显示体的支撑部分和支撑件协同地支撑平板显示监视器,支撑架包括支撑构件,支撑构件包括基部和两个拱形板, 基部; 两个摩擦构件,两个摩擦构件中的每一个由两个拱形板中的每一个可旋转地夹紧; 连接到所述两个摩擦构件中的第一个的第一连接支架; 以及第二连接支架,其连接到所述两个摩擦构件中的第二个,其中所述第二连接支架可拆卸地附接到所述第一连接支架。
    • 94. 发明授权
    • Organic semiconductor material and organic transistor using the same
    • 有机半导体材料和有机晶体管使用它们
    • US08101944B2
    • 2012-01-24
    • US12077473
    • 2008-03-18
    • Jian LiHiroyuki Fujii
    • Jian LiHiroyuki Fujii
    • H01L21/44
    • H01L51/0068C07D333/18C07D409/14H01L51/0036H01L51/0052H01L51/0071H01L51/0072H01L51/0094H01L51/0545
    • The invention relates to an organic semiconductor material with a high carrier mobility, which is capable of obtaining favorable semiconductor characteristics when used in an organic semiconductor device, and an organic transistor using the same. More specifically, the present invention has a following structure including an oligothiophene part and a connecting part G; where, R1 and R2 are a hydrogen, a alkyl group, an alkoxy group, an aryl group, or an alkenyl group, R1 and R2 may be identical or different from each other, and where n is an integer. In the organic semiconductor material, the structure of the connecting part G may be any of the following: where, R3 and R4 are a hydrogen, an alkyl group, an alkoxy group, an aryl group, or a alkenyl group, R3 and R4 may be identical or different from each other, and where n is an integer of 1 to 3.
    • 本发明涉及具有高载流子迁移率的有机半导体材料,当在有机半导体器件中使用时能够获得良好的半导体特性,以及使用该半导体的有机晶体管。 更具体地,本发明具有以下结构,其包括低聚噻吩部分和连接部分G; 其中,R 1和R 2为氢,烷基,烷氧基,芳基或烯基,R 1和R 2可以相同或不同,n为整数。 在有机半导体材料中,连接部分G的结构可以是以下任何一种:其中,R3和R4是氢,烷基,烷氧基,芳基或烯基,R3和R4可以 彼此相同或不同,并且其中n是1至3的整数。
    • 97. 发明申请
    • Reducing Energy Consumption of Set Associative Caches by Reducing Checked Ways of the Set Association
    • 通过减少集合关联检查方式降低设置关联缓存的能耗
    • US20110296112A1
    • 2011-12-01
    • US12787122
    • 2010-05-25
    • Jian LiWilliam E. SpeightLixin Zhang
    • Jian LiWilliam E. SpeightLixin Zhang
    • G06F12/08G06F12/00
    • G06F12/0864G06F12/0842G06F2212/1028G06F2212/6042G06F2212/6082Y02D10/13
    • Mechanisms for accessing a set associative cache of a data processing system are provided. A set of cache lines, in the set associative cache, associated with an address of a request are identified. Based on a determined mode of operation for the set, the following may be performed: determining if a cache hit occurs in a preferred cache line without accessing other cache lines in the set of cache lines; retrieving data from the preferred cache line without accessing the other cache lines in the set of cache lines, if it is determined that there is a cache hit in the preferred cache line; and accessing each of the other cache lines in the set of cache lines to determine if there is a cache hit in any of these other cache lines only in response to there being a cache miss in the preferred cache line(s).
    • 提供了访问数据处理系统的集合关联缓存的机制。 识别与集合关联高速缓存中的与请求的地址相关联的一组高速缓存行。 基于针对集合的确定的操作模式,可以执行以下操作:确定高速缓存命中是否发生在优选高速缓存行中,而不访问该组高速缓存行中的其他高速缓存行; 如果确定在所述优选高速缓存行中存在高速缓存命中,则从所述优选高速缓存行中检索数据而不访问所述一组高速缓存行中的其它高速缓存行; 以及访问该组高速缓存行中的每个其它高速缓存行,以仅在响应于优选高速缓存行中存在高速缓存未命中时确定在这些其它高速缓存行中的任何一个中是否存在高速缓存命中。
    • 100. 发明申请
    • HINGE MECHANISM
    • 铰链机械
    • US20110232035A1
    • 2011-09-29
    • US12915253
    • 2010-10-29
    • LIAN-CHENG HUANGJIAN LI
    • LIAN-CHENG HUANGJIAN LI
    • E05F1/12E05D5/10E05D11/10
    • G06F1/1681Y10T16/5387Y10T16/54Y10T16/540255Y10T16/557
    • The embodiment includes a hinge, a pivot shaft, a cam, and a cam follower. The pivot shaft includes an engaging portion bound by two curved surfaces and two non-rotatable surfaces. The cam is non-rotatably sleeved on the engaging portion of the pivot shaft and defines a noncircular hole and two cutouts. The noncircular hole is bound by two first contact surfaces and two second contact surfaces. The second contact surfaces are tangent to the curved surfaces of the engaging portion of the pivot shaft. The cam follower is rotatably sleeved on the engaging portion of the pivot shaft and resists the cam. The cam follower forms two peaks engaging with the cutouts in the cam.
    • 该实施例包括铰链,枢轴,凸轮和凸轮从动件。 枢轴包括由两个弯曲表面和两个不可旋转表面限定的接合部分。 凸轮不可旋转地套在枢转轴的接合部分上并且限定非圆形孔和两个切口。 非圆形孔由两个第一接触表面和两个第二接触表面结合。 第二接触表面与枢转轴的接合部分的弯曲表面相切。 凸轮从动件可旋转地套在枢转轴的接合部分上并抵抗凸轮。 凸轮从动件形成与凸轮中的切口接合的两个峰。