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New Architecture for Intelligent Pressure Sensors with Analog and Digital Outputs

机译:具有模拟和数字输出的智能压力传感器的新架构

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This article proposes a new architecture for intelligent pressure sensors based on the interconnection of a Digital Signal Processor (DSP) and a microcontroller. This configuration allows to obtain a highly accurate output using a reduced number of electronic components. Additionally, very low response times are obtained and different protocols for digital communication are implemented. This paper also discusses the compensation algorithm used to correct the sensitivity and offset dependence on temperature, as well as non-linearity of the pressure sensor response. Hardware and tests performed to verify the proposed architecture operation are described. The total error band obtained in the digital output was 0.07% of full scale output for a relative pressure sensor in a temperature range of 0 to 50 ??C. The obtained results demonstrate the advantages of the new architecture proposed.
机译:本文提出了一种基于数字信号处理器(DSP)和微控制器互连的智能压力传感器的新架构。这种配置允许使用减少数量的电子组件来获得高精度的输出。另外,获得了非常低的响应时间,并且实现了用于数字通信的不同协议。本文还讨论了用于校正灵敏度和偏移量对温度的依赖性以及压力传感器响应的非线性的补偿算法。描述了为验证提议的体系结构操作而执行的硬件和测试。在0至50°C的温度范围内,数字输出中获得的总误差带为相对压力传感器满量程输出的0.07%。获得的结果证明了所提出的新架构的优势。

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