Concepts associés (43)
Discrete time and continuous time
In mathematical dynamics, discrete time and continuous time are two alternative frameworks within which variables that evolve over time are modeled. Discrete time views values of variables as occurring at distinct, separate "points in time", or equivalently as being unchanged throughout each non-zero region of time ("time period")—that is, time is viewed as a discrete variable. Thus a non-time variable jumps from one value to another as time moves from one time period to the next.
Full scale
In electronics and signal processing, full scale represents the maximum amplitude a system can represent. In digital systems, a signal is said to be at digital full scale when its magnitude has reached the maximum representable value. Once a signal has reached digital full scale, all headroom has been utilized, and any further increase in amplitude will result in an error known as clipping. The amplitude of a digital signal can be represented in percent; full scale; or decibels, full scale (dBFS).
Downsampling (signal processing)
In digital signal processing, downsampling, compression, and decimation are terms associated with the process of resampling in a multi-rate digital signal processing system. Both downsampling and decimation can be synonymous with compression, or they can describe an entire process of bandwidth reduction (filtering) and sample-rate reduction. When the process is performed on a sequence of samples of a signal or a continuous function, it produces an approximation of the sequence that would have been obtained by sampling the signal at a lower rate (or density, as in the case of a photograph).
Undersampling
In signal processing, undersampling or bandpass sampling is a technique where one samples a bandpass-filtered signal at a sample rate below its Nyquist rate (twice the upper cutoff frequency), but is still able to reconstruct the signal. When one undersamples a bandpass signal, the samples are indistinguishable from the samples of a low-frequency alias of the high-frequency signal. Such sampling is also known as bandpass sampling, harmonic sampling, IF sampling, and direct IF-to-digital conversion.
Signal en dents de scie
thumb|Signal en dents de scie thumb|Les cinq premières sommes partielles de sa série de Fourier thumb|Synthèse additive d'une onde en dents de scie Un signal en dents de scie est une sorte d'onde non-sinusoïdale que l'on rencontre en électronique, ou dans le domaine du traitement du signal. Il tire son nom de sa représentation graphique qui se rapproche des dents d'une scie. Une onde en dents de scie peut être construite en utilisant la synthèse additive : la série de Fourier converge vers une onde en dents de scie de fréquence f.
Échantillonneur-bloqueur
vignette|250x250px|Fig.1. Schéma simplifié d'un échantillonneur-bloqueur. L'entrée du signal analogique est notée AI, le signal de commande de l'interrupteur est noté C, la sortie du signal échantillonné est notée AO. vignette|Fig.2. Échantillonnage simple. Le signal n'existe qu'aux instants d'échantillonnage. vignette|Fig.3. Échantillonnage-blocage. Entre deux instants d'échantillonnage, le signal est maintenu constant et peut être aisément utilisé.
Companding
In telecommunication and signal processing, companding (occasionally called compansion) is a method of mitigating the detrimental effects of a channel with limited dynamic range. The name is a portmanteau of the words compressing and expanding, which are the functions of a compander at the transmitting and receiving ends, respectively. The use of companding allows signals with a large dynamic range to be transmitted over facilities that have a smaller dynamic range capability.
BiCMOS
BiCMOS (contraction de Bipolar-CMOS) est le nom d'une technique de circuit intégré alliant les avantages du CMOS et du bipolaire en un seul circuit intégré. Plus récemment, les processus bipolaires ont été étendus pour inclure des dispositifs à haute mobilité utilisant des jonctions silicium-germanium. Les transistors bipolaires offrent une grande vitesse, un gain élevé et une faible impédance de sortie avec une consommation d'énergie relativement élevée par composant.
Integrator
An integrator in measurement and control applications is an element whose output signal is the time integral of its input signal. It accumulates the input quantity over a defined time to produce a representative output. Integration is an important part of many engineering and scientific applications. Mechanical integrators are the oldest type and are still used for metering water flow or electrical power. Electronic analogue integrators are the basis of analog computers and charge amplifiers.
Nyquist rate
In signal processing, the Nyquist rate, named after Harry Nyquist, is a value (in units of samples per second or hertz, Hz) equal to twice the highest frequency (bandwidth) of a given function or signal. When the function is digitized at a higher sample rate (see ), the resulting discrete-time sequence is said to be free of the distortion known as aliasing. Conversely, for a given sample-rate the corresponding Nyquist frequency in Hz is one-half the sample-rate.

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