2006•International Conference on Biomedical and Pharmaceutical EngineeringRequires access

Fabrication and Performance Testing of Disposable Micropump Suitable for Microfluidic Chip

Rudi Irawan, Pragnyashree Aparajita, S. Swaminathan, Swee Chuan Tjin

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Abstract

Micropumps represent one of the major components in microfluidic technology. This paper describes the design, fabrication and performance testing of a simple, compact, inexpensive and disposable micropump suitable for microfluidic chip applications. The proposed pump is made of polymeric materials, PMMA and PVC, and fabricated using a direct-write CO2 laser machine. The size of pump body is 5 mm and it contains a 4.5 mm microfan which is driven by a DC motor. Flow-rate and pressure-head against microfan rotation speeds were measured in a 50 mm length of microchannel with a channel cross-section of 500 mum times 1000 mum. Promising results indicate that flow-rate and pressure-head are proportional to microfan rotation speeds and the maximum flow-rate is 15 ml/min. This prototype can be used as a platform to develop an inexpensive micropump which is suitable to be part of a disposable microfluidic chip.

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What this paper is about

Micropumps represent one of the major components in microfluidic technology. This paper describes the design, fabrication and performance testing of a simple, compact, inexpensive and disposable micropump suitable for microfluidic chip applications. The proposed pump is made of polymeric materials, PMMA and PVC, and fabricated using a direct-write CO2 laser machine. The size of pump body is 5 mm and it contains a 4.5 mm microfan which is driven by a DC motor. Flow-rate and pressure-head against microfan rotation speeds were measured in a 50 mm length of microchannel with a channel cross-section of 500 mum times 1000 mum. Promising results indicate that flow-rate and pressure-head are proportional to microfan rotation speeds and the maximum flow-rate is 15 ml/min. This prototype can be used as a platform to develop an inexpensive micropump which is suitable to be part of a disposable microfluidic chip.

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Available abstract

Micropumps represent one of the major components in microfluidic technology. This paper describes the design, fabrication and performance testing of a simple, compact, inexpensive and disposable micropump suitable for microfluidic chip applications. The proposed pump is made of polymeric materials, PMMA and PVC, and fabricated using a direct-write CO2 laser machine. The size of pump body is 5 mm and it contains a 4.5 mm microfan which is driven by a DC motor. Flow-rate and pressure-head against microfan rotation speeds were measured in a 50 mm length of microchannel with a channel cross-section of 500 mum times 1000 mum. Promising results indicate that flow-rate and pressure-head are proportional to microfan rotation speeds and the maximum flow-rate is 15 ml/min. This prototype can be used as a platform to develop an inexpensive micropump which is suitable to be part of a disposable microfluidic chip.

Key concepts: Micropump, Microfluidics, Microchannel, Fabrication, Volumetric flow rate, Materials science, Pressure head, Lab-on-a-chip

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