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Development of miniaturized 6-axis accelerometer utilizing piezoresistive sensing elements

机译:利用压阻感测元件开发微型六轴加速度计

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This paper reports a novel miniaturized piezoresistive 6-axis accelerometer designed and fabricated using bulk micrornachining technology. Accelerometer consists of highly symmetric single crystalline silicon crossbeam structure with 20 conventional two-terminal p-type, piezoresistors diffused on the surface of the beams. This accelerometer measures three components of linear acceleration and three components of angular acceleration on three orthogonal axes simultaneously. The average measured sensitivities of the fabricated sensor for linear accelerations and angular accelerations show a cross-axis sensitivity of < 4%. Comparison of the obtained experimental results and finite element simulation shows good agreement. The sensor is ideal for use in biomechanical research applications such as human gesture recognition systems. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文报道了一种采用批量微加工技术设计和制造的新型微型压阻式六轴加速度计。加速度计由高度对称的单晶硅横梁结构组成,在横梁的表面上散布着20个常规的两端p型压敏电阻。该加速度计在三个正交轴上同时测量线性加速度的三个分量和角加速度的三个分量。所制造的传感器对线性加速度和角加速度的平均测量灵敏度显示,横轴灵敏度小于4%。所得实验结果与有限元模拟结果的比较表明吻合良好。该传感器非常适合在生物机械研究应用中使用,例如人类手势识别系统。 (c)2006 Elsevier B.V.保留所有权利。

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