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Method and devices for aiding in determining the feasibility of an electronic assembly

An assembly and feasible technology, applied in data processing applications, computer-aided design, electrical digital data processing, etc., can solve the problems of experience accumulation and non-standardization, to ensure accuracy and experience accumulation, improve the development process, and increase additional functional effect

Active Publication Date: 2009-08-05
AIRBUS OPERATIONS (SAS)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Therefore, the accumulation of experience is not normalized, the responsiveness of the original feasibility analysis and iterative responsiveness, and the reliability of the results cannot meet the expectations and needs of today's program development

Method used

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  • Method and devices for aiding in determining the feasibility of an electronic assembly
  • Method and devices for aiding in determining the feasibility of an electronic assembly
  • Method and devices for aiding in determining the feasibility of an electronic assembly

Examples

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Embodiment Construction

[0034] The method for analyzing the feasibility of an electronic assembly according to the invention can be run in a stand-alone manner to ensure a rapid evaluation of the feasibility of an electronic assembly, for example in the pre-planning phase. By extension, the method according to the invention can be used in the preliminary design phase of an electronic assembly or subassembly by an electronic design team. The method allows deviations in the material requirements of the specification after the stage of defining the functional structure of the device.

[0035] The method according to the invention analyzes the structure defined by the user according to a predetermined set of parameters in order to indicate the feasibility of the structure. The results of the analysis can be used as indices (indicators) during the development phase. The results include an indication (flag) of success or failure, and may also include an indication (flag) associated with each parameter ana...

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PUM

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Abstract

The invention concerns a method and devices for analyzing the feasibility of a computer system composed of subsystems, each having functions. After having determined the functional architecture of the computer system comprising at least one subsystem and at least one function, the characteristics of the functions implemented are imported from a database. The user determines the number of subsystems and the number of connectors per subsystem. He then distributes the functions to the subsystems and enters the characteristics of the connectors and the characteristics of the subsystems. The computer system is analyzed in light of the information provided by the user and the characteristics of the functions implemented in order to determine the feasibility of the computer system.

Description

technical field [0001] The present invention relates to the design of electronic assemblies, and more particularly to a method and apparatus for determining the feasibility of an electronic assembly. Background technique [0002] In the present invention, the study of the feasibility of an electronic assembly consists in determining whether it can solve a complex equation while considering multiple criteria such as physical size, electrical parameters, production deadlines or cost. Designing electronic assemblies such as the assembly of some electronic cards usually depends on the designer's experience on the basis of previous development and test analysis. figure 1 Electronic system 100 is shown including two subassemblies 105-1 and 105-2, each subassembly having one or more functions. The subassembly 105-1 as shown in this example includes three functions 110-1, 110-2 and 110-3. To perform these functions, electronic system 100 may be, for example, a flight control calcu...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50G06Q10/00G06F17/30
CPCG06F17/50G06Q10/06G06Q30/0283G06F30/00
Inventor P·庞兹R·佩尔塞
Owner AIRBUS OPERATIONS (SAS)