Vaporizer, Consumable Container Therefore, Vaporizer System Thereof and Method of Obtaining Information About a Consumable Container
The present invention relates to a vaporizer configured to be connected to a consumable container for vaporizing a consumable contained in the consumable container, a vaporizer connecting surface of the vaporizer being connected to a consumable container connecting surface of the consumable container when the vaporizer is connected to the consumable container, wherein the vaporizer comprises one or more detecting units comprising a resilient member on the vaporizer connecting surface, on which the resilient member can take a projected or retracted position, configured to detect one or more aspects of the shape of the consumable container connecting surface encoding information about the consumable container by detecting whether or not or to which extent the resilient member is in a projected or retracted position when the vaporizer is connected to the consumable container.
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The present invention is directed to personal vaporizing devices, such as electronic cigarettes. More specifically, the present invention is directed to a vaporizer, a consumable container therefore, a vaporizer system thereof comprising the vaporizer and the consumable container, and a method of obtaining information by the vaporizer about the consumable container.
BACKGROUNDElectronic cigarettes are an alternative to conventional cigarettes. Instead of generating a combustion smoke, they vaporize a liquid, which can be inhaled by a user. The liquid typically comprises an aerosol-forming substance, such as glycerin or propylene glycol that creates the vapor. Other common substances in the liquid are nicotine and various flavorings.
The electronic cigarette is a hand-held inhaler system, comprising a mouthpiece section, a liquid store, and a power supply unit. Vaporization is achieved by a vaporizer or heater unit which typically comprises a heating element in the form of a heating coil and a fluid transfer element. The vaporization occurs when as the heater heats up the liquid in the wick until the liquid is transformed into vapor. The electronic cigarette may comprise a chamber in the mouthpiece section, which is configured to receive disposable consumables in the form of capsules. Capsules style consumable containers comprising the liquid store and the vaporizer are often referred to as “cartomizers”.
Different types of e-liquid solutions with different flavors or substances require different settings of the vaporizer, such as heating time and temperature. There is also a need for customers to only consume the authentic consumable container. Information exchange between the consumable container and the vaporizer is thus necessary.
The current vaporizers use data communication to identify the consumable container. For example, CN 11095991 A discloses an electronic cigarette including a tobacco/cigarette rod and a cartridge inserted into the tobacco rod. The cartridge includes a PCB module with an authentication circuit. The tobacco/cigarette rod 12 includes pins and a main control module. When the cartridge is coupled to the tobacco/cigarette rod, the connectors contact with the contact pads of the lower end of the PCB module. Further, the main control module detects data information of the authentication circuit 112 electrically connected to the connectors in the PCB module to identify the cartridge.
However, the electronic cigarette and the cartridge provided in the prior art is complex in structure. Having a complex IC module in the cartridge also increases the cost of the consumable container.
SUMMARY OF THE INVENTIONThe present invention provides a smoking article for an aerosol generation device, which solves some of or all of the above problems.
A 1st embodiment of the invention is directed to a vaporizer configured to be connected to a consumable container for vaporizing a consumable contained in the consumable container, a vaporizer connecting surface of the vaporizer being connected to a consumable container connecting surface of the consumable container when the vaporizer is connected to the consumable container, wherein the vaporizer comprises one or more detecting units comprising a resilient member on the vaporizer connecting surface, on which the resilient member can take a projected or retracted position, configured to detect one or more aspects of the shape of the consumable container connecting surface encoding information about the consumable container, by detecting whether or not or to which extent the resilient member is in a projected or retracted position when the vaporizer is connected to the consumable container.
With this arrangement, the information about the consumable container can be obtained by the vaporizer in a simple and economical way.
According to a 2nd embodiment, in the 1st embodiment, the resilient member is configured to detect indentations and/or protrusions arranged on a predetermined area of the consumable container connecting surface.
According to a 3rd embodiment, in any one of the preceding embodiments, the detecting units are arranged on a main level and/or in a recess underneath the main level of the vaporizer connecting surface.
According to an 4th embodiment, in any one of the preceding embodiments, the resilient member is configured to detect different depth and/or height levels of the indentations and/or protrusions.
With this arrangement, more complex data can be encoded on the one or more aspects of the shape of the consumable container.
According to a 5th embodiment, in any one of the preceding embodiments, the vaporizer comprises a decoding unit configured to decode the information encoded by the one or more aspects of the shape of the consumable container connecting surface.
According to a 6th embodiment, in any one of the preceding embodiments, the resilient member is a pogo pin.
According to a 7th embodiment, in any one of the preceding embodiments, the information is determined at least by detecting if the pogo pin is electronically connected with the information by determining.
