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Research on an On-Chip MEMS Based Safety and Arming Device with a Mechanical Encryption System

机译:基于片上MEMS的带机械加密系统的安全防护装置的研究

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摘要

The design and characterization of microelectromechanical systems (MEMS) based on-chip SAD (Safety and Arming Device) are proposed. An encryption system has been integrated into the device to enhance its reliability during the electromagnetic interference. The conversion between safe status and arm status is reversible due to the bidirectional actuation design of the slider and pawl on the SOI (Silicon on Insulator) chip, being driven by the chevron electrothermal actuators. The width of each tooth on the slider, which contains coding information, is different from that of its adjacent neighbor. Additionally, the different teeth width, respectively 32 μm, 82 μm, requiring different decoding displacement of 100 μm and 150 μm, corresponds to the different decoding voltage of 13.5 V and 14.8 V. The travel range of interrupter in the SAD will only be limited by the chip dimension and be able to cover the motion of ±1 mm in the present research, due to the capability of motion retention. Finally, the SAD is integrated with a copper azide exploding chip to measure the average velocity of the titanium flyer for the application feasibility validation.
机译:提出了基于芯片SAD(安全与武装设备)的微机电系统(MEMS)的设计与表征。该设备已集成了加密系统,以增强其在电磁干扰期间的可靠性。安全状态和机械臂状态之间的转换是可逆的,这是由于V型电热致动器驱动SOI(绝缘子上的硅)芯片上的滑块和棘爪实现了双向驱动设计。包含编码信息的滑块上每个齿的宽度与其相邻的齿的宽度不同。此外,不同的齿宽(分别为32μm,82μm)需要100μm和150μm的不同解码位移,对应于13.5 V和14.8 V的不同解码电压。在SAD中,灭弧室的行程范围将受到限制由于芯片具有运动保持功能,因此在本研究中可以覆盖±1 mm的运动。最后,将SAD与叠氮化铜爆炸芯片集成在一起,以测量钛传单的平均速度,以进行应用可行性验证。

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