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ACTIVE AND NONRECIPROCAL
SOME BASIC PROPERTIES OF
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active network Active RC admittance matrix amplifier capacitance characteristic choose chosen circuit of Fig class of networks coefficients controlled source current source current-inversion device diagonal driving-point impedance Electronic elements Equation factor gain given half-plane Hence Hermitian forms Hermitian matrix Horowitz decomposition ideal transformers immittance function impedance matrix input Insertion Gain lossless maximally flat maximum n-port natural frequencies Negative Impedance Converters negative resistors negative-real axis negative-real zeros negative-resistance network containing network of Fig network synthesis nonnegative nonreciprocal number of negative obtained ohms one-port open-circuit parameters passive network polynomial q(s port positive rational function RC admittance RC impedance RC network RC two-ports reciprocal residue matrix resistance right-half-plane satisfied scattering matrix short-circuit shown in Fig skew-symmetric stable symmetric synthesis procedure terminated three-terminal tion transfer function transfer impedance transistor transmission zeros tunnel diode voltage source zero of q(s zero section