IP Library Granted Patent US 12,251,539
Granted Patent B2
US 12,251,539 · App. 18/239,717 · Granted Mar 18, 2025

Injection device with dose interruption fail safe

Inventors: Joachim Keitel (Esslingen, DE); Herbert Bechtold (Denkingen, DE)
Assignee: Medmix Switzerland AG
A61M5/31538A61M5/3146A61M5/31541A61M5/31551A61M2005/3126A61M2005/3154A61M2205/581A61M2205/582
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Quick Facts
Patent No.
US 12,251,539
App. No.
18/239,717
Granted
Mar 18, 2025
Kind
B2
Abstract

A dose setting mechanism is provided that includes a dose knob, a dose selector, a radial projecting rib and a snap element. The radial projecting rib is positioned circumferentially on an inside surface of the dose selector. The snap element includes a protrusion. The protruding rib has a reduced section that allows the protruding rib to move axially relative to the protrusion to initiate dose delivery.

Claims (38)

1. A dose setting mechanism comprising:

a dose knob;

a dose selector;

a radial projecting rib positioned circumferentially on an inside surface of the dose selector; and

a snap element comprising a protrusion,

the radial projecting rib extending along a circumference of the inside surface of the dose selector such that a longitudinal axis of the radial projecting rib deviates from a longitudinal axis of the dose selector, and

the radial projecting rib having a reduced section or a cut-out that allows the radial rib to move axially relative to the protrusion to initiate dose delivery.

2. The dose setting mechanism of claim 1 , wherein the reduced section comprises a ramped surface that engages the protrusion to allow the reduced section to move axially relative to the protrusion to initiate dose delivery.

3. The dose setting mechanism of claim 1 , wherein: the knob moves proximally to initiate an injection, and the knob cannot move into a distal position while the protrusion is located at the reduced section once the protrusion has passed the reduced section.

4. The dose setting mechanism of claim 1 , wherein a non-chamfered side of the reduced section engages with a side of the protrusion once the protrusion has passed the reduced section to prevent the knob from moving in a distal direction.

5. The dose setting mechanism of claim 1 , wherein the protrusion on the snap element flexes to overcome the reduced section when the knob is pressed proximally to initiate an injection.

6. The dose setting mechanism of claim 1 , wherein the radially projecting rib has the cut-out at a zero position.

7. The dose setting mechanism of claim 1 , wherein the protrusion has a lead-in chamfer.

8. The dose setting mechanism of claim 1 , wherein the reduced section is aligned with a dose stop provided on the dose selector.

9. The dose setting mechanism of claim 8 , wherein the dose knob can only move axially relative to the snap element when the protrusion or a further protrusion of the snap element is engaged with the dose stop of the dose selector.

10. A dose setting mechanism comprising:

a dose knob;

a dose selector;

a radial projecting rib positioned circumferentially on an inside surface of the dose selector; and

a snap element having a protrusion;

wherein a release of the knob during an injection introduces friction between the protrusion and the rib.

11. The dose setting mechanism of claim 10 , wherein the friction stops the injection.

12. The dose setting mechanism of claim 10 , wherein the friction stops a rotation of the snap element.

13. The dose setting mechanism of claim 10 , wherein the radial projecting rib has a friction surface.

14. The dose setting mechanism of claim 13 , wherein the friction surface comprises a plurality of grooves.

15. The dose setting mechanism of claim 14 , wherein the protrusion of the snap element comprises a clicker that engages the plurality of grooves when the axial proximal force is reduced.

16. The dose setting mechanism of claim 10 , further comprising a rubber-like material on at least one of a friction surface of the radial projecting rib and the protrusion of the snap element.

17. The dose setting mechanism of claim 10 , further comprising a torsion spring, wherein the torsion spring at least assists a user in providing a dispense force for dispensing a medicament with the dose setting mechanism.

18. The dose setting mechanism of claim 17 , wherein the torsion spring is strong enough to maintain an injection.

19. The dose setting mechanism of claim 10 , wherein the dose selector is held at the radial projecting rib in a manner such that the knob cannot jump out in a distal direction when an axial force exerted on the dose knob is reduced once an injection has been started.

20. The dose setting mechanism of claim 10 , wherein the protrusion engages with the radial projecting rib when an axial force exerted on the dose knob is reduced.

21. A dose setting mechanism comprising:

a dose knob;

a dose selector;

a radially projecting rib positioned circumferentially on an inside surface of the dose selector; and

a snap element comprising a protrusion,

the radially projecting rib extending along a circumference of the inside surface of the dose selector such that a longitudinal axis of the radially projecting rib deviates from a longitudinal axis of the dose selector, and

engagement of the protrusion with the radially projecting rib preventing distal axial movement of at least one of the dose selector and the dose knob.

Continuity (2)
Continuation 16037829 · Jul 17, 2018
Related Publication 20230398302A1 · Dec 14, 2023
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