Modeling and Measurement Methods for Acoustic Waves and for Acoustic Microdevices 2013
DOI: 10.5772/55220
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Surface Acoustic Wave Based Magnetic Sensors

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Cited by 7 publications
(3 citation statements)
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References 66 publications
(63 reference statements)
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“…With, 127.68° Y-X-axis-rotated cut, X-propagating LiNbO 3 is the most widely used substrate [80,137,193,221,[227][228][229] because of its high electromechanical coupling coefficient [230]. When an alternating current is applied to an IDT at the resonance frequency, the substrate undergoes mechanical displacement due to the presence of an electric field and the piezoelectric effect [231]. A SAW is generated at the IDT and travels along the surface of the piezoelectric material until it encounters the PDMS channel, where it leaks into the microchannel, generating pressure fluctuations within the fluid [225].…”
Section: Acoustic Mixingmentioning
confidence: 99%
“…With, 127.68° Y-X-axis-rotated cut, X-propagating LiNbO 3 is the most widely used substrate [80,137,193,221,[227][228][229] because of its high electromechanical coupling coefficient [230]. When an alternating current is applied to an IDT at the resonance frequency, the substrate undergoes mechanical displacement due to the presence of an electric field and the piezoelectric effect [231]. A SAW is generated at the IDT and travels along the surface of the piezoelectric material until it encounters the PDMS channel, where it leaks into the microchannel, generating pressure fluctuations within the fluid [225].…”
Section: Acoustic Mixingmentioning
confidence: 99%
“…It is possible to eliminate the overlap of descriptor signals on the chip because the layers of the meander that perform certain The number of meanders is not important. In a certain range of parameters, it is possible to assemble on a single layer an enthrakometer, a SAW sensor with counter-pin geometry, a magnetoresistor or a magnetostrictive sensor (that in recent years was repeatedly hybridized with a SAW sensor with the same geometry [232]), and a microfluidic set of channels located between meanders of the sensor layers, or within them, or above them. Compatibility of magnetic sensors of such geometry with liquid media was recently demonstrated in NASA [233], indicating a trend of introducing them into microfluidics and ferrohydrodynamics [234]).…”
Section: Towards Multiparametric Chemosensing and Physico-chemical Sensing On The Collard Enthrakometer Surfacementioning
confidence: 99%
“…An important step in this development is based on the use of the giant magnetoimpedance (GMI) effect. GMI elements can be fabricated in the shape of microwires, ribbons or thin films and can be combined with surface acoustic wave (SAW) interdigital transducers (IDT), resulting in a magnetic sensor design that has the potential for miniaturization, integration, low cost, passive interrogation, high sensitivity, and large linear range [1].…”
Section: Section I Introductionmentioning
confidence: 99%