Lyu Fei, Liu Xinfu, Ding Yinjie, Toh Eng-Huat, Zhang Zhenyan, Pan Yifan, Wang Zhen, Li Chengjie, Li Li, Sha Jin, Pan Hongbing
School of Electronic Science & Engineering, Nanjing University, Nanjing 210093, China.
Globalfoundries Singapore, Singapore 738406, Singapore.
Sensors (Basel). 2016 Jan 15;16(1):106. doi: 10.3390/s16010106.
This work studies the effects of an aluminum covering on the performance of cross-like Hall devices. Four different Hall sensor structures of various sizes were designed and fabricated. The sensitivity and offset of the Hall sensors, two key points impacting their performance, were characterized using a self-built measurement system. The work analyzes the influences of the aluminum covering on those two aspects of the performance. The aluminum layer covering mainly leads to an eddy-current effect in an unstable magnetic field and an additional depletion region above the active region. Those two points have influences on the sensitivity and the offset voltage, respectively. The analysis guides the designer whether to choose covering with an aluminum layer the active region of the Hall sensor as a method to reduce the flicker noise and to improve the stability of the Hall sensor. Because Hall devices, as a reference element, always suffer from a large dispersion, improving their stability is a crucial issue.
这项工作研究了铝覆盖层对十字形霍尔器件性能的影响。设计并制作了四种不同尺寸的霍尔传感器结构。使用自行搭建的测量系统对霍尔传感器的灵敏度和失调这两个影响其性能的关键点进行了表征。该工作分析了铝覆盖层对性能这两个方面的影响。铝层覆盖主要在不稳定磁场中导致涡流效应,并在有源区上方产生一个额外的耗尽区。这两点分别对灵敏度和失调电压有影响。该分析指导设计者是否选择用铝层覆盖霍尔传感器的有源区,以此作为降低闪烁噪声和提高霍尔传感器稳定性的一种方法。由于霍尔器件作为参考元件总是存在较大的离散性,提高其稳定性是一个关键问题。