Microfluidic pump and valve structures and fabrication methods
View Patent ↗Plastic microfluidic structures having a substantially rigid diaphragm that actuates between a relaxed state wherein the diaphragm sits against the surface of a substrate and an actuated state wherein the diaphragm is moved away from the substrate. As will be seen from the following description, the microfluidic structures formed with this diaphragm provide easy to manufacture and robust systems, as well readily made components such as valves and pumps.
1. An integrated microfluidic system, comprising:
a two-layer microfluidic device, consisting of:
a substrate having upper and lower surfaces and microfeatures formed therein, said microfeatures including a plurality of microfluidic channels, and
a membrane solvent bonded to the upper surface of the substrate, and
having a relaxed state wherein the membrane lies substantially against the upper surface of the substrate thus having a seal between the plurality of microfluidic channels and an actuated state wherein the membrane is moved away from the upper surface of the substrate so as to provide a cavity suitable for fluid flow between the plurality of microfluidic channels, wherein the substrate and the membrane are composed of the same material, wherein the device comprises:
a plurality of pump structures each consisting of a portion of the substrate and a portion of the membrane; and
a shared outlet/inlet valve,
further wherein each of the pump structures includes an inlet/outlet valve and a drive valve that are serially connected by at least one of the microfluidic channels, further wherein the shared outlet/inlet valve is connected, respectively, to each drive valve by a different at least one of the microfluidic channels.
2. The system of claim 1 , wherein the plurality of pump structures are disposed in a parallel relationship.
3. The system of claim 1 , wherein the plurality of pump structures are disposed in a radial relationship.
4. The system of claim 1 , wherein at least one of the drive valves is operatively connected to at least one other inlet/outlet valve.
5. The system of claim 1 , wherein at least one of the inlet/outlet valves is operatively connected to at least one other drive valve.
6. An integrated microfluidic system, comprising:
a two-layer microfluidic device, consisting of:
a substrate having upper and lower surfaces and microfeatures formed therein, including a plurality of microfluidic channels, and
a membrane disposed in a bonded manner to the upper surface of the substrate, and having a relaxed state wherein the membrane lies substantially flat against the upper surface of the substrate thus having a seal between the plurality of microfluidic channels and an actuated state wherein the membrane is moved away from the upper surface of the substrate so as to provide a cavity suitable for fluid flow between the plurality of microfluidic channels,
wherein the device comprises:
an integrated microfluidic pumping structure, comprising:
a plurality of reservoirs;
a plurality of inlet/outlet valves each connected to a respective reservoir by one of the microfluidic channels; and
a shared drive valve operatively connected to each of the plurality of inlet/outlet valves by a respective one of the microfluidic channels.
7. The microfluidic pumping structure of claim 6 , wherein each of the respective connected inlet/outlet valves and reservoirs are arranged in parallel with respect to the shared drive valve.
8. The system of claim 6 , wherein each of the respective connected inlet/outlet valves and reservoirs are arranged radially with respect to the shared drive valve.
9. The system of claim 6 , wherein at least one of the reservoirs is operatively connected to another drive valve.
10. The system of claim 6 , wherein at least two of the inlet/outlet valves are interconnected by one of the microfluidic channels.