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    • 62. 发明授权
    • Card edge connector having improved ejector
    • 卡边连接器具有改进的喷射器
    • US08616903B2
    • 2013-12-31
    • US13528872
    • 2012-06-21
    • Zhuang-Xing LiXiao-Zhi FuXue-Hai ShenZe-Lin Yao
    • Zhuang-Xing LiXiao-Zhi FuXue-Hai ShenZe-Lin Yao
    • H01R13/62
    • H01R12/721
    • A card edge connector (100) includes an insulative housing, a set of contacts (2) retained in the insulative housing and an ejector (3). The insulative housing has a central slot (12) and at least one tower portion (13). The tower portion includes a pair of outer walls (131) and a receiving slot (135) formed between the outer walls. Each outer wall has a ladder with a circular hole (1312) formed therein. The ejector has a pair of spindles (312) received in the circular holes and a pair of standoffs (313). Each standoff has a horizontal surface (3131) abutting against a corresponding horizontal resisting surface (1314) formed on the ladder so as to make centers of the spindle and the circular hole overlap when the ejector rotates inwardly.
    • 卡缘连接器(100)包括绝缘壳体,保持在绝缘壳体中的一组触点(2)和喷射器(3)。 绝缘壳体具有中心槽(12)和至少一个塔架部分(13)。 塔架部分包括形成在外壁之间的一对外壁(131)和接收槽(135)。 每个外壁具有形成在其中的圆形孔(1312)的梯子。 喷射器具有容纳在圆形孔中的一对主轴(312)和一对支座(313)。 每个支座具有与形成在梯子上的对应的水平阻力表面(1314)抵接的水平表面(3131),以便当喷射器向内旋转时使主轴和圆形孔的中心重叠。
    • 63. 发明授权
    • Card edge connector
    • 卡缘连接器
    • US08535077B2
    • 2013-09-17
    • US13331373
    • 2011-12-20
    • Xue-Hai ShenZhuang-Xing LiWen-Jun TangXue-Wu Bu
    • Xue-Hai ShenZhuang-Xing LiWen-Jun TangXue-Wu Bu
    • H01R13/62
    • H01R12/737H01R13/6275H01R13/639
    • A card edge connector for mating with a corresponding daughter card 200 with a locking notch 201 at a side thereof, comprises: an insulative housing 1, a plurality of contacts 2 assembled to the insulative housing 1 and an ejector 3 and a locking member 4 set on two longitudinal ends of the insulative housing 1. The insulative housing defines a central slot 14 along the longitudinal direction. The locking member 4 is formed with a retention portion 41 and a pair of elastic arms 42 extending upwardly from the retention portion 41 and symmetrically located on two opposite sides of the central slot along a transverse direction perpendicular to longitudinal direction, each elastic arm 42 having a locking portion 321 protruding toward each other for locking with the locking notch 201 of the daughter card 200.
    • 一个卡边缘连接器,用于与相应的子卡200配合,在其一侧具有锁定凹口201,包括:绝缘壳体1,组装到绝缘壳体1上的多个触点2和一个弹出器3和一个锁定构件4 在绝缘壳体1的两个纵向端部上。绝缘壳体沿纵向方向限定中心狭槽14。 锁定构件4形成有保持部分41和从保持部分41向上延伸并沿着垂直于纵向方向的横向方向对称地位于中心槽的两个相对侧上的一对弹性臂42,每个弹性臂42具有 锁定部分321彼此突出,以与子卡200的锁定凹口201锁定。
    • 67. 发明授权
    • Compression scheme selection based on image data type and user selections
    • 基于图像数据类型和用户选择的压缩方案选择
    • US08345998B2
    • 2013-01-01
    • US12853831
    • 2010-08-10
    • Amal Z. MalikClara Cuciurean-ZapanXing Li
    • Amal Z. MalikClara Cuciurean-ZapanXing Li
    • G06K9/36G06K9/34
    • H04N1/3333H03M7/3064H03M7/607H03M7/6082H04N2201/33357
    • Disclosed is a processor-implemented method for processing image data comprising a plurality of pixels and system for performing the method. The method includes the following acts: determining at least one type of data represented by the plurality of pixels, determining, for each type of data, a number of pixels from the image data representing that type of data in the image data, and determining a compression scheme for compressing the image data based on a relative or absolute amount of each type of data in accordance with a predetermined scheme. The type of data may be determined by received input (e.g., user selected type and compression quality) or by analyzing its pixels and comparing it to thresholds. Basing the compression technique on the data type allows for better selection of a compression technique (e.g., MRC or JPEG), and thus greater image quality, compression ratios, and file size.
    • 公开了一种用于处理包括多个像素的图像数据的处理器实现的方法和用于执行该方法的系统。 该方法包括以下动作:确定由多个像素表示的至少一种类型的数据,对于每种类型的数据,从表示图像数据中的该类型的数据的图像数据中确定一数量的像素,并且确定 压缩方案,用于根据预定方案基于每种类型的数据的相对或绝对量压缩图像数据。 数据的类型可以由接收的输入(例如,用户选择的类型和压缩质量)或通过分析其像素并将其与阈值进行比较来确定。 基于数据类型的压缩技术可以更好地选择压缩技术(例如,MRC或JPEG),从而更好地选择图像质量,压缩比和文件大小。