Convolutional codeIn telecommunication, a convolutional code is a type of error-correcting code that generates parity symbols via the sliding application of a boolean polynomial function to a data stream. The sliding application represents the 'convolution' of the encoder over the data, which gives rise to the term 'convolutional coding'. The sliding nature of the convolutional codes facilitates trellis decoding using a time-invariant trellis. Time invariant trellis decoding allows convolutional codes to be maximum-likelihood soft-decision decoded with reasonable complexity.
Conception de circuits intégrésLa conception (ou le design) de circuits intégrés (ou puces électroniques) consiste à réaliser les nombreuses étapes de développement (flot de conception ou design flow) nécessaires pour concevoir correctement et sans erreurs une puce électronique. Le point d'entrée est une spécification fonctionnelle qui décrit le fonctionnement voulu de la puce, ainsi que des contraintes non fonctionnelles (surface, coût, consommation...).
Concatenated error correction codeIn coding theory, concatenated codes form a class of error-correcting codes that are derived by combining an inner code and an outer code. They were conceived in 1966 by Dave Forney as a solution to the problem of finding a code that has both exponentially decreasing error probability with increasing block length and polynomial-time decoding complexity. Concatenated codes became widely used in space communications in the 1970s.
Tornado codeIn coding theory, Tornado codes are a class of erasure codes that support error correction. Tornado codes require a constant C more redundant blocks than the more data-efficient Reed–Solomon erasure codes, but are much faster to generate and can fix erasures faster. Software-based implementations of tornado codes are about 100 times faster on small lengths and about 10,000 times faster on larger lengths than Reed–Solomon erasure codes. Since the introduction of Tornado codes, many other similar erasure codes have emerged, most notably Online codes, LT codes and Raptor codes.
Block codeIn coding theory, block codes are a large and important family of error-correcting codes that encode data in blocks. There is a vast number of examples for block codes, many of which have a wide range of practical applications. The abstract definition of block codes is conceptually useful because it allows coding theorists, mathematicians, and computer scientists to study the limitations of all block codes in a unified way.
Linear integrated circuitA linear integrated circuit or analog chip is a set of miniature electronic analog circuits formed on a single piece of semiconductor material. The voltage and current at specified points in the circuits of analog chips vary continuously over time. In contrast, digital chips only assign meaning to voltages or currents at discrete levels. In addition to transistors, analog chips often include a larger number of passive elements (capacitors, resistors, and inductors) than digital chips.
Capacité d'un canalLa capacité d'un canal, en génie électrique, en informatique et en théorie de l'information, est la limite supérieure étroite du débit auquel l'information peut être transmise de manière fiable sur un canal de communication. Suivant les termes du théorème de codage du canal bruyant, la capacité d'un canal donné est le débit d'information le plus élevé (en unités d'information par unité de temps) qui peut être atteint avec une probabilité d'erreur arbitrairement faible. La théorie de l'information, développée par Claude E.
Integrated circuit layout design protectionLayout designs (topographies) of integrated circuits are a field in the protection of intellectual property. In United States intellectual property law, a "mask work" is a two or three-dimensional layout or topography of an integrated circuit (IC or "chip"), i.e. the arrangement on a chip of semiconductor devices such as transistors and passive electronic components such as resistors and interconnections.
Hybrid integrated circuitA hybrid integrated circuit (HIC), hybrid microcircuit, hybrid circuit or simply hybrid is a miniaturized electronic circuit constructed of individual devices, such as semiconductor devices (e.g. transistors, diodes or monolithic ICs) and passive components (e.g. resistors, inductors, transformers, and capacitors), bonded to a substrate or printed circuit board (PCB). A PCB having components on a Printed Wiring Board (PWB) is not considered a true hybrid circuit according to the definition of MIL-PRF-38534.
Électronique numériqueL'électronique numérique concerne le système ou la technologie appliquée dont les caractéristiques sont exprimées par des valeurs de nombres, en anglais digital signifiant « chiffre ». La meilleure fiabilité lors de la transmission des signaux numérisés procure en principe, un contrôle de bout en bout de la chaîne des signaux. Le mode numérique permet de s'affranchir le plus souvent du bruit de fond, des parasites et autres artefacts lors de la transmission et améliore notamment le rapport signal sur bruit.