Area of research
Electrical and Electronic Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Advanced MEMS and NEMS Technologies, Mechanical and Optical Resonators, Acoustic Wave Resonator Technologies, and Force Microscopy Techniques and Applications.
Design and characterization of surface acoustic wave (SAW) sensor for detection of Lactobacillus in liquid medium
Digital Twin Framework for Real-Time Monitoring and Simulation of Industrial Assets
Design and analysis of mode-matched decoupled mass MEMS gyroscope with improved thermal stability
A high-resolution and low-cost mesoscale tactile force sensor based on mode-localization effect and fabricated using rapid prototyping
Experimental Verification of Coupling Strength on the Mode-Localization in Single MEMS DETF Resonators and Its Application as a Force Sensor
Nanocomposite-modified nanopores: A promising platform for selective detection of copper ions
Design of a MEMS-Based Low Stiffness Accelerometer for Measuring Gravitational Anomalies
A Low‐Cost Microfluidic Device For the On‐Line Counting of Microparticle/Bacteria
Power Harvesting towards Sustainable Energy Technology through Ambient Vibrations and Capacitive Transducers
Design and characterization of non-linear electromagnetic energy harvester with enhanced energy output
Monitoring and Surveillance System Using PLC for Mining Industry
A Soft Multi-Axis High Force Range Magnetic Tactile Sensor for Force Feedback in Robotic Surgical Systems
Design and Characterization of Three-Axis High-Range Inductive Tactile Force Sensor Utilizing Magnetorheological Elastomer for Robotic Surgical Applications
Design, Analysis and Experimental Investigation of Micro Piezoelectric Vibrational Energy Harvester with Enhanced Power Extraction at Low Frequency
Design and Analysis of Micro Actuator through Trapezoidal Shaped Electrostatic Comb Drive and Curved Beam System
Design and Analysis of a Radio Frequency Based Non-Contact Type Micro Electromechanical Switch
A Low-g MEMS Accelerometer with High Sensitivity, Low Nonlinearity and Large Dynamic Range Based on Mode-Localization of 3-DoF Weakly Coupled Resonators
Design and analysis of four-jaws microgripper with integrated thermal actuator and force sensor for biomedical applications
A Systematic Design Optimization Approach for Multiphysics MEMS Devices Based on Combined Computer Experiments and Gaussian Process Modelling
Design, analysis, and experimental investigation of micro-displacement amplification compliant mechanism for micro-transducers
An efficient design of dual-axis MEMS accelerometer considering microfabrication process limitations and operating environment variations
Microfabrication Process-Driven Design, FEM Analysis and System Modeling of 3-DoF Drive Mode and 2-DoF Sense Mode Thermally Stable Non-Resonant MEMS Gyroscope
System Model Extraction of MEMS Beam Resonator for Colpitts Crystal Oscillator
Experimental evaluation of force and amplification factor of three different variants of flexure based micro displacement amplification mechanism
Electrostatic Energy Harvester Design using In-plane Gap Closing and In-plane Overlap Varying Mechanisms
Reinforcement of Electromagnetic Wave Absorption Characteristics in PVDF-PMMA Nanocomposite by Intercalation of Carbon Nanofibers
Synthesis of Ag-Loaded TiO2 Electrospun Nanofibers for Photocatalytic Decolorization of Methylene Blue
Performance Analysis of Microelectromechanical System Based Displacement Amplification Mechanism
Design and analysis of novel micro displacement amplification mechanism actuated by chevron shaped thermal actuators
Kinematic sensitivity analysis of a novel micro-mechanism for displacement amplification