IP Library Granted Patent US 10,487,819
Granted Patent B2
US 10,487,819 · App. 15/820,506 · Granted Nov 26, 2019

Peristaltic micropump and related systems and methods

Inventors: Parker A. Gould (Cambridge, MA); Loi T. Hoang (Antioch, TN); Joseph R. Scherrer (Nashville, TN); William J. Matloff (Paradise Valley, AZ); Kevin T. Seale (Nashville, TN); Erica L. Curtis (Atlanta, GA); David K. Schaffer (Nashville, TN); Douglas J. Hall (Chesterfield, MO); Ayeeshik Kole (Columbia, MD); Ronald S. Reiserer (Nashville, TN); Hunter Tidwell (Nashville, TN); Philip C. Samson (Nashville, TN); John P. Wikswo (Brentwood, TN)
Assignee: VANDERBILT UNIVERSITY
F04B43/1269F04B43/0054F04B43/0072F04B43/12F04B43/1253F04B43/1292B01L3/50273B01L2300/0819B01L2300/123
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Quick Facts
Patent No.
US 10,487,819
App. No.
15/820,506
Granted
Nov 26, 2019
Kind
B2
Abstract

A peristaltic micropump includes one or more flexible channels configured to transfer one or more pumped fluids, and an actuator configured to engage the one or more flexible channels and rotate about a central axis. The actuator includes a plurality of rolling elements and a driving element configured such that the driving element operably rotates about the central axis and each rolling element operably rolls about a respective axis that is not parallel to the central axis. The plurality of rolling elements is disposed between the one or more flexible channels and the driving element. The driving element includes a cage configured to capture the plurality of rolling elements such that the plurality of rolling elements is located at different radii from a center of the cage.

Claims (9)

1. A peristaltic micropump comprising:

one or more flexible channels configured to transfer one or more pumped fluids;

an actuator configured to engage the one or more flexible channels, and rotate about a central axis, wherein the actuator comprises at least one rolling element and a driving element configured such that the driving element operably rotates about the central axis and each rolling element operably rolls about a respective axis that is not parallel to the central axis; and the at least one rolling element is disposed between the one or more flexible channels and the driving element; and

one or more valves, each of the one or more valves being coupled to a respective channel of the one or more flexible channels and being operably open so as to allow a fluidic flow to pass the valve, or closed so as to allow no fluidic flow to pass the valve, wherein one or more valves are configured to control flows of the one or more pumped fluids in the one or more flexible channels by selections of which valves are open or closed,

wherein the one or more flexible channels contain at least a first fluid and a second fluid;

wherein the one or more valves are operably open or closed to control a flow rate of the first and second fluids during operation of the peristaltic micropump; and

wherein the one or more flexible channels are in fluid communication such that the first and second fluids are operably mixed in varying proportions.

2. The peristaltic micropump of claim 1 , wherein a first flexible channel of the one or more flexible channels comprises a bypass line configured to allow fluid to flow from an outlet of the first flexible channel to an inlet of the first flexible channel.

3. The peristaltic micropump of claim 1 , wherein the one or more flexible channels are configured to provide sinusoidal or other output concentration waveforms.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2018
From: GOULD, PARKER A.; HOANG, LOI T.; SCHERRER, JOSEPH R.; MATLOFF, WILLIAM J.; SEALE, KEVIN T.; CURTIS, ERICA L.; SCHAFFER, DAVID K.; HALL, DOUGLAS J.; KOLE, AYEESHIK; REISERER, RONALD S.; TIDWELL, HUNTER; SAMSON, PHILIP C.; WIKSWO, JOHN P.
To: VANDERBILT UNIVERSITY
Reel/Frame 045085/0228 →
Continuity (3)
Division 13877925
Provisional Application 61390982 · Oct 7, 2010
Related Publication 20180209552A1 · Jul 26, 2018
Cited By (1)
US 12,214,348