According to an 8th embodiment, in any one of the preceding embodiments, the pogo pins are capable of supplying a power to the consumable container.
With this arrangement, the vaporizer system is designed in a more compact way.
According to a 9th embodiment, in any one of the preceding embodiments, the vaporizer comprises an operation unit, which is configured to check a table stored in the vaporizer against data obtained by detecting the one or more aspects of the shape of the consumable container connecting surface.
A loth embodiment of the invention is directed to a consumable container configured to be connected to a vaporizer according to any one of the preceding claims and containing a consumable for being vaporized in the vaporizer, the consumable container comprising a consumable container connecting surface being connected to a vaporizer connecting surface of the vaporizer when the consumable container is connected to the vaporizer, the shape of the consumable container connecting surface having one or more aspects which encode information about the consumable container.
According to an 11th embodiment, in the preceding embodiment, at least pails of the consumable container connecting surface are made of a conductible material.
According to a 12th embodiment, in the 9th or 10th embodiment, the consumable container is powered by an electrical connection between the consumable container connecting surface and the vaporizer connecting surface of the vaporizer.
According to a 13th embodiment, in the 9th to 11th embodiment, the one or more aspects of the shape of the consumable container connecting surface comprises indentations and/or protrusions at a predetermined area of the consumable container connecting surface.
According to a 14th embodiment, in the 12th embodiment, the information is encoded by the presence of absence of indentations and/or protrusions on the consumable container connecting surface, and/or the depth and/or height levels of the different indentations and/or protrusions.
A 15th embodiment of the invention is directed to a vaporizer system comprising a vaporizer according to any one of the 1st to 9th embodiments and a consumable container according to any one of the 10th to 14th embodiments.
A 16th embodiment of the invention is directed to a method of obtaining information about a consumable container according to any one of the 10th to 14th embodiments, configured to be connected to a vaporizer according to any one of the 1st to 9th embodiments, comprising the step of:
detecting which ones of the resilient members of the vaporizer are pressed down and/or how far a resilient member is pressed down when the vaporizer is connected to the consumable container, decoding the information on the basis of the detection.
According to a 17th embodiment, in the 16th embodiment, the information is decoded by checking a table stored in the vaporizer against data obtained by the detection.
According to an 18th embodiment, in the 16th or 17th embodiment, the method comprises the step of indicating at least some of the obtained information to the user.
According to a 19th embodiment, in the 18th embodiment, the information is indicated by activating one or more LEDs comprised by the vaporizer.
Preferred embodiments are now described, by way of example only, with reference to the accompanying drawings.
Preferred embodiments of the present invention are described hereinafter and in conjunction with the accompanying drawings.
As used herein, the term “vaporizer system”, “inhaler” or “electronic cigarette” may include an electronic cigarette configured to deliver an aerosol to a user, including an aerosol for smoking. The illustrated embodiments of the vaporizer system in this invention are schematic, and it is also possible to combine some of the parts to single units which will be apparent to a person skilled in the art.
Referring to the drawings and in particular to
On the first consumable container connecting surface 221, the consumable container 2 is configured with two power terminals 45, and air inlets 35. On the second consumable container connecting surface 220, an information coding area (shown in the square of broken lines in
In the embodiment according to
In some embodiments, at least a part of the protrusions is made of a conductible material and integrated with a power inlet of the consumable container 2 so that at least a part of the protrusions 201 can serve as power terminals 202 of the consumable container 2, with the benefit of no need of setting another power source to the container 2 and a more compact design.
Similar to the consumable container 2, the vaporizer main body 1 may comprise at least two surfaces which contact the consumable container 2 when the consumable container 2 is connected to the vaporizer 1 for use. The first vaporizer connecting surface 121 is located where the electrical connectors 104 are arranged. The second vaporizer connecting surface 120 has a detecting area (shown in the square with broken lines) arranged thereon, with at least one or more detecting units 101. In another embodiment, the consumable container 2 may have only one surface connecting the vaporizer main body 1, on which the detecting area is arranged. In yet other embodiments, there may be more than two connecting surfaces between the vaporizer main body 1 and the consumable container 2, and the detecting area may be arranged on multiple surfaces. As shown in
The detecting units 101 comprise a resilient member connected with a sensor. The detecting units 101 arranged in the detecting area of the vaporizer correspond to the one or more aspects of the shape of the consumable container connecting surface. The resilient members are configured to detect one or more aspects of the shape of the consumable container connecting surface encoding information about the consumable container, by detecting whether or not or to which extent the resilient member is in a projected or retracted position when the vaporizer main body 1 is connected to the consumable container 2.
