Highly Integrable Microfluidic Impulsion System for Precise Displacement of Liquids on Lab on PCBs
Journal of Microelectromechanical Systems(2018)
Abstract
In this paper, an impulsion system for laboratory on printed circuit board (LOP) is described. The proposed system is intended to place the working liquids in a designed location of the LOP. The system is composed of a pressurization system, a microvalve, and a damping chamber. All these parts have been integrated in a microfluidic system to test the behavior of the whole system. The pressurizatio...
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Key words
Microvalves,Liquids,Copper,Damping,Plastics,Fabrication,Substrates
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