Welcome to

Parul University Micro-Nano Research & Development Center

Research Center
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Key Features

01

Advanced Fabrication and Characterization Facilities

The Advanced manufacturing and Characterization Facilities are equipped with state-of-the-art techniques and technology to facilitate advanced research in the fields of micro and nano sciences, as well as micro and nanoscale device manufacturing and analysis.

02

Multidisciplinary Research Capabilities

Interdisciplinary teams and research projects in nanomaterials, Nanoelectronics, MEMS, and biomedical nanotechnology, comprising collaborative initiatives that span academia, industry, and government.

03

Educational and Training Programs

Postgraduate courses, seminars, workshops, and practical training aiming at cultivating proficient workforce in the field of micro and nanotechnology.

Our Vision:

The Micro Nano Research and Development Center aspires to be a premier center of innovation and excellence in micro and nanotechnology. This will be achieved by conducting cutting-edge research, fostering a culture of scientific and technological innovation, and developing next-generation materials, devices, and systems that address critical global challenges, improve the quality of life, and bridge the gap between fundamental research and practical implementation. Additionally, the center will train the next generation of scientists, engineers, and entrepreneurs.

Our Mission:

The Micro Nano Research and Development Center is dedicated to the advancement of micro and nanotechnology by means of innovative approaches, rigorous research, and interdisciplinary collaboration. The objective is to create innovative materials, devices, and systems that address global challenges, improve societal well-being, stimulate economic development, and contribute to a sustainable and technologically advanced future.

Our Research Collaborations

Equipments

RF & DC  Magnetron Sputtering with Thermal Evaporation System

RF & DC Magnetron Sputtering with Thermal Evaporation System

Sputter deposition is a physical vapor deposition method that deposits thin films. Auto500 is a versatile front-loading coating system with a box chamber for R&D or pre-production use.

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Scanning Electron Microscope (SEM) with EDS

Scanning Electron Microscope (SEM) with EDS

The Hitachi SU 3800 performs high-resolution characterization and analysis, yielding precise, genuine nanoscale scale information.

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X-Ray Diffractometer (XRD)

X-Ray Diffractometer (XRD)

The X-ray diffractometer is an adaptable instrument that may be used to analyze powders, thin films, epitaxial layers, machined materials, ceramics, and other materials via X-ray diffraction.

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Scanning Probe Microscope

Scanning Probe Microscope

AFM stands for Atomic Force Microscopy. It's a powerful imaging technique used in nanotechnology and materials science. AFM works by scanning a tiny probe over a sample's surface and measuring the forces between the probe & sample to create high-resolution images.

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Piezo-based Multicomponent Dynamometer

Piezo-based Multicomponent Dynamometer

The Piezo-based Dynamometer represents a breakthrough in force measurement technology. Utilizing piezoelectric sensors, it converts mechanical stress into electrical signals with remarkable accuracy and sensitivity.

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Tribometer

Tribometer

Novus Tribo Solutions Pin-on-Disc Wear Testing Machine is a precise tool that replicates sliding wear conditions between two materials.

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LCR Meter

LCR Meter

The ZM2376 LCR meter is a precision measurement tool designed to evaluate inductance (L), capacitance (C), resistance (R), and impedance (Z) across a wide frequency spectrum.

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CNC MICRO Machine tool

CNC MICRO Machine tool

Hyper-15 is a tabletop type miniature micro machine tool with multi-process capability. This tool can perform processes such as Micro Turning (Vertical with a tool mounted on the Spindle), Micro Milling, Micro Drilling, Micro EDM Drilling, and Micro Scanning EDM (EDM Milling).

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Piezo-based Multicomponent Dynamometer

Piezo-based Multicomponent Dynamometer

The Piezo-based Dynamometer represents a breakthrough in force measurement technology. Utilizing piezoelectric sensors, it converts mechanical stress into electrical signals with remarkable accuracy and sensitivity.

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Research Update

Research Update

Sanction for establishment of “Micro - Nano Research and Development Center” by the Industries Commissionerate, Govt of Gujarat


Research Excellence at Parul University

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Board of Governors

Dr. Devanshu J Patel

Dr. Devanshu J Patel

President, Parul University

Dr. Devanshu Patel, a dynamic visionary President of Parul University, whose unflinching commitment towards education has made an impact not only in Gujarat but in all the diversified States of India, and going beyond national boarders.

Meet Our Team