Feedback mechanisms
A start of medicament delivery notification mechanism is presented where the notification mechanism is positioned within a housing of a medical device and includes a rear cap secured to a distal end of the housing, where the rear cap has a hollow tubular housing extending proximally from a distal end of the rear cap such that the tubular housing is cantilevered within and rotatably fixed relative to the housing and is parallel with a longitudinal axis of the housing. A rotator rotatably is positioned around the tubular housing such that rotator can rotate relative to the tubular housing from a first position to a second position, where the second position coincides with an initiation of a delivery of a dose of medicament. The rotator further has a contact surface that engages with and subsequently disengages from a corresponding contact surface located on the rear cap or on an inside surface of the housing.
1 . A rotator for a medicament delivery device, the rotator comprising:
a tubular body extending from a proximal end to a distal end in an axial direction relative to an axis;
one or more ridges extending from a surface of the tubular body,
the one or more ridges defining a track on the surface of the tubular body, the track extending in the axial direction from a distal end of the track to a proximal end of the track,
the track comprising one pathway at the distal end of the track and two pathways at the proximal end of the track, wherein the two pathways at the proximal end of the track are separated by at least one of the one or more ridges; and
a protrusion extending from a surface of the track,
the protrusion comprising a surface extending in the track,
the surface of the protrusion comprising a first sloped portion and a second sloped portion closer to the distal end of the tubular body than the first sloped portion, wherein the first sloped portion and the second sloped portion are angled relative to the surface of the track,
wherein the first sloped portion is angled towards the proximal end of the tubular body and the second sloped portion is angled towards the distal end of the tubular body,
wherein the rotator comprises a first tongue configured to allow a protrusion of a medicament delivery member guard to move over the first tongue in two directions, and a second tongue configured to allow the protrusion of the medicament delivery member guard to move over the second tongue in one direction,
wherein the protrusion is on the first tongue,
wherein the first tongue extends in an opening in the surface in the track, and
wherein the first tongue is configured to flex relative to the surface of the track.
2 . The rotator of claim 1 , wherein the first tongue extends in the axial direction from a proximal end to a distal end, and the proximal end of the first tongue is attached to the tubular body and the distal end of the first tongue is configured to flex relative to the surface of the track.
3 . The rotator of claim 1 , wherein the first tongue extends in the axial direction from a proximal end to a distal end, and the distal end of the first tongue is attached to the tubular body and the proximal end of the first tongue is configured to flex relative to the surface of the track.
4 . The rotator of claim 1 , wherein the surface of the tubular body faces away from the axis of the rotator, and wherein the one or more ridges extend from the surface.
5 . The rotator of claim 1 , wherein the distal end of the first sloped portion extends further from the axis than the proximal end of the first sloped portion.
6 . The rotator of claim 1 , wherein at least part of the first sloped portion extends further from the axis than the surface of the track.
7 . The rotator of claim 1 , wherein the second tongue extends in an opening in the surface in the track.
8 . The rotator of claim 7 , wherein the second tongue extends in the axial direction from a proximal end to distal end, and wherein the distal end of the second tongue is attached to the tubular body and the proximal end of the second tongue is configured to flex relative to the surface of the track.
9 . The rotator of claim 1 , wherein the angle between the first sloped portion and the surface of the track is between 105 and 165 degrees, and wherein the angle between the second sloped portion and the surface of the track is between 105 and 165 degrees.
10 . The rotator of claim 1 , wherein the surface of the protrusion comprises a third sloped portion adjacent to the first sloped portion, wherein the third sloped portion is sloped towards the proximal end and is sloped in a circumferential direction relative to the axis.
11 . The rotator of claim 1 , wherein the pathway at the distal end of the track is aligned in the axial direction with only one of the two pathways at the proximal end of the track.
12 . The rotator of claim 1 , wherein the protrusion is closer to the distal end of the rotator than to the proximal end of the rotator.
13 . A medicament delivery device comprising the rotator of claim 1 .
14 . The medicament delivery device of claim 13 , comprising a housing extending from a proximal end to a distal end in the axial direction and extending in a circumferential direction around the axis and the medicament delivery member guard,
wherein the rotator is in the housing, and wherein the rotator is able to move in the circumferential direction within the housing during use of the medicament delivery device,
wherein the medicament delivery member guard is in the housing, and wherein the medicament delivery member guard is able to move in the axial direction within the housing during use of the medicament delivery device,
wherein the protrusion of the medicament delivery member guard is arranged in the track of the rotator.
15 . A rotator for a medicament delivery device, the rotator comprising:
a tubular body having a proximal end and a distal end and an axis;
a plurality of ridges extending from a surface of the tubular body that define a track on the surface of the tubular body, where the track comprises a first, second and third pathway, where a transition pathway separates the first and second pathway;
a first flexible tongue configured to allow a protrusion of a medicament delivery member guard to move over the first flexible tongue in two directions, where the first flexible tongue is located in the second pathway, and where the first flexible tongue comprises a first protrusion extending outward relative to the surface of the track; and
a second flexible tongue configured to allow the protrusion of the medicament delivery member guard to move over the second flexible tongue in one direction, where the second flexible tongue is located in the third pathway, and where the second flexible tongue comprises a second protrusion extending outward relative to the surface of the track,
wherein the first and third pathways are located at the proximal end of the rotator,
wherein the first and second flexible tongues extend into openings formed from cut outs in the surface of the track, and
wherein the first protrusion interacts with the medicament delivery member guard at a start of medicament delivery and the second protrusion interacts with the medicament delivery member guard after the delivery of medicament is completed.
16 . The rotator of claim 15 , wherein the second flexible tongue extends in an axial direction from a proximal end to distal end, and wherein the distal end of the second flexible tongue is attached to the tubular body and the proximal end of the second flexible tongue is configured to flex radially inward relative to the surface of the track.
17 . The rotator of claim 15 , wherein the surface of the first protrusion comprises a first sloped portion and a second sloped portion closer to the distal end of the tubular body than the first sloped portion, wherein the first sloped portion and the second sloped portion are angled relative to the surface of the track.