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Updated: Jan 28, 2026

Magnetically-Assisted Remote Controlled Microcatheter Tip Deflection under Magnetic Resonance Imaging
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Remote Control System for Battery-Assisted Devices with 16 nW Standby Consumption.

Manuel Ferdik1, Georg Saxl2, Erwin Jesacher3

  • 1Microelectronics and Implantable Systems Group, Department of Mechatronics, University of Innsbruck, 6020 Innsbruck, Austria. manuel.ferdik@uibk.ac.at.

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Summary

This study presents a wireless node for the Internet of Things that drastically reduces standby power consumption to under 16 nW. It uses radiofrequency signals to control a latching switch, extending battery life for connected devices.

Keywords:
energy harvestinginternet of thingslow-power electronicsradio frequencyswitching circuitswireless communication

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Area of Science:

  • Electrical Engineering
  • Computer Engineering
  • Wireless Communication

Background:

  • The Internet of Things (IoT) vision involves billions of connected devices, necessitating efficient power solutions for individual nodes.
  • Batteries are often essential for powering these nodes, making battery longevity a critical factor for environmental sustainability and device usability.
  • Existing wireless systems face challenges in providing continuous power to numerous low-power devices.

Purpose of the Study:

  • To introduce a novel wireless battery-assisted node with significantly reduced energy consumption in standby mode.
  • To demonstrate a method for remotely controlling the on/off state of a node using harvested radiofrequency signals.
  • To enable extended battery life for Internet of Things devices through ultra-low standby power.

Main Methods:

  • Implementation of a wireless node featuring a latching switch controlled by a charge pump converting AC to DC signals.
  • Integration of an antenna and matching network to harvest radiofrequency (RF) signals at 868 MHz (UHF RFID band).
  • Utilizing a remote control (UHF RFID reader) to emit electromagnetic waves for switching the node's state.

Main Results:

  • The wireless node achieves an ultra-low standby power consumption of less than 16 nanowatts (nW).
  • Remote control functionality is demonstrated, with successful switching at distances exceeding 12 meters.
  • The system operates within the Ultra High Frequency Radio Frequency Identification (UHF RFID) band.

Conclusions:

  • The developed wireless node offers a viable solution for drastically reducing energy consumption in IoT devices.
  • Future integration with UHF RFID tags can leverage existing protocols for object identification and wireless switching.
  • This technology has the potential to significantly enhance the longevity and environmental friendliness of battery-powered IoT applications.