US20090293892A1 - Portable vaporizer for plant material - Google Patents
Portable vaporizer for plant material Download PDFInfo
- Publication number
- US20090293892A1 US20090293892A1 US12/129,845 US12984508A US2009293892A1 US 20090293892 A1 US20090293892 A1 US 20090293892A1 US 12984508 A US12984508 A US 12984508A US 2009293892 A1 US2009293892 A1 US 2009293892A1
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- US
- United States
- Prior art keywords
- plant material
- inhalation tube
- vaporizer
- material chamber
- housing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
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Classifications
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/46—Shape or structure of electric heating means
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/42—Cartridges or containers for inhalable precursors
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/48—Fluid transfer means, e.g. pumps
- A24F40/485—Valves; Apertures
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/20—Devices using solid inhalable precursors
Abstract
A portable vaporizer for plant material has an inhalation tube having a distal end for insertion into a cigarette lighter receptacle of a vehicle. An electrical heating element within the inhalation tube is powered by the vehicle's electrical system when the inserted into the cigarette lighter receptacle. A plant material chamber on the proximal end of the inhalation tube has openings allowing air from the inhalation tube to be drawn through the inhalation tube, heated by the electrical heating element, and then drawn through the plant material held in the plant material chamber. A housing having a mouthpiece and baffles surrounds the plant material chamber to reduce the temperature of the heated air and vaporized plant material. The user inhales the mixture of heated air and vaporized plant material through the mouthpiece by drawing air through the inhalation tube, plant material chamber and housing.
Description
- 1. Field of the Invention
- The present invention relates generally to the field of vaporizers for releasing essential active constituents, such as nicotine, by heating plant materials. More specifically, the present invention discloses a portable vaporizer for plant materials.
- 2. Statement of the Problem
- Inhalation devices for smoking tobacco or vaporizing various medicaments (e.g., nicotine) from plant materials are known in the art. These devices typically include an electrical heating element for igniting the tobacco or medicament. The resulting smoke and/or vapor is then inhaled by the user.
- For example, U.S. Pat. No. 7,293,565 (Griffin et al.) discloses an electrically-heated cigarette smoking system with a stand containing a rechargeable power supply. As shown in FIGS. 13-16 of Griffin et al., the stand can also include recharging electronics powered by an adapter that plugs into the cigarette lighter of a vehicle.
- However, there remains a need for an easy to use, hand-held device that allows for the release of the essential active constituents of a plant substance through vaporization, using sufficient heat and air to release them without burning the substance and without creating the toxic byproducts of combustion. This not only reduces the health risk to the user but also to neighboring non-smokers by alleviating second-hand smoke. In addition, there remains a need for a portable vaporizer that can be plugged directly into a conventional vehicle cigarette lighter.
- 3. Solution to the Problem
- The present invention allows for the inhalation of the active constituents of a plant material by vaporization, rather than combustion. It includes a housing configured and sized to fit in the user's hand during use. In addition, it can be plugged into a conventional automobile cigarette lighter to create a heated air stream that is drawn through the plant material to produce a substance vapor that can be inhaled by an individual. The present device is unique in that it can be plugged into a conventional vehicle cigarette lighter and is completely independent of any power source once the electrical heating element has reached temperature.
- This invention provides a portable vaporizer for plant material having an inhalation tube with a distal end for insertion into a cigarette lighter receptacle of a vehicle. An electrical heating element within the inhalation tube is powered by the vehicle's electrical system when inserted into a cigarette lighter receptacle. A plant material chamber on the proximal end of the inhalation tube has openings allowing air from the inhalation tube to be drawn through the inhalation tube, heated by the electrical heating element, and then drawn through the plant material held in the plant material chamber. A housing having a mouthpiece and baffles surrounds the plant material chamber to reduce the temperature of the heated air and vaporized plant material. The user inhales the mixture of heated air and vaporized plant material through the mouthpiece by drawing air through the inhalation tube, plant material chamber and housing.
- These and other advantages, features, and objects of the present invention will be more readily understood in view of the following detailed description and the drawings.
