Dosing mechanism for a drug deliver device
US-9463283-B2 · Oct 11, 2016 · US
US2018056009A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2018056009-A1 |
| Application number | US-201615254638-A |
| Country | US |
| Kind code | A1 |
| Filing date | Sep 1, 2016 |
| Priority date | Sep 1, 2016 |
| Publication date | Mar 1, 2018 |
| Grant date | — |
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Drug delivery devices of a standard size are adapted for injecting different doses. The device comprises an injection needle, a reservoir having an available volume, and a plunger for evacuating the volume into the needle for injection. A spacer is placed with the plunger in the reservoir to take up some of the available volume and leave a residual amount of available volume in the reservoir to correspond to a currently desired dose size. The spacer may be selected from different sizes corresponding to different doses.
Opening claim text (preview).
I/We claim: 1 . A drug delivery device for injecting a dose of a drug, said dose being up to a maximum dose size, the device comprising: an injection needle or fluid path; a reservoir having an available volume, the available volume defining said maximum dose size; a plunger for evacuating said drug from said reservoir into said needle for injection; and a spacer located with said plunger in said reservoir to take up some of said available volume and leave a residual volume in said reservoir, said residual volume defining a desired dose size smaller than said maximum dose size. 2 . The drug delivery device of claim 1 , provided with a plurality of different sized spacers for different set doses. 3 . The drug delivery device of claim 1 , wherein said spacer is located in contact with said plunger. 4 . The drug delivery device of claim 1 , wherein said spacer is located on a shaft of said plunger. 5 . The drug delivery device of claim 1 , wherein said spacer is located with said plunger to limit a stroke of said plunger within said reservoir. 6 . The drug delivery device of claim 1 , comprising a longitudinal surface for placing against the skin of an injectee and wherein said needle is placed to extend through said surface to inject under the skin. 7 . The drug delivery device of claim 6 , comprising an electric actuator mechanism for pushing said plunger into said reservoir. 8 . A method of manufacturing drug delivery devices for a plurality of different dose sizes, the method comprising: providing a plurality of drug delivery devices of a single predetermined device size, each drug delivery device comprising an injection needle, a reservoir having an available volume, and a plunger for evacuating a drug from said reservoir into said needle for injection; providing spacers of a plurality of sizes, one size for each of said plurality of different dose sizes, said spacers being sized to take up some of said available volume to leave a residual volume in said reservoir; selecting one of said plurality of different dose sizes; selecting a spacer sized to leave a residual volume equal to said selected dose size; fixing said selected spacer corresponding to said selected dose size inside one of said drug delivery devices thereby to adapt said selected one of said devices for said respective selected dose size. 9 . The method of manufacture of claim 8 , comprising: locating said selected spacer in contact with said plunger in said reservoir; and subsequently filling said residual volume with a drug to be injected. 10 . The method of manufacture of claim 9 , comprising placing said spacer on a shaft of said plunger. 11 . The method of manufacture of claim 8 comprising providing said drug delivery devices with a longitudinal surface for placing against the skin of an injectee and placing said needle to extend through said surface to inject under the skin. 12 . The method of manufacture of claim 8 , comprising providing an electric actuator mechanism for pushing said plunger into said reservoir.
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