IP Library Granted Patent US 9,249,796
Granted Patent B2
US 9,249,796 · App. 11/724,824 · Granted Feb 2, 2016

Disposable positive displacement dosing pump

Inventors: Jeffrey L. Jackson (Lino Lakes, MN); Alan S. Peterson (Maple Grove, MN); Eric A. Isberg (Maple Grove, MN)
Assignee: Robert Bosch Packaging Technology, Inc.
F04B53/143B65B3/12F04B13/00F04B43/0063F04B43/021F04B53/008
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Quick Facts
Patent No.
US 9,249,796
App. No.
11/724,824
Granted
Feb 2, 2016
Kind
B2
Abstract

A disposable positive displacement pump is disclosed. The pump includes a pump housing having head portion and a body, the head portion having one or more fluid passage openings. The pump also includes a rolling diaphragm internal to the pump housing and defining a fluid chamber within the pump housing. The pump further includes a piston drive unit configured to reciprocally drive the rolling diaphragm to move fluid in or out of the fluid chamber. A method of dispensing a fluid is also disclosed.

Claims (34)

1. A disposable positive displacement pump comprising:

a pump housing having a head portion non-disengagingly connected to a body, the head portion having a plurality of fluid passage openings, the body including a plurality of separate concentrically positioned components, a pneumatic chamber and a pneumatic port;

a rolling diaphragm internal to the pump housing and defining a fluid chamber within the pump housing; and

a piston drive unit at least partially retained within the pump housing by the body, the piston drive unit at least partially formed from plastic and configured to reciprocally drive the rolling diaphragm in an axial direction to move fluid into the fluid chamber via a first of the plurality of fluid passage openings and out of the fluid chamber via a second of the plurality of fluid passage openings, and wherein at least a first seal and a second seal are spaced apart and positioned between a piston and the plurality of separate concentrically positioned components of the body, the first and second seals configured to assist in maintaining a vacuum in the pneumatic chamber;

wherein the first seal is positioned between the piston and a first component of the plurality of separate concentrically positioned components of the body, and the second seal is positioned between the piston and a second component of the plurality of separate concentrically positioned components of the body, and wherein the first seal is positioned inward of the pneumatic port in a radial direction, the radial direction perpendicular to the axial direction, and

wherein the pump housing, the rolling diaphragm, and the piston drive unit are non-disengageable and fully disposable.

2. The disposable positive displacement pump of claim 1 , wherein the pump housing is plastic.

3. The disposable positive displacement pump of claim 1 , wherein the piston is plastic.

4. The disposable positive displacement pump of claim 1 , wherein the head portion and the body are integrally connected.

5. The disposable positive displacement pump of claim 1 , wherein the fluid chamber has a predetermined maximum volume.

6. The disposable positive displacement pump of claim 1 , wherein the piston drive unit includes the piston.

7. The disposable positive displacement pump of claim 1 , wherein the pneumatic port provides an air outlet allowing a vacuum connection to the body.

8. The disposable positive displacement pump of claim 7 , wherein the vacuum connection controls withdrawal of the piston drive unit.

9. A method of dispensing a fluid, the method comprising:

pumping a fluid from a fluid source using a disposable positive displacement pump, the pump comprising:

a pump housing having a head portion non-disengagingly connected to a body, the head portion having a plurality of fluid passage openings, the body including a plurality of separate concentrically positioned components, a pneumatic chamber and a pneumatic port;

a rolling diaphragm internal to the pump housing and defining a fluid chamber within the pump housing;

a piston drive unit at least partially retained within the pump housing by the body, the piston drive unit at least partially formed from plastic and configured to reciprocally drive the rolling diaphragm in an axial direction to move fluid into the fluid chamber via a first of the plurality of fluid passage openings and out of the fluid chamber via a second of the plurality of fluid passage openings, and wherein at least a first seal and a second seal are spaced apart and positioned between a piston and the plurality of separate concentrically positioned components of the body, the first and second seals configured to assist in maintaining a vacuum in the pneumatic chamber;

wherein the first seal is positioned between the piston and a first component of the plurality of separate concentrically positioned components of the body, and the second seal is positioned between the piston and a second component of the plurality of separate concentrically positioned components of the body, and wherein the first seal is positioned inward of the pneumatic port in a radial direction, the radial direction perpendicular to the axial direction, and

wherein the pump housing, the rolling diaphragm, and the piston drive unit are non-disengageable and fully disposable.

10. The method of claim 9 , further comprising replacing the disposable positive displacement pump with a second disposable positive displacement pump.

11. The method of claim 10 , further comprising disposing of the disposable positive displacement pump.

12. The method of claim 10 , wherein replacing the disposable positive displacement pump comprises disconnecting the disposable positive displacement pump from the fluid source.

13. The method of claim 9 , wherein the head portion and the body are integrally connected.

14. A disposable positive displacement pump for use in a sterile disposable positive displacement dosing system, the pump comprising:

a pump housing having an integrally formed head portion non-disengagingly connected to a body, the head portion having a plurality of fluid passage openings, and the body including a plurality of separate concentrically positioned components, and a pneumatic chamber;

a rolling diaphragm internal to the pump housing and defining a fluid chamber within the head portion;

a piston drive unit at least partially retained within the pump housing by the body, the piston drive unit at least partially formed from plastic and configured to reciprocally drive the rolling diaphragm in an axial direction to move fluid into the fluid chamber via a first of the plurality of fluid passage openings and out of the fluid chamber via a second of the plurality of fluid passage openings, and wherein at least a first seal and a second seal are spaced apart and positioned between a piston and the plurality of separate concentrically positioned components of the body, the first and second seals configured to assist in maintaining a vacuum in the pneumatic chamber; and

a pneumatic port located on the body for providing an air outlet allowing a vacuum connection to the body and controlling withdrawal of the piston drive unit;

wherein the first seal is positioned between the piston and a first component of the plurality of separate concentrically positioned components of the body, and the second seal is positioned between the piston and a second component of the plurality of separate concentrically positioned components of the body, and wherein the first seal is positioned inward of the pneumatic port in a radial direction, the radial direction perpendicular to the axial direction, and

wherein the pump housing, the rolling diaphragm, and the piston drive unit are non-disengageable and fully disposable.

15. The disposable positive displacement pump of claim 14 , wherein the pump housing is plastic.

16. The disposable positive displacement pump of claim 14 , wherein the piston is plastic.

17. The disposable positive displacement pump of claim 14 , wherein the pump is pre-sterilized.

Assignments (2)
CHANGE OF NAME Recorded Sep 25, 2020
From: ROBERT BOSCH PACKAGING TECHNOLOGY, INC.
To: SYNTEGON PHARMA TECHNOLOGY, INC.
Reel/Frame 053889/0217 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2007
From: JACKSON, JEFFREY L.; PETERSON, ALAN S.; ISBERG, ERIC A.
To: ROBERT BOSCH PACKAGING TECHNOLOGY, INC.
Reel/Frame 019902/0563 →
Continuity (1)
Related Publication 20080226468A1 · Sep 18, 2008