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Compact MOS-RC Voltage-Mode Fractional-Order Oscillator Design

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compactmosrc.pdf (336.2Kb)
Datum
2017-09-04
Autor
Kartci, Aslihan
Herencsár, Norbert
Koton, Jaroslav
Psychalinos, Costas
Altmetrics
10.1109/ECCTD.2017.8093281
Metadata
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Zusammenfassung
A new voltage-mode fractional-order oscillator, employing in total 12 Metal-Oxide-Semiconductor (MOS) transistors, is introduced in this paper. The proposed circuit is composed of two operational transconductance amplifiers, two inverting voltage buffers, one resistor, and two fractional-order capacitors. Compared with the corresponding already introduced fractional-order oscillators, it offers the benefit of low transistor count and, therefore, simplicity of its structure. In addition, it offers the well-known advantages of fractional-order oscillators about the capability for achieving very low and high oscillation frequencies with reasonable component values. The behavior of the proposed oscillator has been numerically studied using the MATLAB program, while its performance has been evaluated by SPICE simulations, using TSMC 0.18 um Level-7 CMOS process parameters with ±1 V supply voltages.
Keywords
fractional calculus, fractional-order oscillator, MOS-RC oscillator, inverting voltage buffer, operational transconductance amplifier
URI
http://hdl.handle.net/11012/70221
Document type
Peer reviewed
Document version
Postprint
Source
Proceedings of the 2017 23 European Conference on Circuit Theory and Design (ECCTD 2017). 2017, p. 1-4.
http://ieeexplore.ieee.org/document/8093281/
DOI
10.1109/ECCTD.2017.8093281
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