- The present invention can be more readily understood in conjunction with the accompanying drawings, in which:
-
FIG. 1 is a front perspective view of aportable vaporizer 5 embodying the present invention. -
FIG. 2 is a rear perspective view of thevaporizer 5 corresponding toFIG. 1 . -
FIG. 3 is a perspective view of avaporizer 5 with thelid 32 removed andplant material 35 being loaded into the plant material chamber within the housing. -
FIG. 4 is a perspective view of thevaporizer 5 inserted into the cigarettelighter socket 50 in the dashboard of a vehicle. -
FIG. 5 is a side view of a user inhaling through thevaporizer 5. -
FIG. 6 is a horizontal cross-sectional view of thevaporizer 5. -
FIG. 7 is a vertical cross-sectional view of thevaporizer 5. -
FIG. 8 is an exploded cross-sectional view of the inhalation tube and plant material chamber assembly. -
FIG. 9 is a cross-sectional view of the distal end of thevaporizer 5 initially inserted in a cigarettelighter socket 50. -
FIG. 10 is a cross-sectional view corresponding toFIG. 9 after thevaporizer 5 has been fully inserted in the cigarettelighter socket 50 to power theelectrical heating element 20. -
FIG. 11 is a cross-sectional view corresponding toFIGS. 9 and 10 after theelectrical heating element 20 has been heated and thebimetallic leaf springs 54 have released thevaporizer 5 to pop out. -
FIG. 12 is a cross-sectional view corresponding toFIGS. 9-11 subsequent removal of thevaporizer 5 from the cigarettelighter socket 50. -
FIG. 13 is a cross-sectional view of an embodiment of a vaporizer attransfer element 26 to carry heat from the electrical heating element air stream in theinhalation tube 10. -
FIG. 14 is a cross-sectional view orthogonal toFIG. 13 . -
FIGS. 1 and 2 are front and rear perspective views of an embodiment of the present invention. This embodiment is shown in further detail in the cross-sectional views of thevaporizer 5 depicted inFIGS. 6 and 7 . The major components of thevaporizer 5 include aninhalation tube 10, anelectrical heating element 20, ahousing 40, and aplant material chamber 30. -
FIG. 8 is an exploded cross-sectional view of theinhalation tube 10 andplant material chamber 30 assembly. The distal end of theinhalation tube 10 is designed for insertion into the socket of a conventional cigarettelighter socket 50 of a vehicle. Anelectrical heating element 20 is located at the distal end of theinhalation tube 10. Thisheating element 20 is initially powered by vehicle's electrical system, and then used to heat air drawn through theinhalation tube 10 after thevaporizer 5 has been withdrawn from the cigarettelighter socket 50. For example, theelectrical heating element 20 can be a modified cigarette heating coil. The temperature of a lighter heating element is initially about 800°-1200° C., cooling to a temperature greater than 450° C. within about 10 seconds. The dimensions and thermodynamic properties of theinhalation tube 10 can be selected to result in a selected air temperature entering theplant material chamber 30 to cause vaporization of the desired medicaments from theplant material 35. For example, a temperature of about 125°-150° C. is suitable to vaporize the active constituents of tobacco. - The
inhalation tube 10 provides a pathway for a heated air stream from theelectrical heating element 20 at the distal end of theinhalation tube 10 to theplant material chamber 30 on the proximal end of theinhalation tube 10. Air flows through theinhalation tube 10 into theplant material chamber 30 and is generally insulated by theinhalation tube 10 to maintain the temperature of the air flow entering theplant material chamber 30. Theinhalation tube 10 is also the stress point between thehousing 40 and theheating element 20 and will absorb the forces produced by engaging the vaporizer with thecigarette lighter receptacle 50. For example, theinhalation tube 10 can be constructed of a heat-resistant material, such as medically-safe ceramic. The embodiment of theinhalation tube 10 shown in the drawings is a straight tube. It should be understood that theinhalation 10 could have any desired shape or cross-section. - The assembly at the distal end of the
