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    • 1. 发明授权
    • Discrete device modeling
    • 离散设备建模
    • US08694938B2
    • 2014-04-08
    • US13534526
    • 2012-06-27
    • Ching-Shun YangChih Ming YangWei-Yi HuYi-Kan Cheng
    • Ching-Shun YangChih Ming YangWei-Yi HuYi-Kan Cheng
    • G06F17/50
    • G06F17/5036
    • Among other things, one or more techniques and/or systems are provided for modeling a discrete device as a macro device. That is, the discrete device can comprise one or more parasitic elements, such as parasitic resistances and/or capacitances. Because values of the parasitic elements are unknown during pre-simulation of the discrete device, the discrete device can be modeled as a macro device, which can be used during pre-simulation to take into account the parasitic elements. For example, specified parameters, such as channel length, can be used to obtain a set of RC values that specify predicted values for the one or more parasitic elements of the discrete device. The discrete device can be modeled as the macro device using the set of RC values. In this way, the macro device can be used during pre-simulation to take into account the parasitic effects of parasitic elements of the discrete device.
    • 除其他之外,提供一个或多个技术和/或系统用于将分立设备建模为宏设备。 也就是说,分立器件可以包括一个或多个寄生元件,例如寄生电阻和/或电容。 由于寄生元件的值在分立器件的预仿真期间是未知的,所以可将分立器件建模为宏器件,可在预仿真期间使用以考虑寄生元件。 例如,可以使用诸如通道长度的指定参数来获得指定离散器件的一个或多个寄生元件的预测值的一组RC值。 可以使用一组RC值将离散器件建模为宏器件。 以这种方式,可以在预仿真期间使用宏器件来考虑分立器件的寄生元件的寄生效应。
    • 2. 发明申请
    • DISCRETE DEVICE MODELING
    • 离散装置建模
    • US20140007028A1
    • 2014-01-02
    • US13534526
    • 2012-06-27
    • Ching-Shun YangChih Ming YangWei-Yi HuYi-Kan Cheng
    • Ching-Shun YangChih Ming YangWei-Yi HuYi-Kan Cheng
    • G06F17/50
    • G06F17/5036
    • Among other things, one or more techniques and/or systems are provided for modeling a discrete device as a macro device. That is, the discrete device can comprise one or more parasitic elements, such as parasitic resistances and/or capacitances. Because values of the parasitic elements are unknown during pre-simulation of the discrete device, the discrete device can be modeled as a macro device, which can be used during pre-simulation to take into account the parasitic elements. For example, specified parameters, such as channel length, can be used to obtain a set of RC values that specify predicted values for the one or more parasitic elements of the discrete device. The discrete device can be modeled as the macro device using the set of RC values. In this way, the macro device can be used during pre-simulation to take into account the parasitic effects of parasitic elements of the discrete device.
    • 除其他之外,提供一个或多个技术和/或系统用于将分立设备建模为宏设备。 也就是说,分立器件可以包括一个或多个寄生元件,例如寄生电阻和/或电容。 由于寄生元件的值在分立器件的预仿真期间是未知的,所以可将分立器件建模为宏器件,可在预仿真期间使用以考虑寄生元件。 例如,可以使用诸如通道长度的指定参数来获得指定离散器件的一个或多个寄生元件的预测值的一组RC值。 可以使用一组RC值将离散器件建模为宏器件。 以这种方式,可以在预仿真期间使用宏器件来考虑分立器件的寄生元件的寄生效应。
    • 5. 发明申请
    • SCREW DRIVER TOOL BOX
    • 螺丝刀工具箱
    • US20120228172A1
    • 2012-09-13
    • US13206498
    • 2011-08-09
    • Chih Ming Yang
    • Chih Ming Yang
    • B65D85/20
    • B25H3/003
    • A screw driver tool box includes an accommodating box, a plurality of screw heads, and a driver rod. Both sides of the accommodating box are provided with a turnable accommodating base respectively. The accommodating base is provided with a plurality of accommodating troughs for allowing the driver heads to be inserted therein. One end of the driver rod is formed with a handle portion, and the other end thereof is formed into a connecting end. The connecting end is provided with an insertion trough for allowing the driver heads to be inserted therein. The present invention is characterized in that: the accommodating box comprises a sleeve. One end of the sleeve is formed into an opening for insertion. The walls around the opening are provided with a plurality of grooves and a plurality of clamping claws. The clamping claws protrude from the opening. A through-hole is provided on a wall of the accommodating box to correspond to the opening. By the above-mentioned structure, a screw driver tool box which is easy to carry and convenient in use is obtained.
    • 螺丝刀工具箱包括容纳盒,多个螺钉头和驱动杆。 容纳箱的两侧分别设置有可转动的容纳基座。 容纳基座设置有多个用于允许驾驶员头插入其中的容纳槽。 驱动杆的一端形成有把手部,其另一端形成为连接端。 连接端设置有用于允许驾驶员头插入其中的插入槽。 本发明的特征在于:容纳盒包括套筒。 套筒的一端形成为用于插入的开口。 开口周围的壁设有多个槽和多个夹爪。 夹爪从开口突出。 在容纳盒的壁上设置有与开口相对应的通孔。 通过上述结构,获得了易于携带并且使用方便的螺丝刀工具箱。
    • 7. 发明授权
    • Screw driver tool box
    • 螺丝刀工具箱
    • US08757379B2
    • 2014-06-24
    • US13206498
    • 2011-08-09
    • Chih Ming Yang
    • Chih Ming Yang
    • B65D85/28
    • B25H3/003
    • A screw driver tool box includes an accommodating box, a plurality of screw heads, and a driver rod. Both sides of the accommodating box are provided with a turnable accommodating base respectively. The accommodating base is provided with a plurality of accommodating troughs for allowing the driver heads to be inserted therein. One end of the driver rod is formed with a handle portion, and the other end thereof is formed into a connecting end. The connecting end is provided with an insertion trough for allowing the driver heads to be inserted therein. The present invention is characterized in that: the accommodating box comprises a sleeve. One end of the sleeve is formed into an opening for insertion. The walls around the opening are provided with a plurality of grooves and a plurality of clamping claws. The clamping claws protrude from the opening. A through-hole is provided on a wall of the accommodating box to correspond to the opening. By the above-mentioned structure, a screw driver tool box which is easy to carry and convenient in use is obtained.
    • 螺丝刀工具箱包括容纳盒,多个螺钉头和驱动杆。 容纳箱的两侧分别设置有可转动的容纳基座。 容纳基座设置有多个用于允许驾驶员头插入其中的容纳槽。 驱动杆的一端形成有把手部,其另一端形成为连接端。 连接端设置有用于允许驾驶员头插入其中的插入槽。 本发明的特征在于:容纳盒包括套筒。 套筒的一端形成为用于插入的开口。 开口周围的壁设有多个槽和多个夹爪。 夹爪从开口突出。 在容纳盒的壁上设置有与开口相对应的通孔。 通过上述结构,获得了易于携带并且使用方便的螺丝刀工具箱。