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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Wireless Stress Mapping System for Orthodontic Brackets Using CMOS Integrated Sensors
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A Wireless Stress Mapping System for Orthodontic Brackets Using CMOS Integrated Sensors

机译:使用CMOS集成传感器的正畸支架无线应力映射系统

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摘要

A wireless stress mapping system for the development of “smart brackets” is presented. The system is designed for monitoring the forces and moments applied to individual teeth during orthodontic therapy which may contribute to improve treatment effectiveness. It comprises a stress mapping chip fabricated in a 0.35-$mu$ m process and a micro coil produced by gold electroplating in a photoresist mask. Twenty-four transistor-based stress sensors for measuring either in-plane shear stress or the difference of in-plane normal stresses are strategically distributed over the chip area. The sensor signals are processed by a variable-gain differential difference amplifier and digitized by a 10-bit SAR ADC, enabling a resolution down to 11 kPa at highest gain. A wireless interface conditions the energy received at 13.56 MHz and transmits the data by load modulation. With dimensions of 2$,times, hbox{2.5}, times, hbox{0.73}$ mm$^{3}$ and a power consumption of 1.75 mW, the system lays the foundation for the assembly of smart brackets as innovative tools in orthodontic therapy.
机译:提出了一种用于开发“智能支架”的无线压力映射系统。该系统设计用于监视在正畸治疗期间施加到单个牙齿的力和力矩,这可能有助于提高治疗效果。它包括以0.35- <公式式=“ inline”> $ mu $ m工艺制造的应力映射芯片,以及通过在电路板上电镀金而制成的微型线圈。光刻胶掩模。用于测量平面内切应力或平面内法向应力差的二十四个基于晶体管的应力传感器策略性地分布在整个芯片区域上。传感器信号由可变增益差分差动放大器处理,并由10位SAR ADC数字化,从而在最高增益下可实现低至11 kPa的分辨率。无线接口调节在13.56 MHz处接收的能量,并通过负载调制发送数据。尺寸为2 $,times,hbox {2.5},times,hbox {0.73} $ mm $ ^ {3} $ ,功耗为1.75 mW,该系统为组装智能支架作为正畸治疗中的创新工具奠定了基础。

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