Time–frequency analysisIn signal processing, time–frequency analysis comprises those techniques that study a signal in both the time and frequency domains simultaneously, using various time–frequency representations. Rather than viewing a 1-dimensional signal (a function, real or complex-valued, whose domain is the real line) and some transform (another function whose domain is the real line, obtained from the original via some transform), time–frequency analysis studies a two-dimensional signal – a function whose domain is the two-dimensional real plane, obtained from the signal via a time–frequency transform.
AC motorAn AC motor is an electric motor driven by an alternating current (AC). The AC motor commonly consists of two basic parts, an outside stator having coils supplied with alternating current to produce a rotating magnetic field, and an inside rotor attached to the output shaft producing a second rotating magnetic field. The rotor magnetic field may be produced by permanent magnets, reluctance saliency, or DC or AC electrical windings.
DC motorA DC motor is an electrical motor that uses direct current (DC) to produce mechanical force. The most common types rely on magnetic forces produced by currents in the coils. Nearly all types of DC motors have some internal mechanism, either electromechanical or electronic, to periodically change the direction of current in part of the motor. DC motors were the first form of motors widely used, as they could be powered from existing direct-current lighting power distribution systems.
Induction motorAn induction motor or asynchronous motor is an AC electric motor in which the electric current in the rotor needed to produce torque is obtained by electromagnetic induction from the magnetic field of the stator winding. An induction motor can therefore be made without electrical connections to the rotor. An induction motor's rotor can be either wound type or squirrel-cage type. Three-phase squirrel-cage induction motors are widely used as industrial drives because they are self-starting, reliable, and economical.
FraisageLe fraisage est un procédé de fabrication où l'enlèvement de matière sous forme de copeaux résulte de la combinaison de deux mouvements : la rotation de l'outil de coupe, d'une part, et l'avancée de la pièce à usiner d'autre part. Le fraisage est seulement réalisé par une machine-outil, la fraiseuse qui est particulièrement adaptée à l'usinage de pièces prismatiques et permet également, si la machine est équipée de commande numérique, de réaliser tous types de formes même complexes. L'outil classiquement utilisé est la fraise.
Moteur pas à pasUn moteur pas à pas permet de transformer une impulsion électrique en un mouvement angulaire. On trouve trois types de moteurs pas à pas : le moteur à réluctance variable ; le moteur à aimants permanents ; le moteur hybride, qui est une combinaison des deux technologies précédentes. Le moteur pas à pas fut inventé en 1936 par Marius Lavet, un ingénieur français des Arts et Métiers, pour l'industrie horlogère.
Filtre (audio)Dans le traitement du signal, un filtre est un appareil ou une fonction servant à retirer ou bien à accentuer ou réduire certaines parties du spectre sonore représentées dans un signal. Les filtres sont essentiels dans plusieurs fonctions des appareils électroniques (voir Filtre (électronique)). Nous ne traiterons ici que des filtres accessibles par des commandes dans les tranches des consoles de mixage et les égaliseurs qui permettent d'ajuster la tonalité des sons.
Numerical controlNumerical control (also computer numerical control, abbreviated CNC) is the automated control of machining tools (such as drills, lathes, mills, grinders, routers and 3D printers) by means of a computer. A CNC machine processes a piece of material (metal, plastic, wood, ceramic, stone, or composite) to meet specifications by following coded programmed instructions and without a manual operator directly controlling the machining operation.
Filter designFilter design is the process of designing a signal processing filter that satisfies a set of requirements, some of which may be conflicting. The purpose is to find a realization of the filter that meets each of the requirements to a sufficient degree to make it useful. The filter design process can be described as an optimization problem where each requirement contributes to an error function that should be minimized. Certain parts of the design process can be automated, but normally an experienced electrical engineer is needed to get a good result.
Electric motorAn electric motor is an electrical machine that converts electrical energy into mechanical energy. Most electric motors operate through the interaction between the motor's magnetic field and electric current in a wire winding to generate force in the form of torque applied on the motor's shaft. An electric generator is mechanically identical to an electric motor, but operates with a reversed flow of power, converting mechanical energy into electrical energy.