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Research Focus
Designing, building, and analyzing advanced 3D micro-nano mechatronic sensing and actuation systems for future applications.
Creating micro-nano-electromechanical (MEMSNEMS) motion detectors with enhanced sensitivity, superior accuracy, minimal material usage, and energy efficiency.
Designing micro-nanofluidic lab-on-chip (LOC) solutions that offer portable, self-sustaining, affordable, and single-use platforms for biochemical testing.
Innovating new mechatronic approaches for dynamic motion detection and cutting-edge applications in biomolecular investigation and sensing.
Research Facilities
Mechatronic system development, control systems, and performance evaluation
Micro-nano sensor creation, component simulation, finite element modeling, photomask development, and microscopic analysis
MEMSNEMS vibration properties, assessment, single molecule studies, circuit design, printed circuit boards, specialized material analysis (SEM, AFM, TEM, XRD), Independent and precise positioning systems, Electromechanical sensor evaluation, Microscale fluid dynamics analysis
Windsor's distinctive collaborative environment connecting academia, business, and industry provides access to cutting-edge engineering resources and exceptional professional prospects. Whether you're a secondary school student exploring engineering, a prospective graduate student contemplating master's or doctoral studies, or an industry representative seeking research collaboration, we're confident our Engineering Faculty can support your goals.
Our Engineering Faculty delivers curriculum focused on building professional expertise and equipping students to address societal and global environmental challenges through technical solutions.