Claims
- 1. A jet injector comprising:
a cartridge assembly for holding medicament, the cartridge assembly having proximal and distal ends and comprising:
a chamber having proximal and distal ends for holding the medicament therein; an orifice at the proximal end of the cartridge assembly; a stopper at the proximal end of the chamber; and a plunger at the distal end of the chamber and movable towards the stopper to expel medicament out of the chamber through the orifice; and a power pack assembly comprising:
a housing having a proximal end operatively coupled with the distal end of the cartridge assembly; a trigger; and an energy source operatively associated with the trigger so that movement of the trigger activates the energy source to move the plunger toward the stopper to expel medicament from the chamber,
wherein the energy source is a gas spring containing a charging material existing in liquid and gaseous phase equilibrium within the gas spring to maintain a substantially constant pressure prior to activation.
- 2. The jet injector of claim 1 wherein the cartridge assembly comprises an outer housing made of a polymer and an inner housing made of a glass.
- 3. The jet injector of claim 1 wherein at least a portion of the plunger and stopper is made of an elastomeric material.
- 4. The jet injector of claim 1 further comprising a needle operatively associated with the proximal end of the cartridge assembly and having a piercing end extending toward the chamber,
wherein the stopper is movable within the chamber toward the piercing end of the needle and relative movement between the stopper and the needle causes the piercing end of the needle to pierce the stopper to create a fluid pathway for the medicament through the needle and movement of the plunger toward the proximal end of the chamber compresses the medicament held between the plunger and the stopper so that the medicament is expelled through the fluid pathway.
- 5. The jet injector of claim 4 wherein movement of the plunger toward the proximal end of the chamber compresses the medicament between the stopper and the plunger to move the stopper toward the proximal end of the cartridge assembly to allow the piercing end of the needle to pierce the stopper and create the fluid pathway for the medicament through the needle.
- 6. The jet injector of claim 4 wherein the piercing end of the needle has a bevel.
- 7. The jet injector of claim 4 wherein the stopper has a frustroconical shape.
- 8. The jet injector of claim 7 wherein the plunger has a medicament contacting surface configured and dimensioned to mate with the frustroconical shape of the stopper to minimize volume of medicament remaining in the chamber after the injection is completed.
- 9. The jet injector of claim 8 wherein the stopper has a narrow cross-section where the needle penetrates the stopper.
- 10. The jet injector of claim 1 wherein the plunger comprises a front member having a recess and an insert received in the recess, the insert being substantially non-compressible.
- 11. The jet injector of claim 1 wherein at least one of the plunger and stopper includes ridges formed around an outer periphery to provide a seal and create a sterile boundary between the medicament and an exterior of the cartridge assembly.
- 12. The jet injector of claim 1 wherein the distal end of the cartridge assembly has locking tabs and the power pack assembly housing includes:
a distal housing having a lumen containing the charging material; and a proximal housing connectable with the distal housing and having an inner surface with a ledge for receiving the locking tabs to couple the cartridge assembly thereto.
- 13. The jet injector of claim 12 wherein a portion of an exterior surface of the proximal housing has threads and a portion of a lumen wall has threads, the proximal housing threads mating with the lumen wall threads to connect the proximal and distal housings.
- 14. The jet injector of claim 12 further comprising a ram having proximal and distal ends, the proximal end contacting the plunger and the distal end having a seal, wherein the gas spring is defined by the lumen wall and the seal.
- 15. The jet injector of claim 14 wherein the charging material is carbon dioxide.
- 16. The jet injector of claim 14 wherein the ram has a recess and the inner surface of the proximal housing has a latch member insertable into the recess to thereby prevent the gas spring from moving the ram and the plunger toward the stopper and wherein movement of the trigger allows the latch member to bend away from the recess to thereby allow the gas spring to move the ram and the plunger toward the stopper.
- 17. The jet injector of claim 16 wherein the trigger comprises a tubular body substantially covering the cartridge assembly, a cap operatively associated with the proximal housing, and struts connecting the body and the cap.
- 18. The jet injector of claim 1 wherein the gas spring has a wall with a coating to reduce gas permeability.
- 19. The jet injector of claim 1 further comprising a safety vent for releasing excess pressure.
- 20. The jet injector of claim 1 further comprising a temperature indicator for indicating that the jet injector has been exposed to temperatures outside of a set range.
- 21. A jet injector comprising:
a cartridge assembly for holding medicament comprising:
a tube having first and second ends and a lumen with a longitudinal axis for retaining the medicament therein; a needle operatively associated with the second end of the tube and having a piercing end extending into the lumen; a stopper within the lumen located near the second end moveable within the lumen along the longitudinal axis; and a plunger within the lumen located near the first end moveable within the lumen along the longitudinal axis; and a power pack assembly comprising:
a housing having a proximal end operatively coupled with the first end of the tube; a trigger; and an energy source operatively associated with the trigger so that movement of the trigger activates the energy source to move the plunger toward the stopper,
wherein relative movement between the stopper and the needle causes the piercing end of the needle to pierce the stopper to create a fluid pathway for the medicament through the needle and movement of the plunger toward the second end of the tube compresses the medicament held between the plunger and the stopper so that the medicament is expelled through the fluid pathway.
- 22. A jet injector comprising:
a cartridge assembly for holding medicament, the cartridge assembly having proximal and distal ends and comprising:
a chamber for holding the medicament therein and having proximal and distal ends with an orifice at the proximal end for passage of the medicament therethrough; and a plunger at the distal end of the chamber and movable towards the orifice to expel medicament out of the chamber through the orifice; and a power pack assembly comprising:
a housing having a proximal end operatively coupled with the distal end of the cartridge assembly; a trigger; and an energy source operatively associated with the trigger so that movement of the trigger activates the energy source to move the plunger toward the orifice to expel medicament from the chamber,
wherein the energy source is a gas spring containing a charging material existing in liquid and gaseous phase equilibrium within the gas spring to maintain a substantially constant pressure prior to activation.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The benefit of Provisional Application No. 60/191,469 filed on Mar. 23, 2000 is claimed under 35 U.S.C. § 119(e).
Provisional Applications (1)
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Number |
Date |
Country |
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60191469 |
Mar 2000 |
US |