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.
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.
Groupe 5 du tableau périodiqueLe groupe 5 du tableau périodique, autrefois appelé groupe A dans l'ancien système IUPAC utilisé en Europe et groupe B dans le système CAS nord-américain, contient les éléments chimiques de la , ou groupe, du tableau périodique des éléments : {| class="wikitable" style="text-align:left" |- ! Période ! colspan="2" | Élément chimique ! Z ! Famille d'éléments ! Configuration électronique |- | style="text-align:center" | 4 ! V | Vanadium | style="text-align:right" | 23 | Métal de transition | |- | style="text-al
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.
Jonction p-nvignette|230px|Jonction p-n dans du silicium. Sur ce schéma, les régions p et n sont reliées à des contacts métalliques, ce qui suffit à transformer la jonction en diode. vignette|230px|Le symbole d'une diode associé à la représentation d'une jonction p-n. En physique des semi-conducteurs, une jonction p-n désigne une zone du cristal où le dopage varie brusquement, passant d'un dopage p à un dopage n.
DopantA dopant (also called a doping agent) is a trace of impurity element that is introduced into a chemical material to alter its original electrical or optical properties. The amount of dopant necessary to cause changes is typically very low. When doped into crystalline substances, the dopant's atoms get incorporated into its crystal lattice. The crystalline materials are frequently either crystals of a semiconductor such as silicon and germanium for use in solid-state electronics, or transparent crystals for use in the production of various laser types; however, in some cases of the latter, noncrystalline substances such as glass can also be doped with impurities.
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.
Strained siliconStrained silicon is a layer of silicon in which the silicon atoms are stretched beyond their normal interatomic distance. This can be accomplished by putting the layer of silicon over a substrate of silicon–germanium (). As the atoms in the silicon layer align with the atoms of the underlying silicon germanium layer (which are arranged a little farther apart, with respect to those of a bulk silicon crystal), the links between the silicon atoms become stretched - thereby leading to strained silicon.
CésiumLe césium est l'élément chimique de numéro atomique 55, de symbole Cs. Dans les conditions standard, le corps simple césium est un métal mou et ductile, blanc ou argenté à doré. Son point de fusion () est proche de la température ambiante et du corps humain (CNTP), à laquelle il peut demeurer à l'état liquide par surfusion ; le césium partage cette propriété avec le gallium et le rubidium, le mercure étant le seul métal pur liquide et s'évaporant à température ambiante.
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.