Drive mechanism for a drug delivery device and drug delivery device
The present invention concerns a drive mechanism for a drug delivery device comprising a housing having a longitudinal axis, a first feedback element which is movable along the longitudinal axis relative to the housing and a second feedback element, wherein the first feedback element and the second feedback element are adapted to interact with each other thereby providing at least one of tactile and audible feedback during at least one of a dose setting and dose dispensing operation of the drive mechanism. Moreover a drug delivery device incorporating such a drive mechanism is disclosed.
1. A drive mechanism for a drug delivery device, comprising:
a housing having a longitudinal axis,
a first feedback element which is movable along the longitudinal axis relative to the housing, the first feedback element comprising a helical structure, and
a second feedback element,
wherein the first feedback element and the second feedback element are adapted to interact with each other, thereby providing at least one of tactile and audible feedback during a dose setting operation of the drive mechanism,
wherein the first feedback element comprises a first surface configured to interact with the second feedback element during a dose setting operation of the drive mechanism, wherein the first surface comprises first protrusions, the first feedback element comprises a second surface comprising second protrusions, wherein the first and second protrusions are arranged opposite one another to result in an audible or tactile feedback when interacting with the second feedback element, and
wherein the second protrusions are configured to interact with the second feedback element during at least one of the dose setting and a dose dispensing operation of the drive mechanism.
2. The drive mechanism according to claim 1 , wherein the first feedback element and the second feedback element are configured to provide feedback during at least one of a dose setting and dose dispensing operation of the drive mechanism.
3. The drive mechanism according to claim 1 , comprising a dose member which comprises the first feedback element.
4. The drive mechanism according to claim 1 , wherein the first surface comprises the first protrusions at its proximal end and the second surface comprises the second protrusions at its distal end.
5. The drive mechanism according to claim 1 , wherein the first feedback element comprises a groove.
6. The drive mechanism according to claim 1 , wherein the first protrusions are equally spaced along the first surface.
7. The drive mechanism according to claim 1 , wherein the first protrusions are spaced further apart at one end of the first surface than at another end of the first surface.
8. The drive mechanism according to claim 1 , wherein the second surface is configured to interact with the second feedback element during at least one of a dose setting and dose dispensing operation of the drive mechanism.
9. The drive mechanism according to claim 1 , comprising a sleeve, wherein the first feedback element is arranged at a surface of the sleeve.
10. The drive mechanism according to claim 1 , wherein the second feedback element comprises a peg.
11. The drive mechanism according to claim 1 , wherein the second feedback element is rotatable around the longitudinal axis of the housing.
12. The drive mechanism according to claim 1 , wherein the second feedback element is prevented from moving along the longitudinal axis of the housing.
13. A drug delivery device comprising the drive mechanism according to claim 1 .