Needle insertion mechanism for an injection device with an improved impact resistance
Needle insertion mechanisms include a housing and a needle holder, the needle holder being linearly guided by the housing to be moved along the needle-axis. A slider linearly guided by the housing and transversally moveable with respect to the needle-axis from a first to a second slider position. The needle holder is operatively coupled to the slider when the slider is in the first position, thereby retaining the needle holder in a retracted position against the bias of a spring acting on the needle holder. In the second position the slider is decoupled from the needle holder and the holder is moved into an inserted position by the spring. A blocking member arranged between the slider and the housing blocking movement of the slider into the second position, is moved by an active drive thereby unblocking the movement of the slider and subsequently moving the slider to the second position.
1 . A needle insertion mechanism for an injection device, comprising:
a housing;
a needle holder holding an insertion needle, the needle holder linearly guided by the housing and movable along a longitudinal axis of the needle;
a slider linearly guided by the housing and transversely moveable with respect to the longitudinal axis of the needle from a first slider position to a second slider position,
wherein in the first slider position, the slider is operatively coupled to the needle holder thereby retaining the needle holder in a needle retracted position against a bias of a spring force acting on the needle holder,
wherein in the second slider position, the slider is decoupled from the needle holder and the needle holder is moved into a needle insertion position by the spring force; and
a blocking member formed as a gear rack arranged between the slider and the housing, wherein the gear rack blocks a movement of the slider from the first slider position to the second slider position and is moveable by an active drive comprising a rotatable cam shaft in a bearing engagement with the housing and configured for unblocking the movement of the slider, and
wherein a movement of the gear rack by the rotatable cam shaft of the active drive subsequently moves the slider to the second slider position, and
wherein the gear rack is pivot-mounted to the slider, and rotation of the cam shaft tilts the gear rack from a tilted position to an untilted position.
2 . The needle insertion mechanism according to claim 1 , wherein the pivot-mounted gear rack is biased towards the tilted position.
3 . The needle insertion mechanism according to claim 2 , wherein the pivot-mounted gear rack comprises a passage or a cut-out which is not aligned with or abuts a complementary protrusion to on the housing when the pivot-mounted gear rack is in the tilted position, thereby blocking movement of the slider out of the first slider position towards the second slider position, and wherein the passage or cut-out is aligned with the complementary protrusion or the abutment between the passage or cut-out and the complementary protrusion is released when the pivot-mounted gear rack is in the untilted position thereby allowing a relative movement between the passage or cut-out and the protrusion and allowing the movement of the slider from the first slider position to the second slider position.
4 . The needle insertion mechanism according to claim 1 , wherein the pivot-mounted gear rack comprises gear teeth engaging a gear wheel that is a part of or is coupled to the cam shaft.
5 . The needle insertion mechanism according to claim 4 , wherein the gear teeth of the gear rack comprise a first section and a second section, wherein one of the first section or second section of the gear teeth of the gear rack enables a movement of the gear rack from the tilted position to the untilted position and the other one of the first section or second section of the gear teeth of the gear rack enables the movement of the slider from the first slider position to the second slider position.
6 . The needle insertion mechanism according to claim 5 , wherein the pivot-mounted gear rack comprises at least one protrusion engaging a bore in the housing allowing for a pivot movement and at least one second protrusion engaging a guide track in the housing forming a motion-link system.
7 . The needle insertion mechanism according to claim 6 , wherein the at least one second protrusion is guided by the motion-link system between the gear rack and the housing preventing the gear rack from returning back to the tilted position once the slider has moved out of the first slider position.
8 . The needle insertion mechanism according to claim 7 , wherein a part of the housing is arranged between the slider and the gear rack.
9 . The needle insertion mechanism according to claim 1 , wherein the pivot-mounted gear rack is biased towards the tilted position by an elastic member configured as an elastic arm positioned between the housing and the pivot-mounted gear rack.
10 . An injection device, comprising:
a needle insertion mechanism, the needle insertion mechanism comprising:
a housing;
a needle holder holding an insertion needle, the needle holder linearly guided by the housing and movable along a longitudinal axis of the needle;
a slider linearly guided by the housing and transversely moveable with respect to the longitudinal axis of the needle from a first slider position to a second slider position,
wherein in the first slider position, the slider is operatively coupled to the needle holder thereby retaining the needle holder in a needle retracted position against a bias of a spring force acting on the needle holder,
wherein in the second slider position, the slider is decoupled from the needle holder and the needle holder is moved into a needle insertion position by the spring force; and
a blocking member formed as a gear rack arranged between the slider and the housing, wherein the gear rack blocks a movement of the slider from the first slider position to the second slider position and is moveable by an active drive for unblocking the movement of the slider, wherein the active drive subsequently moves the slider to the second slider position, and
wherein the gear rack prevents unintentional activation of the needle insertion mechanism when exposed to a drop test according to EN ISO 11608-1:2015 or a drop test from a height of 1 meter onto a drop surface selected from a concrete floor or wood having a density >600 kg/m3.
11 . A needle insertion mechanism for an injection device, comprising:
a housing;
a needle holder holding an insertion needle, the needle holder being linearly guided by the housing and movable along a longitudinal axis of the needle;
a slider linearly guided by the housing and transversely moveable with respect to the longitudinal axis of the needle from a first slider position to a second slider position,
wherein in the first slider position, the slider is operatively coupled to the needle holder thereby retaining the needle holder in a needle retracted position against a bias of a spring force acting on the needle holder,
wherein in the second slider position, the slider is decoupled from the needle holder and the needle holder is moved into a needle insertion position by the spring force; and
a gear rack arranged between the slider and the housing, which blocks a movement of the slider from the first slider position to the second slider position, and wherein the gear rack is moveable by an active drive thereby unblocking the movement of the slider and the active drive subsequently moves the slider to the second slider position.
12 . The needle insertion mechanism according to claim 11 , wherein the active drive comprises a rotatable cam shaft in a bearing engagement with the housing, the cam shaft configured to drive the gear rack that is a part of or coupled to the slider.
13 . The needle insertion mechanism according to claim 12 , wherein the gear rack is pivot-mounted to the slider and moveable from a tilted position to an untilted position, and wherein the pivot mounted gear rack is biased towards the tilted position.
14 . The needle insertion mechanism according to claim 13 , wherein rotation of the cam shaft tilts the gear rack from the tilted position to the untilted position, thereby unblocking the movement of the slider.
15 . The needle insertion mechanism according to claim 13 , wherein the pivot-mounted gear rack is biased towards the tilted position by an elastic member configured as an elastic arm positioned between the housing and the pivot-mounted gear rack.