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Assembling surface mounted components on ink-jet printed double sided paper circuit board.

Henrik A Andersson1, Anatoliy Manuilskiy, Stefan Haller

  • 1Department of Electronics Design, Mid Sweden University, SE-851 70 Sundsvall, Sweden.

Nanotechnology
|February 14, 2014
PubMed
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Researchers explored hybrid printed electronics using paper substrates. They evaluated conductive adhesives and soldering for mounting components, demonstrating a functional Arduino-compatible circuit board for low-cost, high-functionality applications.

Area of Science:

  • Materials Science
  • Electrical Engineering
  • Manufacturing Technology

Background:

  • Printed electronics offers high-speed manufacturing on flexible substrates.
  • Fully printed integrated circuits remain a future prospect.
  • Hybrid approaches combine printed components with standard electronics for enhanced functionality and cost-effectiveness.

Purpose of the Study:

  • To investigate hybrid printed electronics on paper substrates.
  • To evaluate methods for mounting surface-mounted components onto printed conductive tracks.
  • To develop a functional, Arduino-compatible paper circuit board.

Main Methods:

  • Evaluation of conductive adhesives and soldering for component mounting.
  • Use of ink-jet printed conductive tracks on paper substrates.

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  • Fabrication and programming of a double-sided Arduino-compatible circuit board.
  • Main Results:

    • Successful mounting of surface-mounted components on paper using evaluated methods.
    • Demonstration of a functional double-sided Arduino-compatible circuit board.
    • Assessment of conductive adhesives and soldering for low-resistance interconnections.

    Conclusions:

    • Hybrid printed electronics on paper are feasible for creating functional circuits.
    • Conductive adhesives and soldering are viable interconnection methods for paper-based hybrid electronics.
    • Paper circuit boards offer a sustainable and cost-effective platform for integrated electronic functionalities.