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Hybrid Printing for the Fabrication of Smart Sensors
Published on: January 31, 2019
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A Low Cost Inkjet-Printed Mass Sensor Using a Frequency Readout Strategy.
Bruno Andò1, Salvatore Baglio1, Vincenzo Marletta1
1Department of Electric Electronic and Computer Science Engineering (DIEEI), University of Catania, 95125 Catania, Italy.
Sensors (Basel, Switzerland)
|July 24, 2021
Summary
A novel, low-cost inkjet-printed mass sensor using a PolyEthylene Terephthalate (PET) cantilever beam was developed. This robust sensor offers accurate mass measurements with a resolution of 0.001 g for various applications.
Area of Science:
- Materials Science
- Sensor Technology
- Mechanical Engineering
Background:
- Low-cost mass sensors are crucial across diverse scientific fields.
- Existing sensor technologies often face limitations in cost, robustness, or precision.
- Inkjet printing offers a promising low-cost fabrication method for micro-devices.
Purpose of the Study:
- To propose and characterize a fully inkjet-printed mass sensor.
- To investigate the sensor's performance using a PolyEthylene Terephthalate (PET) cantilever beam.
- To evaluate the effectiveness of an inkjet-printed strain sensor and planar coil for actuation and sensing.
Main Methods:
- Fabrication of a PET cantilever beam with integrated inkjet-printed strain sensor and planar coil.
- Utilizing the first natural frequency of the cantilever beam for mass sensing.
- Employing a magnetic actuation strategy linked to the planar coil.
- Characterization of sensor performance, including working span and resolution.
- Modeling to predict and understand the sensor's behavior.
Main Results:
- Successful realization of a fully inkjet-printed mass sensor.
- Demonstrated robustness of the frequency readout strategy against various interfering factors.
- Achieved a working span of 0-0.36 g.
- Obtained a high resolution of approximately 0.001 g.
- Identified frictionless actuation as a design limitation.
Conclusions:
- The inkjet-printed mass sensor provides a low-cost, robust, and accurate solution for mass measurement.
- The frequency readout mechanism enhances reliability and reduces sensitivity to environmental factors.
- The device is suitable for applications demanding high precision within a specific mass range.

