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Double-Hall sensor with self-compensated offset

机译:具有自动补偿偏移的双霍尔传感器

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A novel Double-Hall sensor is reported with a signal offset compensated by design. It consists of two single Hall devices sharing the same active area. The sensor detects the magnetic induction perpendicular to the chip surface. The sensor signal is given by the difference of the Hall voltages of the two single devices. They have almost equal offsets but magnetic responses of opposite sign due to structure symmetry. This simple self-compensation efficiently reduces the offset to values below 2 mT at room temperature. The thermal offset drift is lower than 11 /spl mu/T//spl deg/C. The small-sized Double-Hall sensor requires only one voltage source and one differential amplifier for operation. Therefore, the implementation of an accurate and inexpensive magnetic sensor microsystem with high cutoff frequency is straightforward.
机译:报告了一种新颖的Double-Hall传感器,其信号偏移经过设计补偿。它由两个共享相同活动区域的单个霍尔器件组成。传感器检测垂直于芯片表面的磁感应强度。传感器信号由两个单个设备的霍尔电压之差给出。它们具有几乎相等的偏移量,但由于结构对称性,其磁响应相反。这种简单的自补偿功能可在室温下有效地将失调减小至2 mT以下的值。热失调漂移低于11 / spl mu / T // spl deg / C。小型Double-Hall传感器仅需一个电压源和一个差分放大器即可工作。因此,具有高截止频率的精确且廉价的磁传感器微系统的实现是直接的。

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