inhalation tube 10 also includes a number of components to enable thevaporizer 5 to interface with a conventional cigarettelighter socket 50, as illustrated for example in FIGS. 4 and 8-12. Returning toFIG. 8 , the distal end of theinhalation tube 10 can be secured to a conventional cigarettelighter barrel 24 housing theelectrical heating element 20, to minimize manufacturing costs. Thebarrel 24 is typically constructed as a single extruded tube which will allow air to flow freely through theheating element 20 through thebarrel 24 and into theinhalation tube 10, as will be described below. For example, the distal end of theinhalation tube 10 can be coupled to thebarrel 24 by atubular inhalation guard 13, which inserts into the open end of thebarrel 24 and is secured by lugs and/or a friction fit. Theinhalation guard 13 also fits over the distal end of theinhalation tube 10 and is secured bylugs 14 that are bent inward to engage ribs or threads on the exterior surface of theinhalation tube 10, as shown inFIGS. 9-12 . - A cylindrical
outer housing 15 surrounds thebarrel 24 andinhalation 13. The diameter of theouter housing 15 is designed to allow the distal end of theinhalation tube 10,inhalation guard 13 andbarrel 24 to freely slide as an assembly within theouter housing 15 along its central axis. Aspring 18 surrounds the exterior of thebarrel 24 within theouter housing 15. Thisspring 18 is compressed between a flange at the proximal (upper) end of theinhalation guard 13 and anannular shoulder 16 in the interior surface of theouter housing 15 as theinhalation tube assembly annular shoulder 16 on the exterior surface of theouter housing 15 also acts as a stop to limit the extent to which thevaporizer 5 can be inserted into a conventional cigarettelighter socket 50. - The distal (lower) portion of the
barrel 24 forms anannular skirt 25 that extends radially outward and surrounds theelectrical heating element 20, as shown inFIGS. 8-12 . When thevaporizer 5 is fully inserted into alighter socket 50,bimetallic leaf springs 54 in thesocket 50 grip thisskirt 25 to hold thevaporizer 5 in place, as shown inFIG. 10 , while the electrical heating element heats. Thespring 18 is compressed during this period and exerts a biasing force that is held in check by the bimetallic leaf springs 54. However, when theelectrical heating coil 20 has heated the adjacentbimetallic leaf springs 54 to a predetermined temperature, thebimetallic leaf springs 54 deform outward sufficiently to release theskirt 25 of thebarrel 24. Thespring 18 then causes the vaporizer to partially eject from the cigarettelighter socket 50. In other words, the spring causes the lighter to “pop” out a short distance, as illustrated inFIG. 11 . This breaks the electrical contact between therivet 22 and theelectrical contact 52 in the base of thesocket 50. Thevaporizer 5 can then be withdrawn from the cigarettelighter socket 50, as shown inFIG. 12 . - It should be noted that other types of bimetallic springs or heat-sensitive mechanisms could be substituted for the leaf springs 54. For example, a bimetallic disk behind the
electrical heating element 20 could be employed to pop-out thevaporizer 5. - A
convection plate 12 is mounted above the neck of thebarrel 24 to serve as the point of attachment for theheating coil 20 by ametal rivet 22. Theconvection plate 12 also has a pattern of holes that will allow air to pass from theelectrical heating element 20 into thebarrel 24 and through theinhalation tube 10. The pattern and size of holes help to determine the amount of air flow and the temperature of the air stream through theinhalation tube 10. - The
electrical heating element 20 can be constructed as a flat coil of nickel-chrome wire. For example, theelectrical heating element 20 can be made of a corrosion-resistant wire made of 80% nickel and 20% chromium with a melting point of about 1400° C. Ni-chrome wire can be wound into a thin coil to a predetermined electrical resistance and when current from the vehicie's electrical system (typically about 15-20 amps) is passed through theheating element 20, it produces heat. The center of theelectrical heating element 20 is attached to themetal rivet 22 and the periphery of theheating element 20 is attached to theskirt 25 at the distal end of the barrel. Therivet 22 andbarrel 24 serve as the electrical contacts to establish a complete circuit between the vehicle's electrical system (i.e., battery) and theelectrical heating element 20. In particular, anelectrical contact 52 in the base of thesocket 50 makes contact with therivet 22 when the distal end of thevaporizer 5 is fully inserted into a cigarettelighter socket 50, as shown inFIG. 10 . The other electrical contact for powering theheating coil 20 made through themetal barrel 24, which is in contact with the metal wall of thesocket 50 that is grounded to the vehicle. - An O-
