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Recent Progress in MEMS Technology Development for Military Applications

机译:军事应用MEMS技术发展的最新进展

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The recent progress of ongoing efforts at the Army Aviation and Missile Command (AMCOM) to develop microelectromechanical systems (MEMS) technology for military applications is discussed in this paper. The current maturity level of low cost, low power, micro devices in industry, which range from simple temperature and pressure sensors to accelerometers in airbags, provides a viable foundation for the development of rugged MEMS devices for dual-use applications. Early MEMS technology development efforts at AMCOM emphasized inertial MEMS sensors. An Army Science and Technology Objective (STO) project was initiated to develop low cost inertial components with moderate angular rate sensor resolution for measuring pitch and yaw of missile attitude and rotational roll rate. Leveraging the Defense Advanced Research Projects Agency and other Government agencies has resulted in the development of breadboard inertial MEMS devices with improved robustness. During the past two years, MEMS research at AMCOM has been expanded to include environmental MEMS sensors for missile health monitoring, RF-MEMS, optical MEMS devices for beam steering, and micro-optic 'benches' for opto-electronics miniaturization. Additionally, MEMS packaging and integration issues have come into focus and are being addressed. Selected ongoing research efforts in these areas are presented, and some horizon MEMS sensors requirements for Army and law enforcement are presented for consideration.
机译:本文讨论了陆军航空与导弹司令部(AMCOM)为军事应用开发微机电系统(MEMS)技术的最新进展。从低成本的温度,压力传感器到安全气囊的加速度计,目前工业上低成本,低功耗,微型器件的成熟度为开发坚固耐用的MEMS器件以提供两用应用奠定了坚实的基础。 AMCOM的早期MEMS技术开发工作着重于惯性MEMS传感器。美国陆军科学技术目标(STO)项目启动,以开发具有中等角速度传感器分辨率的低成本惯性组件,以测量导弹姿态和旋转侧倾角的俯仰和偏航。利用美国国防高级研究计划局和其他政府机构,开发出了具有更高鲁棒性的面包板惯性MEMS器件。在过去的两年中,AMCOM的MEMS研究已经扩展到包括用于导弹健康状况监测的环境MEMS传感器,RF-MEMS,用于光束转向的光学MEMS器件以及用于光电微型化的微光学“平台”。另外,MEMS封装和集成问题已经成为人们关注的焦点,并且正在得到解决。介绍了在这些领域中正在进行的研究工作,并提出了一些针对陆军和执法部门的水平MEMS传感器要求,以供考虑。

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