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Design of Z-copy controlled-gain voltage differencing current conveyor based adjustable functional generator
Affiliation:1. Department of Radio Electronics, Brno University of Technology, Brno, Technicka 12, 616 00 Czech Republic;2. Department of Telecommunications, Brno University of Technology, Brno, Technicka 12, 616 00 Czech Republic;3. Department of Electrical Engineering and Computer Science, College of Polytechnics Jihlava, Jihlava, Tolsteho 16, 586 01 Czech Republic;1. IST, INESC-ID, Rua Alves Redol, 9, 1000-029 Lisbon, Portugal;2. SILICONGATE LDA, Porto, Portugal;1. INL, Université de Lyon, France;2. EASii IC, Paris, France;3. CEA-LETI, Grenoble, France;1. Dept. of Electrical and Electronics Engineering, Erzincan University, Erzincan, Turkey;2. Dept. of Naval Architecture and Marine Engineering, Bandirma Onyedi Eylul University, Balikesir 10200, Turkey;3. Dept. of Electrical and Electronics Engineering, Istanbul University, Istanbul, Turkey
Abstract:This paper introduces interesting active element and its application in the field of square and triangular wave generators. Active element, so-called Z-Copy Controlled Gain Voltage Differencing Current Conveyor (ZC-CG-VDCC), has availability of three mutually independently and electronically adjustable parameters (transconductance, intrinsic resistance of the current input terminal and current gain between two terminals) that are very popular for control of applications today. In addition, a proposed device utilizes very useful z-copy (additional auxiliary terminal) features and two terminals providing voltage difference. All mentioned features are beneficial in mixed-mode circuit synthesis and design of adjustable applications (active filters, oscillators, generators, modulators, etc.). Electronically adjustable properties of the device are involved in the design of an adjustable generator. The generator provides voltage- and current-mode square wave outputs that can be also used for differential square wave output when very simply modified. Application of the generator in simple pulse width modulator (PWM) is also introduced. A detailed analysis and Spice simulation results are given and main features of the circuits are compared to electronically controllable solutions of recent development in this field.
Keywords:Square and triangular wave generator  PWM  Differential mode  Electronic Control  Voltage- and current-mode  Transconductance  Current gain  Voltage differencing current conveyor
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