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    • 3. 发明申请
    • Gas Insulated Bus and Particle Removal Method for Gas Insulated Bus
    • 气体绝缘母线气体绝缘母线和除尘方法
    • US20120281332A1
    • 2012-11-08
    • US13462974
    • 2012-05-03
    • Tatsuro KATOToshiaki RokunoheHisashi UrasakiRyoichi Shinohara
    • Tatsuro KATOToshiaki RokunoheHisashi UrasakiRyoichi Shinohara
    • H01B7/16H99Z99/00
    • H02G5/065H02G5/066
    • The present invention is provided to satisfy insulation and conductivity performance requirements, to reduce the size of a gas insulated bus, and also to make conditioning for a particle more reliable. In a gas insulated bus having a conductor supported in a cylindrical metal container via an insulator, insulating gas being contained in the metal container, the metal container has an expanded diameter part formed over a given range in an area of the metal container in which the insulator is positioned and a reduced diameter part formed over the entire area of the metal container except for the expanded diameter part. Thus, when the temperature of the insulator increases during conduction, heat from the insulator is transferred to the metal container via a large space in the expanded diameter part and released to the air through a large outer surface of the expanded diameter part of the metal container.
    • 提供本发明以满足绝缘和导电性能要求,以减小气体绝缘母线的尺寸,并且还使得对颗粒的调节更可靠。 在具有通过绝缘体支撑在圆筒形金属容器中的导体的气体绝缘母线中,绝缘气体包含在金属容器中,金属容器具有在金属容器的区域中形成在给定范围内的扩径部分,其中, 绝缘体被定位,并且直径减小的部分形成在金属容器的整个区域之外,除了扩径部分之外。 因此,当绝缘体的温度在传导期间增加时,来自绝缘体的热量通过扩径部分的大空间传递到金属容器,并通过金属容器的扩径部分的大的外表面释放到空气中 。
    • 5. 发明申请
    • DISCHARGE DEVICE AND TEST SYSTEM HAVING THE SAME
    • 放电装置和测试系统
    • US20120161779A1
    • 2012-06-28
    • US13048572
    • 2011-03-15
    • Jiau-Cheng ShiauChia-Ming Chen
    • Jiau-Cheng ShiauChia-Ming Chen
    • G01R31/02H99Z99/00
    • G01R31/2832
    • A discharge device and a test system having the same are provided. The test system comprises at least one power supply module, a test instrument and a discharge device. The power supply module supplies power to a device under test. The test instrument is connected to the device under test. The test instrument performs a plurality of on-power test procedures on the device under test. The discharge device comprises at least one first constant current discharge unit disposed in the test instrument, at least one second constant current discharge unit disposed in the power supply module and a control module. The control module controls the first and the second constant current discharge units to drain a constant current from the device under test and the power supply module to perform a discharge process when each one of the on-power test procedures is finished.
    • 提供了具有该放电装置的放电装置和测试系统。 测试系统包括至少一个电源模块,测试仪器和放电设备。 电源模块为被测设备供电。 测试仪器连接到被测设备。 测试仪器在被测设备上执行多个通电试验程序。 放电装置包括设置在测试仪器中的至少一个第一恒定电流放电单元,设置在电源模块中的至少一个第二恒定电流放电单元和控制模块。 所述控制模块控制所述第一和第二恒定电流放电单元,以从所述待测器件排出恒定电流,并且当所述接通电力测试程序完成时,所述电源模块执行放电过程。
    • 7. 发明申请
    • METHOD OF UTILIZING DUAL COMPARATORS TO FACILITATE A PRECISION SIGNAL RECTIFICATION AND TIMING SYSTEM WITHOUT SIGNAL FEEDBACK
    • 使用双重比较器的方法来实现无信号反馈的精确信号修复和定时系统
    • US20130002305A1
    • 2013-01-03
    • US13170443
    • 2011-06-28
    • Steven Thomas Clemens
    • Steven Thomas Clemens
    • H99Z99/00
    • H03K5/153
    • A method and an associated apparatus for a signal rectification and timing circuit. A variable amplitude input signal is generated. An upper threshold level is determined and a lower threshold level is determined. The variable amplitude input signal and the upper threshold level are input into a first comparator. The variable amplitude input signal and the lower threshold level are input into a second comparator. A first digital output signal is generated in the first comparator using a hysteresis circuit and a second digital output signal is generated in the second comparator using a hysteresis circuit. The first digital output signal and the second digital output signal are input into a logic array. A digital level pulse output signal is generated in the logic array that has a digital transition where the variable amplitude input signal passed through a threshold level.
    • 一种用于信号整流和定时电路的方法和相关装置。 产生可变幅度输入信号。 确定上阈值水平并确定较低阈值水平。 可变幅度输入信号和上限阈值电平被输入到第一比较器中。 可变幅度输入信号和下限阈值电平被输入到第二比较器。 使用滞后电路在第一比较器中产生第一数字输出信号,并且使用滞后电路在第二比较器中产生第二数字输出信号。 第一数字输出信号和第二数字输出信号被输入到逻辑阵列中。 在具有数字转换的逻辑阵列中产生数字电平脉冲输出信号,其中可变幅度输入信号通过阈值电平。
    • 9. 发明申请
    • Electrical line conditioner
    • 电线调节器
    • US20090001811A1
    • 2009-01-01
    • US11985388
    • 2007-11-15
    • George Dewberry
    • George Dewberry
    • B60L1/00H99Z99/00
    • B60R16/0215
    • An electrical line conditioner or energy conservation device, a process of manufacturing thereof, and a method of use thereof. The energy conservation device, or electrical line conditioner, comprises at least two different electrochemically oxidized aluminum alloy units that may be placed near electrical lines or electrical panels or surround electrical lines to reduce energy consumption without compromising performance of a load. A first electrochemically oxidized aluminum alloy unit may be violet, a second electrochemically oxidized aluminum alloy unit may be black. The electrical line conditioner may further comprise a spacer and a band to secure the electrical line conditioner to electrical lines. The electrical line conditioner is produced using an anodizing process.
    • 电气线路调节器或节能装置及其制造方法及其使用方法。 节能装置或电线调节器包括至少两个不同的电化学氧化的铝合金单元,其可以放置在电线或电气面板附近或环绕电线以降低能量消耗而不损害负载的性能。 第一电化学氧化的铝合金单元可以是紫色的,第二电化学氧化的铝合金单元可以是黑色的。 电气线路调节器还可以包括间隔件和带子,以将电线调节器固定到电线。 使用阳极氧化处理制造电线调节器。