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    • 1. 发明申请
    • 유입 변압기 진단 방법
    • 流入变压器诊断方法
    • WO2017116091A1
    • 2017-07-06
    • PCT/KR2016/015217
    • 2016-12-23
    • 주식회사 효성
    • 김성직서황동
    • G01R31/02G01R21/12G01N33/00G01N33/28
    • G01N33/00G01N33/28G01R21/12G01R31/02
    • 본 발명의 유입 변압기 진단 방법은 유중 가스 측정부에서 유입 변압기 내의 유중 가스를 측정하는 유중 가스 측정 단계, 유중 가스 측정 단계에서 측정한 유중 가스의 함량을 분석하는 유중 가스 분석 단계, 유중 가스의 함량을 분석한 결과로 스트레이 개싱 포함 여부를 판별하는 스트레이 개싱(stray gassing) 판별 조건 확인 단계, 스트레이 개싱이 포함되지 않을 경우 변압기의 내부 결함을 진단하는 제 1 유중 가스 판별 단계, 및 스트레이 개싱이 포함될 경우 스트레이 개싱을 판별하고 유입 변압기의 내부 결함을 진단하는 제 2 유중 가스 판별 단계를 포함한다.
    • 根据本发明的用于诊断流入变压器的方法包括以下步骤:测量流量计中的流量计中的气体中的气体;测量气体流量计中的气体中的气体; 分析气体中的气体的分析步骤和含量以确定是否包括条纹打磨,并且当不包括杂散气体点火时,第一气体鉴别步骤用于诊断变压器的内部缺陷。 以及第二流通气体鉴别步骤,用于鉴别包含杂散气体时的杂散气体并诊断流入变压器的内部缺陷。
    • 3. 发明申请
    • LOGARITHMIC MEAN-SQUARE POWER DETECTOR
    • 对数均方幂检测器
    • WO2011063328A2
    • 2011-05-26
    • PCT/US2010057611
    • 2010-11-22
    • HITTITE MICROWAVE CORPEKEN YALCIN ALPERKATZIN PETER JOHN
    • EKEN YALCIN ALPERKATZIN PETER JOHN
    • G01R23/02
    • G01R21/12G01R15/09G01R19/02G06G7/24H03G3/3036H03G7/001
    • A mean square power detector in accordance with one or more embodiments includes a gain or attenuation circuit comprising a plurality of gain or attenuation elements arranged for generating a plurality of amplified or attenuated versions of a radio frequency (RF) input signal. The mean square power detector also includes a plurality of mean square detectors coupled to the gain or attenuation circuit. Each of the mean square detectors receives a different one of the plurality of amplified or attenuated versions of the RF input signal. Each of the plurality of mean square detectors generates an output signal representative of the mean square power of the RF input signal for a different input signal level range. A summing element is coupled to the plurality of mean square detectors for combining the output signals of the plurality of mean square detectors to generate a signal representative of the mean square or root mean square of the RF input signal.
    • 根据一个或多个实施例的均方根功率检测器包括增益或衰减电路,该增益或衰减电路包括被布置用于产生射频(RF)输入信号的多个放大或衰减版本的多个增益或衰减元件。 均方根功率检测器还包括耦合到增益或衰减电路的多个均方检测器。 每个均方检测器接收RF输入信号的多个放大或衰减版本中的不同的一个。 多个均方检测器中的每一个产生表示不同输入信号电平范围的RF输入信号的均方功率的输出信号。 求和元件耦合到多个均方检测器,用于组合多个均方检测器的输出信号,以产生表示RF输入信号的均方根或均方根的信号。
    • 4. 发明申请
    • TRANSMITTER POWER MONITOR
    • 发射机电源监控器
    • WO2009126254A2
    • 2009-10-15
    • PCT/US2009/002169
    • 2009-04-07
    • BIRD TECHNOLOGIES GROUP INC.HOLT, Timothy, Lee
    • HOLT, Timothy, Lee
    • G01R13/40
    • G01R21/133G01R21/00G01R21/01G01R21/12G01R35/005H04B17/10
    • The invention provides an in-line power monitor for an RF transmission line that is capable of being calibrated in-line during live conditions at the exact power level and frequency where it is used. This device uses forward and reflected directional couplers and a non-directional coupler to sample the RF voltage on the transmission line. The RF voltage of the forward and reflected channels are each split into two paths, one going to a test port and the other leading to additional circuitry which prepares the signals of the forward and reflected channels for output to power displays. Additionally, the monitor allows the user to compensate for any voltage offsets introduced by various circuitry components. Further, the monitor also allows to user to individually calibrate the output of the forward and reflected channels by applying an adjustable gain ratio correction to each channel.
