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    • 2. 发明授权
    • System and method for verifying PCB layout
    • 验证PCB布局的系统和方法
    • US08402423B2
    • 2013-03-19
    • US13244625
    • 2011-09-25
    • Zheng ShanShi-Piao LuoChia-Nan PaiShou-Kuo Hsu
    • Zheng ShanShi-Piao LuoChia-Nan PaiShou-Kuo Hsu
    • G06F17/50G06F9/455
    • G06F17/5077
    • In a method for verifying a printed circuit board (PCB) layout using a computing device, a PCB simulation file is obtained from a storage device of the computing device, and a PCB image is displayed on a display device according to the PCB simulation file. The PCB image includes multiple signal lines and switching voltage regulator nodes (SVRN). A SVRN to be checked is selected from the PCB image, and all signal lines around the SVRN are searched. The method calculates a layout distance between the selected SVRN and each of the searched signal lines, and generates a graphical window interface to position a signal line whose layout distance is equal to or less than the minimum distance. The method further modifies the layout of the positioned signal line to satisfy a layout design specification by increasing the layout distance to the minimum distance.
    • 在使用计算装置验证印刷电路板(PCB)布局的方法中,从计算装置的存储装置获得PCB模拟文件,并且根据PCB仿真文件在显示装置上显示PCB图像。 PCB图像包括多个信号线和开关电压调节器节点(SVRN)。 从PCB图像中选择要检查的SVRN,并搜索SVRN周围的所有信号线。 该方法计算所选择的SVRN与所搜索的信号线之间的布局距离,并且生成图形窗口界面以定位其布局距离等于或小于最小距离的信号线。 该方法通过将布局距离增加到最小距离来进一步修改定位信号线的布局以满足布局设计规范。
    • 4. 发明授权
    • Computing device and method for checking signal transmission lines
    • 用于检查信号传输线的计算装置和方法
    • US08255864B2
    • 2012-08-28
    • US12961908
    • 2010-12-07
    • Jia-Lu YeShi-Piao LuoChia-Nan PaiShou-Kuo Hsu
    • Jia-Lu YeShi-Piao LuoChia-Nan PaiShou-Kuo Hsu
    • G06F17/50
    • G06F17/5081G06F2217/82
    • A computing device and a method selects a signal transmission line from a circuit board, computes an actual length of each line segment of the selected signal transmission line, and computes an actual distance between each line segment of the selected signal transmission line and a corresponding line segment of each neighboring signal transmission line. If each actual length is less than or equal to a corresponding reference length and each actual distance is more than or equal to a corresponding reference distance, the device and method determines a design of the selected signal transmission line satisfies the design standards. Otherwise, if any actual length is more than a corresponding reference length, or if any actual distance is less than a corresponding reference distance, the device and method determines the design of the signal transmission line does not satisfy the design standards.
    • 计算装置和方法从电路板选择信号传输线,计算所选择的信号传输线的每个线段的实际长度,并且计算所选信号传输线的每个线段与对应线之间的实际距离 每个相邻信号传输线的段。 如果每个实际长度小于或等于对应的参考长度,并且每个实际距离大于或等于相应的参考距离,则设备和方法确定所选信号传输线的设计满足设计标准。 否则,如果任何实际长度大于相应的参考长度,或者如果任何实际距离小于相应的参考距离,则设备和方法确定信号传输线的设计不符合设计标准。
    • 5. 发明授权
    • Computing device and crosstalk information detection method
    • 计算设备和串扰信息检测方法
    • US08547819B2
    • 2013-10-01
    • US12961906
    • 2010-12-07
    • Ying-Tso LaiShi-Piao LuoCheng-Hsien Lee
    • Ying-Tso LaiShi-Piao LuoCheng-Hsien Lee
    • H04J1/12
    • G06F17/5081G06F2217/82
    • A computing device and a method reads a circuit board layout file from a storage device, and selects a first signal transmission line from circuit board layout file as a target line. The computing device and method computes a distance between the target line and the aggressor line corresponding to each unit sample length. If the distance is more than or equal to a height of a sample region, the computing device and method defines the height of the sample region as a crosstalk space between the target line and the aggressor line corresponding to a unit sample length. Otherwise, if the distance is less than the height of the sample region, the computing device and method defines the distance as the crosstalk space between the target line and the aggressor line corresponding to the unit sample length.
    • 计算装置和方法从存储装置读取电路板布局文件,并从电路板布局文件中选择第一信号传输线作为目标线。 计算装置和方法计算目标线与对应于每个单位样本长度的侵略线之间的距离。 如果距离大于或等于样本区域的高度,则计算设备和方法将样本区域的高度定义为目标线与对应于单位样本长度的侵略线之间的串扰空间。 否则,如果距离小于样本区域的高度,则计算装置和方法将该距离定义为对应于单位样本长度的目标线与侵略线之间的串扰空间。