DocumentCode
3290630
Title
Characterization of moisture sensor based on printed Carbon-Zinc energy cell
Author
Nilsson, Hans-Erik ; Siden, J. ; Unander, Tomas ; Olsson, Torbjörn ; Jonsson, Peter ; Koptioug, Andrei ; Gulliksson, Mikael
Author_Institution
Mid-Sweden University, Electronics Design Division, 851 70, Sundsvall, Sweden
fYear
2005
fDate
23-26 Oct. 2005
Firstpage
82
Lastpage
85
Abstract
In this work we present a simple printed moisture sensor fabricated using electronic inks on a multilayer paper structure. The sensor is based on a Carbon-Zinc type energy cell and provides power to a readout electronic circuit when activated by moisture. The sensors are based on a number of our filed patents according to which the sensor is used for both event detection and as a power source for the processing electronics. Typical applications are moisture and leakage detection in buildings, water pipe lines, smart packages and health care systems such as smart incontinence sensors. As the detector is triggered, it powers up an electronic circuit (polymer based or silicon based) that starts communication with the alarm server. In the simplest systems a sound or a light alarm is started to alert the user. In this work we present a characterization of some critical parameters of the sensor such as power driving capability, linearity, internal memory effects and saturation. In addition, we examine a specific application, when sensor is used as defrosting alarm for surveillance of frozen articles during transport.
Keywords
Moisture detection; Printed sensors; RFID; Acoustic sensors; Circuits; Event detection; Ink; Intelligent sensors; Leak detection; Moisture; Nonhomogeneous media; Readout electronics; Sensor phenomena and characterization; Moisture detection; Printed sensors; RFID;
fLanguage
English
Publisher
ieee
Conference_Titel
Polymers and Adhesives in Microelectronics and Photonics, Polytronic, 2005. Polytronic 2005. 5th International Conference on
Print_ISBN
0-7803-9553-0
Type
conf
DOI
10.1109/POLYTR.2005.1596492
Filename
1596492
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