Medical Sensors Lab

Educational and Scientific Laboratory of Medical Sensors

The Educational and Scientific Laboratory of Medical Sensors was created to involve students in the study of disciplines in the specialty "Micro- and Nanosystems Engineering" and conduct applied scientific research in the field of developing sensor micromechanical thermally insulated structures on silicon using micro-electro-mechanical systems (MEMS) technologies and developing secondary converters for them.

Direction of the Educational and Scientific Laboratory:

  • conducting laboratory and practical classes together with the teaching staff of the Department of Microelectronics (ME), performing bachelor's theses, preparing master's theses and doctoral theses in accordance with current working curricula and methodological recommendations;
  • conducting scientific research in the field of modeling, development and application of primary transducers of physical quantities, designed and manufactured within the framework of micro-electro-mechanical systems (MEMS) technology on monocrystalline silicon; research of physical, thermal, gas-dynamic and electronic processes in MEMS sensor structures; development of secondary transducers for them; development of complex methods for modeling physical processes in MEMS structures and corresponding environments for their application in medical, scientific, general technical, production (electronic and pharmaceutical industries) and special purpose devices.

Classes are held in the following disciplines:

  • Biomedical electronic sensors and systems
  • Micromechanics
  • Wireless sensor networks
  • Signal processing systems
  • Digital information processing systems

Laboratory facilities

  • National Instruments NI ELVIS II Series virtual electronic device development platform and LabVIEW graphical programming environment
  • CY3210 PSoC Eval 1 Rev. D developer kits, CY3274 PLC with PSoC MiniProg programmers. and developer software
  • Digital oscilloscopes model Oscilloscope Velleman PCSU1000
  • Digital optical microscopes model Microscope Delta Optical Smart PRO
  • Laptops
  • Air quality analyzer model Air Quuality Detector Model D91 for the presence of mechanical impurities in the range of characteristic sizes 0.3 μm, 0.5 μm, 1 μm, 3 μm, 5 μm, 10 μm, chemical composition (CO2, formaldehyde, TVOC, temperature, humidity)
  • Differential pressure sensor with wireless interface model testo 510i + SMART PROBE
  • Linear air velocity meters KIMO, models VT100 (1 unit) and VT200
  • Linear air velocity sensors manufactured by Innovative Sensor Technology, Switzerland, model SFS-01 and FS-2
  • Precision Pt 100 resistance temperature transducers manufactured by REGMIK, Chernihiv, Ukraine based on Heraeus primary transducers
  • Arduino Uno controllers
  • Wireless modules manufactured by DiGi
  • Evaluation board for a precision digital temperature meter from Texas Instruments based on the TMP117 primary transducer.