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A proposed RTL design technique for highly optimized on-chip data processors of MEMS sensors

机译:一种提出的RTL设计技术,用于MEMS传感器的高度优化的片上数据处理器

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Semiconductor sensor systems based on specific MEMS structures usually have to comprise at least a robust on-chip analogue read-out circuitry making it possible to detect and post-process the changes in physical characteristics. In order to ensure mobility or to improve reliability, robustness and performance (speed and/or power-consumption) the subsequent parts of the post-processing circuitry, namely the digital data processor or certain parts of it may also be implemented on-chip. Integration and cost usually treated as main objectives in both analogue and digital designs become essential when the data-processing subsystem has to be fit in a very limited area close to a MEMS sensor structure. The paper presents a novel Register-Transfer Level (RTL) design method aiming optimized design of digital data-processing systems related to MEMS sensors' post-processing algorithms. The paper presents a novel RTL description language and a unique synthesis flow resulting in area-optimized gate-level implementations capable of fulfilling the strict requirements set by the MEMS-based sensor environment.
机译:基于特定MEMS结构的半导体传感器系统通常必须包括至少一种坚固的片上模拟读出电路,这使得可以检测和后处理物理特性的变化。为了确保移动性或改善可靠性,鲁棒性和性能(速度和/或功耗)后处理电路的后续部分,即数字数据处理器或其某些部分也可以在片上实现。当数据处理子系统必须符合在接近MEMS传感器结构的非常有限的区域中时,通常被视为模拟和数字设计中的主要目标的整合和成本变得必不可少。本文提出了一种新颖的寄存器传输水平(RTL)设计方法,其旨在优化与MEMS传感器后处理算法相关的数字数据处理系统的设计。本文提出了一种新颖的RTL描述语言和独特的合成流程,产生了能够满足基于MEMS的传感器环境所设定的严格要求的区域优化的栅极电平实现。

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