2021
DOI: 10.1007/s40998-021-00440-x
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VDCC-Based Memcapacitor/Meminductor Emulator and Its Application in Adaptive Learning Circuit

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Cited by 49 publications
(27 citation statements)
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“…In [3] the proposed circuit utilizes voltage differencing current conveyor (VDCC) as an active block along with one capacitor and a memristor emulator. The memcapacitor emulator circuit proposed in [2] comprises two current conveyors, one Operational Transconductance Amplifier (OTA), two resistors, and two capacitors.…”
Section: ░ 2 Literature Reviewmentioning
confidence: 99%
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“…In [3] the proposed circuit utilizes voltage differencing current conveyor (VDCC) as an active block along with one capacitor and a memristor emulator. The memcapacitor emulator circuit proposed in [2] comprises two current conveyors, one Operational Transconductance Amplifier (OTA), two resistors, and two capacitors.…”
Section: ░ 2 Literature Reviewmentioning
confidence: 99%
“…These devices offer various advantages as compared to voltage mode circuits such as large dynamic range, high linearity etc. CCII is considered as a fundamental block for the realization of currentmode circuits [2][3]. It is a three-terminal device as shown in figure 2.…”
Section: ░ 3 Characteristics Of Cctamentioning
confidence: 99%
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“…Three trans-impedance operational amplifiers, a floating memristor, buffers, capacitors and resistors were used to create a global mutator in [21]. In [22], a memristor, a voltage differencing current conveyor (VDCC), and a capacitor were developed as floating meminductor and memcapacitor emulators. The current mode approach is used in [23] and a CCII, an OTA, a resistor, and a capacitor were used to create a memristor, memcapacitor, and meminductor emulation circuit.…”
Section: ░ 2 Literature Reviewmentioning
confidence: 99%
“…In the literature, three basic design styles for using memristors in logic design may be discovered. Only memristors are used for logic implementation in the first two design Website: www.ijeer.forexjournal.co.in Performance Evaluation of Low Power Hybrid Combinational Circuits using Memristor approaches, IMPLY [16,17] and MAGIC [18]. MRL [19,20] is the third design style, which uses a combination of CMOS and memristor components.…”
Section: ░ 2 Memristormentioning
confidence: 99%