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Design and Fabrication of a Micropump With Mixing Function for LOC
Author(s) -
Ho-Jin Kang,
Bumkyoo Choi
Publication year - 2008
Publication title -
journal of medical devices
Language(s) - English
Resource type - Journals
eISSN - 1932-619X
pISSN - 1932-6181
DOI - 10.1115/1.2934349
Subject(s) - micropump , voltage , lorentz force , fabrication , materials science , microfluidics , mixing (physics) , flow (mathematics) , volumetric flow rate , electrode , mechanical engineering , centrifugal force , optoelectronics , mechanics , nanotechnology , electrical engineering , engineering , chemistry , physics , magnetic field , medicine , alternative medicine , pathology , quantum mechanics
A micropump, which includes a mixing function, has been fabricated. For the application to LOC (Lab On a chip), the micropump utilized PBS (Phosphate Buffered Saline) solution as the working medium. The solution is commonly used in biochemistry and cell culturing. The portable system and low energy consumption are important to realize the LOC device. In spite of a low voltage of 4V, the flow rate of the micropump was 0.02466ml∕min. The new micropump shows more enhanced performance than existing micropumps. The micropump uses Lorentz force actuation. The Lorentz force acting onto the ionic current in the PBS solution generates the fluid flow in the micropump. For the accurate prediction on flow direction, a computer simulation has been made using commercial CFD code. The results of simulation showing circulation direction were verified by experiment. The fluid circulation from each electrode combined and acted as the mixer in the micropump. The micropump was fabricated 20.2mm in length, 1mm in width and 400 μm in electrode length. To measure accurately, a high speed digital camera was used.

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