IP Library › Granted Patent US 11,364,497
Granted Patent B2
US 11,364,497 · App. 16/645,200 · Granted Jun 21, 2022

Embedded microfluidic devices

Inventors: Chien-Hua Chen (Corvallis, OR); Michael W. Cumbie (Corvallis, OR)
Assignee: Hewlett-Packard Development Company, L.P.
B01L3/502715G01N21/6454B01L2200/027B01L2300/041B01L2300/0663B01L2400/043
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,364,497
App. No.
16/645,200
Granted
Jun 21, 2022
Kind
B2
Abstract

A microfluidic system includes, in an example, a substrate and at least two microfluidic devices embedded into the substrate, at least one of the microfluidic devices being different from a remaining number of microfluidic devices. A microfluidic apparatus includes at least two microfluidic devices embedded into a substrate, at least a first microfluidic device of the microfluidic devices being heterogenous to at least a second microfluidic device of the microfluidic devices and a microfluidic channel to fluidically couple the microfluidic devices to each other.

Claims (31)

1. A microfluidic apparatus, comprising:

at least two microfluidic devices embedded into a substrate such that an upper surface of each microfluidic device is exposed at an upper surface of the substrate while a remainder of each microfluidic device is surrounded by the substrate, at least a first microfluidic device of the microfluidic devices being heterogeneous to at least a second microfluidic device of the microfluidic devices; and

a microfluidic channel to fluidically couple the microfluidic devices to each other, the microfluidic channel comprising the upper surface of the substrate over which fluid flows to reach each of the microfluidic devices embedded in the substrate;

wherein each microfluidic device is to receive fluid via the microfluidic channel and perform a different function involved in analyzing an analyte in the fluid.

2. The microfluidic apparatus of claim 1 , wherein the microfluidic devices are embedded into a single layer.

3. The microfluidic apparatus of claim 2 , wherein the single layer is epoxy mold compound.

4. The microfluidic apparatus of claim 1 , wherein the microfluidic devices are co-planar with respect to each other.

5. The microfluidic apparatus of claim 1 , wherein the microfluidic channel is formed over the co-planar microfluidic devices using a lid attached to the substrate over the microfluidic devices.

6. The microfluidic apparatus of claim 1 , further comprising an output port to allow a fluid to pass out of the microfluidic channel.

7. A microfluidic system, comprising:

a substrate;

at least two microfluidic devices embedded into the substrate such that an upper surface of each microfluidic device is exposed at an upper surface of the substrate while a remainder of each microfluidic device is surrounded by the substrate, at least one of the microfluidic devices being different from a remaining number of microfluidic devices;

a microfluidic channel to fluidically couple the microfluidic devices to each other, the microfluidic channel comprising the upper surface of the substrate over which fluid flows to reach each of the microfluidic devices embedded in the substrate;

wherein each microfluidic device is to receive fluid via the microfluidic channel and perform a different function involved in analyzing an analyte in the fluid; and

a conductive layer that electrically couples the microfluidic devices to each other, the conductive layer being formed on the upper surface of the substrate.

8. The microfluidic system of claim 7 , wherein the microfluidic devices are co-planar with respect to each other.

9. The microfluidic system of claim 8 , further comprising a lid, the lid forming part of the microfluidic channel above the co-planar microfluidic devices.

10. The microfluidic system of claim 9 , wherein the lid comprises an input port and an output port for the microfluidic channel.

11. The microfluidic system of claim 7 , wherein at least one of the microfluidic devices comprises an optical sensor comprising different band pass filters to detect different wavelengths of light.

12. A microfluidic fluid analyzer, comprising:

at least two microfluidic devices embedded into a substrate such that an upper surface of each microfluidic device is exposed at an upper surface of the substrate while a remainder of each microfluidic device is surrounded by the substrate, the microfluidic devices being co-planar to each other and with the upper surface of the substrate; and

a lid formed over the embedded microfluidic devices, the lid and the upper surface of the substrate forming a microfluidic channel between the embedded microfluidic devices where fluid flows over the upper surface of the substrate to reach each of the microfluidic devices embedded in the substrate;

wherein each microfluidic device is to receive fluid via the microfluidic channel and perform a different function involved in analyzing an analyte in the fluid.

13. The microfluidic fluid analyzer of claim 12 , further comprising at least two fluid flow sensors.

14. The microfluidic fluid analyzer of claim 12 , further comprising a light emitting device and light sensing device.

15. The microfluidic fluid analyzer of claim 12 , further comprising at least two magnetic devices.

16. The microfluidic apparatus of claim 5 , wherein the lid comprises an input port and an output port of the microfluidic channel.

17. The microfluidic apparatus of claim 1 , further comprising a redistribution layer that electrically couples the microfluidic devices to each other, the redistribution layer being formed on the upper surface of the substrate.

18. The microfluidic apparatus of claim 1 , wherein one of the microfluidic devices to conduct an optical analysis of the analyte in the fluid.

19. The microfluidic apparatus of claim 1 , wherein one of the microfluidic devices to conduct an electrical analysis of the analyte in the fluid.

20. The microfluidic apparatus of claim 1 , wherein one of the microfluidic devices comprises magnets to attract magnetic beads configured to extract a portion of the analyte by elution.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: CHEN, CHIEN-HUA; CUMBIE, MICHAEL W.
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 052040/0500 →
Continuity (1)
Related Publication 20210170401A1 · Jun 10, 2021