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Electrical impedance

About: Electrical impedance is a research topic. Over the lifetime, 36015 publications have been published within this topic receiving 371891 citations. The topic is also known as: electrical impedance & complex impedance.


Papers
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Patent
23 Mar 1993
TL;DR: In this article, the frequency-dependent complex impedance of a string of batteries connected to a power supply for operating electrical equipment is calculated using a Fourier transform of the measured current and voltage.
Abstract: A method and apparatus for testing a string of batteries (24) connected to a power supply (18) for operating electrical equipment (10). The equipment inherently provides a source of broad-band noise. Current is measured across a conductive link (28) which interconnects adjacent batteries. Voltage across a selected battery is also measured. An impedance analyzer (30) combines the measured current and voltage to determine the impedance over many sampling periods. This data is Fourier transformed to obtain the frequency-dependent complex impedance of the selected battery, which can be related to the selected battery's capacity.

112 citations

Patent
12 Jul 2002
TL;DR: In this article, a minute ventilation sensing device is used to measure transthoracic impedance with a excitation current waveform at a specified amplitude and frequency, in order to reduce interference with the impedance measurement from external noise sources.
Abstract: A minute ventilation sensing device in which transthoracic impedance is measured with a excitation current waveform at a specified amplitude and frequency. In order reduce interference with the impedance measurement from external noise sources, a noise detection operation may be performed with the amplitude and/or frequency of the excitation current waveform adjusted accordingly.

112 citations

Journal ArticleDOI
TL;DR: The electrical properties of Ni0.27Cu0.10Zn0.63Fe2O4 (NCZF) prepared from auto combustion synthesis of ferrite powders have been studied by impedance and modulus spectroscopy as mentioned in this paper.
Abstract: The electrical properties of Ni0.27Cu0.10Zn0.63Fe2O4 (NCZF) prepared from auto combustion synthesis of ferrite powders have been studied by impedance and modulus spectroscopy. We studied frequency and temperature dependencies of impedance and electric modulus of NCZF in a wide frequency range (20 Hz-5 MHz) at different measuring temperatures SM T (30-225 ℃). The complex impedance spectra clearly showed both grain and grain boundary effects on the electrical properties. The observed impedance spectra indicated that the magnitude of grain boundary resistance gb R becomes more prominent compared to grain resistance b R at room temperature, and with the increase in SM T , gb R decreases faster than the intrinsic b R. The frequency response of the imaginary part of impedance showed relaxation behavior at every SM T , and the relaxation frequency variation with SM T appeared to be of Arrhenius nature and the activation energy has been estimated to be 0.37 eV. A complex modulus spectrum was used to understand the mechanism of the electrical transport process, which indicated that a non-Debye type of conductivity relaxation characterizes this material.

112 citations

Journal ArticleDOI
Hui Yu1, Wim Bogaerts1
TL;DR: An equivalent circuit model for the coplanar waveguide (CPW) which serves as the traveling wave electrode to drive carrier-depletion-based silicon modulators is proposed in this article.
Abstract: We propose an equivalent circuit model for the coplanar waveguide (CPW) which serves as the traveling wave electrode to drive carrier-depletion-based silicon modulators. Conformal mapping and partial capacitance techniques are employed to calculate each element of the circuit. The validity of the model is confirmed by the comparison with both finite-element simulation and experimental result. With the model, we calculate the modulation bandwidth for different CPW dimensions and termination impedances. A 3 dB modulation bandwidth of 15 GHz is demonstrated with a traveling wave electrode of 3 mm. The calculation indicates that, by utilizing a traveling wave electrode of 2 mm, we can obtain a 3 dB modulation bandwidth of 28 GHz.

112 citations

Journal ArticleDOI
TL;DR: Capacitance and dissipation factor values of polymethyl methacrylate-co-poly 4vinyl pyridine N -oxide (PMMA-CO-P4VPNO) were measured in the frequency range 0.01-100 kHz and temperature range 300-410 K as discussed by the authors.

111 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20231,514
20223,479
20211,009
20201,579
20191,924
20181,809