My Research 

Dr. Jobin Varghese, worked on several international research projects as a researcher in materials science and technology division (2010-2014), CSIR-NIIST, India as well as Microelectronics research unit (2014 -2019), University of Oulu, Finland. Currently, working as a Scientist at Hybric Microsystems Fraunhofer IKTS, Dresden, Germany  (2020-Present). My passion is to design and fabricate industrial and technology materials processing solutions as well as products based on HTCC, LTCC, ULTCC, EMI shielding, polymer-ceramic composites and dielectric inks for present and future telecommunication applications. During my doctoral degree, I have successfully made an invention on zircon based HTCC substrates as well as self-healing silica-based dielectric ink which is patented successively in 2013 and 2014 in various countries such as India, China, Europe, Japan, US etc. Moreover, I have published 1 book monograph and 4 book chapters with reputed publishers worldwide. I also have a good track record in publishing scientific articles (40 till 2024) in reputed international journals. I am also a reviewer board member of various SCI journals (35 till 2024) and expert panel member of NCN Poland and ANR, France. Active in many international conferences and webinars around the world as invited and keynote speaker. 2020 onward, Dr. Jobin Varghese also act as Associate Editor of Frontiers in Materials: Glass and Ceramics; Edited research topic "Dielectric Materials for Electronic Applications".

Ready for casting (RoHS & REACH regulations)

Green tapes (LTCC)

Green tape (ULTCC01)

HTCC Zircon (HRTEM view)

HTCC Zircon green tape

HTCC Zircon (AFM)

HTCC Mineral Zircon green tape

Green tape for mechanical test

My view of PEs

HTCC after sintering

Zircon sand

Green tape SEM

Molybdenum oxide & Al

ULTCC cofired with Al

Magic of Bi

Magic of Mo

Smart sensors

smart ceramics

3D printing

LTCC & ULTCC ceramics & additive manufacturing

R&D Focused on

Sustainability in production

Environmentally friendly manufacturing (RoHS, REACH)

Low cost fabrications (6G devices)

Low energy production of ceramics

Low energy recycling possibilities (WEEE)

Global design & local production