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    • 4. 发明申请
    • Eddy current type sensor for detecting conductor
    • 用于检测导体的涡流型传感器
    • US20070200562A1
    • 2007-08-30
    • US11711900
    • 2007-02-28
    • Osamu ShimomuraTsutomu NakamuraKenji TakedaAkitoshi MizutaniTakao Ban
    • Osamu ShimomuraTsutomu NakamuraKenji TakedaAkitoshi MizutaniTakao Ban
    • G01R33/14
    • G01V3/102
    • An eddy current type sensor for detecting a conductor includes a LC circuit and an oscillator. The LC circuit has a coil and a capacitor connected in parallel with the coil. The oscillator supplies an alternating current of a predetermined oscillation frequency to the LC circuit. A signal voltage outputted from the LC circuit has a first voltage when the distance between the coil and the conductor is minimum and a second voltage when the distance between the coil and the conductor is maximum. A voltage difference between the first and second voltages has a first difference at a first temperature and has a second difference at a second temperature. The first and second differences become equal to each other at a first frequency and a second frequency. The oscillation frequency is set close to the first frequency or the second frequency.
    • 用于检测导体的涡流型传感器包括LC电路和振荡器。 LC电路具有与线圈并联连接的线圈和电容器。 振荡器向LC电路提供预定振荡频率的交流电。 当线圈和导体之间的距离最小时,从LC电路输出的信号电压具有第一电压,当线圈和导体之间的距离最大时,第二电压。 第一和第二电压之间的电压差在第一温度下具有第一差异,并且在第二温度下具有第二差。 第一和第二差异在第一频率和第二频率处彼此相等。 振荡频率设定为接近于第一频率或第二频率。
    • 6. 发明授权
    • Inductive proximity switch
    • 感应式接近开关
    • US5012206A
    • 1991-04-30
    • US511767
    • 1990-04-20
    • Burkhard Tigges
    • Burkhard Tigges
    • G01V3/10H03K17/95
    • H03K17/954G01V3/102H03K2217/952
    • An inductive proximity switch in which a quartz oscillator is connected to a sensor resonant circuit having a sensor coil which is adapted to be influenced by the approach of electrically conductive nonmagnetic nonferrous metal (NF) objects and ferromagnetic metal (FE) objects. A detecting circuit detects when the sensor resonant circuit has an impedance which is indicative of either an NF object or an FE object at a predetermined switching distance from the sensor coil, thus causing the proximity switch to exhibit the same switching distance for both NF and FE objects. The oscillator frequency and the impedance of the sensor resonant circuit at the oscillator frequency are respectively set to be equal to a critical frequency and a critical impedance value at a critical response point defined by a point where impedance-frequency characteristic curves of the sensor resonant circuit under the influence of NF objects and FE objects at the predetermined switching distance intersect. The oscillator frequency and the natural resonant frequency of the sensor resonant circuit when it is uninfluenced by an approaching object are set to be slightly different from each other.
    • 一种电感式接近开关,其中石英振荡器连接到具有传感器线圈的传感器谐振电路,所述传感器线圈适于受到导电非磁性有色金属(NF)物体和强磁性金属(FE)物体的接近的影响。 检测电路检测传感器谐振电路何时具有指示NF物体或FE物体在距离传感器线圈的预定切换距离处的阻抗,从而使接近开关对NF和FE展现相同的切换距离 对象 传感器谐振电路在振荡器频率下的振荡频率和阻抗分别设定为等于关键响应点的临界频率和临界阻抗值,临界响应点由传感器谐振电路的阻抗 - 频率特性曲线 在NF物体和FE物体的影响下,在预定的切换距离处相交。 当传感器谐振电路不受接近物体的影响时,振荡器频率和固有谐振频率被设置为彼此稍微不同。
    • 8. 发明授权
    • Means for detecting metal in a stream of particulate matter
    • 用于检测颗粒物流中的金属的装置
    • US4839602A
    • 1989-06-13
    • US927276
    • 1986-11-04
    • Charles D. Pletcher
    • Charles D. Pletcher
    • A24C5/34G01N15/06G01V3/10
    • A24C5/3412G01N15/0656G01V3/102
    • A device having a detector element for detecting small particles of metal moving in a stream of particulate matter, such as tobacco filler. The detector element is a coil through which the stream passes. The coil is the inductor of an oscillating circuit and is also part of the negative feedback loop of an operational amplifier. Inductance changes caused by the presence of metal become impedance changes that alter the amplifier gain, changing the amplitude of the AC component of an alternating current output signal. The signal peaks are shifted further, increasing detector amplitude, by coupling the signal through a capacitor to a source of potential so that the DC component of the signal also changes as the change in inductance allows current to flow through the capacitor.
    • 一种具有用于检测在诸如烟草填料的颗粒物流中移动的金属的小颗粒的检测器元件的装置。 检测器元件是流通过的线圈。 线圈是振荡电路的电感器,也是运算放大器的负反馈环路的一部分。 由金属的存在导致的电感变化成为改变放大器增益的阻抗变化,改变交流输出信号的交流分量的振幅。 信号峰值进一步移动,通过将信号通过电容器耦合到电位源来增加检测器幅度,使得信号的DC分量也随着电感的变化而改变,从而使电流流过电容器。
    • 10. 发明授权
    • Electronic anatomical probe
    • 电子解剖探针
    • US4526177A
    • 1985-07-02
    • US507358
    • 1983-06-24
    • Michael A. RudyJoseph Jacob
    • Michael A. RudyJoseph Jacob
    • A61B5/06G01V3/10H03K17/95
    • A61B5/06G01V3/102H03K17/954
    • A wire sensing coil is sealed in the tip of an elongate, rigid, plastic probe, and is connected by a coaxial cable releasably to a housing containing a fixed frequency, crystal-controlled oscillator, the output of which is applied through a high impedance resistor and the cable to the coil. The number of turns in the coil and the cable length are carefully selected so that the coil remains tuned to the frequency of the oscillator, except when the tip of the probe approaches a metal object, at which time the voltage drop across the coil decreases. The housing also contains an audible alarm, and a sensing circuit which detects the voltage drop across the coil, and which energizes the alarm when the voltage across the coil drops below a preset or predetermined level. The housing also contains a rechargable battery for supplying power to the oscillator and alarm circuits, and a recharging circuit for recharging the battery. A manually operable switch on the housing connects the battery to the oscillator when the switch is in its ON position, and connects the recharging circuit to the battery when in its OFF position.
    • 线感测线圈密封在细长的刚性塑料探针的尖端中,并通过同轴电缆可释放地连接到包含固定频率的晶体振荡器的壳体,其输出通过高阻抗电阻器 和电缆到线圈。 仔细选择线圈中的匝数和电缆长度,使得线圈保持调谐到振荡器的频率,除非探头的尖端接近金属物体,此时线圈上的电压降降低。 外壳还包含一个声音报警器,以及检测线圈两端的电压降的检测电路,当线圈两端的电压下降到预设或预定的电平以下时,该报警器通电。 壳体还包含用于向振荡器和报警电路供电的可再充电电池,以及用于为电池充电的再充电电路。 当开关处于ON位置时,壳体上的手动开关将电池连接到振荡器,并且在处于OFF位置时将充电电路连接到电池。