Results 11 to 20 of about 329 (135)
In this contribution, the realization of a first-order, two-input, single-output voltage-mode multifunction filter employing a second-generation voltage conveyor (VCII) is described. The proposed first-order versatile filter is extremely simple, composed
Winai Jaikla +6 more
doaj +2 more sources
VCII-Based Sensor Interface for Silicon Photomultiplier
We here propose a voltage conveyor-based sensor interface for silicon photomultipliers (SiPMs). The solution addresses a mixed-mode (voltage/current) design taking advantage from the current-mode approach to increase the response time and the drive capability. This solution, based on a voltage conveyor (VCII) shows very high transimpedance gain that is
Barile G. +3 more
core +3 more sources
Novel Lossless Positive-/Negative-Grounded Capacitance Multipliers Using VCII
In the presented research, the second-generation voltage conveyor (VCII) is used in the design of active capacitance multipliers. In this paper, three positive and one negative lossless grounded capacitance multipliers (GCMs) are designed.
Mohammad Faseehuddin +3 more
doaj +2 more sources
A single VCII-based lossless grounded capacitance multiplier [PDF]
A grounded capacitance multiplier (GCM), which has a single second-generation voltage conveyor (VCII), is proposed in this manuscript. The proposed GCM is lossless, and it is designed with two resistors and a capacitor. In the proposed GCM, there is no need for any passive/active element matching conditions.
Yucehan, Tolga
core +3 more sources
Current-Mode PID Controller Using Second-Generation Voltage Conveyor (VCII)
In this paper, a current-mode (CM) proportional integral derivative (PID) controller based on second-generation voltage conveyor (VCII) is presented. The proposed circuit consists of two-plus type VCIIs, two resistors, and two capacitors. There is no need of critical matching condition.
Ozer, Emre +2 more
openaire +4 more sources
A VCII Based Tunable Positive and Negative Impedance Simulator and Impedance Multiplier (2022)
<p>This paper presents a novel CMOS tunable positive and negative active inductor simulator (AIs), positive capacitance and resistance multiplier and negative capacitance and resistance simulator. The proposed design use only one second-generation voltage-mode conveyor (VCII) and three passive elements.
Muneer Al Absi (12466782)
openaire +2 more sources
Variable Frequency Oscillator-Based Resistive Sensor Interfaces Using VCII
This work deals with the realization of oscillator-based resistive sensor interfaces using a second-generation voltage conveyor (VCII). In particular, novel configurations of sinusoidal variable frequency oscillators (VFO) are presented and analyzed in detail.
Scarsella, Massimo +3 more
openaire +4 more sources
Low-Power VCII-Based Current-Mode Schmitt Trigger with High Drive Capabilities
In this paper, a novel CMOS current-mode Schmitt Trigger based on the Second Generation Voltage Conveyor (VCII) is proposed. The circuit has been designed in a standard CMOS 150 nm technology with a dual ±1.65 V voltage supply, and simulations and layout were carried out on Cadence Virtuoso.
Colaiuda D. +4 more
openaire +3 more sources
A current mode operational transconductance amplifier‐only half/full‐wave rectifier
This letter introduces a novel half/full‐wave rectifier architecture that utilizes only an operational transconductance amplifier (OTA), eliminating the need for external passive components. The proposed circuit can accurately process input current signals with frequencies of up to 1MHz, within an operating range of ±270 μA.
Predrag Boško Petrović
wiley +1 more source
Cluster‐Based Pavement Deterioration Models for Low‐Volume Rural Roads
The management of low‐volume rural roads in developing countries presents a range of challenges to road designers and managers. Rural roads comprise over 85 percent of the road network in India. The present study aims at development of deterioration models for the optimum maintenance management of the rural roads under a rural road programme namely ...
V. Sunitha +5 more
wiley +1 more source

