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    Current-mirrors RC-oscillators
    (1987-01-01)
    Pookaiyaudom, S.
    ;
    Samootrut, K.
    ;
    Kurutach, W.
    A new type of sinusoidal RC-oscillators using only current mirrors as the active elements are proposed and experimentally demonstrated. Accurate performance can be obtained over several orders of magnitude of frequency range. They show good potential as a practical class of high performance sinusoidal oscillators. © 1987 Taylor and Francis Group, LLC.
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    An Integrable Electronically Variable Phase Shifter
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Dejhan, K.
    ;
    Watanachaiprateep, C.
    An easily integrable electronically variable phase shifter is proposed and experimentally demonstrated. The circuit operation is in the current mode, and it can be directly employed as a subsystem of monolithic circuit A temperature compensated biasing circuit has also been suggested. Copyright © 1979 by The Institute Of Electrical And Electronics Engineers, Inc.
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    Accurate syntheses of non-linear resistances
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Surawatpanya, C.
    An easily integrable circuit principle is proposed and experimentally demonstrated for the syntheses of a large class of voltage-controlled non-linear resistances. The resulting non-linear resistances are floating, bipolar and require low bias currents. © Taylor and Francis Group, LLC.
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    A Linear Temperature-to-Differential-Current Converter
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Watanachaiprateep, C.
    A simple circuit is proposed as a linear temperature-to-differential current converter. Large and accurate conversion rate can be easily obtained. An immediate application has also been proposed. © 1979 IEEE
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    Peak-amplitude detector for sinusoidal signals
    (1979-02-15)
    Pookaiyaudom, S.
    ;
    Watanachaiprateep, C.
    ;
    Dejhan, K.
    A circuit technique is proposed for detecting the peak amplitude of a sinusoidal signal using Pythagoras's law without requiring a simultaneous equal-amplitude quadrature signal. The number of four-quadrant multipliers required is only two.© 1979, The Institution of Electrical Engineers. All rights reserved.
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    Synthesis of CurrentControlled Nonlinear Impedances
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Dejhan, K.
    ;
    Watanachaiprateep, C.
    An integrable circuit technique is employed to obtain a class of currentControlled nonlinear impedances which is complementary to the recently proposed voltageControlled class of nonlinear impedances. © 1979 IEEE
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    A Single-Transistor Full-Wave Rectifier
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Watanachaiprateep, C.
    ;
    Dejhan, K.
    A simple full-wave rectifier using only a single transistor with two matched resistors has been proposed and the bask performances have been experimentally demonstrated. Copyright © 1979 by The Institute of Electrical and Electronics Engineers, Inc.
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    Perfectly Linear Ramp Generation with Lossy Capacitor
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Teweetiwarak, S.
    ;
    Palotaitageong, W.
    It is shown that a perfectly linear ramp voltage can be generated from a lossy capacitor using appropriate compensation current. Copyright © 1979 by The Institute Of Electrical And Electronics Engineers, Inc.
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    Realization of Stable CurrentControlled Frequency-Dependent Positive Resistance
    (1979-01-01)
    Pookaiyaudom, S.
    ;
    Srisarakham, W.
    An integrable circuit for the realization of a currentcontrolled frequency-dependent positive resistance will be presented. Copyright © 1979 by The Institute of Electrical and Electronics Engineers, Inc.
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    An Integrable Precision Current-Controlled Negative Impedance Converter
    (1978-01-01)
    Pookaiyaudom, S.
    ;
    Surakampontorn, W.
    An easily integrable precision floating current-controlled negative impedance converter is proposed and experimentally demonstrated. The resulting converted negative impedance magnitude is both highly accurate and linear over the entire dynamic range. Either terminal voltage can be referenced. The circuit is stable for capacitive impedance conversions. Copyright © 1978 by The Institute of Electrical and Electronics Engineers, Inc.