Idt Fabrication

IDT fabrication is the process of creating interdigitated transducers, patterned electrode arrays that convert electrical signals into mechanical waves and vice versa, typically on a piezoelectric substrate. During fabrication, photolithography or another microscale patterning method defines interlocking metal fingers; an alternating voltage produces strain through the inverse piezoelectric effect, launching a surface acoustic wave whose frequency depends on finger spacing and material properties. These devices support radio-frequency filters, resonators, chemical and biological sensors, and acoustofluidic systems. Precise control of electrode geometry, materials, and alignment determines device performance and enables compact components for communication, measurement, and lab-on-a-chip technologies.

Idt Fabrication - Related Videos

Research

JoVE Journal - Chemistry

Fabricating Nanogaps by Nanoskiving

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Cited by 3 •

2013

The fabrication of electrically addressable, high-aspect-ratio (> 1000:1) metal nanowires separated by gaps of single nanometers using either sacrificial layers of aluminum and silver or self-assembled monolayers as templates is described. These nanogap structures are fabricated without a clean room or any photo- or electron-beam lithographic processes by a form of edge lithography known as nanoskiving.

Fabrication of Amperometric Electrodes

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Cited by 8 •

2009

This protocol describes how to generate carbon fiber electrodes. The electrodes are subsequently used to detect catecholamine release from vesicles with carbon fiber amperometry.

Fabricating Cotton Analytical Devices

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2016

To investigate simple fabrication approaches for multiple assay needs, we created a fluid-absorbing channel system made of cotton material. This device was used to establish a multiple detection platform, and solve contamination issues that commonly affect lateral flow-based biomedical devices, for clinical urinalysis of nitrite, total protein, and urobilinogen.

Fabrication and Characterization of Superconducting Resonators

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Cited by 3 •

2016

Superconducting microwave resonators are of interest for detection of light, quantum computing applications and materials characterization. This work presents a detailed procedure for fabrication and characterization of superconducting microwave resonator scattering parameters.

Atomically Traceable Nanostructure Fabrication

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Cited by 4 •

2015

We report a protocol for combining the atomic metrology of the Scanning Tunneling Microscope for surface patterning with selective Atomic Layer Deposition and Reactive Ion Etching. Using a robust process involving numerous atmospheric exposures and transport, 3D nanostructures with atomic metrology are fabricated.

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