DocumentCode :
3012583
Title :
Actuators to be integrated in Low Temperature Cofired Ceramics (LTCC) microfluidic systems
Author :
Klumbies, Hannes ; Partsch, Uwe ; Goldberg, Adrian ; Gebhardt, Sylvia ; Keitel, Uwe ; Neubert, Holger
Author_Institution :
Micro- & Energy Syst., Fraunhofer-Inst. of Ceramic Technol. & Syst., Dresden, Germany
fYear :
2009
fDate :
13-17 May 2009
Firstpage :
1
Lastpage :
4
Abstract :
LTCC technology has recently been used for microfluidic elements, e.g. channels, cavities and other passive fluidic components. However, microfluidic systems having enhanced functionality, e.g. differential pressure sensors, dosing devices and pumps, require active components that include electrically driven actuators. Up to now, only piezo-cantilevers, electromagnetic and thermo-pneumatic actuators have been engineered for the LTCC integration [1-4]. Due to their specific properties, they are not suitable for all applications that require an actuator. Therefore, a review on actuators capable of being integrated in LTCC is given. On the one hand, the actuators are compared according to their functional properties, e.g. stroke and switching energy, so that actuators can be figured out that fulfil the requirements of a microfluidic system to be designed. On the other hand, the technological challenges to be coped with in the integration of the actuators are listed. Both the functional properties of an actuator and the possibility to integrate it decide on the suitability for a specific application. Using our evaluation method, we introduced actuators for two different microfluidic applications, a piezo-electrically controlled throttle for a DMFC (direct methanol fuel cell) application and an electrostatic valve for a differential pressure sensor.
Keywords :
ceramics; direct methanol fuel cells; electrostatic devices; integrated circuits; microactuators; microfluidics; microsensors; piezoelectric devices; pressure sensors; switching; DMFC; LTCC technology; actuator integration; differential pressure sensor; direct methanol fuel cell; electrostatic valve; evaluation method; functional properties; low temperature cofired ceramics; microfluidic system; piezoelectrically controlled throttle; stroke; switching energy; Ceramics; Electrostatic actuators; Fuel cells; Methanol; Microfluidics; Piezoelectric actuators; Pressure control; Pumps; Sensor systems; Temperature sensors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics Technology, 2009. ISSE 2009. 32nd International Spring Seminar on
Conference_Location :
Brno
Print_ISBN :
978-1-4244-4260-7
Type :
conf
DOI :
10.1109/ISSE.2009.5207068
Filename :
5207068
Link To Document :
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