Series and parallel circuitsTwo-terminal components and electrical networks can be connected in series or parallel. The resulting electrical network will have two terminals, and itself can participate in a series or parallel topology. Whether a two-terminal "object" is an electrical component (e.g. a resistor) or an electrical network (e.g. resistors in series) is a matter of perspective. This article will use "component" to refer to a two-terminal "object" that participate in the series/parallel networks.
Phase converterA phase converter is a device that converts electric power provided as single phase to multiple phase or vice versa. The majority of phase converters are used to produce three-phase electric power from a single-phase source, thus allowing the operation of three-phase equipment at a site that only has single-phase electrical service. Phase converters are used where three-phase service is not available from the utility provider or is too costly to install.
Série de Fouriervignette|250px|Les quatre premières sommes partielles de la série de Fourier pour un signal carré. vignette|250px|Le premier graphe donne l'allure du graphe d'une fonction périodique ; l'histogramme donne les valeurs des modules des coefficients de Fourier correspondant aux différentes fréquences. En analyse mathématique, les séries de Fourier sont un outil fondamental dans l'étude des fonctions périodiques. C'est à partir de ce concept que s'est développée la branche des mathématiques connue sous le nom d'analyse harmonique.
Distribution transformerA distribution transformer or service transformer is a transformer that provides the final voltage transformation in the electric power distribution system, stepping down the voltage used in the distribution lines to the level used by the customer. The invention of a practical efficient transformer made AC power distribution feasible; a system using distribution transformers was demonstrated as early as 1882. If mounted on a utility pole, they are called pole-mount transformers.
Network analysis (electrical circuits)In electrical engineering and electronics, a network is a collection of interconnected components. Network analysis is the process of finding the voltages across, and the currents through, all network components. There are many techniques for calculating these values; however, for the most part, the techniques assume linear components. Except where stated, the methods described in this article are applicable only to linear network analysis.
Circuit magnétiqueUn circuit magnétique est un circuit généralement réalisé en matériau ferromagnétique au travers duquel circule un flux de champ magnétique. Le champ magnétique est généralement créé soit par des enroulements enserrant le circuit magnétique et traversés par des courants, soit par des aimants contenus dans le circuit magnétique. Lorsque plusieurs circuits électriques sont bobinés autour d'un même circuit magnétique, ils constituent des circuits magnétiquement couplés. Il est constitué d'un assemblage de pièces en matériaux ferromagnétiques.
État stationnaireEn physique, un procédé est dit à l'état stationnaire ou en régime stationnaire si les variables le décrivant ne varient pas avec le temps. Mathématiquement un tel état se définit par: quelle que soit propriété du système (significative dans la présente perspective). Un exemple de procédé stationnaire est un réacteur chimique dans une phase de production continue. Un tel système travaille à température, à concentrations (réactifs et produits) et à volume constants ; en revanche, la couleur ou la texture du milieu peuvent être non-significatives.
Fourier analysisIn mathematics, Fourier analysis (ˈfʊrieɪ,_-iər) is the study of the way general functions may be represented or approximated by sums of simpler trigonometric functions. Fourier analysis grew from the study of Fourier series, and is named after Joseph Fourier, who showed that representing a function as a sum of trigonometric functions greatly simplifies the study of heat transfer. The subject of Fourier analysis encompasses a vast spectrum of mathematics.
GyratorA gyrator is a passive, linear, lossless, two-port electrical network element proposed in 1948 by Bernard D. H. Tellegen as a hypothetical fifth linear element after the resistor, capacitor, inductor and ideal transformer. Unlike the four conventional elements, the gyrator is non-reciprocal. Gyrators permit network realizations of two-(or-more)-port devices which cannot be realized with just the conventional four elements. In particular, gyrators make possible network realizations of isolators and circulators.
Magnetic flux quantumThe magnetic flux, represented by the symbol Φ, threading some contour or loop is defined as the magnetic field B multiplied by the loop area S, i.e. Φ = B ⋅ S. Both B and S can be arbitrary, meaning Φ can be as well. However, if one deals with the superconducting loop or a hole in a bulk superconductor, the magnetic flux threading such a hole/loop is quantized. The (superconducting) magnetic flux quantum Φ0 = h/(2e) ≈ is a combination of fundamental physical constants: the Planck constant h and the electron charge e.