    • 本发明提供了一种用于RF传输线的在线功率监视器,其能够在在其使用的确切功率电平和频率的实时条件下在线校准。 该器件使用正向和反射定向耦合器和非定向耦合器来对传输线上的RF电压进行采样。 前向和反射通道的RF电压分别分为两条路径,一条路径到一条测试端口,另一条通向另外的电路,以准备正向和反射通道的信号,以输出到功率显示器。 此外,监视器允许用户补偿由各种电路组件引入的任何电压偏移。 此外,监视器还允许用户通过对每个通道应用可调增益比校正来单独校准正向和反射通道的输出。
    • 7. 发明申请
    • A POWER DETECTOR
    • 电源检测器
    • WO2015090357A1
    • 2015-06-25
    • PCT/EP2013/076777
    • 2013-12-16
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • BAO, Mingquan
    • G01R21/10
    • G01R21/10G01R21/12
    • A power detector (100, 200, 300, 400) comprising a first (110) and a second (115) bipolar junction/FET transistor. The first transistor (110) is arranged as a common base/gate transistor with its base/gate being biased by a bias voltage (V b1 ) and the second transistor (115) is arranged as a common emitter/source transistor with its emitter/source being grounded. The power detector also comprises a diode or current source connected to ground from the emitter/source of the first transistor (110), in which power detector an input port (105) is connected to the emitter of the first transistor (110) and to the base/gate of the second transistor (115), and an output port (125) is connected to the collectors/drains of the first (110) and second transistor (115), said collectors/drains also being connected to a DC supplier (V c ) via a first resistor (130).
    • 包括第一(110)和第二(115)双极结/ FET晶体管的功率检测器(100,200,300,400)。 第一晶体管(110)被布置为公共基极/栅极晶体管,其基极/栅极被偏置电压(Vb1)偏置,并且第二晶体管(115)被布置为具有其发射极/源极的公共发射极/源极晶体管 接地 功率检测器还包括从第一晶体管(110)的发射极/源极接地的二极管或电流源,其中功率检测器的输入端口(105)连接到第一晶体管(110)的发射极,并且 第二晶体管(115)的基极/栅极和输出端口(125)连接到第一晶体管(110)和第二晶体管(115)的集电极/漏极,所述集电极/漏极还连接到DC供应器 (Vc)经由第一电阻器(130)。
    • 9. 发明申请
    • RF POWER MEASUREMENT WITH BI-DIRECTIONAL BRIDGE
    • 具有双向桥的RF功率测量
    • WO2013062784A2
    • 2013-05-02
    • PCT/US2012/059777
    • 2012-10-11
    • ANALOG DEVICES, INC.
    • BRUNNER, Eberhard
    • G01R27/04
    • G01R21/12
    • A bi-directional bridge includes a forward bridge portion, and reverse bridge portion and a shared portion that enables the simultaneous measurement of power flowing in both directions while reducing insertion losses, providing better impedance matching and/or providing improved directionality. In some embodiments, additional attenuation is provided to reduce the common mode rejection requirements of detectors used with the bridge. In other embodiments, multi-tap attenuators and steering circuits may be integrated into the forward and/or reverse bridge portions to reduce common mode signal levels while still maintaining high levels of sensitivity for measuring small input signals.
    • 双向桥包括正向桥部分和反向桥接部分和共享部分,其能够同时测量在两个方向上流动的功率,同时减少插入损耗,提供更好的阻抗匹配和/或提供改进的方向性。 在一些实施例中,提供额外的衰减以减少与桥接器一起使用的检测器的共模抑制要求。 在其它实施例中,可以将多抽头衰减器和转向电路集成到正向和/或反向桥接部分中以降低共模信号电平,同时仍保持用于测量小输入信号的高灵敏度水平。
    • 10. 发明申请
    • MICROMECHANICAL MICROWAVE POWER METER
    • 微电子微波功率计
    • WO2006000622A1
    • 2006-01-05
    • PCT/FI2005/000286
    • 2005-06-16
    • VALTION TEKNILLINEN TUTKIMUSKESKUSSEPPÄ, HeikkiKYYNÄRÄINEN, Jukka
    • SEPPÄ, HeikkiKYYNÄRÄINEN, Jukka
    • G01R21/10
    • G01R21/12
    • A micromechanical sensor for measuring millimetric wave or microwave power, which sensor comprises a wave line for conducting the millimetric or microwave power and a part arranged to move and a fixed electrode, in such a way that the capacitance (C) between the part that is arranged to move and the fixed electrode couples to the wave power advancing in the wave line. According to the invention, the capacitance (C) between the part that is arranged to move and the fixed electrode is divided into at least two portions (C/n), which are located at a distance from each other, in such a way that the wave power advancing in the wave line couples to the portions (C/n) of the capacitance (C) consecutively and experiences the inductive load between the portions (C/n) of the capacitance (C). Thus the frequency band of the sensor can be substantially broadened and the reflective coefficient can be kept reasonably small.
    • 用于测量毫米波或微波功率的微机械传感器,该传感器包括用于传导毫米波或微波功率的波纹线以及布置成移动的部件和固定电极,使得该部件之间的电容(C) 布置成移动,固定电极耦合到在波浪线中前进的波浪功率。 根据本发明,被配置为移动的部分与固定电极之间的电容(C)被分成至少两个彼此相隔一定距离的部分(C / n),使得 波导中的波浪功率连续地耦合到电容(C)的部分(C / n),并经历电容(C)的部分(C / n)之间的电感负载。 因此,传感器的频带可以基本上变宽,并且可以将反射系数保持在相当小的范围内。