Results 101 to 110 of about 329 (135)
A new VCII based grounded positive/negative capacitance multiplier
Abstract Capacitive multipliers have found wide applications in capacitive interfaces and other analog circuits requiring large value capacitors. Recently a new active building block (ABB) called second generation voltage conveyor (VCII) has been proved to be useful in many analog signal processing applications.
Vincenzo Stornelli +2 more
exaly +4 more sources
Traditional Op-Amp and new VCII: A comparison on analog circuits applications
Abstract Although the idea of second generation voltage conveyor (VCII) dates back to two decades ago, only in a recent publication by authors, its applications and capabilities were studied. Considering that VCII-based circuits are also realizable by Operational Amplifiers (Op-Amps), in this paper a comparison between circuits implementable using ...
Vincenzo Stornelli +2 more
exaly +3 more sources
Realization of an Electronically Tunable Resistor-Less Floating Inductance Simulator Using VCII [PDF]
In this paper, a new implementation of an electronically tunable resistor-less floating inductance simulator using a second-generation voltage conveyor (VCII) is presented. The proposed circuit is resistor-free (benefiting from the intrinsic resistors at the Y terminals of the employed VCIIs) and composed of three VCIIs and a single grounded capacitor.
Vincenzo Stornelli +2 more
exaly +5 more sources
New Resistor-Less Electronically Controllable ±C Simulator Employing VCII, DVCC, and a Grounded Capacitor [PDF]
In this paper, a new realization of electronically controllable positive and negative floating capacitor multiplier (±C) is presented. The peculiarity of the presented topology is that, for the first time, it implements a floating equivalent capacitor between its two input terminals, rather than a grounded one.
Vincenzo Stornelli +2 more
exaly +4 more sources
A New Low-Voltage Low-Power Dual-Mode VCII-Based SIMO Universal Filter [PDF]
In this paper, a new low-voltage low-power dual-mode universal filter is presented. The proposed circuit is implemented using inverting current buffer (I-CB) and second-generation voltage conveyors (VCIIs) as active building blocks and five resistors and three capacitors as passive elements.
Vincenzo Stornelli +2 more
exaly +3 more sources
Towards Realization of a Low-Voltage Class-AB VCII with High Current Drive Capability [PDF]
In this paper, the implementation of a low-voltage class AB second generation voltage conveyor (VCII) with high current drive capability is presented. Simple realization and good overall performance are the main features of the proposed circuit.
Vincenzo Stornelli +2 more
exaly +2 more sources
A linear voltage controlled quadrature oscillator implementation using VCII
Palaniandavar Venkateswaran +2 more
exaly +2 more sources
A Novel General Purpose Combined DFVF/VCII Based Biomedical Amplifier [PDF]
We here present a 0.15 µm CMOS high input impedance and low noise AC coupled flipped voltage follower-based amplifier for high integration level in integrated circuits in a wide range of sensing applications. With such a circuit, it is possible to achieve a high level of integration, thanks to the absence of passive resistors, and also to implement a ...
Vincenzo Stornelli +2 more
exaly +3 more sources
In this paper, a new realization of electronically tunable voltage output second-order low-pass (LP) and band-pass (BP) filter is presented. The circuit has a multiple-input single-output structure, and LP and BP outputs are provided using the same ...
Vincenzo Stornelli +2 more
exaly +2 more sources
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A New Voltage Mode KHN Biquad Using VCII
Journal of Circuits, Systems and Computers, 2021The objective of this paper was to propose a second generation voltage conveyor (VCII)-based new voltage mode biquad, equivalent to Kerwin–Huelsman–Newcomb (KHN) biquadratic circuit. The proposed circuit helped to efficiently add and subtract voltages by exploiting the virtual ground at one of the terminals of VCII, and without compromising on the ...
Sanuj Kulshrestha +2 more
openaire +2 more sources

