A C-shaped hinge for displacement magnification in MEMS rotational structures
Naga Manikanta Kommanaboina,
Teferi Sitotaw Yallew,
Alvise Bagolini
et al.
Abstract:The design, analysis, fabrication, and characterization of two distinct MEMS rotational structures are provided; these structures include a classical symmetrical lancet structure and a novel symmetrical C-shaped structure provided with a tilted arm, and both are actuated by thermal actuators. Our proposed C-shaped structure implemented a curved beam mechanism to enhance the movement delivered by the thermal actuators. The geometrical parameters of our proposed device were optimized using the design of experime… Show more
“…DRIE entails etching substrates via an ion beam to sculpt intricate three-dimensional structures, distinguished by a prodigious aspect ratio. 69,70 The inherent merits of DRIE include unparalleled precision and controllability, albeit tempered by the potential deleterious effects of ion aggressiveness toward the substrate. As depicted in Fig.…”
Section: Fabrication Strategies Of Emn Deveicesmentioning
Microneedles, an emerging medical tool, have attracted significant attention for their superior ability to puncture the skin noninvasively and painlessly, facilitating tasks such as physiological monitoring, disease diagnosis, and transdermal...
“…DRIE entails etching substrates via an ion beam to sculpt intricate three-dimensional structures, distinguished by a prodigious aspect ratio. 69,70 The inherent merits of DRIE include unparalleled precision and controllability, albeit tempered by the potential deleterious effects of ion aggressiveness toward the substrate. As depicted in Fig.…”
Section: Fabrication Strategies Of Emn Deveicesmentioning
Microneedles, an emerging medical tool, have attracted significant attention for their superior ability to puncture the skin noninvasively and painlessly, facilitating tasks such as physiological monitoring, disease diagnosis, and transdermal...
This paper reports a novel amplified piezoelectric actuator featuring compliant displacement amplification mechanism of hybrid summation and multiplication. The hybrid amplification mechanism uses the concept of nesting a pair of Scott-Russell linkages into a toggle linkage to realize the hybrid amplification functions of summation and multiplication. Also, compliant amplification mechanisms with double output ports are designed, enhancing the flexibility of designs and applications. The hybrid displacement amplification principle is mathematically explained in detail. It is demonstrated based on finite element simulations that the displacement amplification ratio, output stiffness and resonance frequency of the proposed hybrid amplification mechanism of summation and multiplication outperform those of the classic rhombus-type and bridge-type compliant mechanisms. The experimental testing results of a prototype show that the amplified piezoelectric actuator is capable of providing 315 μm strokes with the displacement amplification ratio of 16.2. The fundamental resonance frequency with piezoelectric stacks mounted is 1218 Hz. Comparison to typical designs in literature shows well comprehensive performances of statics and dynamics, verifying the advantages of such a hybrid amplification mechanism of summation and multiplication.
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