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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >WIRELESSLY POWERED HIGH-TEMPERATURE STRAIN MEASURING PROBE BASED ON PIEZORESISTIVE NANOCRYSTALLINE DIAMOND LAYERS
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WIRELESSLY POWERED HIGH-TEMPERATURE STRAIN MEASURING PROBE BASED ON PIEZORESISTIVE NANOCRYSTALLINE DIAMOND LAYERS

机译:基于压阻纳米晶金刚石层的无线动力高温应变测量探头

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摘要

A high-temperature piezo-resistive nano-crystalline diamond strain sensor and wireless powering are presented in this paper. High-temperature sensors and electronic devices are required in harsh environments where the use of conventional electronic circuits is impractical or impossible. Piezo-resistive sensors based on nano-crystalline diamond layers were successfully designed, fabricated and tested. The fabricated sensors are able to operate at temperatures of up to 250 with a reasonable sensitivity. The basic principles and applicability of wireless powering using the near magnetic field are also presented. The system is intended mainly for circuits demanding energy consumption, such as resistive sensors or devices that consist of discrete components. The paper is focused on the practical aspect and implementation of the wireless powering. The presented equations enable to fit the frequency to the optimal range and to maximize the energy and voltage transfer with respect to the coils' properties, expected load and given geometry. The developed system uses both high-temperature active devices based on CMOS-SOI technology and strain sensors which can be wirelessly powered from a distance of up to several centimetres with the power consumption reaching hundreds of milliwatts at 200. The theoretical calculations are based on the general circuit theory and were performed in the software package Maple. The results were simulated in the Spice software and verified on a real sample of the measuring probe.
机译:本文提出了一种高温压电纳米晶金刚石应变传感器和无线电力。在恶劣的环境中需要高温传感器和电子设备,其中使用传统电子电路是不切实际或不可能的。基于纳米结晶金刚石层的压电传感器成功设计,制造和测试。制造的传感器能​​够以高达250的温度操作,具有合理的灵敏度。还介绍了使用近磁场进行无线供电的基本原理和适用性。该系统主要用于要求能耗的电路,例如由离散组件组成的电阻传感器或设备。本文专注于实际方面和无线电力的实施。所呈现的等式使得能够将频率适合于最佳范围,并最大化相对于线圈的性质,预期负载和给定几何的能量和电压传递。开发系统采用基于CMOS-SOI技术和应变传感器的高温活性器件,其可以通过高达数厘米的距离无线供电,其中功耗在200时达到数百毫瓦。理论计算基于通用电路理论,并在软件包枫木中进行。结果在Spice软件中模拟并验证了测量探头的真实样本。

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