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    • 1. 发明授权
    • Encapsulated pole unit conductor assembly for an encapsulated pole unit and medium voltage circuit interrupter including the same
    • 用于封装的极单元和包括其的中压断路器的封装极单元导体组件
    • US07910852B2
    • 2011-03-22
    • US12027599
    • 2008-02-07
    • Steven Z. ChenJames J. BenkeZachary R. JenkinsXin Zhou
    • Steven Z. ChenJames J. BenkeZachary R. JenkinsXin Zhou
    • H01H33/66
    • H01H33/6606H01H33/59
    • A medium voltage circuit interrupter includes a circuit interrupter housing and a plurality of poles. Each of the poles includes an encapsulated pole unit. The encapsulated pole unit includes a first unit having a first conductor, a second conductor, a vacuum interrupter electrically connected between the first conductor and the second conductor, and a first housing housing the vacuum interrupter. A removable second unit includes a third conductor, a fourth conductor having a first portion electrically connected to the third conductor and a second portion removably electrically connected to one of the first conductor and the second conductor, an electronic device structured to sense a characteristic of the pole, and a second insulative housing encapsulating the third conductor, the first portion of the fourth conductor and the electronic device. An operating mechanism is structured to open and close the vacuum interrupter of each of the poles.
    • 中压断路器包括电路断路器壳体和多个极。 每个极包括封装的极单元。 封装的极单元包括具有第一导体,第二导​​体,电连接在第一导体和第二导体之间的真空断路器的第一单元和容纳真空断路器的第一壳体。 可拆卸的第二单元包括第三导体,第四导体,其具有电连接到第三导体的第一部分和可拆卸地电连接到第一导体和第二导体中的一个的第二部分;电子装置,其被构造成感测 并且第二绝缘外壳包封第三导体,第四导体的第一部分和电子装置。 一个操作机构构造成打开和关闭每个极的真空断路器。
    • 2. 发明申请
    • ENCAPSULATED POLE UNIT CONDUCTOR ASSEMBLY FOR AN ENCAPSULATED POLE UNIT AND MEDIUM VOLTAGE CIRCUIT INTERRUPTER INCLUDING THE SAME
    • 封装的单元导体组件用于封装的单元单元和中等电压电路中断器,包括其中
    • US20090200270A1
    • 2009-08-13
    • US12027599
    • 2008-02-07
    • Steven Z. ChenJames J. BenkeZachary R. JenkinsXin Zhou
    • Steven Z. ChenJames J. BenkeZachary R. JenkinsXin Zhou
    • H01H33/66
    • H01H33/6606H01H33/59
    • A medium voltage circuit interrupter includes a circuit interrupter housing and a plurality of poles. Each of the poles includes an encapsulated pole unit. The encapsulated pole unit includes a first unit having a first conductor, a second conductor, a vacuum interrupter electrically connected between the first conductor and the second conductor, and a first housing housing the vacuum interrupter. A removable second unit includes a third conductor, a fourth conductor having a first portion electrically connected to the third conductor and a second portion removably electrically connected to one of the first conductor and the second conductor, an electronic device structured to sense a characteristic of the pole, and a second insulative housing encapsulating the third conductor, the first portion of the fourth conductor and the electronic device. An operating mechanism is structured to open and close the vacuum interrupter of each of the poles.
    • 中压断路器包括电路断路器壳体和多个极。 每个极包括封装的极单元。 封装的极单元包括具有第一导体,第二导​​体,电连接在第一导体和第二导体之间的真空断路器的第一单元和容纳真空断路器的第一壳体。 可拆卸的第二单元包括第三导体,第四导体,其具有电连接到第三导体的第一部分和可拆卸地电连接到第一导体和第二导体中的一个的第二部分;电子装置,其被构造成感测 并且第二绝缘外壳包封第三导体,第四导体的第一部分和电子装置。 一个操作机构构造成打开和关闭每个极的真空断路器。
    • 5. 发明授权
    • Electro-optical voltage sensor circuit monitoring leakage or loss of vacuum of a vacuum interrupter and vacuum circuit interrupter including the same
    • 电光电压传感器电路监测真空断路器和真空断路器的真空泄漏或损失,包括相同的
    • US07253630B1
    • 2007-08-07
    • US11470001
    • 2006-09-05
    • Xin ZhouJames J. BenkeDaniel E. Palmieri
    • Xin ZhouJames J. BenkeDaniel E. Palmieri
    • G01R31/02
    • G01R31/3274
    • A vacuum circuit breaker includes a line terminal, a load terminal and a vacuum interrupter having a vacuum envelope containing a fixed contact assembly and a moveable contact assembly moveable between closed and open circuit positions. The fixed contact assembly is electrically interconnected with the line terminal and the moveable contact assembly is electrically connected to the load terminal. An operating mechanism moves the moveable contact assembly between the closed and open circuit positions. An auxiliary contact indicates one of the open or closed circuit positions. An electro-optical voltage sensor determines a voltage difference between the line and load terminals, or the shield and one of the line and load terminals. A circuit determines no leakage or loss of vacuum of the vacuum envelope when the vacuum switch is intended to be in the open circuit position and when the voltage difference is greater than a predetermined amount.
    • 真空断路器包括线路端子,负载端子和真空断路器,其具有包含固定接触组件的真空外壳和可在闭合位置和开路位置之间移动的可移动接触组件。 固定接触组件与线路端子电互连,并且可移动接触组件电连接到负载端子。 操作机构将可动触头组件移动到闭合位置和开路位置之间。 辅助触点表示开路或闭路位置之一。 电光电压传感器确定线路和负载端子之间的电压差,或屏蔽以及线路和负载端子之间的电压差。 当真空开关打算处于开路位置时以及当电压差大于预定量时,电路确定真空外壳的泄漏或真空损失。
    • 10. 发明授权
    • Determining calibration parameters for a lithographic process
    • 确定光刻工艺的校准参数
    • US08849008B2
    • 2014-09-30
    • US13608776
    • 2012-09-10
    • Xin ZhouYaogang LianRobert E. Gleason
    • Xin ZhouYaogang LianRobert E. Gleason
    • G06K9/00G03F7/20
    • G03F7/705G03F7/70516G03F7/70641
    • A technique for determining a set of calibration parameters for use in a model of a photo-lithographic process is described. In this calibration technique, images of a test pattern that was produced using the photo-lithographic process are used to determine corresponding sets of calibration parameters. These images are associated with at least three different focal planes in an optical system, such as a photo-lithographic system that implements the photo-lithographic process. Moreover, an interpolation function is determined using the sets of calibration parameters. This interpolation function can be used to determine calibration parameters at an arbitrary focal plane in the photo-lithographic system for use in simulations of the photolithographic process, where the set of calibration parameters are used in a set of transmission cross coefficients in the model of the photo-lithographic process.
    • 描述了用于确定用于光刻工艺的模型中的一组校准参数的技术。 在该校准技术中,使用使用光刻工艺制作的测试图案的图像来确定相应的校准参数组。 这些图像与光学系统中的至少三个不同的焦平面相关联,例如实现光刻工艺的光刻系统。 此外,使用校准参数集来确定内插函数。 该内插函数可以用于确定光刻系统中的任意焦平面处的校准参数,以用于光刻工艺的模拟,其中在一组模拟中的传输交叉系数中使用该组校准参数 光刻工艺。