Laminated Device Assembly

Laminated device assembly is an engineering process that combines multiple thin layers into a unified device structure, enabling compact designs and integrated functionality. The process typically involves precise layer alignment followed by bonding with adhesive, heat, pressure, or a combination of these conditions; the resulting laminate can also protect internal components from mechanical damage or environmental exposure. Engineers use laminated assemblies in electronic modules, sensors, displays, batteries, and flexible devices, where material selection, interface quality, and dimensional control influence electrical, mechanical, and thermal performance. Reliable assembly methods support thinner, lighter, and more durable products while helping researchers optimize manufacturing processes and device integration.

Laminated Device Assembly - Related Videos

Research

JoVE Journal - Bioengineering

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.

Using a Laminating Technique to Perform Confocal Microscopy of the Human Sclera

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Cited by 1 •

2016

Human sclera tissue is mainly collagen; therefore, it is not easily usable for immunohistochemistry. To achieve the goal of performing immunohistochemistry for confocal microscopy of scleral tissue, a laminating technique was used.

Thermal Measurement Techniques in Analytical Microfluidic Devices

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Cited by 6 •

2015

Here, we present three protocols for thermal measurements in microfluidic devices.

Development of a 3D Graphene Electrode Dielectrophoretic Device

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Cited by 2 •

2014

A microdevice with high throughput potential is used to demonstrate three-dimensional (3D) dielectrophoresis (DEP) with novel materials. Graphene nanoplatelet paper and double sided tape were alternately stacked; a 700 μm micro-well was drilled transverse to the layers. DEP behavior of polystyrene beads was demonstrated in the micro-well.

Fabrication of Three-dimensional Paper-based Microfluidic Devices for Immunoassays

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Cited by 12 •

2017

We detail a method to fabricate three-dimensional paper-based microfluidic devices for use in the development of immunoassays. Our approach to device assembly is a type of multilayer, additive manufacturing. We demonstrate a sandwich immunoassay to provide representative results for these types of paper-based devices.

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