ring seal 19 between theconvection plate 12 andinhalation tube 10 can be used to form an air-tight seal between theelectrical heating coil 20 and theinhalation tube 10. When theinhalation tube 10 is secured in the inhalation guard it is pressed onto theinhalation seal 19 which forms an air seal forcing the air stream to flow through theelectrical heating coil 20 and into theinhalation tube 10 without ambient-temperature air leaking into the air stream. Theinhalation seal 19 can be made from a heat-resistant, medicinally-safe, yet pliable material, such as silicone. - The
plant material chamber 30 is attached at the proximal end of theinhalation tube 10 and is typically enclosed within thehousing 40. In particular, the proximal end of theinhalation tube 10 is fitted into one side or the bottom of theplant material chamber 30 and sealed with a gasket. This gasket forms a seal between theplant material chamber 30 and theinhalation tube 10 and completes the air tight seal from theheating coil 20 to theplant material chamber 30. Theplant material chamber 30 can perforated by elongated vents oropenings 34 about its outer surface. Thesevents 34 provide non-restricted air flow from theinhalation tube 10 through of theplant material chamber 30 into the interior of thehousing 40. Theplant material chamber 30 can be generally cup-shaped with an opening extending through the wall of thehousing 40 to accept a removable, air-permeable material holder 31 containing a quantity ofplant material 35 for vaporization, as shown inFIG. 3 . During use of thevaporizer 5, the open end of theplant material chamber 30 is sealed by a cover orlid 32 to maintain air flow through theinhalation tube 10 andelectrical heating element 20. The heated air stream flows from theheating coil 20 through theinhalation tube 10 and into theplant material chamber 30 where vaporization of theplant material 35 occurs. This vapor stream is drawn through theopenings 34 in theplant material chamber 30 into the interior ofhousing 40, and exits thehousing 40 through themouthpiece 44 at the proximal end of thehousing 40 as the user inhales. Theinhalation tube 10,plant material chamber 30, seals,lid 32, and baffles 42 can be made of heat-resistant, medicinally-safe materials, such as ceramic, to provide thermal insulation. Charcoal can be placed into theinhalation tube 10 to help alleviate any unwanted taste from theheating element 20. Optionally, theplant material chamber 30 can also include a filter to help contain theplant material 15 and filter the vapor stream. - The
housing 40 can have an egg-shaped or ovoid cross-section, for example. The interior of thehousing 40 can include a number ofbaffles 42 to create a more circuitous route for air flow from theplant material chamber 30 to themouthpiece 44 and provide additional cooling and mixing of the vapor stream. The distal end of thehousing 40 can be flared radially outward adjacent to the proximal end of the outerlighter housing 15 to provide a tactile device to help prevent the user from sliding fingers over the heating assembly. Thehousing 40 can either be made of heat-resistant, medicinally-safe materials, such as ceramic, to provide thermal insulation, or it can made of a suitable polymer capable of withstanding the temperatures involved. - To use the
vaporizer 5, the user initially places a quantity ofplant material 35 into theplant material chamber 30 of thevaporizer 5. For example, this can be done by removing thecap 32 covering the external opening to theplant material chamber 30 and then inserting an appropriate amount of theplant material 35 into thematerial holder 31, which is placed into theplant material chamber 30 as depicted inFIG. 3 . Thelid 32 is then replaced to close the external opening of theplant material chamber 30 and retain thematerial holder 31 andplant material 35 within theplant material chamber 30, as shown for example inFIG. 7 . - Next, the user inserts the distal end of the inhalation tube into the cigarette
