This invention relates generally to a vaping device and more particularly to a monolithic electronic vaporizer.
The use of inhalable substances is popular, both for recreational purposes and for medical purposes. One form of using inhalable substances is through smoking. Those that use, particularly those that are using for medical purposes, may like the form of smoking the inhalable substance, but dislike what it visually displays to others around them or the smell that may be associated with smoking the substance. Smoking is also not a convenient form of medicating or dispensing most medicinal substances. Vaping is an option. There are reusable vaping devices and disposable vaping devices. Vaping devices are commonly referred to as vaporizers, and conventional disposable vaporizers are lacking in their sustainability and the effect on the environment.
Accordingly, there is a need for an improved disposable vaporizer that is more sustainable than existing disposable vaping devices.
An embodiment includes a monolithic electronic vaporizer comprising: a single molded body comprising: a fluid reservoir within the single molded body; a top recess located above the reservoir; and a bottom recess located below the reservoir; and a mouthpiece coupled within the top recess after the reservoir is filled with vape fluid.
Another embodiment includes a method of assembling a monolithic electronic vaporizer, the method comprising: assembling an atomizer with a heater and a wick, and an airway of a vaporizer within a top recess of a single molded body and assembling all remaining components of the vaporizer within a bottom recess of a single molded body; filling a reservoir with vape fluid, the reservoir formed as part of and within the single molded body; and coupling the mouthpiece within a top recess of the single molded body after the reservoir is filled with vape fluid.
The foregoing and other features and advantages of the present invention will be apparent from the following more detailed description of the particular embodiments of the invention, as illustrated in the accompanying drawings.
A more complete understanding of the present invention may be derived by referring to the detailed description and claims when considered in connection with the Figures, wherein like reference numbers refer to similar items throughout the Figures, and:
As discussed above, embodiments of the present invention relate to a monolithic electronic vaporizer.
Referring to
It will be understood that the single molded body 12 is designed to reduce the number of components needed for final assembly, therefore, reducing the total assembly time of the vaporizer 10. Further, in an effort to make vaporizers that are more sustainable, the single piece molded body 12 can close the gap in recycling costs by making the vaporizer 10 much easier to disassemble. Additionally, the body 12 may be formed of a recyclable material or a material that can be sterilized and reused. This allows the vaporizer 10 to be a product that can reduce the carbon footprint of a disposable electronic vaporizer.
The final assembly of the vaporizer 10 includes filling of the reservoir 20. The body 12 may include a top recess 19 that includes an aperture formed in a bottom of the recess for an airway 28 coupled to the heater 24, to extend into the recess 19. A blunt tipped needle may be inserted in locations 50 between the airway 28 and the reservoir 20, and holding the body 12 upright, vape fluid may be pushed through the needle and into the reservoir 20. Immediately after filling, the mouthpiece 30 may be inserted into the top recess 19 of the body 12 until it is fully seated. The seating of the mouthpiece 30 maybe a tamper resistant press-fit coupling between the mouthpiece 30 and the body 12. An aperture 32 is formed in the mouthpiece 30 that receives a portion of the airway 28 within the aperture 32 and allows air to be drawn through the mouthpiece 30 to initiate the breath actuated operation of the vaporizer 10. Further, the mouthpiece 30 may further include a seal 34 in order to provide an additional seal for the vape fluid to be retained within the reservoir 20. A user should then wait a predetermined amount of time based on the fluid viscosity to allow for saturation of the wick 26.
Additionally, in some embodiments, components of the vaporizer may include a haptic device (not shown). The haptic device may operate to provide haptic feedback to the user during operation of the vaporizer 10. This haptic feedback may be in the form of vibration of the vaporizer as the user draws in air through the vaporizer, vibration as the atomizer 22 operates to create vapor from the fluid, vibrations to alert of low battery, and so forth.
In some embodiments, the controller 18 may provide certain safety features. For example, and without limitation, the safety features may include short-circuit protection and over-usage protection.
Referring to the drawings further,
Step 63 of coupling a mouthpiece within a top recess may further comprise a tamper resistant press-fit. Step 62 of assembling all remaining components of the vaporizer within the bottom recess may further comprise retaining all remaining components of the vaporizer within the single molded body in response to coupling a bottom cap to the bottom recess of the single molded body. Step 63 of coupling the mouthpiece within the top recess of the single molded body may further comprises providing an additional seal for the vape fluid to be retained within the reservoir.
The embodiments and examples set forth herein were presented in order to best explain the present invention and its practical application and to thereby enable those of ordinary skill in the art to make and use the invention. However, those of ordinary skill in the art will recognize that the foregoing description and examples have been presented for the purposes of illustration and example only. The description as set forth is not intended to be exhaustive or to limit the invention to the precise form disclosed. Many modifications and variations are possible in light of the teachings above without departing from the spirit and scope of the forthcoming claims.
This application is a continuation-in-part of the earlier U.S. Utility patent Ser. No. 29/745,661, filed Aug. 7, 2020, the disclosure of which is hereby incorporated entirely herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
D776338 | Lomeli | Jan 2017 | S |
D799110 | Qiu | Oct 2017 | S |
D870372 | Zhu | Dec 2019 | S |
D885655 | Ding | May 2020 | S |
D898278 | Carlberg et al. | Oct 2020 | S |
D898991 | Pan | Oct 2020 | S |
D903938 | Chimbuya et al. | Dec 2020 | S |
D904681 | Kim et al. | Dec 2020 | S |
D905901 | Kim et al. | Dec 2020 | S |
D908952 | Guo | Jan 2021 | S |
D913583 | Leo et al. | Mar 2021 | S |
D919881 | Carlberg et al. | May 2021 | S |
D921979 | Kim | Jun 2021 | S |
20130160764 | Liu | Jun 2013 | A1 |
20150181941 | Liu | Jul 2015 | A1 |
20160073691 | Liu | Mar 2016 | A1 |
20180160737 | Verleur et al. | Jun 2018 | A1 |
Number | Date | Country |
---|---|---|
203952436 | Nov 2014 | CN |
113142673 | Jul 2021 | CN |
2754359 | Jul 2014 | EP |
2918181 | Sep 2015 | EP |
2013089551 | Jun 2013 | WO |
2015117062 | Aug 2015 | WO |
2018191884 | Oct 2018 | WO |
2020252076 | Dec 2020 | WO |
Entry |
---|
Vapordna, Disposable Vaporizer, https://vapordna.com/products/halo-vice-disposable-vaporizer, Mar. 16, 2019, accessed on Aug. 14, 2021. |
Scatterday et al., Monolithic Electronic Vaporizer, Canadian patent application serial No. 3,129,800, filed Sep. 23, 2021, Office Action dated Dec. 13, 2022. |
Scatterday et al., Monolithic Electronic Vaporizer, European patent application serial No. 22184338.6, filed Jul. 12, 2022, Extended European Search Report dated Dec. 13, 2022. |
Number | Date | Country | |
---|---|---|---|
20220039467 A1 | Feb 2022 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 29745661 | Aug 2020 | US |
Child | 17375952 | US |