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Low Power CMOS-Based Hall Sensor with Simple Structure Using Double-Sampling Delta-Sigma ADC

机译:低功耗CMOS的霍尔传感器结构简单使用双取样Delta-Sigma ADC

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摘要

A CMOS (Complementary metal-oxide-semiconductor) Hall sensor with low power consumption and simple structure is introduced. The tiny magnetic signal from Hall device could be detected by a high-resolution delta-sigma ADC in presence of offset and flickering noise. Also, the offset as well as the flickering noise are effectively suppressed by the current spinning technique combined with double sampling switches of the ADC. The double sampling scheme of the ADC reduces the operating frequency and helps to reduce the power consumption. The prototype Hall sensor is fabricated in a 0.18-µm CMOS process, and the measurement shows detection range of ±150 mT and sensitivity of 110 µV/mT. The size of active area is 0.7 mm2, and the total power consumption is 4.9 mW. The proposed system is advantageous not only for low power consumption, but also for small sensor size due to its simplicity.
机译:介绍了具有低功耗和简单结构的CMOS(互补金属氧化物半导体)霍尔传感器。来自Hall器件的微小磁信号可以在偏移和闪烁的噪声存在下通过高分辨率Δ-sigma ADC检测。此外,通过电流纺丝技术与ADC的双采样开关组合有效地抑制了偏移以及闪烁的噪声。 ADC的双采样方案降低了工作频率,有助于降低功耗。原型霍尔传感器在0.18微米的CMOS工艺中制造,测量显示±150 mt的检测范围和110μV/ mt的灵敏度。有效区域的大小为0.7mm 2,总功耗为4.9 mW。所提出的系统不仅用于低功耗,而且由于其简单性而具有小的传感器尺寸。

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