Results 1 to 10 of about 13,584 (301)

Fully CMOS Memristor Based Chaotic Circuit [PDF]

open access: yesRadioengineering, 2014
This paper demonstrates the design of a fully CMOS chaotic circuit consisting of only DDCC based memristor and inductance simulator. Our design is composed of these active blocks using CMOS 0.18 µm process technology with symmetric ±1.25 V supply ...
S. C. Yener, H. H. Kuntman
doaj   +2 more sources

DCCII-Based Novel Lossless Grounded Inductance Simulators With No Element Matching Constrains [PDF]

open access: yesRadioengineering, 2014
In 1996, the differential current conveyor (DCCII) was introduced as a versatile active element with current differencing capability. Therefore, in this study, the usefulness of the DCCII is shown on six novel lossless grounded inductance simulator ...
B. Metin   +3 more
doaj   +2 more sources

Full-Wave Simulation of a Solenoid RF Coil for Small Animal Magnetic Resonance Imaging with a Clinical Scanner [PDF]

open access: yesSensors
Clinical research groups rarely have easy access to dedicated animal Magnetic Resonance (MR) systems. For this reason, dedicated hardware has to be developed to optimize small animal imaging on clinical scanners.
Giulio Giovannetti   +3 more
doaj   +2 more sources

Lossless active floating inductance simulator

open access: yesThird IEEE International Workshop on Electronic Design, Test and Applications (DELTA'06), 2006
In this paper, a new active circuit for realizing lossless floating inductor using current controlled conveyors (CCCIIs) and single capacitor is presented. The proposed inductance simulator can be tuned electronically by changing the biasing currents of the CCCIIs.
Minaei, Shahram   +2 more
exaly   +3 more sources

A Versatile Active Block: DXCCCII and Tunable Applications [PDF]

open access: yesRadioengineering, 2014
The study describes dual-X controlled current conveyor (DXCCCII) as a versatile active block and its application to inductance simulators for testing. Moreover, the high pass filter application using with DXCCCII based inductance simulator and oscillator
S. A. Tekin, H. Ercan, M. Alci
doaj   +2 more sources

Novel Floating General Element Simulators Using CBTA [PDF]

open access: yesRadioengineering, 2012
In this study, a novel floating frequency dependent negative resistor (FDNR), floating inductor, floating capacitor and floating resistor simulator circuit employing two CBTAs and three passive components is proposed.
U. E. Ayten   +3 more
doaj   +2 more sources

Lossy/Lossless Floating/Grounded Inductance Simulation Using One DDCC [PDF]

open access: yesRadioengineering, 2012
In this work, we present new topologies for realizing one lossless grounded inductor and two floating, one lossless and one lossy, inductors employing a single differential difference current conveyor (DDCC) and a minimum number of passive components ...
M. A. Ibrahim   +4 more
doaj   +2 more sources

Research on Inductance Selection and Control Technology for Motor Simulator

open access: yesKongzhi Yu Xinxi Jishu, 2023
The coupling inductance parameters of motor simulator have a great influence on the system performance, however, there is limited detailed analysis and research of their parameter selection.
LIU li   +4 more
doaj   +3 more sources

Novel simulator designed for grounded negative inductance with lossless characteristics incorporated with single OTRA

open access: yesMemories - Materials, Devices, Circuits and Systems, 2023
This article introduces a novel design of a simulator for grounded lossless negative inductance by using an active element -single Operational Trans Resistance Amplifier (OTRA) and four passive components.
Khushi Banerjee   +3 more
doaj   +1 more source

Parameter Optimization of Noise-Reduction Filters of Hi-Performance Power Supplies

open access: yesДоклады Белорусского государственного университета информатики и радиоэлектроники, 2023
For a noise-reduction filter, the parameters of the manufactured device often do not fit the expected parameters during development, what is caused by the spread of the parameters of the electronic components or their parasitic parameters, as well as due
A. A. Shmelkova   +2 more
doaj   +1 more source

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