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公开(公告)号:US07993160B1
公开(公告)日:2011-08-09
申请号:US12832968
申请日:2010-07-08
Applicant: Yan Sun , Kai-Hsiang Chang , Kuo-Chin Lin
Inventor: Yan Sun , Kai-Hsiang Chang , Kuo-Chin Lin
IPC: H01R13/648
CPC classification number: H01R12/724 , H01R13/5045 , H01R13/6583 , H01R24/64
Abstract: An insulating housing defines an accommodating chamber and a receiving cavity in a bottom thereof. The bottom of the insulating housing defines a plurality of first terminal passages arranged at intervals along a traverse direction thereof and extends longitudinally to penetrate therethrough. The first terminal passages communicate with the accommodating chamber. A plurality of second terminal passages are arranged at intervals along a traverse direction thereof. A terminal module includes a terminal base disposed in the receiving cavity and a plurality of terminals molded together with the terminal base and arranged side by side. Each terminal has a fastening portion. A front end of the fastening portion extends forward to form a connecting portion which is arched upward and rearward to form a substantially oblique U-shaped bending portion. A free end of the bending portion extends along a tangent direction thereof to form a contacting portion.
Abstract translation: 绝缘壳体在其底部限定容纳室和容纳腔。 绝缘壳体的底部限定沿着其横向方向间隔设置的多个第一端子通道,并且纵向延伸以贯穿其中。 第一端子通道与容纳室连通。 多个第二端子通道沿其横向方向间隔设置。 端子模块包括设置在容纳腔中的端子台和与端子基座一起模制并且并排布置的多个端子。 每个端子具有紧固部分。 紧固部分的前端向前延伸以形成连接部分,该连接部分向上和向后拱形以形成基本上倾斜的U形弯曲部分。 弯曲部分的自由端沿其切线方向延伸以形成接触部分。
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公开(公告)号:US07922542B1
公开(公告)日:2011-04-12
申请号:US12757196
申请日:2010-04-09
Applicant: Ke-Qi Shu , Kai-Hsiang Chang , Kuo-Chin Lin
Inventor: Ke-Qi Shu , Kai-Hsiang Chang , Kuo-Chin Lin
IPC: H01R24/04
CPC classification number: H01R24/58 , H01R2105/00 , H01R2107/00
Abstract: An audio jack connector includes a dielectric housing, a signal terminal and a detection terminal. The dielectric housing defines a receiving trough at a top surface thereof. An opening is defined in the receiving trough with a notch communicated with a rear end thereof. A location slot is defined at a side of the dielectric housing to intersect the notch. The detection terminal is received in the location slot and has an inclined portion inclined towards the notch. The inclined portion has a protuberance provided on an outer surface thereof. The signal terminal is received in the receiving trough and has a concaved portion projected into the insertion hole from the opening and a cantilever arm located to the notch. A free end of the cantilever arm is inclined downward to form a pressing portion for pressing against the protuberance of the detection terminal.
Abstract translation: 音频插座连接器包括电介质外壳,信号端子和检测端子。 绝缘壳体在其顶表面处限定接收槽。 在接收槽中限定有开口,其具有与其后端连通的凹口。 定位槽限定在电介质外壳的与切口相交的一侧。 检测端子被容纳在位置槽中并且具有朝向槽口倾斜的倾斜部分。 倾斜部分具有设置在其外表面上的突起。 信号端子被容纳在接收槽中,并且具有从开口突出到插入孔中的凹部和位于凹口的悬臂。 悬臂的自由端向下倾斜以形成用于按压检测端子的突起的按压部。
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公开(公告)号:USD614582S1
公开(公告)日:2010-04-27
申请号:US29344783
申请日:2009-10-05
Applicant: Chao-Yong Ye , Kai-Hsiang Chang , Kuo-Chin Lin
Designer: Chao-Yong Ye , Kai-Hsiang Chang , Kuo-Chin Lin
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公开(公告)号:US20100100223A1
公开(公告)日:2010-04-22
申请号:US12603976
申请日:2009-10-22
Applicant: Lawrence Hendler , Kuo-Chin Lin , Svante Bjarne Wold
Inventor: Lawrence Hendler , Kuo-Chin Lin , Svante Bjarne Wold
CPC classification number: G05B23/0254 , G05B17/02 , G05B2219/1112 , G05B2219/32187 , G05B2219/32201 , G05B2219/45031 , G05B2223/02 , Y02P90/22 , Y02P90/86
Abstract: A method for monitoring a manufacturing process features acquiring metrology data for semiconductor wafers at the conclusion of a final process step for the manufacturing process (“Step a”). Data is acquired for a plurality of process variables for a first process step for manufacturing semiconductor wafers (“Step b”). A first mathematical model of the first process step is created based on the metrology data and the acquired data for the plurality of process variables for the first process step (“Step c”). Steps b and c are repeated for at least a second process step for manufacturing the semiconductor wafers (“Step d”). An nth mathematical model is created based on the metrology data and the data for the plurality of process variables for each of the n process steps ('Step e“). A top level mathematical model is created based on the metrology data and the models created by steps c, d and e (”Step f'). The top level mathematical model of Step f is based on those process variables that have a substantial effect on the metrology data.
