Film capacitorFilm capacitors, plastic film capacitors, film dielectric capacitors, or polymer film capacitors, generically called film caps as well as power film capacitors, are electrical capacitors with an insulating plastic film as the dielectric, sometimes combined with paper as carrier of the electrodes. The dielectric films, depending on the desired dielectric strength, are drawn in a special process to an extremely thin thickness, and are then provided with electrodes.
Tantalum capacitorA tantalum electrolytic capacitor is an electrolytic capacitor, a passive component of electronic circuits. It consists of a pellet of porous tantalum metal as an anode, covered by an insulating oxide layer that forms the dielectric, surrounded by liquid or solid electrolyte as a cathode. Because of its very thin and relatively high permittivity dielectric layer, the tantalum capacitor distinguishes itself from other conventional and electrolytic capacitors in having high capacitance per volume (high volumetric efficiency) and lower weight.
Electrolytic capacitorAn electrolytic capacitor is a polarized capacitor whose anode or positive plate is made of a metal that forms an insulating oxide layer through anodization. This oxide layer acts as the dielectric of the capacitor. A solid, liquid, or gel electrolyte covers the surface of this oxide layer, serving as the cathode or negative plate of the capacitor. Because of their very thin dielectric oxide layer and enlarged anode surface, electrolytic capacitors have a much higher capacitance-voltage (CV) product per unit volume than ceramic capacitors or film capacitors, and so can have large capacitance values.
Capacitor typesCapacitors are manufactured in many styles, forms, dimensions, and from a large variety of materials. They all contain at least two electrical conductors, called plates, separated by an insulating layer (dielectric). Capacitors are widely used as parts of electrical circuits in many common electrical devices. Capacitors, together with resistors and inductors, belong to the group of passive components in electronic equipment.
Polymer capacitorA polymer capacitor, or more accurately a polymer electrolytic capacitor, is an electrolytic capacitor (e-cap) with a solid conductive polymer electrolyte. There are four different types: Polymer tantalum electrolytic capacitor (Polymer Ta-e-cap) Polymer aluminium electrolytic capacitor (Polymer Al-e-cap) Hybrid polymer capacitor (Hybrid polymer Al-e-cap) Polymer niobium electrolytic capacitors Polymer Ta-e-caps are available in rectangular surface-mounted device (SMD) chip style.
Parasite (électricité)In electrical networks, a parasitic element is a circuit element (resistance, inductance or capacitance) that is possessed by an electrical component but which it is not desirable for it to have for its intended purpose. For instance, a resistor is designed to possess resistance, but will also possess unwanted parasitic capacitance. Parasitic elements are unavoidable. All conductors possess resistance and inductance and the principles of duality ensure that where there is inductance, there will also be capacitance.
Aluminum electrolytic capacitorAluminum electrolytic capacitors are polarized electrolytic capacitors whose anode electrode (+) is made of a pure aluminum foil with an etched surface. The aluminum forms a very thin insulating layer of aluminum oxide by anodization that acts as the dielectric of the capacitor. A non-solid electrolyte covers the rough surface of the oxide layer, serving in principle as the second electrode (cathode) (-) of the capacitor. A second aluminum foil called “cathode foil” contacts the electrolyte and serves as the electrical connection to the negative terminal of the capacitor.
Applications of capacitorsCapacitors have many uses in electronic and electrical systems. They are so ubiquitous that it is rare that an electrical product does not include at least one for some purpose. Capacitors allow only AC signals to pass when they are charged blocking DC signals. The main components of filters are capacitors. Capacitors have the ability to connect one circuit segment to another. Capacitors are used by Dynamic Random Access Memory (DRAM) devices to represent binary information as bits.
Ceramic capacitorA ceramic capacitor is a fixed-value capacitor where the ceramic material acts as the dielectric. It is constructed of two or more alternating layers of ceramic and a metal layer acting as the electrodes. The composition of the ceramic material defines the electrical behavior and therefore applications. Ceramic capacitors are divided into two application classes: Class 1 ceramic capacitors offer high stability and low losses for resonant circuit applications.
Parasitic capacitanceParasitic capacitance is an unavoidable and usually unwanted capacitance that exists between the parts of an electronic component or circuit simply because of their proximity to each other. When two electrical conductors at different voltages are close together, the electric field between them causes electric charge to be stored on them; this effect is capacitance. All practical circuit elements such as inductors, diodes, and transistors have internal capacitance, which can cause their behavior to depart from that of ideal circuit elements.
