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Digitally Programmable Analogue Circuits for Sensor Conditioning Systems

机译:用于传感器调节系统的数字可编程模拟电路

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摘要

This work presents two current-mode integrated circuits designed for sensor signal preprocessing in embedded systems. The proposed circuits have been designed to provide good signal transfer and fulfill their function, while minimizing the load effects due to building complex conditioning architectures. The processing architecture based on the proposed building blocks can be reconfigured through digital programmability. Thus, sensor useful range can be expanded, changes in the sensor operation can be compensated for and furthermore, undesirable effects such as device mismatching and undesired physical magnitudes sensor sensibilities are reduced. The circuits were integrated using a 0.35 μm standard CMOS process. Experimental measurements, load effects and a study of two different tuning strategies are presented. From these results, system performance is tested in an application which entails extending the linear range of a magneto-resistive sensor. Circuit area, average power consumption and programmability features allow these circuits to be included in embedded sensing systems as a part of the analogue conditioning components.
机译:这项工作提出了两种电流模式集成电路,这些电路设计用于嵌入式系统中的传感器信号预处理。所提出的电路已被设计为提供良好的信号传输并实现其功能,同时将由于构建复杂的调理架构而造成的负载影响降至最低。可以通过数字可编程性来重新配置基于建议的构建块的处理体系结构。因此,可以扩大传感器的使用范围,可以补偿传感器的操作变化,此外,还可以减少不希望的影响,例如设备失配和不希望的物理幅度传感器灵敏度。使用0.35μm标准CMOS工艺对电路进行集成。介绍了实验测量,负载效应以及对两种不同调整策略的研究。根据这些结果,可以在需要扩展磁阻传感器线性范围的应用中测试系统性能。电路面积,平均功耗和可编程性功能使这些电路可以作为模拟调节组件的一部分包含在嵌入式传感系统中。

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