This paper presents an electromagnetically-actuated micropump for microfluidic application. The system comprises two modules; an electromagnetic actuator module and a diffuser module. Fabrication of the diffuser module can be achieved using photolithography process with a master template and a PDMS prepolymer as the structural material. The actuator module consists of two power inductors and two NdFeB permanent magnets placed between the diffuser elements. The choice of this actuation principle merits from low operating voltage (1.5 Vdc) and the flow direction can be controlled by changing the orientation of the magnet vibration. Maximum volumetric flow rate of the fabricated device at zero backpressure is 0.9756 μLs-1 and 0.4659 μLs-1 at t...
In this paper, we present a low-cost, PDMS-membrane micropump with two one-way ball check-valves for...
Low cost valveless micropumps based on electromagnetic actuation have been developed. The pumping pe...
A micropump which can be produced using conventional production techniques and materials is present...
This paper presents an electromagnetically-actuated micropump for microfluidic application. The syst...
This paper presents an electromagnetically-actuated micropump for microfluidic application. The syst...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...
Microfluidic devices depend on the miniaturization of some components such as sensors, actuators and...
We have fabricated and characterized a polymethylmethacrylate (PMMA) valveless micropump. The pump c...
In microfluidic devices, the integration of micro-sensors, reactors and actuators can result in a po...
Planar pinch micropump with the integration of two diffuser valve elements has been reported. The fa...
This paper presents the design and development of a dual-chamber microchannel chip, coupled with an ...
A valveless electromagnetic (EM) micropump with a matrix-patterned magnetic polymer composite actuat...
A valveless electromagnetic (EM) micropump with a matrix-patterned magnetic polymer composite actuat...
We present two types of oscillating diaphragm micropumps configured with passive ball valves and usi...
In this paper, we present a low-cost, PDMS-membrane micropump with two one-way ball check-valves for...
Low cost valveless micropumps based on electromagnetic actuation have been developed. The pumping pe...
A micropump which can be produced using conventional production techniques and materials is present...
This paper presents an electromagnetically-actuated micropump for microfluidic application. The syst...
This paper presents an electromagnetically-actuated micropump for microfluidic application. The syst...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...
Microfluidic devices depend on the miniaturization of some components such as sensors, actuators and...
We have fabricated and characterized a polymethylmethacrylate (PMMA) valveless micropump. The pump c...
In microfluidic devices, the integration of micro-sensors, reactors and actuators can result in a po...
Planar pinch micropump with the integration of two diffuser valve elements has been reported. The fa...
This paper presents the design and development of a dual-chamber microchannel chip, coupled with an ...
A valveless electromagnetic (EM) micropump with a matrix-patterned magnetic polymer composite actuat...
A valveless electromagnetic (EM) micropump with a matrix-patterned magnetic polymer composite actuat...
We present two types of oscillating diaphragm micropumps configured with passive ball valves and usi...
In this paper, we present a low-cost, PDMS-membrane micropump with two one-way ball check-valves for...
Low cost valveless micropumps based on electromagnetic actuation have been developed. The pumping pe...
A micropump which can be produced using conventional production techniques and materials is present...