InducteurL'inducteur est un organe électrotechnique, généralement un électroaimant (les aimants permanents étant généralement réservés aux dispositifs de faible puissance) ayant comme fonction d'induire un champ électromagnétique dans un induit servant à produire de l'énergie électrique (alternateur) ou une force (moteur) ou à chauffer des conducteurs comme des métaux de toutes sortes. Lorsque le courant circulant dans la bobine change, le champ magnétique variable dans le temps induit une force électromotrice (f.e.
CondensateurUn condensateur est un composant électronique élémentaire, constitué de deux armatures conductrices (appelées « électrodes ») en influence totale et séparées par un isolant polarisable (ou « diélectrique »). Sa propriété principale est de pouvoir stocker des charges électriques opposées sur ses armatures. La valeur absolue de ces charges est proportionnelle à la valeur absolue de la tension qui lui est appliquée.
Equivalent Series ResistanceLa résistance série équivalente ou ESR (pour en) est une représentation de la résistance électrique d'un composant électronique passif, mesurée en ohms. En l'absence de mentions contraires, l'ESR est toujours une résistance sur courant alternatif mesurée à des fréquences standards. La théorie de l'électronique manipule des résistances, des condensateurs et des bobines idéaux : ils sont dotés uniquement d'une résistance, d'une capacité ou d'une inductance.
Equivalent series inductanceEquivalent series inductance (ESL) is an effective inductance that is used to describe the inductive part of the impedance of certain electrical components. The theoretical treatment of devices such as capacitors and resistors tends to assume they are ideal or "perfect" devices, contributing only capacitance or resistance to the circuit. However, all physical devices are connected to a circuit through conductive leads and paths, which contain inherent, usually unwanted, inductance.
Simulation de phénomènesLa simulation de phénomènes est un outil utilisé dans le domaine de la recherche et du développement. Elle permet d'étudier les réactions d'un système à différentes contraintes pour en déduire les résultats recherchés en se passant d'expérimentation. Les systèmes technologiques (infrastructures, véhicules, réseaux de communication, de transport ou d'énergie) sont soumis à différentes contraintes et actions. Le moyen le plus simple d'étudier leurs réactions serait d'expérimenter, c'est-à-dire d'exercer l'action souhaitée sur l'élément en cause pour observer ou mesurer le résultat.
Condensateur de découplageUn condensateur de découplage est un condensateur destiné à réduire le couplage entre signal et alimentation. Le condensateur relie le canal d'alimentation à la masse pour abaisser son impédance dans la bande passante du signal. On n'a pas besoin d'une grande précision sur la valeur du composant. Celle-ci dépend de l'intensité qui traverse le canal et de la fréquence du signal. Le module de l'impédance d'un condensateur de capacité est de la forme (avec ).
Simulation informatiquevignette|upright=1|Une simulation informatique, sur une étendue de , de l'évolution du typhon Mawar produite par le Modèle météorologique Weather Research and Forecasting La simulation informatique ou numérique est l'exécution d'un programme informatique sur un ordinateur ou réseau en vue de simuler un phénomène physique réel et complexe (par exemple : chute d’un corps sur un support mou, résistance d’une plateforme pétrolière à la houle, fatigue d’un matériau sous sollicitation vibratoire, usure d’un roulem
Global optimizationGlobal optimization is a branch of applied mathematics and numerical analysis that attempts to find the global minima or maxima of a function or a set of functions on a given set. It is usually described as a minimization problem because the maximization of the real-valued function is equivalent to the minimization of the function . Given a possibly nonlinear and non-convex continuous function with the global minima and the set of all global minimizers in , the standard minimization problem can be given as that is, finding and a global minimizer in ; where is a (not necessarily convex) compact set defined by inequalities .
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.
RésonanceLa résonance est un phénomène selon lequel certains systèmes physiques (électriques, mécaniques) sont sensibles à certaines fréquences. Un système résonant peut accumuler une énergie, si celle-ci est appliquée sous forme périodique, et proche d'une fréquence dite « fréquence de résonance ». Soumis à une telle excitation, le système va être le siège d'oscillations de plus en plus importantes, jusqu'à atteindre un régime d'équilibre qui dépend des éléments dissipatifs du système, ou bien jusqu'à une rupture d'un composant du système.