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Compact High-Precision Analog Temperature Controller for MEMS Inertial Sensors

机译:用于MEMS惯性传感器的紧凑型高精度模拟温度控制器

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In this paper, we present an analog high-precision temperature controller designed to stabilize the temperature of MEMS inertial sensors with a short-term stability of better than ±50 μ°K and long-term stability of ±250 μ°Kp-p measured over 12 hours. The fully analog design employing only DC signals makes it suitable for noise and interference sensitive applications as compared to AC coupled and digital methods. A linear power management method also has been implemented to minimize the power dissipation on the power stage to less than 5 mW. The whole controller implemented on a 21.3 mm×21.3 mm 10.84'' ×0.84'') PCB.
机译:在本文中,我们提出了一种模拟高精度温度控制器,该控制器旨在稳定MEMS惯性传感器的温度,并具有优于±50μ的短期稳定性。 ° K和±250μ的长期稳定性 ° 在12小时内测得的Kp-p。与交流耦合和数字方法相比,仅采用直流信号的全模拟设计使其适用于对噪声和干扰敏感的应用。还实施了线性功率管理方法,以将功率级上的功耗最小化至小于5 mW。整个控制器在21.3 mm×21.3 mm 10.84上实现 '' ×0.84 '' )PCB。

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