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Micro 3D printing of a functional MEMS accelerometer

机译:功能性MEMS加速度计的微3D打印

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摘要

Microelectromechanical system (MEMS) devices, such as accelerometers, are widely used across industries, including the automotive, consumer electronics, and medical industries. MEMS are efficiently produced at very high volumes using large-scale semiconductor manufacturing techniques. However, these techniques are not viable for the costefficient manufacturing of specialized MEMS devices at low- and medium-scale volumes. Thus, applications that require custom-designed MEMS devices for markets with low- and medium-scale volumes of below 5000-10,000 components per year are extremely difficult to address efficiently. The 3D printing of MEMS devices could enable the efficient realization and production of MEMS devices at these low- and medium-scale volumes. However, current micro-3D printing technologies have limited capabilities for printing functional MEMS. Herein, we demonstrate a functional 3D-printed MEMS accelerometer using 3D printing by two-photon polymerization in combination with the deposition of a strain gauge transducer by metal evaporation. We characterized the responsivity, resonance frequency, and stability over time of the MEMS accelerometer. Our results demonstrate that the 3D printing of functional MEMS is a viable approach that could enable the efficient realization of a variety of custom-designed MEMS devices, addressing new application areas that are difficult or impossible to address using conventional MEMS manufacturing.
机译:微机电系统 (MEMS) 设备(如加速度计)广泛应用于各行各业,包括汽车、消费电子和医疗行业。MEMS采用大规模半导体制造技术,可实现大批量高效生产。然而,这些技术对于中小批量专用MEMS器件的成本效益制造并不可行。因此,对于每年5000-10,000个元件的中小批量市场,需要定制设计的MEMS器件的应用极难有效解决。MEMS器件的3D打印可以在这些中低规模的MEMS器件中实现高效的实现和生产。然而,目前的微型3D打印技术在打印功能性MEMS方面的能力有限。在此,我们演示了一种功能性3D打印MEMS加速度计,该加速度计使用双光子聚合的3D打印,并结合金属蒸发沉积应变计传感器。我们表征了MEMS加速度计的响应度、谐振频率和稳定性。我们的研究结果表明,功能性MEMS的3D打印是一种可行的方法,可以有效地实现各种定制设计的MEMS器件,解决使用传统MEMS制造难以或不可能解决的新应用领域。

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