Design rule checkingIn electronic design automation, a design rule is a geometric constraint imposed on circuit board, semiconductor device, and integrated circuit (IC) designers to ensure their designs function properly, reliably, and can be produced with acceptable yield. Design rules for production are developed by process engineers based on the capability of their processes to realize design intent. Electronic design automation is used extensively to ensure that designers do not violate design rules; a process called design rule checking (DRC).
Profilage de codeEn informatique, le profilage de code (ou code profiling en anglais) consiste à analyser l'exécution d'un logiciel afin de connaitre son comportement à l'exécution. Le profilage de code permet de contrôler lors de l'exécution d'un logiciel : la liste des fonctions appelées et le temps passé dans chacune d'elles ; l'utilisation processeur ; l'utilisation mémoire. en rajoutant des instructions au code source originel qui permettent de mesurer le comportement du logiciel lors de l'exécution.
Analyse temporelle statiqueL’analyse temporelle statique (en anglais : static timing analysis, TSA) est une méthode d'évaluation de la fréquence de fonctionnement d'un circuit intégré. Contrairement à l'analyse dynamique, elle ne nécessite pas l'usage de vecteur de test ni de simulation. Elle repose sur le calcul et l'addition des délais de chaque porte logique élémentaire d'un circuit. L'analyse temporelle statique permet de calculer le plus long chemin logique d'un circuit, le chemin critique.
Modular designModular design, or modularity in design, is a design principle that subdivides a system into smaller parts called modules (such as modular process skids), which can be independently created, modified, replaced, or exchanged with other modules or between different systems. A modular design can be characterized by functional partitioning into discrete scalable and reusable modules, rigorous use of well-defined modular interfaces, and making use of industry standards for interfaces.
Design for testingDesign for testing or design for testability (DFT) consists of IC design techniques that add testability features to a hardware product design. The added features make it easier to develop and apply manufacturing tests to the designed hardware. The purpose of manufacturing tests is to validate that the product hardware contains no manufacturing defects that could adversely affect the product's correct functioning. Tests are applied at several steps in the hardware manufacturing flow and, for certain products, may also be used for hardware maintenance in the customer's environment.
Intégrité du signalvignette| Diagramme de l'œil simulé affichant une forme d'onde d'un signal d'une mémoire vive dynamique DDR3. En électronique logique et numérique, l'expression intégrité du signal ou SI (pour signal integrity en anglais) désigne la qualité du signal électrique qu'il est nécessaire de maintenir pour que le système effectue la tâche pour laquelle il est conçu. Le souci de l'intégrité du signal surgit dans la conception d'un nouveau dispositif électronique au moment de passer du schéma de principe au dessin de sa réalisation matérielle.
Hardware emulationIn integrated circuit design, hardware emulation is the process of imitating the behavior of one or more pieces of hardware (typically a system under design) with another piece of hardware, typically a special purpose emulation system. The emulation model is usually based on a hardware description language (e.g. Verilog) source code, which is compiled into the format used by emulation system. The goal is normally debugging and functional verification of the system being designed.
Full customIn integrated circuit design, full-custom is a design methodology in which the layout of each individual transistor on the integrated circuit (IC), and the interconnections between them, are specified. Alternatives to full-custom design include various forms of semi-custom design, such as the repetition of small transistor subcircuits; one such methodology is the use of standard cell libraries (which are themselves designed full-custom). Full-custom design potentially maximizes the performance of the chip, and minimizes its area, but is extremely labor-intensive to implement.
Conformal coatingConformal coating is a protective, breathable coating of thin polymeric film applied to printed circuit boards (PCB), so named because it conforms to the contours of the PCB. Conformal coatings are typically applied at 25–250 μm to the electronic circuitry and provide protection against moisture, dust, chemicals, and temperature extremities. More recently, conformal coatings are being used to reduce the formation of whiskers, and can also prevent current bleed between closely positioned components.
Directive RoHSvignette|Une vignette indiquant qu'un produit est conforme à cette directive. La Directive européenne RoHS (en) vise à limiter l'utilisation de dix substances dangereuses dans les équipements électriques et électroniques. Cette directive a été adoptée par le Parlement européen et par le Conseil et publiée au Journal officiel de l'Union européenne. La version initiale 2002/95/CE de la directive, publiée le ne visait à limiter que .