DocumentCode :
127395
Title :
Microfluidic injector simulation with SAW sensor for 3D integration
Author :
Hang Bui Thu ; Trinh Chu Duc
Author_Institution :
Dept. of Microelectromechanical Syst. & Microsyst., Univ. of Eng. & Technol., Hanoi, Vietnam
fYear :
2014
fDate :
18-20 Feb. 2014
Firstpage :
213
Lastpage :
218
Abstract :
The possible creation of efficient liquid sensors on the nozzle is presented. The proposed surface acoustic wave (SAW) device utilizing Aluminum Nitride (AlN) single crystal as the piezoelectric substrate is based on the pressure variation due to the continuous droplet ejector. The design, specification and numerical simulation results are described. Output response results demonstrating the efficiency and scalability of the method have been presented. This 3D integrated system has a number of advantages, such as sensitivity to droplet pressure in the nozzle. It is able to detect the start of the droplet formation process and is compatible with CMOS fabrication technology leading to an inexpensive and reliable system. The droplet generation process begins at an output voltage of roughly 0.074 V and the background level of the attenuation of both mechanical and electrical energy. Using a 3D model, the combination capacity between inkjet printer and piezoelectric and electrical-mechanical stability was verified.
Keywords :
drops; flow sensors; flow simulation; ink jet printers; mechanical stability; microfabrication; microfluidics; microsensors; nozzles; numerical analysis; piezoelectric devices; surface acoustic wave sensors; 3D integrated system; 3D model; SAW sensor; continuous droplet ejector; droplet formation process; droplet generation process; electrical energy; electrical stability; inkjet printer; liquid sensor; mechanical energy; mechanical stability; microfluidic injector simulation; nozzle; numerical simulation; piezoelectric stability; piezoelectric substrate; pressure variation; surface acoustic wave; voltage 0.074 V; Attenuation; Ink; Liquids; Receivers; Substrates; Surface acoustic wave devices; Surface acoustic waves; Level set method; Microfludic injector; Surface acoustic wave sensor;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors Applications Symposium (SAS), 2014 IEEE
Conference_Location :
Queenstown
Print_ISBN :
978-1-4799-2180-5
Type :
conf
DOI :
10.1109/SAS.2014.6798948
Filename :
6798948
Link To Document :
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