By Peter A. Sandborn, Hector Moreno (auth.)
Conceptual layout of Multichip Modules and Systems treats actions which happen on the conceptual and specification point of the layout of complicated multichip platforms. those actions contain the formalization of layout wisdom (information modeling), tradeoff research, partitioning, and selection method trap. All of those capabilities happen ahead of the conventional CAD actions of synthesis and actual design.
Inherent within the layout of digital modules are tradeoffs which needs to be understood prior to possible expertise, fabric, technique, and partitioning offerings will be chosen. the inability of a whole set of know-how info is a particularly significant issue within the packaging and interconnect box because the variety of applied sciences, procedure, and fabrics is giant and choosing optimums is exhausting and non-trivial if one actually wishes a stability in price and function. a number of tradeoff and layout judgements must be made intelligently and fast in the beginning of the layout cycle sooner than actual layout paintings starts off. those serious judgements, made in the first 10% of the complete layout cycle, eventually outline as much as eighty% of the ultimate product cost.
Conceptual layout of Multichip Modules and Systems lays the foundation for concurrent estimation point research together with measurement, routing, electric functionality, thermal functionality, rate, reliability, manufacturability, and checking out. will probably be worthwhile either as a reference for method designers and as a textual content for these wishing to realize a standpoint at the nature of packaging and interconnect layout, concurrent engineering, computer-aided layout, and procedure synthesis.
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Additional info for Conceptual Design of Multichip Modules and Systems
Semantics depends on the application, and syntax should be general and able to convey the semantics. This concept may be expressed through a diagram. The formal definition of the path entity is part of a high-level description of the information we want to model. 2. 3. 2. A schema describes entities and how they are interrelated. The simple example above, which attempts formalization of the information on straight interconnect lines is written in a standard information modeling language called EXPRESS.
A real, manufactured interconnect line is a much more complex thing than the list 1. An entity is defined as an object, having an independent existence, that represents a basic concept. 28 CONCEPTUAL DESIGN OF MULTICHIP MODULES AND SYSTEMS of properties we are focusing on in our simple description. For example, one physical attribute about the real interconnect line is its temperature, which in tum could be defined as a continuous physical field defined over the three dimensions where the physical interconnect exists, plus time.
In addition to the TYPE declaration, it is possible to introduce enumerated data types, which are ordered sets of values which are represented by names. Each of these names must be unique within the enumerated set. As an example, consider: TYPE color = ENUMERATION OF (red,orange,yellow,green,blue, violet, black, white,other,none); END_TYPE; ENTITY coloredFigure; figure: SomeFigure; origin: point; Ifill: color; END_ENTITY; In a given schema, it is possible to access entities defined in other Schemas, but one can not nest schema definitions.