lighter receptacle 50 of a vehicle to connect theelectrical heating element 20 to the electrical system of the vehicle. This is shown in the perspective view provided inFIG. 4 .FIG. 9 is a cross-sectional view of the distal end of thevaporizer 5 initially inserted in a cigarettelighter socket 50.FIG. 10 shows the vaporizer fully inserted to heat theelectrical heating element 20.FIG. 11 is a cross-sectional view after theelectrical heating element 20 has been heated and thebimetallic leaf springs 54 have released thevaporizer 5 to pop out. The user then withdraws thevaporizer 5 from the cigarettelight receptacle 50 as shown inFIG. 12 . - The user inhales through the
mouthpiece 44 as shown inFIG. 5 , thereby creating negative pressure to draw air through theinhalation tube 10 where it is heated by theheated element 20 and then drawn through theplant material chamber 30 to produce a mixture of heated air and vaporized plant material. This mixture of heated air and vaporized plant material is drawn out of theplant chamber 30 through itsopenings 34 into the interior of thehousing 40. The vapor stream is directed by thebaffles 42 within thehousing 40 and exits via themouthpiece 44. -
FIGS. 13-14 show two orthogonal cross-sectional views of an embodiment of the present invention that includes aheat transfer element 26 to transfer heat from theheating coil 20 to the airstream in theinhalation tube 10. Theheat transfer element 26 is in thermal contact with theheating coil 20 and conducts heat axially within the inhalation tube. This configuration can also include a number ofair intake openings 11 extending through the wall of theinhalation tube 10 at a distance above theheating coil 20. Air entering through theseopenings 11 will be heated by theheat transfer element 26 before entering theplant material chamber 30. If desired, air flow through theheating coil 20 can be blocked by aceramic spacer 27 to provide a more moderate and uniform air temperature entering theplant material chamber 30. Thisspacer 27 replaces theperforated convection plate 12 shown in the previous embodiment. Blocking air flow through theheating coil 20 might also help to reduce any unpleasant taste or smell associated with theheating coil 20. - The
heat transfer element 26 can have any desired configuration and be made of any material having suitable thermal conductivity. For example, theheat transfer element 26 can be made of thermal pyrolytic graphite (TPG) available from Momentive Performance Materials, Inc. of Strongsville, Ohio. This material is made by chemical vapor deposition of cracked methane, followed by a combination of pressure and thermal treatment at very high temperatures, to produce a material with an in-plane thermal conductivity of more than 1500 W/m deg. K. In contrast, copper has a thermal conductivity of about 400 W/m deg. K. TPG is somewhat fragile and is usually supplied embedded in an aluminum plate. - The above disclosure sets forth a number of embodiments of the present invention described in detail with respect to the accompanying drawings. Those skilled in this art will appreciate that various changes, modifications, other structural arrangements, and other embodiments could be practiced under the teachings of the present invention without departing from the scope of this invention as set forth in the following claims.
Claims (15)
1. A portable vaporizer for plant material comprising:
an inhalation tube having a distal end for insertion into a cigarette lighter receptacle of a vehicle;
an electrical heating element within the inhalation tube powered by the electrical system of the vehicle when the inhalation tube is inserted into a cigarette lighter receptacle, said inhalation tube enabling air to be drawn through the inhalation tube and heated by the electrical heating element;
a plant material chamber for holding plant material having openings allowing heated air from the inhalation tube to be drawn through the plant material; and
a housing having a mouthpiece for drawing air through the inhalation tube, plant material chamber and housing to produce a mixture of heated air and vaporized plant material.
2. The vaporizer of claim 1 wherein the housing further comprises baffles between the plant material chamber and mouthpiece.
3. The vaporizer of claim 1 further comprising a heat transfer element in the inhalation tube transferring heat from the electrical heating element to air in the inhalation tube.
4. The vaporizer of claim 1 wherein the electrical heating element is within the distal end of the inhalation tube to make electrical connection with electrical contacts in a cigarette lighter receptacle when the inhalation tube is inserted into a cigarette lighter receptacle.
