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Design and implementation of an area-efficient MEMS-based IR static earth sensor

机译:基于MEMS的高效率区域MEMS静电接地传感器的设计与实现

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This paper introduces a complete design of a static earth sensor, used for satellite attitude determination. Our design approach offers high area efficiency, high resolution (10 arc minutes), and modularity relative to previous designs. This sensor is made up of four separate identical chips; each chip represents a complete System on Chip (SoC) including the following main components: the sensor, the electronic read-out sub-circuit, the decision sub-circuit, and the serial interface to the On-Board Computer (OBC). Each chip has two staggered arrays of MEMS bulk-micromachined thermopiles, which sense the IR radiation incident on the chip and convert it into an electrical voltage. A complete design of the IR detector is introduced and its characteristics are estimated. A novel block diagram of one chip is presented including both analog and digital sub-circuits. A low offset amplifier (LOA), based on the Auto-zeroing technique, is used as a front-end to the analog part of the circuit. Finally, a complete layout or the SoC is given.
机译:本文介绍了用于卫星姿态确定的静态地球传感器的完整设计。与以前的设计相比,我们的设计方法可提供较高的面积效率,高分辨率(10弧分)和模块化。该传感器由四个独立的相同芯片组成。每个芯片代表一个完整的片上系统(SoC),包括以下主要组件:传感器,电子读出子电路,决策子电路以及与车载计算机(OBC)的串行接口。每个芯片都有两个交错排列的MEMS大块微加工热电堆阵列,它们感测入射在芯片上的IR辐射并将其转换为电压。介绍了红外探测器的完整设计,并对其特性进行了估算。提出了一种包含模拟和数字子电路的新型芯片框图。基于自动调零技术的低失调放大器(LOA)用作电路模拟部分的前端。最后,给出了完整的布局或SoC。

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