Optimization of a Handwriting Method by an Automated Ink Pen for Cost-Effective and Sustainable Sensors
Оптимизация метода письма с использованием автоматизированной чернильной ручки для создания экономичных и экологичных сенсоров
2021-09-16
SCID: 54.1/u2w8yv8m
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RFID tagautomated handwriting robotcapacitive sensorprinted electronicssilver conductive inks
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Abstract (AI)
In this work, we present a do-it-yourself (DIY) approach for the environmental-friendly fabrication of printed electronic devices and sensors. The setup consists only of an automated handwriting robot and pens filled with silver conductive inks. Here, we thoroughly studied the fabrication technique and different optimized parameters. The best-achieved results were 300 mΩ/sq as sheet resistance with a printing resolution of 200 µm. The optimized parameters were used to manufacture fully functional electronics devices: a capacitive sensor and a RFID tag, essential for the remote reading of the measurements. This technique for printed electronics represents an alternative for fast-prototyping and ultra-low-cost fabrication because of both the cheap equipment required and the minimal waste of materials, which is especially interesting for the development of cost-effective sensors.
Key Findings
1
A DIY fabrication method uses an automated handwriting robot and silver conductive ink pens to produce printed electronics and sensors.
2
Optimization achieved a sheet resistance of 300 mΩ/sq and a printing resolution of 200 µm.
3
The approach enables fast prototyping and ultra-low-cost printed electronics with minimal material waste and inexpensive equipment.
4
The method is presented as an environmentally friendlier alternative for developing cost-effective sensors.
5
The optimized handwriting process successfully fabricated functional capacitive sensors and RFID tags for remote measurement reading.
Research Object
Automated handwriting fabrication of printed electronic devices and sensors using silver conductive inks
Research Subject
Optimization of fabrication parameters, including sheet resistance and printing resolution, for cost-effective, sustainable printed electronics
Publication Details
Publication Date
2021-09-16
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