传感器模拟电路

B. Hosticka
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引用次数: 14

摘要

该贡献致力于集成传感器系统的CMOS模拟电路设计。虽然目前复杂的传感器信号处理趋向于在数字领域实现,但由于传感器信号的模拟性质,模拟电路在传感器信号采集中仍然起着至关重要的作用。虽然传感器前端经常使用模拟电路,例如用于传感器信号调理和转换,产生偏置和参考电压和电流,以及系统接口,但这里最重要的电路-对于片上和片外传感器-是传感器读出,因为它直接连接传感器。首先,我们回顾了关键传感器系统规格对系统和电路设计的影响。我们将特别注意噪声,因为它对传感器系统最重要的参数之一,即最小可分辨输入信号有很大的影响。另一方面,它是迄今为止最难改进的参数,从而使低噪声电路设计成为强制性的。因此,降噪技术也非常重要。该贡献将通过解决特定于传感器系统的电路设计问题来结束,例如传感器非理想性的校正,校准和测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analog circuits for sensors
This contribution is devoted to CMOS analog circuit design for integrated sensor systems. While today complex sensor signal processing tends to be implemented in digital domain, analog circuits still play a crucial role in sensor signal acquisition due to analog nature of sensory signals. Though sensor front-ends frequently employ analog circuits, e.g. for sensor signal conditioning and conversion, generation of bias and reference voltages and currents, and system interfacing, the most important circuit here - for both, on- and off-chip sensors - is the sensor readout, since it directly interfaces the sensor. At the beginning we review how the key sensor system specifications affect the system and circuit design. A particular attention will be paid to the noise, because it has a great influence on one of the most important parameters of sensor systems, namely the smallest resolvable input signal. On the other hand, it is by far the most difficult parameter to improve upon thus making low-noise circuit design mandatory. For this reason, noise reduction techniques are also of high importance. The contribution will conclude by addressing circuit design issues specific to sensor systems, such as correction of sensor nonidealities, calibration, and testing.
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