Abstract translation: 在制造过程(“步骤a”)的最终处理步骤结束时,用于监测制造过程的方法特征在于获得半导体晶片的度量数据。 对于用于制造半导体晶片的第一工艺步骤的多个工艺变量获取数据(“步骤b”)。 基于测量数据和用于第一处理步骤(“步骤c”)的多个处理变量的获取数据,创建第一处理步骤的第一数学模型。 对于用于制造半导体晶片的至少第二工艺步骤重复步骤b和c(“步骤d”)。 基于计量学数据和用于n个处理步骤(“步骤e”)中的每一个的多个处理变量的数据创建第n个数学模型。 基于测量数据和步骤c,d和e(“Step f”)创建的模型创建顶级数学模型。 步骤f的顶级数学模型基于对测量数据具有实质性影响的过程变量。
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公开(公告)号:US07351113B2
公开(公告)日:2008-04-01
申请号:US11467121
申请日:2006-08-24
Applicant: Shih-An Lee , Kuo-Chin Lin , Kai-Hsiang Chang
Inventor: Shih-An Lee , Kuo-Chin Lin , Kai-Hsiang Chang
IPC: H01R24/04
CPC classification number: H01R24/58 , H01R13/703 , H01R2107/00
Abstract: An audio jack connector includes a dielectric housing, a plurality of terminals received in the dielectric housing and a nut received in the dielectric housing too. The dielectric housing has a first body. A nut fixing means protrudes from the bottom of the first body. The nut fixing means has a main body. A nut receiving cavity is defined on one end surface of the main body. A pair of recesses are defined in the inner surface of the nut receiving cavity. A hole is formed on the other end surface of the main body. The hole communicates with the nut receiving cavity and a reacting wall is defined on where the hole communicates with the nut receiving cavity. The nut includes a second body. A pair of limbs are defined on the outer surface of the second body and engage with the recesses.
Abstract translation: 音频插座连接器包括绝缘壳体,容纳在电介质壳体中的多个端子以及容纳在电介质壳体中的螺母。 绝缘壳体具有第一主体。 螺母固定装置从第一主体的底部伸出。 螺母固定装置具有主体。 螺母接收腔被限定在主体的一个端面上。 一对凹口限定在螺母接收腔的内表面中。 在主体的另一端面形成有孔。 该孔与螺母接收腔连通,并且在孔与螺母接收腔连通的位置上形成一个反应壁。 螺母包括第二体。 一对肢体限定在第二主体的外表面上并与凹部啮合。
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公开(公告)号:US20080050977A1
公开(公告)日:2008-02-28
申请号:US11467121
申请日:2006-08-24
Applicant: Shih-An Lee , Kuo-Chin Lin , Kai-Hsiang Chang
Inventor: Shih-An Lee , Kuo-Chin Lin , Kai-Hsiang Chang
IPC: H01R24/04
CPC classification number: H01R24/58 , H01R13/703 , H01R2107/00
Abstract: An audio jack connector includes a dielectric housing, a plurality of terminals received in the dielectric housing and a nut received in the dielectric housing too. The dielectric housing has a first body. A nut fixing means protrudes from the bottom of the first body. The nut fixing means has a main body. A nut receiving cavity is defined on one end surface of the main body. A pair of recesses are defined in the inner surface of the nut receiving cavity. A hole is formed on the other end surface of the main body. The hole communicates with the nut receiving cavity and a reacting wall is defined on where the hole communicates with the nut receiving cavity. The nut includes a second body. A pair of limbs are defined on the outer surface of the second body and engage with the recesses.
Abstract translation: 音频插座连接器包括绝缘壳体,容纳在电介质壳体中的多个端子以及容纳在电介质壳体中的螺母。 绝缘壳体具有第一主体。 螺母固定装置从第一主体的底部伸出。 螺母固定装置具有主体。 螺母接收腔被限定在主体的一个端面上。 一对凹口限定在螺母接收腔的内表面中。 在主体的另一端面形成有孔。 该孔与螺母接收腔连通,并且在孔与螺母接收腔连通的位置上形成一个反应壁。 螺母包括第二体。 一对肢体限定在第二主体的外表面上并与凹部啮合。
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公开(公告)号:US07151976B2
公开(公告)日:2006-12-19
申请号:US11229153
申请日:2005-09-16
Applicant: Kuo-Chin Lin
Inventor: Kuo-Chin Lin
IPC: G06F19/00
CPC classification number: G05B19/4184 , G05B2219/31357 , G05B2219/45031 , Y02P90/14 , Y02P90/86
Abstract: A method for detecting a fault condition of a manufacturing process involving acquiring data and developing a model based on a plurality of manufacturing related variables for a plurality of outputs of a manufacturing process. The method also involves identifying which of the manufacturing related variables have a substantial affect on the model for detecting faulty outputs of the manufacturing process. The method also involves updating the model by using the manufacturing related variables identified as having a substantial affect on the model to improve the ability of the model to detect faulty outputs of the manufacturing process.
Abstract translation: 一种用于检测制造过程的故障状况的方法,所述制造过程包括基于用于制造过程的多个输出的多个制造相关变量来获取数据和开发模型。 该方法还涉及确定哪些制造相关变量对于用于检测制造过程的错误输出的模型具有实质性影响。 该方法还涉及通过使用被识别为对模型具有实质性影响的制造相关变量来更新模型,以提高模型检测制造过程的错误输出的能力。
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