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Tap.Net - Energieautarkes Drahtlosnetzwerk für sanitäre Armaturen

  • Beisteiner, Christoph (Researcher)
  • Gstöttenmayr, Richard (Researcher)
  • Wallner, Robert (Researcher)
  • Zagar, Bernhard (PI)

Project: Funded researchFFG - Austrian Research Promotion Agency

Project Details

StatusFinished
Effective start/end date01.01.201430.06.2017

Collaborative partners

Fields of science

  • 202039 Theoretical electrical engineering
  • 202016 Electrical engineering
  • 202015 Electronics
  • 202037 Signal processing
  • 202 Electrical Engineering, Electronics, Information Engineering
  • 202022 Information technology
  • 202021 Industrial electronics
  • 102003 Image processing
  • 101014 Numerical mathematics
  • 202014 Electromagnetism
  • 202012 Electrical measurement technology
  • 202027 Mechatronics
  • 103021 Optics
  • 211908 Energy research
  • 202024 Laser technology
  • 202036 Sensor systems
  • 203016 Measurement engineering

JKU Focus areas

  • Digital Transformation
  • Flexibler Ink-Jet gedruckter 2D-Dehnungssensor

    Translated title of the contribution: Flexible ink-jet printed 2D strain gauge sensorWallner, R., Dec 2016

    Research output: ThesisMaster's / Diploma thesis

  • Electrical characterization of inkjet printed conductive traces using LinuxCNC

    Beisteiner, C., Wallner, R. & Zagar, B., May 2015, 2015 IEEE International Instrumentation and Measurement Technology Conference - The "Measurable" of Tomorrow: Providing a Better Perspective on Complex Systems, I2MTC 2015 - Proceedings. p. 1883-1888 6 p. 7151568. (Conference Record - IEEE Instrumentation and Measurement Technology Conference; vol. 2015-July).

    Research output: Chapter in Book/Report/Conference proceedingConference proceedingspeer-review