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微电容阵列检测系统的设计 被引量:1
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作者 葛维冬 许德章 何慧娟 《新乡学院学报》 2015年第3期45-49,53,共6页
通过实验分析了电容读取芯片MS3110P各项性能指标,并设计了一款能自适应匹配模拟开关产生的电荷注入效应的P控制器;开发出一款具有单电容阵列测量模式和差分电容阵列测量模式的微电容阵列检测电路,并探讨了其寄生电容产生的原因。测试... 通过实验分析了电容读取芯片MS3110P各项性能指标,并设计了一款能自适应匹配模拟开关产生的电荷注入效应的P控制器;开发出一款具有单电容阵列测量模式和差分电容阵列测量模式的微电容阵列检测电路,并探讨了其寄生电容产生的原因。测试结果表明,该检测电路克服了各种寄生电容对传感器的影响,提高了测量精度,能够应用于MEMS触觉传感器微电容阵列的测量。 展开更多
关键词 微电容阵列 触觉传感器 寄生电容 MS3110P
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浓缩机絮凝沉降检测分析系统设计 被引量:1
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作者 王卫东 任伟 +1 位作者 孙军涛 孙远 《工矿自动化》 北大核心 2013年第8期25-27,共3页
针对浓缩机药剂添加自动化闭环控制需求,设计了一种浓缩机絮凝沉降检测分析系统。当浓缩机中煤泥水浓度低于5%时,该系统采用CN141浊度计检测絮凝沉降效果,浊度计直接输出4~20mA的电流信号送微处理器处理;当煤泥水浓度为5%~35%时,该系... 针对浓缩机药剂添加自动化闭环控制需求,设计了一种浓缩机絮凝沉降检测分析系统。当浓缩机中煤泥水浓度低于5%时,该系统采用CN141浊度计检测絮凝沉降效果,浊度计直接输出4~20mA的电流信号送微处理器处理;当煤泥水浓度为5%~35%时,该系统采用微电容阵列传感器检测絮凝沉降效果,检测结果经放大滤波后送微处理器处理。实际应用表明,该系统能够准确、及时地检测出浓缩机絮凝沉降效果,实现了浓缩机絮凝剂添加的闭环控制。 展开更多
关键词 浓缩机 药剂添加 絮凝沉降 煤泥水浓度 微电容阵列传感器 浊度计 电极
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Highly-compliant,conformal and stretchable microelectrode arrays 被引量:1
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作者 Zhang Hongzhi Xie Lei +3 位作者 Yu Mei Liu Zhiyuan Li Yuchun Yu Zhe 《Engineering Sciences》 EI 2013年第3期72-75,共4页
Most biological tissues are supple and elastic, while current electronic devices fabricated by semiconductors and metals are usually stiff and brittle. As a result, implanted electronic devices can irritate and damage... Most biological tissues are supple and elastic, while current electronic devices fabricated by semiconductors and metals are usually stiff and brittle. As a result, implanted electronic devices can irritate and damage surrounding tissues, causing immune reaction and scarring. In this work, we develop stretchable microelectrode arrays, with the development of a novel soft lithography technology, which are designed and fabricated with a polymer/stretchable metal/polymer sandwich structure. With the great deformability of stretch, compression, bend and twisting, while preserving electrical property, this technology overcomes the fundamental mismatch of mechanical properties between biological tissues and electronic devices, and provides highly-compliant, confonnal and stretchable bio-electronic interfaces. Here we also describe the following three applications of the stretchable electrode arrays: a. monitoring intracranial electroencephalography (EEG); b. stimulating peripheral nerves to drive muscles; c. monitoring epicardial electrocardiography (ECG). Stretchable microelectrode arrays create a promising field in biomedical applications for its better modulus match with biological tissues and robust mechanical and electrical properties. They allow for construction of electronic integrated circuits spread over on complex and dynamic curved surfaces, providing a much friendlier bio-electronic interface for diagnosis, treatment and in- telligent bio-control. 展开更多
关键词 biological micro-electro-mechanical system (bioMEMS) microelectrode array EEG neural prosthesis ECG
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