Home energy storageHome energy storage devices store electricity locally, for later consumption. Electrochemical energy storage products, also known as "Battery Energy Storage System" (or "BESS" for short), at their heart are rechargeable batteries, typically based on lithium-ion or lead-acid controlled by computer with intelligent software to handle charging and discharging cycles. Companies are also developing smaller flow battery technology for home use.
Diélectrique high-kUn diélectrique high-κ (high-κ dielectric) est un matériau avec une constante diélectrique κ élevée (comparée à celle du dioxyde de silicium) utilisé dans la fabrication de composants semi-conducteur en remplacement de la grille habituellement en dioxyde de silicium. L'utilisation de ce type de matériau constitue l'une des stratégies de développement permettant la miniaturisation des composés en microélectronique, afin de permettre de continuer à suivre la Loi de Moore.
Dielectric lossIn electrical engineering, dielectric loss quantifies a dielectric material's inherent dissipation of electromagnetic energy (e.g. heat). It can be parameterized in terms of either the loss angle δ or the corresponding loss tangent tan(δ). Both refer to the phasor in the complex plane whose real and imaginary parts are the resistive (lossy) component of an electromagnetic field and its reactive (lossless) counterpart.
Low-κ dielectricIn semiconductor manufacturing, a low-κ is a material with a small relative dielectric constant (κ, kappa) relative to silicon dioxide. Low-κ dielectric material implementation is one of several strategies used to allow continued scaling of microelectronic devices, colloquially referred to as extending Moore's law. In digital circuits, insulating dielectrics separate the conducting parts (wire interconnects and transistors) from one another.
Bloc fonctionnelvignette|Schéma fonctionnel comportant un générateur de tension idéal et une résistance. La modélisation par blocs fonctionnels simplifie la description du comportement d'un système physique distribué en le réduisant à un graphe (ou « topologie ») constitué d’éléments séparés, les blocs fonctionnels. Elle intervient dans les domaines les plus variés, depuis le réseau de distribution à la linguistique en passant par les circuits (thermiques, électriques ou électroniques, pneumatiques, hydrauliques), les robots, l'acoustique, etc.
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.
ElastanceElectrical elastance is the reciprocal of capacitance. The SI unit of elastance is the inverse farad (F−1). The concept is not widely used by electrical and electronic engineers. The value of capacitors is invariably specified in units of capacitance rather than inverse capacitance. However, it is used in theoretical work in network analysis and has some niche applications at microwave frequencies. The term elastance was coined by Oliver Heaviside through the analogy of a capacitor as a spring.
Relative permittivityThe relative permittivity (in older texts, dielectric constant) is the permittivity of a material expressed as a ratio with the electric permittivity of a vacuum. A dielectric is an insulating material, and the dielectric constant of an insulator measures the ability of the insulator to store electric energy in an electrical field. Permittivity is a material's property that affects the Coulomb force between two point charges in the material. Relative permittivity is the factor by which the electric field between the charges is decreased relative to vacuum.
Conducteur (électricité)Un conducteur d'électricité est un corps capable de laisser passer un courant électrique. Souvent, un bon conducteur d’électricité est aussi un bon conducteur de la chaleur. À l'opposé, un isolant électrique est un corps qui ne laisse pas passer le courant électrique. Un isolant est souvent également un mauvais conducteur de chaleur. thumb|Conducteurs électriques en cuivre entourés de leur isolant en plastique blanc.
Essai de compressionUn essai de compression mesure la résistance à la compression d'un matériau sur une machine d'essais mécaniques suivant un protocole normalisé. Les essais de compression se font souvent sur le même appareil que l'essai de traction mais en appliquant la charge en compression au lieu de l'appliquer en traction. Pendant l'essai de compression, l'échantillon se raccourcit et s'élargit. La déformation relative est « négative » en ce sens que la longueur de l'échantillon diminue.
Plane stressIn continuum mechanics, a material is said to be under plane stress if the stress vector is zero across a particular plane. When that situation occurs over an entire element of a structure, as is often the case for thin plates, the stress analysis is considerably simplified, as the stress state can be represented by a tensor of dimension 2 (representable as a 2×2 matrix rather than 3×3). A related notion, plane strain, is often applicable to very thick members.
Ultimate tensile strengthUltimate tensile strength (also called UTS, tensile strength, TS, ultimate strength or in notation) is the maximum stress that a material can withstand while being stretched or pulled before breaking. In brittle materials the ultimate tensile strength is close to the yield point, whereas in ductile materials the ultimate tensile strength can be higher. The ultimate tensile strength is usually found by performing a tensile test and recording the engineering stress versus strain.