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Implications of intelligent, integrated microsystems for product design and development

机译:智能集成微系统对产品设计和开发的影响

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Intelligent, integrated microsystems combine some or all of the functions of sensing, processing information, actuation and communication within a single integrated package, and preferably upon a single silicon chip. As the elements of these highly integrated solutions interact strongly with each other, the microsystem can be neither designed nor fabricated piecemeal, in contrast to the more familiar assembled products. Driven by technological imperatives, microsystems will best be developed by multidisciplinary teams, most likely within flatter, less hierarchical organizations. Standardization of design and process tools around a single, dominant technology will expedite economically viable operation under a common production infrastructure. The production base for intelligent, integrated microsystems has elements in common with the mathematical theory of chaos. Similar to chaos theory, the development of microsystems technology will be strongly dependent on, and optimized to, the initial product requirements that will drive standardization-thereby further rewarding early entrants to integrated microsystem technology.
机译:智能的集成微系统在单个集成封装内(最好在单个硅芯片上)结合了传感,处理信息,驱动和通信的部分或全部功能。由于这些高度集成的解决方案的各个要素之间相互作用强烈,与更熟悉的组装产品相比,微系统既不能设计也不能零碎制造。在技​​术需求的驱动下,微系统最好由多学科的团队开发,最有可能是在比较扁平,等级较低的组织内。围绕一种主导技术的设计和工艺工具的标准化将在通用的生产基础架构下加快经济可行的操作。智能集成微系统的生产基地具有与混沌数学理论相同的元素。与混乱理论类似,微系统技术的发展将在很大程度上取决于并优化将推动标准化的初始产品需求,从而进一步奖励集成微系统技术的早期参与者。

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