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    • 1. 发明授权
    • Fabrication monitoring system
    • 制造监控系统
    • US07127314B2
    • 2006-10-24
    • US10811087
    • 2004-03-25
    • Chin-Cheng PanChao-Fan ChangPai-Cheng HuangOliver Wu
    • Chin-Cheng PanChao-Fan ChangPai-Cheng HuangOliver Wu
    • G06F19/00
    • H01L21/67276
    • System and method for monitoring a fabrication process. Generally, an actual-to-planned variance is calculated by determining a daily part index as a percentage of the delta between the planned quantity and the actual quantity over the planned quantity. A weekly part index is calculated by averaging the daily part index over a predetermined time period. From the weekly part index, a site index is determined that takes into account products fabricated at a particular site. Furthermore, a planned-to-actual variance may be calculated by determining a daily part index as a percentage of the delta between the planned quantity and the actual quantity over the actual quantity. A weekly part index is calculated by averaging the daily part index over a predetermined time period. From the weekly part index, a site index is determined that takes into account products fabricated at a particular site.
    • 用于监控制造过程的系统和方法。 一般来说,实际计划的差异是通过将每日零件指数作为计划数量和实际数量之间的增量百分比来计算的。 通过在预定时间段内平均每日零件指数来计算每周零件指数。 从每周零件指数来看,确定了一个考虑到在特定场地制造的产品的站点索引。 此外,可以通过将每日零件指数确定为实际数量之间的计划数量和实际数量之间的差值的百分比来计算计划实际差异。 通过在预定时间段内平均每日零件指数来计算每周零件指数。 从每周零件指数来看,确定了一个考虑到在特定场地制造的产品的站点索引。
    • 2. 发明申请
    • Fabrication monitoring system
    • 制造监控系统
    • US20050216113A1
    • 2005-09-29
    • US10811087
    • 2004-03-25
    • Chin-Cheng PanChao-Fan ChangPai-Cheng HuangOliver Wu
    • Chin-Cheng PanChao-Fan ChangPai-Cheng HuangOliver Wu
    • G06F19/00H01L21/00
    • H01L21/67276
    • System and method for monitoring a fabrication process. Generally, an actual-to-planned variance is calculated by determining a daily part index as a percentage of the delta between the planned quantity and the actual quantity over the planned quantity. A weekly part index is calculated by averaging the daily part index over a predetermined time period. From the weekly part index, a site index is determined that takes into account products fabricated at a particular site. Furthermore, a planned-to-actual variance may be calculated by determining a daily part index as a percentage of the delta between the planned quantity and the actual quantity over the actual quantity. A weekly part index is calculated by averaging the daily part index over a predetermined time period. From the weekly part index, a site index is determined that takes into account products fabricated at a particular site.
    • 用于监控制造过程的系统和方法。 一般来说,实际计划的差异是通过将每日零件指数作为计划数量和实际数量之间的增量百分比来计算的。 通过在预定时间段内平均每日零件指数来计算每周零件指数。 从每周零件指数来看,确定了一个考虑到在特定场地制造的产品的站点索引。 此外,可以通过将每日零件指数确定为实际数量之间的计划数量和实际数量之间的差值的百分比来计算计划实际差异。 通过在预定时间段内平均每日零件指数来计算每周零件指数。 从每周零件指数来看,确定了一个考虑到在特定场地制造的产品的站点索引。
    • 3. 发明授权
    • Wireless communication device
    • 无线通信设备
    • US08884829B2
    • 2014-11-11
    • US13647482
    • 2012-10-09
    • Chuan-Chou ChiChih-Yang TsaiPai-Cheng HuangHao-Ying Chang
    • Chuan-Chou ChiChih-Yang TsaiPai-Cheng HuangHao-Ying Chang
    • H01Q1/24H01Q21/28
    • H01Q1/243H01Q3/24H01Q9/42H01Q21/28
    • A wireless communication device includes a first antenna, a second antenna, a first light sensor adjacent to the first antenna, a second light sensor adjacent to the second antenna, a controller, and a magnetic member movably located between the first antenna and the second antenna. When one of the first and second antennas in a state of receiving/transmitting wireless signals is covered by a user's hand, the nearby light sensor sends a pulse signal to the controller. The controller receiving the pulse signal controls the first and second antennas to change their magnetic polarity, enabling the magnetic member to be separated from one of the first and second antennas and attached to the another one, thereby choosing one of the first and second antennas, or a combination of one of the two antennas and the magnetic member to receive/transmit the wireless signals.
