Silicon Stiffener Fabrication

Silicon stiffener fabrication is the process of producing thin silicon structures that locally increase the rigidity of otherwise flexible biomedical devices, helping them maintain shape during handling or implantation. Typically, a silicon wafer is patterned to define the stiffener geometry, then etched to form precise thicknesses and features before the structures are released or integrated with a device substrate. In bioengineering, these stiffeners support flexible neural probes, sensors, and implantable electronics by improving insertion, alignment, and mechanical stability while preserving flexibility away from reinforced regions. Their design and fabrication link microscale manufacturing with tissue-compatible device performance.

Silicon Stiffener Fabrication - Related Videos

Research

JoVE Journal - Bioengineering

Insertion of Flexible Neural Probes Using Rigid Stiffeners Attached with Biodissolvable Adhesive

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Cited by 99 •

2013

Insertion of flexible neural microelectrode probes is enabled by attaching probes to rigid stiffeners with polyethylene glycol (PEG). A unique assembly process ensures uniform and repeatable attachment. After insertion into tissue, the PEG dissolves and the stiffener is extracted. An in vitro test method evaluates the technique in agarose gel.

Fabrication and Optimization of Type II Silicon Clathrate Films

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2025

The two-thermal annealing method enables the fabrication of thin films of type II semiconductor silicon clathrate. Post-synthesis treatments, including thermal pressing and reactive ion etching, were performed to improve the material properties. This approach provides an accessible pathway for fabricating tunable clathrate films suitable for next-generation electronic and photonic devices.

Research

JoVE Journal - Engineering
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Fabrication Process of Silicone-based Dielectric Elastomer Actuators

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Cited by 102 •

2016

This manuscript shows the fabrication process for the manufacture of dielectric elastomer soft actuators based on silicone membranes. The three key stages of production are presented in detail: blade casting of thin silicone membranes; pad printing of compliant electrodes; and the assembly of all the components.

Fabrication and Characterization of High-Q Silicon Nitride Membrane Resonators

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Cited by 1 •

2025

This article traces the life cycle of a silicon nitride membrane resonator, from design through fabrication to characterization.

Design and Fabrication of an Elastomeric Unit for Soft Modular Robots in Minimally Invasive Surgery

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Cited by 7 •

2015

This paper describes the design and fabrication of a soft unit for surgical manipulators. The base module includes three flexible fluidic actuators to achieve omnidirectional bending and elongation, and a granular jamming-based mechanism to enable stiffness control. A complete mechanical characterization is also reported.

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