IP Library Granted Patent US 8,124,218
Granted Patent B2
US 8,124,218 · App. 12/556,373 · Granted Feb 28, 2012

Microfabricated elastomeric valve and pump systems

Assignee: California Institute of Technology
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Quick Facts
Patent No.
US 8,124,218
App. No.
12/556,373
Granted
Feb 28, 2012
Kind
B2
Abstract

A method of fabricating an elastomeric structure, comprising: forming a first elastomeric layer on top of a first micromachined mold, the first micromachined mold having a first raised protrusion which forms a first recess extending along a bottom surface of the first elastomeric layer; forming a second elastomeric layer on top of a second micromachined mold, the second micromachined mold having a second raised protrusion which forms a second recess extending along a bottom surface of the second elastomeric layer; bonding the bottom surface of the second elastomeric layer onto a top surface of the first elastomeric layer such that a control channel forms in the second recess between the first and second elastomeric layers; and positioning the first elastomeric layer on top of a planar substrate such that a flow channel forms in the first recess between the first elastomeric layer and the planar substrate.

Claims (8)

1. A composite structure comprising:

an elastomer component with a Young's Modulus between about 50 Pa and about 10 MPa including a recess and a flexible membrane portion;

a substantially planar nonelastomer component sealed against the elastomer component; and

an active device disposed within the nonelastomer component, wherein the active device is configured to interact with at least the membrane portion or a material present in the recess.

2. The composite structure of claim 1 wherein the active device is an optical structure selected from the group consisting of a photodiode, a fiber optic device, a fiber optic interconnect, a light emitting diode, a laser diode, vertical cavity surface emitting laser (VCSEL), a micromirror, a CMOS imaging array, a CCD camera, a waveguide, and a source or a receiver for visible, infrared, or ultraviolet regions of the electromagnetic spectrum.

3. The composite structure of claim 1 wherein the active device is an electronic structure selected from the group consisting of a resistor, a capacitor, a transistor, a chemical field effect transistor, a amperometric/coulometric electrochemical sensor, an accelerometer, a pressure sensor, a flow sensor, an electronic logic structure, a microprocessor, a chemical sensor, a strain gauge, an inductor, an actuator, a coil, a magnet, an electromagnet, a magnetic sensor, a radio frequency source, a radio frequency receiver, a microwave frequency source, a microwave frequency receiver, a radioactive particle counter, and an electrometer.

4. The composite structure of claim 1 wherein the active device is a thermal structure selected from the group consisting of a thermistor, a Peltier cooler, and a resistive heater.

5. The composite structure of claim 1 wherein the active device is an electrode that electrostatically drives the membrane portion into the recess.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jan 4, 2011
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 025576/0442 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2010
From: UNGER, MARC A.; CHOU, HOU-PU; THORSEN, TODD A.; SCHERER, AXEL; QUAKE, STEPHEN R.
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 024219/0803 →
Continuity (7)
Continuation 11552644 · Oct 25, 2006
Division 09724784 · Nov 28, 2000
Continuation In Part 09605520 · Jun 27, 2000
Provisional Application 60186856 · Mar 3, 2000
Provisional Application 60147199 · Aug 3, 1999
Provisional Application 60141503 · Jun 28, 1999
Related Publication 20100187105A1 · Jul 29, 2010