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U.S. Army Corrosion Office's Storage and Quality Requirements for Military MEMS program

机译:美国陆军腐蚀办公室对军用MEMS计划的存储和质量要求

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As the Army transforms into a more lethal, lighter and agile force, the technologies that support these systems must decrease in size while increasing in intelligence. Micro-electromechanical systems (MEMS) are one such technology that the Army and DOD will rely on heavily to accomplish these objectives. Conditions for utilization of MEMS by the military are unique. Operational and storage environments for the military are significantly different than those found in the commercial sector. Issues unique to the military include; high G-forces during gun launch, extreme temperature and humidity ranges, extended periods of inactivity (20 years plus) and interaction with explosives and propellants. The military operational environments in which MEMS will be stored or required to function are extreme and far surpass any commercial operating conditions. Security and encryption are a must for all MEMS communication, tracking, or data reporting devices employed by the military. Current and future military applications of MEMS devices include safety and arming devices, fuzing devices, various guidance systems, sensors/detectors, inertial measurement units, tracking devices, radio frequency devices, wireless Radio Frequency Identifications (RFIDs) and network systems, GPS's, radar systems, mobile base systems and information technology. MEMS embedded into these weapons systems will provide the military with new levels of speed, awareness, lethality, and information dissemination. The system capabilities enhanced by MEMS will translate directly into tactical and strategic military advantages. While reliance on MEMS devices has been increasing, limited studies have been performed to assess their reliability and identify failure mechanisms. Accordingly, the US Army Corrosion Office at Picatinny, NJ has initiated the "Storage & Quality Requirements for Military MEMS" as part of their MEMS Reliability Assessment Program to address these issues. The goals of the MEMS Reliability Assessment Program are to: 1) establish the reliability of MEMS devices including the impact of transportation, long term storage, operating environment, packaging & interconnection issues, 2) analyze the compatibility of MEMS devices with energetic and other hazardous materials found in military items, 3) identify failure mechanisms and failure rates, 4) develop accelerated test protocols for assessing the reliability of MEMS, 5) develop reliability models for these devices, 6) identify a standardizing body, standard terminology, definitions, and categories for MEMS devices and 7) determine potential test methodologies for assessing these mechanisms. Current ongoing efforts in support of the program include: 1) an assessment of the long-term storage performance and standards requirements, 2) initiation of ESS testing for the identification of failure mechanisms of selected devices, 3) drafting of a joint test protocol for assessment of the corrosion potential of MEMS devices, 4) assessment of applicability of reliability software packages for use with MEMS devices and 5) development of test guidelines for the assessment of MEMS reliability. This program will benefit the MEMS user community by filling the information gap that currently exists for reliability, including: 1 Assessment of the operational environments in which the military MEMS device may be utilized 2 Determining & developing methods to preserve MEMS devices during long term storage before they are designed into products 3 Independent assessment of reliability that cannot be obtained from private industry 4 Establishment of reliability data that will be fed back into development & design to improve MEMS devices 5 Production & design process can be vastly improved increasing yields that will drive costs down.
机译:随着陆军转变为更具致命性,更轻便和敏捷的部队,支持这些系统的技术必须在减小尺寸的同时增加情报。微机电系统(MEMS)是陆军和国防部将严重依赖于实现这些目标的一项技术。军方利用MEMS的条件是独特的。军方的作战和储存环境与商业领域的环境大不相同。军方特有的问题包括;枪支发射过程中的高G力,极端的温度和湿度范围,不活动的时间段(超过20年)以及与炸药和推进剂的相互作用。将要存储MEMS或要求MEMS起作用的军事操作环境非常极端,远远超过了任何商业操作条件。安全和加密对于军方使用的所有MEMS通信,跟踪或数据报告设备都是必需的。 MEMS设备的当前和未来军事应用包括安全和武装设备,引信设备,各种制导系统,传感器/检测器,惯性测量单元,跟踪设备,射频设备,无线射频识别(RFID)和网络系统,GPS,雷达系统,移动基础系统和信息技术。嵌入这些武器系统中的MEMS将为军队提供新的速度,意识,杀伤力和信息传播水平。 MEMS增强的系统功能将直接转化为战术和战略军事优势。尽管对MEMS器件的依​​赖日益增加,但已进行了有限的研究来评估其可靠性并确定故障机理。因此,位于新泽西州皮卡汀尼的美国陆军腐蚀办公室已启动“军用MEMS的存储和质量要求”,作为其MEMS可靠性评估计划的一部分,以解决这些问题。 MEMS可靠性评估计划的目标是:1)建立MEMS设备的可靠性,包括运输,长期存储,操作环境,包装和互连问题的影响; 2)分析MEMS设备与高能及其他危险设备的兼容性。军事项目中发现的材料,3)识别故障机理和故障率,4)开发评估MEMS可靠性的加速测试协议,5)开发这些设备的可靠性模型,6)识别标准化机构,标准术语,定义和MEMS器件的类别和7)确定评估这些机制的潜在测试方法。当前为支持该计划而进行的努力包括:1)评估长期存储性能和标准要求; 2)启动ESS测试,以识别所选设备的故障机制; 3)拟定针对该设备的联合测试协议评估MEMS装置的腐蚀潜力; 4)评估与MEMS装置一起使用的可靠性软件包的适用性;以及5)制定评估MEMS可靠性的测试指南。该计划将通过填补目前存在的可靠性信息空白,使MEMS用户社区受益,其中包括:1评估可利用军用MEMS设备的操作环境2确定和开发方法以在长期存储之前保存MEMS设备它们被设计为产品3不能从私营企业获得的可靠性的独立评估4建立将被反馈到开发和设计中以改善MEMS器件的可靠性数据5可以极大地改善生产和设计过程,从而提高产量并提高成本下。

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