IP Library Patent Application 11206590
Patent Application
App. No. 11/206,590

Apparatus and method of manufacturing bodily fluid test strip

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Quick Facts
Patent No.
US None
App. No.
11/206,590
Abstract

There is a dry test strip holder having a test port and a retainer defining a well about the test port, and a sheet of test strip material. A test element that is 50% or less greater than the size of the test port is cut from the sheet using a die and punch. The punch drives the test element through a channel in the die while the cone-shaped outer surface of the die spreads the retainer, allowing the test element to drop into the well. A cap is snapped over the retainer to capture the test element.

Claims (35)

1 . A method of manufacturing a dry test strip for determining a characteristic of a bodily fluid, said method comprising:

providing a dry test strip holder having a sensor port;

providing a sheet or ribbon of test strip material;

cutting a test element from said test strip material; and thereafter applying said test element to said dry test strip holder in a location covering said sensor port.

2 . A method as in claim 1 wherein said cutting comprises engaging said sheet or ribbon with a die.

3 . A method as in claim 1 wherein said cutting comprises:

providing a die and a punch;

locating said sheet or ribbon between said die and said punch; and

driving said punch against said sheet or ribbon and into said die.

4 . A method as in claim 3 wherein said providing comprises providing said die having a channel through it, and said applying comprises:

locating said die above said strip holder with said channel above said sensor port; and

using said punch to push said cut test element through and out of said die channel.

5 . A method as in claim 4 wherein said dry test strip holder includes a test element well located above said sensor port and a flexible retainer encircling said test element well; said providing further comprises providing an inserter having a ramped surface, said ramped surface located about the periphery of said channel; and said applying further comprises pressing said ramped surface of said inserter against said retainer to bend it in a direction away from said sensor port and inserting said cut test element into said well.

6 . A method as in claim 5 and further comprising engaging said retainer with a cap to capture said cut test element in said well.

7 . A method as in claim 1 wherein said test holder further includes a test element well located above said sensor port and said applying comprises placing said cut test element in said test element well.

8 . A method as in claim 7 wherein said dry test strip holder further includes a cap and said method further comprises capping said test element well with said cap.

9 . A method as in claim 1 wherein said cutting comprises cutting a circular test element.

10 . A method as in claim 9 wherein said cutting comprises cutting a rectangular test element.

11 . A method as in claim 9 wherein said providing a dry test strip holder comprises providing a dry test strip holder having a sensor port, said sensor port having a maximum dimension, and said cutting comprises cutting a test element having a maximum dimension that is 50% or less of said sensor port maximum dimension.

12 . A method as in claim 11 wherein said cutting comprises cutting a test element having a maximum dimension that is 75% or more of the width of said sheet or ribbon,

13 . A method as in claim 11 wherein said cutting comprises cutting a test element having a maximum dimension that is 90% or more of the width of said sheet or ribbon.

14 . A method of manufacturing a dry test strip for determining a characteristic of a bodily fluid, said method comprising:

providing a dry test strip holder having a sensor port; said sensor port having a maximum dimension;

providing a sheet or ribbon of test strip material;

cutting a test element from said test strip material, said test element having a maximum dimension that is 50% or less larger than said sensor port maximum dimension; and

applying said test element to said dry test strip holder in a location covering said sensor port.

15 . A method as in claim 14 wherein said cutting comprises cutting a test strip element having a maximum dimension that is 30% or less larger than said sensor port maximum dimension.

16 . A method as in claim 14 wherein said cutting comprises cutting a test element having a maximum dimension that is 15% or less larger than said sensor port maximum dimension.

17 . A machine for manufacturing a dry test strip, said machine comprising:

a die having a cutting edge substantially shaped in the form of the outer perimeter of a dry test strip element and a channel extending away from said cutting edge;

a punch shaped to snugly and slidably fit in said channel; and

a support for holding a sheet or ribbon of dry test material between said punch and said die.

18 . A machine as in claim 17 and further comprising an inserter having a ramped surface formed about the periphery of said channel and extending away from the distal end of said channel.

19 . A machine as in claim 18 wherein said inserter is cone-shaped.

20 . A machine as in claim 17 and further comprising a dry test strip material drive for moving said sheet or ribbon between said punch and said die.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jan 11, 2012
From: JPMORGAN CHASE BANK, N.A.
To: POLYMER TECHNOLOGY SYSTEMS, INC.
Reel/Frame 027519/0979 →
SECURITY AGREEMENT Recorded Mar 4, 2009
From: POLYMER TECHNOLOGY SYSTEMS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 022343/0625 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2008
From: LAWRENCE, GREGORY M.
To: POLYMER TECHNOLOGY SYSTEMS, INC.
Reel/Frame 020623/0407 →