The decoding unit is configured to decode the information encoded by the one or more aspects of the shape of the consumable container connecting surface. The decoding unit decodes the information by determining which ones of the resilient members 101 are pressed down (retracted) when the vaporizer 1 is connected to the consumable container 2. In some embodiments, the decoding unit decodes the information by determining how far the resilient members are pressed down, namely by detecting the strength of the pressure by means of the pressure sensor 1015, when the vaporizer 1 is connected to the consumable container 2. As shown in
As shown in
As discussed above, the information may be encoded by the presence of absence of indentations and/or protrusions 201 on the consumable container connecting surface, and/or the depth and/or height levels of the different indentations and/or protrusions 201 as shown in
Hereinafter, two embodiments of the process of obtaining information by the vaporizer 1 about a consumable container 2 are discussed with regard to
According to an embodiment in which the information is encoded as binary data. When the consumable container 2 is connected to the vaporizer 1, the vaporizer may be switched on manually, or automatically if at least one of the detection units are pressed down and/or if the detection units are electronically connected with the consumable container surface 220. The positions of the resilient members are detected, in particular which ones of the resilient members of the vaporizer are retracted and/or if the detection units are electronically connected with the consumable container surface 220 (S101). The information coded by the consumable container surface 220 is decoded, e.g. by checking a table stored in a memory unit of the vaporizer against the result of the detection (S102, S103). At least some of the decoded information may be indicated to the user by adjusting the intensity of the light color emitted by the LED light 110. E.g., the LED light 110 of
In another embodiment of this invention, as shown in
Claims
1. A vaporizer configured to be connected to a consumable container for vaporizing a consumable contained in the consumable container, the vaporizer including a vaporizer connecting surface configured to be connected to a consumable container connecting surface of the consumable container when the vaporizer is connected to the consumable container, wherein the vaporizer comprises one or more detecting units comprising a resilient member on the vaporizer connecting surface, the resilient member having a projected and retracted position, the one or more detecting units being configured to detect one or more aspects of a shape of the consumable container connecting surface encoding information about the consumable container by detecting whether or not or to which extent the resilient member is in the projected or the retracted position when the vaporizer is connected to the consumable container.
2. The vaporizer according to claim 1, wherein the resilient member is configured to detect indentations and/or protrusions arranged on a predetermined area of the consumable container connecting surface.
3. The vaporizer according to claim 2, wherein the detecting units are arranged on a main level and/or in a recess underneath the main level of the vaporizer connecting surface.
4. The vaporizer according to the claim 3, wherein the resilient member is configured to detect different depth and/or height levels of the indentations and/or protrusions.
5. The vaporizer according to claim 1, wherein the vaporizer further comprises a decoding unit configured to decode the information encoded by the one or more aspects of the shape of the consumable container connecting surface.
6. The vaporizer according to claim 1, wherein the resilient member is a pogo pin.
7. The vaporizer according to claim 6, wherein the information is determined at least by detecting if the pogo pin is electronically connected with a conductive surface of the consumable container.
8. The vaporizer according to claim 1, wherein the vaporizer further comprises an operation unit, which is configured to check a table stored in the vaporizer against data obtained by detecting the one or more aspects of the shape of the consumable container connecting surface.
9. A consumable container configured to be connected to the vaporizer according to claim 1, and containing a consumable for being vaporized in the vaporizer, the consumable container comprising the consumable container connecting surface configured to be connected to the vaporizer connecting surface of the vaporizer when the consumable container is connected to the vaporizer, the shape of the consumable container connecting surface having one or more aspects which encode information about the consumable container.
10. The consumable container according to claim 9, wherein at least parts of the consumable container connecting surface are made of a conductible material.
11. The consumable container according to claim 9, wherein the one or more aspects of the shape of the consumable container connecting surface comprises indentations and/or protrusions at a predetermined area of the consumable container connecting surface.
12. The consumable container according to claim 11, wherein the information is encoded by the presence or absence of indentations and/or protrusions on the consumable container connecting surface, and/or the depth and/or height levels of the different indentations and/or protrusions.
13. (canceled)
14. A method of obtaining information about a consumable container according to claim 9, comprising the step of:
- detecting which ones of the resilient members of the vaporizer are pressed down and/or how far the resilient members is pressed down when the vaporizer is connected to the consumable container,
- decoding the information on a basis of the detection,
- wherein the information is decoded by checking a table stored in the vaporizer against data obtained by the detection.
15. The method according to claim 14, further comprising the step of indicating at least some of the obtained information to the user.
Type: Application
Filed: Oct 12, 2021
Publication Date: Jan 25, 2024
Applicant: JT International SA (Geneva)
Inventor: Layth Sliman Bouchuiguir (Bellevue)
Application Number: 18/030,881