Closed bottom vaporizer pod
A closed bottom vaporizer pod prevents vaporizable material from exiting the pod and entering into a heat source of a vaporizer. A closed bottom vaporizer pod further reduces contamination and/or fouling of a vaporizer and comprises a closed bottom capsule, at least one air inlet for drawing air into the closed bottom capsule, and at least one air outlet for drawing air out of the closed bottom capsule. An air flow path is created from the at least one air inlet, the closed bottom capsule, and the air outlet which prevents contamination of the vaporizer.
1. A vaporizer for accepting a vaporizer pod and permitting an end user to vaporize vaporizable material stored within the vaporizer pod, the vaporizer comprising:
a housing having an aperture aligned with a chamber for receiving the vaporizer pod therein;
a heat source disposed within the housing for providing sufficient heat to the vaporizer pod to vaporize the vaporizable material stored therein;
an insulator disposed within the housing for containing and directing heat towards the vaporizer pod;
a spacer positioned within the insulator for spacing away the heat source from the insulator; and
a power source for providing power to the heat source.
2. The vaporizer of claim 1 , wherein the spacer further comprises a cage.
3. The vaporizer of claim 1 , further comprising a retainer configured to retain the vaporizer pod within the vaporizer.
4. The vaporizer of claim 3 , wherein the retainer further comprises at least one biasing mechanism circumferentially distributed about the chamber.
5. The vaporizer of claim 1 , further comprising a door.
6. The vaporizer of claim 1 , wherein the vaporizer pod further comprises:
machine readable information, the vaporizer further comprises a reader/writer for reading or writing the machine readable information.
7. The vaporizer of claim 6 , wherein the machine readable information is communicated to the end user visually, audibly, or haptically.
8. The vaporizer of claim 1 , wherein the power source is rechargeable.
9. A system for vaporizing vaporizable materials comprising a vaporizer which comprises:
a housing having an aperture aligned with a chamber for receiving a capsule therein;
a heat source disposed within the housing for providing sufficient heat to the capsule to vaporize the vaporizable material stored therein;
an insulator disposed within the housing for containing and directing heat towards a pod;
a spacer for spacing away the heat source from the insulator; and a power source for providing power to the heat source.
10. The system of claim 9 , wherein the spacer further comprises a cage.
11. The system of claim 9 , wherein the vaporizer further comprises a retainer configured to retain the capsule within the vaporizer.
12. The system of claim 11 , wherein the retainer further comprises at least one biasing mechanism circumferentially distributed about the chamber.
13. The system of claim 9 , wherein the vaporizer further comprising a door.
14. The system of claim 9 , wherein the capsule further comprises machine readable information, and wherein the vaporizer further comprises a reader/writer for reading or writing the machine readable information.
15. The system of claim 14 , wherein the machine readable information is communicated to an end user visually, audibly, or haptically.
16. The system of claim 9 , wherein the power source is rechargeable.
17. An airflow system configured to provide an airflow path in a vaporizing system for vaporizing vaporizable materials, wherein vaporizable material is stored within the airflow path, wherein an airflow path inlet is located proximal to an airflow path outlet, wherein the vaporizing system includes a vaporizer comprising:
a housing having an aperture aligned with a chamber for receiving the airflow system therein;
a heat source disposed within the housing for providing sufficient heat to the airflow path to vaporize the vaporizable material stored therein;
an insulator disposed within the housing for containing and directing heat towards the airflow path;
a spacer for spacing away the heat source from the insulator; and
a power source for providing power to the heat source, wherein the airflow system further comprises machine readable information, and wherein the vaporizer further comprises a reader/writer for reading or writing the machine readable information.
18. The airflow system of claim 17 , wherein the spacer further comprises a cage.
19. The airflow system of claim 17 , wherein the vaporizer further comprises a door.