COMPACT INHALER MECHANISM
A compact inhaler for dispensing medicament is disclosed. The compact inhaler includes a cylindrical main body housing having a mouthpiece, an open end, and an activation button aperture. A canister is stored in the mouthpiece. An activation button is moveable in the button aperture. Pressing the activation button pushes the canister out of the mouthpiece. The stored canister may be inserted in the open end of the main body to provide medicament from the mouthpiece when the canister is actuated.
1 . An inhaler comprising:
a main body housing having a mouthpiece, an open end, and an activation button aperture, wherein the mouthpiece is operable to store a medicament canister; and
an activation button moveable in the button aperture, wherein pressing the activation button pushes a stored medicament canister out of the mouthpiece, and wherein a medicament canister may be inserted in the open end of the main body to provide medicament from the mouthpiece when actuated.
2 . The inhaler of claim 1 , further comprising a cover that is fit over the open end, wherein pushing the activation button releases the cover.
3 . The inhaler of claim 2 , wherein the cover includes a tab, and the activation button includes a prong extending through the main body to contact the tab of the cover, and a canister stored in the mouthpiece.
4 . The inhaler of claim 1 , wherein the canister includes a rescue medicament for a respiratory ailment.
5 . The inhaler of claim 1 , further comprising a key ring hole formed through the main body housing.
6 . The inhaler of claim 1 , wherein the canister contains a single use of the medicament for a rescue event.
7 . The inhaler of claim 1 , wherein the main body includes a closed end opposite the open end, wherein the closed end includes a stem for mounting a spray stem of the canister.
8 . The inhaler of claim 1 , further comprising an adherence monitor that is configured to determine actuation of the canister via an actuation detection sensor.
9 . The inhaler of claim 8 , wherein the actuation detection sensor is one of a barometric pressure sensor or a mechanical switch.
10 . The inhaler of claim 8 , wherein the adherence monitor is operable to apply a time stamp to collected data indicating actuation of the inhaler.
11 . The inhaler of claim 8 , wherein the actuation detection sensor detects inhalation of the medicament.
12 . The inhaler of claim 8 , wherein the adherence monitor includes a sound generation device and a transceiver, wherein the transceiver is operable to receive a signal from an external device to activate the sound generation device.
13 . A single use compact inhaler comprising:
a cylindrical main body housing having a mouthpiece, an open end, and an activation button aperture;
a canister stored in the mouthpiece; and
an activation button moveable in the button aperture, wherein pressing the activation button pushes the canister out of the mouthpiece, and wherein the canister may be inserted in the open end of the main body to provide medicament from the mouthpiece when the canister is actuated.
14 . The inhaler of claim 13 , further comprising a cover that is fit over the open end, wherein pushing the activation button releases the cover.
15 . The inhaler of claim 13 , wherein the canister includes a rescue medicament for a respiratory ailment.
16 . The inhaler of claim 13 , further comprising a key ring hole formed through the main body housing.
17 . The inhaler of claim 13 , wherein the main body includes a closed end opposite the open end, wherein the closed end includes a stem for mounting a spray stem of the canister.
18 . The inhaler of claim 13 , further comprising an adherence monitor that is configured to determine actuation of the canister via an actuation detection sensor.