Ultra-Thick and High-Aspect-Ratio Nickel Microgyroscope Using EFAB TM Multi-Layer Additive Electroforming

S. E. Alper, I. Ocak, T. Akin
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引用次数: 5

Abstract

This paper presents a 240 µ m-thick nickel microgyroscope with a lateral aspect ratio greater than 100, fabricated using the EFAB TM commercial multi-layer additive electroforming process. The fabricated gyroscope demonstrates a measured mechanical sensitivity of 65 µ V/(deg/sec) and a noise-equivalent rate of 0.086deg/sec at atmospheric pressure in a measurement bandwidth of 1Hz, using a capacitive interface circuit constructed from off-the-shelf components. The gyroscope’s measurement bandwidth approaches to 100Hz. The variation of the drive-mode resonance frequency is measured to be better than 0.1% within 40 hours period, demonstrating the reliability of the electroformed nickel of the EFAB TM process. The gyroscope is sensitive to rotations about an in-plane axis, and therefore, allows implementation of a two-axis rate sensor on the same substrate.
利用EFAB TM多层电铸制造超厚高纵横比镍微陀螺仪
采用EFAB TM商业多层增材电铸工艺制备了240 μ m厚、横向纵横比大于100的镍微陀螺仪。该陀螺仪的机械灵敏度为65 μ V/(度/秒),噪声等效率为0.086度/秒,测量带宽为1Hz,使用由现成元件构成的电容接口电路。陀螺仪的测量带宽接近100Hz。在40小时内,驱动模式谐振频率的变化优于0.1%,证明了EFAB TM工艺电铸镍的可靠性。陀螺仪对平面内轴的旋转很敏感,因此,允许在同一基板上实现两轴速率传感器。
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