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Last Updated: December 16, 2025

Claims for Patent: 11,813,435


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Summary for Patent: 11,813,435
Title:Needle assisted injection device having reduced trigger force
Abstract:An injector includes a trigger mechanism including: a trigger member disposed about an axis having an aperture and a protrusion, and a ram assembly having a ram configured to pressurize a medicament container for expelling a medicament therefrom, the ram assembly further having a trigger engagement member configured to engage the aperture of the trigger member when the trigger member is in a pre-firing condition; an energy source associated with the ram for powering the ram to expel the medicament; and a user-operable firing-initiation member having an aperture engaged with the protrusion of the trigger member and operable for causing an axial translation of the trigger member in a proximal direction from the pre-firing condition to a firing condition in which the trigger engagement member is released from the retaining portion to allow the energy source to fire the ram.
Inventor(s):Michael Travanty
Assignee: Antares Pharma Inc
Application Number:US17/135,250
Patent Claims: 1. An injector, comprising: an injector housing; a trigger member disposed about an axis, the trigger member having a trigger member protrusion; a ram assembly having a ram configured to pressurize a medicament container, the ram assembly further having a trigger engagement member configured to engage the trigger member when the trigger member is in a pre-firing condition; an energy source associated with the ram for powering the ram to expel a medicament from the medicament container; and a guard moveable relative to the injector housing between an extended position and a retracted position, the guard including a guard aperture with the trigger member protrusion received within the guard aperture, the guard preventing axial movement of the trigger member in at least one direction when the guard is in the extended position, the guard operatively associated with the trigger member such that the guard moves the trigger member from the pre-firing condition to a firing condition in which the trigger engagement member is disengaged from the trigger member to allow the energy source to fire the ram as the guard moves from the extended position to the retracted position.

2. The injector of claim 1, wherein the guard aperture is defined by a guard aperture sidewall, the guard aperture sidewall configured to engage the trigger member protrusion to prevent axial movement of the trigger member in at least one direction when the guard is in the extended position.

3. The injector of claim 1, wherein an axial length of the guard aperture is greater than an axial length of the trigger member protrusion such that the guard is moveable relative to the injector housing a predetermined distance during an initial movement while the trigger member is axially fixed relative to the injector housing.

4. The injector of claim 3, wherein the trigger member includes a rim and an end surface of the guard moves into contact with the rim during the initial movement of the guard.

5. The injector of claim 4, wherein continued movement of the guard after the end surface contacts the rim causes the trigger member to move from the pre-firing condition to the firing condition.

6. The injector of claim 1, further comprising: a cap detachably engaged with the guard to prevent displacement of the guard thereby preventing movement of the trigger member from the pre-firing condition to the firing condition.

7. The injector of claim 6, wherein the guard includes a guard engagement feature, and wherein the cap includes a first engagement feature engaged with the guard engagement feature.

8. The injector of claim 7, wherein the cap includes a second engagement feature engaged with an engagement feature on the injector housing.

9. The injector of claim 6, further comprising an end cap comprising a ram holding member that axially retains the ram assembly against action of the energy source when the injector is in a pre-firing configuration.

10. The injector of claim 9, wherein the cap is coupled to a first end of the injector and the end cap is coupled to a second end of the injector opposite the first end of the injector.

11. The injector of claim 9, wherein the end cap includes a ram holding member having a projection with a bulge and a groove that are engaged with the trigger engagement member.

12. The injector of claim 9, wherein the ram holding member engages the trigger engagement member to axially retain the ram assembly in a proximal position against action of the energy source in the pre-firing condition.

13. The injector of claim 1, wherein the guard is configured to expose a needle connected to the medicament container upon a proximal movement of the guard from the extended position to the retracted position, and wherein the needle is in fluid communication with the medicament container for injecting the medicament expelled therefrom during a firing.

14. The injector of claim 13, wherein the guard is configured to move distally relative to the injector housing after an injection, and wherein distal movement of the guard from the retracted position to the extended position moves the trigger member distally.

15. The injector of claim 13, wherein the energy source and needle are configured for injecting the medicament at an average velocity of at least about 1,000 cm/sec within the needle.

16. The injector of claim 1, further comprising: a container support configured to hold the medicament container during injection, wherein the ram assembly is configured to engage the container support to lock-out the injector after injection.

17. The injector of claim 16, wherein the ram assembly blocks proximal movement of the guard when the injector is locked-out.

18. The injector of claim 1, wherein the trigger member includes an opening defined by a trigger member opening wall, and wherein the trigger engagement member is configured to be positioned in the opening and engaged with the trigger member opening wall.

19. The injector of claim 18, wherein in the firing condition, the ram assembly is disengaged from the trigger member opening wall, and the energy source overcomes engagement between the trigger engagement member and a ram holding member such that the ram expels the medicament from the medicament container.

20. The injector of claim 1, wherein the energy source is configured to pressurize the medicament to between about 90 psi and about 600 psi to inject the medicament.

21. The injector of claim 1, wherein a pre-firing color gamut is visible from an exterior of the injector when the trigger member is in the pre-firing condition, the injector further comprising: a window on the injector housing; and an indicator having an indicator color that is absent from the pre-firing color gamut, which color is hidden from view within the injector housing when the trigger member is in the pre-firing condition, wherein when the trigger member is in a fired condition, the indicator color is visible through the window from an exterior of the injector for indicating that the trigger member is in the fired condition.

22. The injector of claim 21, wherein the ram assembly includes the indicator.

23. The injector of claim 22, wherein the ram assembly occludes the window when the injector is locked-out.

24. The injector of claim 1, further comprising: the medicament.

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