Drug Delivery Device
Abstract
The present disclosure relates to an audible and/or tactile indicator for use with a drug delivery device including a resilient force member configured to reside in two or more states having two or more different conformations, wherein in a relaxed state, the resilient force member is relaxed in a first conformation, wherein in a biased state, the resilient force member is biased to store energy in a second conformation different to the first conformation, wherein the resilient force member releases stored energy to generate an audible signal when changing from the biased state into the relaxed state due to a transition from the second conformation to the first conformation, wherein the resilient force member is bent by a certain angle about a longitudinal axis forming a longitudinal round fold with two adjacent angled wing-shaped sections.
Claims
exact text as granted — not AI-modified1 . An audible and/or tactile indicator for use with a drug delivery device, the audible and/or tactile indicator comprising a resilient force member configured to reside in two or more states having two or more different conformations,
wherein in a relaxed state of the two or more states, the resilient force member is relaxed in a first conformation, wherein in a biased state of the two or more states, the resilient force member is biased to store energy in a second conformation different from the first conformation, wherein the resilient force member is configured to release stored energy to generate an audible signal when changing from the biased state into the relaxed state due to a transition from the second conformation to the first conformation, wherein the resilient force member is bent by a certain angle about a longitudinal axis forming a longitudinal round fold with two adjacent angled wing-shaped sections, wherein at least one of the two adjacent wing-shaped sections comprises a supporting tab outwardly protruding from a long side of the at least one of the two adjacent wing-shaped sections, and wherein the supporting tab has at least one portion that is bent relative to the wing shaped section.
2 . The audible and/or tactile indicator of claim 1 , wherein a notch is formed in the longitudinal round fold, the notch extending transversely to the longitudinal round fold.
3 . The audible and/or tactile indicator of claim 2 , wherein the supporting tab has a free end which is bent upwards relative to the wing-shaped section.
4 . The audible and/or tactile indicator of claim 2 , wherein the supporting tab has a free end which is bent downwards relative to the wing-shaped section.
5 . The audible and/or tactile indicator of claim 1 , wherein the longitudinal round fold has a bend radius between 1.5 mm and 2 mm.
6 . The audible and/or tactile indicator of claim 1 , wherein a notch is centrically arranged in the longitudinal round fold with respect to the longitudinal axis.
7 . The audible and/or tactile indicator of claim 1 , wherein a supporting tab is arranged on a region of at least one of the two adjacent angled wing-shaped sections extending between a notch and one of two end faces of the resilient force member.
8 . The audible and/or tactile indicator of claim 1 , wherein the resilient force member is configured as a leaf spring having a longitudinal axis, the leaf spring having a rectangular shape, a square shape, or an oval shape.
9 . The audible and/or tactile indicator of claim 1 , wherein the resilient force member is bent about the longitudinal round fold such that the two adjacent angled wing-shaped sections are at an angle of between 130 degrees and 160 degrees relative to each other.
10 . The audible and/or tactile indicator of claim 1 , wherein the resilient force member is configured as a bistable spring element.
11 . The audible and/or tactile indicator of claim 1 , wherein the resilient force member is supported in the biased state) in order to prevent transition into the relaxed state.
12 . The audible and/or tactical indicator of claim 1 , wherein resilient force member is configured to be changed from the biased state to the relaxed state by a movement of a plunger that is used to displace a drug from a medicament container.
13 . A drug delivery device comprising an audible and/or tactile indicator configured to reside in two or more states having two or more different conformations,
wherein in a relaxed state of the two or more states, the resilient force member is relaxed in a first conformation, wherein in a biased state of the two or more states, the resilient force member is biased to store energy in a second conformation different to the first conformation, wherein the resilient force member is configured to release stored energy to generate an audible signal when changing from the biased state into the relaxed state due to a transition from the second conformation to the first conformation, wherein the resilient force member is bent by a certain angle about a longitudinal axis forming a longitudinal round fold with two adjacent angled wing-shaped sections, wherein at least one of the two adjacent wing-shaped sections comprises a supporting tab outwardly protruding from a long side of the at least one of the two adjacent wing-shaped sections, and wherein the supporting tab has at least one portion that is bent relative to the wing shaped section.
14 . The drug delivery device of claim 13 , wherein the resilient force member is configured to be changed from the biased state to the relaxed state by a movement of a plunger towards a distal position at the end of a drug delivery process.
15 . The drug delivery device of claim 13 , wherein the resilient force member is configured to transition from the biased state into the relaxed state when a proximal plunger section abuts a distal end face of the resilient force member.
16 . The drug delivery device of claim 13 , wherein:
a) the resilient force member is supported when the drug delivery device is in an initial state and the resilient force member is unsupported when the drug delivery device is in a primed state, or b) wherein the resilient force member is supported when the drug delivery device is in an initial state and in a primed state and a distal end face of the resilient force member is supported by a supporting protrusion arranged on a proximal region of a housing, or c) wherein the resilient force member is unsupported in the biased state.
17 . The drug delivery device of claim 13 , wherein the resilient force member is radially unsupported in the biased state.
18 . The drug delivery device of claim 13 , wherein in the biased state, the resilient force member is deformed to store energy.
19 . An audible and/or tactile indicator for use with a drug delivery device, the audible and/or tactile indicator comprising a resilient force member configured to reside in two or more states having two or more different conformations,
wherein in a relaxed state of the two or more states, the resilient force member is relaxed in a first conformation, wherein in a biased state of the two or more states, the resilient force member is biased to store energy in a second conformation different from the first conformation, wherein the resilient force member is configured to release stored energy to generate an audible signal when changing from the biased state into the relaxed state due to a transition from the second conformation to the first conformation, wherein the resilient force member is bent by a certain angle about a longitudinal axis forming a longitudinal round fold with two adjacent angled wing-shaped sections, and wherein the longitudinal round fold has a bend radius between 1.5 mm and 2 mm.
20 . The audible and/or tactile indicator of claim 19 , wherein the bend radius is between 1.5 mm and 1.7 mm.Join the waitlist — get patent alerts
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