    • 无线通信设备包括第一天线,第二天线,与第一天线相邻的第一光传感器,与第二天线相邻的第二光传感器,控制器和可移动地位于第一天线和第二天线之间的磁性部件 。 当接收/发送无线信号状态的第一和第二天线中的一个被用户的手覆盖时,附近的光传感器向控制器发送脉冲信号。 接收脉冲信号的控制器控制第一和第二天线以改变它们的磁极性,使得磁性构件能够与第一和第二天线中的一个分离,并附接到另一个天线,从而选择第一和第二天线之一, 或两个天线中的一个和磁性构件的组合来接收/发送无线信号。
    • 6. 发明授权
    • Micro stacked type chip antenna
    • 微型堆叠式芯片天线
    • US07382325B1
    • 2008-06-03
    • US11559424
    • 2006-11-14
    • Yu-Shu ChaoChi-Ming ChiangPai-Cheng Huang
    • Yu-Shu ChaoChi-Ming ChiangPai-Cheng Huang
    • H01Q1/24
    • H01Q1/38
    • A micro stacked type chip antenna, wherein a plurality of elementary layers printed with radiation metallic electrodes are stacked up to allow the radiation metallic electrodes on the elementary layers to electrically connect each with its neighboring ones (one) of the radiation metallic electrodes on its upper one and/or lower one of the elementary layers; and then these elementary layers stacked up are packed in a packing process, a plurality of connecting pins are connected respectively with the radiation metallic electrodes on different elementary layers, the tailing end of each connecting pin is extended out of a packing envelop; by various options of connecting of the connecting pins, resonant frequencies of different band widths can be obtained.
    • 一种微型叠层型芯片天线,其中堆叠有多个辐射金属电极印刷的基本层,以使元件上的辐射金属电极与其上部的辐射金属电极之间的一个(一个)电连接在其上部 一个和/或一个基本层; 然后堆叠的这些基本层被包装在包装过程中,多个连接销分别与不同基本层上的辐射金属电极连接,每个连接销的尾端从包装包装中延伸出来; 通过连接引脚的连接的各种选择,可以获得不同带宽的谐振频率。
    • 7. 发明申请
    • MICRO STACKED TYPE CHIP ANTENNA
    • 微型堆叠型芯片天线
    • US20080111742A1
    • 2008-05-15
    • US11559424
    • 2006-11-14
    • Yu-Shu ChaoChi-Ming ChiangPai-Cheng Huang
    • Yu-Shu ChaoChi-Ming ChiangPai-Cheng Huang
    • H01Q1/38
    • H01Q1/38
    • A micro stacked type chip antenna, wherein a plurality of elementary layers printed with radiation metallic electrodes are stacked up to allow the radiation metallic electrodes on the elementary layers to electrically connect each with its neighboring ones (one) of the radiation metallic electrodes on its upper one and/or lower one of the elementary layers; and then these elementary layers stacked up are packed in a packing process, a plurality of connecting pins are connected respectively with the radiation metallic electrodes on different elementary layers, the tailing end of each connecting pin is extended out of a packing envelop; by various options of connecting of the connecting pins, resonant frequencies of different band widths can be obtained.
    • 一种微型叠层型芯片天线,其中堆叠有多个辐射金属电极印刷的基本层,以使元件上的辐射金属电极与其上部的辐射金属电极之间的一个(一个)电连接在其上部 一个和/或一个基本层; 然后堆叠的这些基本层被包装在包装过程中,多个连接销分别与不同基本层上的辐射金属电极连接,每个连接销的尾端从包装包装中延伸出来; 通过连接引脚的连接的各种选择,可以获得不同带宽的谐振频率。