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    • 33. 发明授权
    • Method and apparatus for mixed-mode optical proximity correction
    • 混合模式光学邻近校正的方法和装置
    • US06584609B1
    • 2003-06-24
    • US09514551
    • 2000-02-28
    • Christophe PierratYou-Ping ZhangFang-Cheng ChangHoyong ParkYao-Ting Wang
    • Christophe PierratYou-Ping ZhangFang-Cheng ChangHoyong ParkYao-Ting Wang
    • G06F1750
    • G03F1/70G03F1/36G06F17/5068
    • A semiconductor layout testing and correction system is disclosed. The system combines both rule-based optical proximity correction and model-based optical proximity correction in order to test and correct semiconductor layouts. In a first embodiment, a semiconductor layout is first processed by a rule-based optical proximity correction system and then subsequently processed by a model-based optical proximity correction system. In another embodiment, the system first processes a semiconductor layout with a rule-based optical proximity correction system and then selectively processes difficult features using a model-based optical proximity correction system. In yet another embodiment, the system selectively processes the various features of a semiconductor layout using a rule-based optical proximity correction system or a model-based optical proximity correction system.
    • 公开了一种半导体布局测试和校正系统。 该系统结合基于规则的光学邻近校正和基于模型的光学邻近校正,以便测试和校正半导体布局。 在第一实施例中,半导体布局首先由基于规则的光学邻近校正系统处理,然后由基于模型的光学邻近校正系统进行处理。 在另一个实施例中,系统首先使用基于规则的光学邻近校正系统处理半导体布局,然后使用基于模型的光学邻近校正系统来选择性地处理困难的特征。 在另一个实施例中,系统使用基于规则的光学邻近校正系统或基于模型的光学邻近校正系统选择性地处理半导体布局的各种特征。
    • 34. 发明授权
    • General purpose shape-based layout processing scheme for IC layout modifications
    • 用于IC布局修改的通用形状布局处理方案
    • US06523162B1
    • 2003-02-18
    • US09632080
    • 2000-08-02
    • Deepak AgrawalFang-Cheng ChangHyungjip KimYao-Ting WangMyunghoon Yoon
    • Deepak AgrawalFang-Cheng ChangHyungjip KimYao-Ting WangMyunghoon Yoon
    • G06F1750
    • G03F1/36G06F17/5081
    • Layout processing can be applied to an integrated circuit (IC) layout using a shape-based system. A shape can be defined by a set of associated edges in a specified configuration. A catalog of shapes is defined and layout processing actions are associated with the various shapes. Each layout processing action applies a specified layout modification to its associated shape. A shape-based rule system advantageously enables efficient formulation and precise application of layout modifications. Shapes/actions can be provided as defaults, can be retrieved from a remote source, or can be defined by the user. The layout processing actions can be compiled in a bias table. The bias table can include both rule-based and model-based actions, and can also include single-edge shapes for completeness. The scanning of the IC layout can be performed in order of increasing or decreasing complexity, or can be specified by the user. The appropriate layout processing actions are applied to matching portions of the IC layout to form the corrected photomask layout. This process can be sequential or batch mode. Shape and action conflicts can be resolved by marking identified/modified elements or by designing rules for orderly resolution of any inconsistencies or overlaps.
    • 布局处理可以应用于使用基于形状的系统的集成电路(IC)布局。 形状可以由指定配置中的一组关联边界来定义。 定义了一个形状的目录,并且布局处理动作与各种形状相关联。 每个布局处理动作都对其关联的形状应用指定的布局修改。 基于形状的规则系统有利地实现了布局修改的有效配置和精确应用。 形状/动作可以作为默认值提供,可以从远程源检索,也可以由用户定义。 布局处理动作可以在偏置表中进行编译。 偏置表可以包括基于规则的和基于模型的动作,并且还可以包括单边形状以获得完整性。 IC布局的扫描可以按照增加或减少的复杂性的顺序执行,或者可以由用户指定。 将适当的布局处理动作应用于IC布局的匹配部分以形成校正的光掩模布局。 此过程可以是顺序或批处理模式。 形状和行动冲突可以通过标记识别/修改的元素或通过设计规则来解决,以有序地解决任何不一致或重叠。
    • 36. 发明授权
    • Electrical connector
    • 电连接器
    • US08262417B1
    • 2012-09-11
    • US13210472
    • 2011-08-16
    • Yao-Ting WangYu-Hung Su
    • Yao-Ting WangYu-Hung Su
    • H01R24/00
    • H01R13/6581H01R12/724
    • An electrical connector includes an insulating housing, a dielectric body, a plurality of conductive terminals and a metallic piece. The insulating housing has a top wall, a bottom wall, a rear wall and two opposite side walls which together define an accommodating space thereamong. Two sides of a bottom of the top wall define two receiving grooves. The dielectric body has a base portion fastened in the rear wall, and a tongue portion penetrating forward through the rear wall to be inserted in the accommodating space. The conductive terminals are disposed in the dielectric body. The metallic piece has a base plate molded in the top wall. Two sides of the base plate respectively define an opening corresponding to the receiving groove. A front side of the opening is slantwise bent upward to form a clipping portion located in the receiving groove.
    • 电连接器包括绝缘壳体,电介质体,多个导电端子和金属片。 绝缘壳体具有顶壁,底壁,后壁和两个相对的侧壁,它们共同限定了容纳空间。 顶壁的底部的两侧限定两个接收槽。 电介质本体具有紧固在后壁中的基部,以及舌部,其穿过后壁向前穿过以插入容纳空间。 导电端子设置在电介质体内。 金属片具有模制在顶壁中的基板。 基板的两侧分别限定与接收槽对应的开口。 开口的前侧向上倾斜弯曲以形成位于接收槽中的夹持部。
    • 38. 发明授权
    • Card connector
    • 卡连接器
    • US08147262B1
    • 2012-04-03
    • US13214187
    • 2011-08-20
    • Yu-Hung SuYao-Ting Wang
    • Yu-Hung SuYao-Ting Wang
    • H01R13/62
    • G06K13/0831G06K13/0825
    • Disclosed is a card connector, which includes an insulative body, a plurality of the conductive terminals, a metal shell and a supporting plate. The insulative body has a main body in which a plurality of terminal slots is defined. The conductive terminals are respectively received in the terminal slot. The metal shell covers the insulative body and defines a receiving space therebetween. The supporting plate is movably disposed in the receiving space. The supporting plate has a swingable connecting portion. The front substrate can swing up and down relative to the rear substrate through the design of the supporting plate and the swingable connecting portion, so that the electronic card can be easily inserted into and ejected from the card connector without being damaged, thereby prolong the service life of the electronic card.
    • 公开了一种卡连接器,其包括绝缘体,多个导电端子,金属壳和支撑板。 绝缘体具有限定多个端子槽的主体。 导电端子分别接收在端子槽中。 金属壳覆盖绝缘体并且在它们之间限定接收空间。 支撑板可移动地设置在容纳空间中。 支撑板具有可摆动的连接部分。 前基板可以通过支撑板和可摆动连接部的设计相对于后基板上下摆动,使得电子卡可以容易地插入卡式连接器并从卡连接器中弹出而不被损坏,从而延长了服务 电子卡的生活。