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A Design Paradigm to Facilitate Multiple Parts from a Single Silicon Design

机译:一种从单个硅设计方便多个部件的设计范式

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To reduce overall design complexity and cost for RAM, a design paradigm is discussed that is based on a single silicon device containing multiple, configurable interfaces with a common RAM core. This will help bring to market more devices that operate in extreme environments. The cost per die is higher due to the addition of the configurable interface, but yields a net reduction in overall engineering development time for a given product family by a factor of four to five. To demonstrate this design paradigm a family of five RAM chips built on a single silicon design is developed. They are designed for low-power consumption and highly reliable, fault-tolerant operation, while operating over a temperature range of -55 to +300 degrees C.
机译:为了降低整体设计复杂性和RAM成本,讨论了一种基于包含具有共同RAM核心的多个可配置接口的单个​​硅设备的设计范式。这将有助于推出更多在极端环境中运行的设备。由于添加可配置的界面,每芯片的成本更高,但是对于给定的产品系列的整体工程开发时间净降低为四倍至五个。为了展示这种设计范式,开发了一个基于单个硅设计的五个RAM芯片。它们设计用于低功耗和高度可靠,容易容错的操作,同时在-55至+300摄氏度的温度范围内运行。

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