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Prototype of Data Collector from Textronic Sensors.

Ewa Korzeniewska1, Rafał Zawiślak2, Szymon Przybył3

  • 1Institute of Electrical Engineering Systems, Lodz University of Technology, Stefanowskiego 18 Street, 90-537 Lodz, Poland.

Sensors (Basel, Switzerland)
|December 23, 2023
PubMed
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The Influence of Buffer Layer Type on the Electrical Properties of Metallic Layers Deposited on Composite Textile Substrates in the PVD Process.

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Field Modeling of the Influence of Defects Caused by Bending of Conductive Textronic Layers on Their Electrical Conductivity.

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Researchers developed a data collector for textronic sensors, enabling wireless data transmission and visualization for wearable electronics. This system reliably records impedance, resistance, and temperature, proving useful for advanced textile-based sensing applications.

Area of Science:

  • Materials Science
  • Electrical Engineering
  • Wearable Technology

Background:

  • Miniaturization of electronics necessitates seamless integration with textiles.
  • Efficient processing and visualization of sensor data are crucial for wearable applications.
  • Textronic sensors on composite substrates require robust data acquisition systems.

Purpose of the Study:

  • To develop a prototype data collector for textronic sensors.
  • To enable wireless data transmission and visualization from textile-based sensors.
  • To validate the system's reliability for measuring electrical properties.

Main Methods:

  • Utilized an nRF52 platform for wireless communication via Bluetooth.
  • Integrated a database on the Microsoft Azure platform for data storage.
Keywords:
data collectorsimpedance sensortextronicswearable electronics

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  • Developed a React Native mobile application for data control and visualization.
  • Conducted initial verification tests to assess system performance.
  • Main Results:

    • The developed system successfully collects and transmits data from textronic sensors.
    • The mobile application allows for automatic connection, data download, and chart-based presentation.
    • Initial tests confirmed the system's correctness and reliability.
    • Demonstrated the utility of recorded impedance, resistance, and temperature data.

    Conclusions:

    • The prototype data collector is effective for textronic structures and wearable electronic systems.
    • The system provides a reliable solution for real-time measurement and recording of key electrical properties.
    • This technology supports advancements in smart textiles and integrated wearable sensing.