5. The vaporizer of claim 1 further comprising an outer housing surrounding the distal end of the inhalation tube, and a spring between the outer housing and inhalation tube to partially eject the vaporizer from a cigarette lighter receptacle when the electrical heating element reaches a predetermined temperature.
6. The vaporizer of claim 1 wherein the plant material chamber is within the housing and attached to the proximal end of the inhalation tube.
7. The vaporizer of claim 6 wherein the plant material chamber has an external opening extending through the housing to receive plant material, and further comprising a removable cap covering the opening of the plant material chamber.
8. A portable vaporizer for plant material comprising:
an inhalation tube having a proximal end and a distal end for insertion into a cigarette lighter receptacle of a vehicle;
an electrical heating element within the distal end of the inhalation tube powered by the electrical system of the vehicle when the inhalation tube is inserted into a cigarette lighter receptacle;
a housing having an interior and a mouthpiece; and
a plant material chamber for holding plant material on the proximal end of the inhalation tube and enclosed within the housing, said plant material chamber having at least one opening into the interior of the housing;
wherein negative pressure at the mouthpiece of the housing draws air through the inhalation tube where the air is heated by the heated element and then drawn through the plant material chamber to produce a mixture of heated air and vaporized plant material.
9. The vaporizer of claim 8 further comprising baffles between the plant material chamber and the mouthpiece.
10. The vaporizer of claim 8 further comprising a heat transfer element in the inhalation tube transferring heat from the electrical heating element to air in the inhalation tube.
11. The vaporizer of claim 8 wherein the electrical heating element is within the distal end of the inhalation tube to make electrical connection with electrical contacts in a cigarette lighter receptacle when the inhalation tube is inserted into a cigarette lighter receptacle.
12. The vaporizer of claim 8 further comprising an outer housing surrounding the distal end of the inhalation tube, and a spring between the outer housing and inhalation tube to partially eject the vaporizer from a cigarette lighter receptacle when the electrical heating element reaches a predetermined temperature.
13. The vaporizer of claim 8 wherein the plant material chamber has an external opening extending through the housing to receive plant material, and further comprising a removable cap covering the opening of the plant material chamber.
14. A method for vaporizing plant material comprising:
providing a portable vaporizer having:
(a) an inhalation tube with a distal end insertable into the cigarette lighter receptacle of a vehicle;
(b) a electrical heating element powered by the electrical system of a vehicle when the inhalation tube is inserted into a cigarette lighter receptacle of a vehicle;
(c) a housing having a mouthpiece; and
(d) a plant material chamber on the proximal end of the inhalation tube within the housing and having openings allowing air to be drawn through the inhalation tube, plant material chamber and housing;
placing a quantity of plant material into the plant material chamber of the vaporizer;
inserting the distal end of the inhalation tube into the cigarette lighter receptacle of a vehicle to connect the electrical heating element to the electrical system of the vehicle;
withdrawing the inhalation tube from the cigarette light receptacle after the electrical heating element has heated;
inhaling through the mouthpiece of the vaporizer to draw heated air from the heating element through the plant material chamber and receive a mixture of heated air and vaporized plant material.
15. The method of claim 14 wherein the step of placing plant material into the plant material chamber comprises:
removing a cap covering an external opening to the plant material chamber;
inserting plant material into the plant material chamber; and
replacing the cap to close the external opening of the plant material chamber.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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US12/129,845 US20090293892A1 (en) | 2008-05-30 | 2008-05-30 | Portable vaporizer for plant material |
US12/206,258 US20090293888A1 (en) | 2008-05-30 | 2008-09-08 | Portable vaporizer for plant material |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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US12/129,845 US20090293892A1 (en) | 2008-05-30 | 2008-05-30 | Portable vaporizer for plant material |
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Application Number | Title | Priority Date | Filing Date |
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US12/206,258 Continuation-In-Part US20090293888A1 (en) | 2008-05-30 | 2008-09-08 | Portable vaporizer for plant material |
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US20090293892A1 true US20090293892A1 (en) | 2009-12-03 |
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US12/129,845 Abandoned US20090293892A1 (en) | 2008-05-30 | 2008-05-30 | Portable vaporizer for plant material |
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