The disclosed cartridge (200) for an aerosol generating device (100), includes a heater assembly (300, 400, 500). The heater assembly (300, 400, 500) further includes a heater (300a, 400a, 500a), and a wick (304, 404, 504). The heater (300a, 400a, 500a) includes at least one heating portion (302, 402, 502), and at least one supporting section (306, 406, 506). The 5 supporting section (306, 406, 506) is configured to form a gripping member defining a wick conforming space to receive the wick (304, 404, 504). The gripping member is further configured to exert compressive force against the wick (304, 404, 504), when the wick (304, 404, 504) is positioned in the wick conforming space.
The disclosed aerosol generating article (100) including a main body (101) consists of a mouth filter segment (102), a first bridge segment (104), at least one aerosol generating substrate segment (106), and an upstream segment (108). The mouth filter segment (102) is configured at a downstream end (100-2) of the aerosol generating article (100) to filter an aerosol before the aerosol is inhaled by a user. The first bridge segment (104) is designed to refine an airflow and provide additional filtration. The at least one aerosol generating substrate segment (106) is configured to produce the aerosol. The aerosol generating substrate segment (106) is heated by at least one heater (204) of the aerosol generating device (202). A ventilation arrangement (110) is configured at an upstream end (100-1) of the article (100) to facilitate an airflow from the upstream end (100-1) through the aerosol generating substrate segment (106).
The disclosed aerosol generating device (100) comprises a main body (102), and a cap assembly (104) comprising a cap body (104') removably coupled to the main body (102). The cap body (104') embeds a heater section that surrounds a receiving cavity (114) of the cap body (104'). Upon placement of the cap assembly (104) in a heating cavity (122) of the main body (102), a first set of contact terminals (110) of the main body (102) align with a second set of contact terminals (116) of the cap assembly (104) to facilitate electrical supply to at least one heater positioned in the heater section by establishing an electrical connection, and thereafter aerosol generating article (118) is secured in the receiving cavity (114) of the cap assembly (104), such that the aerosol generating article (118) is circumferentially surrounded by the at least one heater to produce an aerosol.
The disclosed aerosol generating device (100) includes a holder assembly (104) in electrical connection with an external electronic device (110) to supply power to one or more components of the aerosol-generating device (100) to facilitate generation of an aerosol from an aerosol-generating liquid. The aerosol generating device (100) includes a cartridge (102) having a chamber (102-1) to store an aerosol-generating liquid. The external electronic device (110) includes at least one power source (106) to generate the power.
The disclosed cartridge (100) includes a storage compartment (105) that stores an aerosol generating substrate. The cartridge (100) includes at least one primary fluid path (104-1) that carries aerosol, and at least one secondary fluid path (104-2). The at least one secondary fluid path (104-2) includes at least one inlet vent (114) directed towards ambient air and at least one outlet vent (116) directed towards the storage compartment (105) to maintain zero-differential pressure during operation. The at least one secondary fluid path (104-2) is defined along a periphery of the cartridge (100). The arrangement of the primary fluid path (104-1) and the at least one secondary fluid path (104-2) enables airflow and stable aerosol formation within the cartridge (100).
The present disclosure provides a composition, comprising: at least one organic acid, salt of organic acid, or combinations thereof, wherein the organic acid has pKa in a range of 3 to 7 and molecular weight of less than 200g/mol, and at least two inorganic compounds, wherein the at least one organic acid, salt of organic acid, or combinations thereof is in a weight range of 0.1 to 0.8% (w/w), with respect to the total weight of the composition, and the at least two inorganic compounds has a weight range of 2 to 4% (w/w), with respect to the total weight of the composition, and a process of preparation thereof. The present disclosure further provides a low TFM soap formulation, comprising the composition and a process of its preparation.
An aerosol generating article remover assembly (100) for an aerosol generating device comprises a heater (102) having a heating cavity configured to accommodate an aerosol generating article (106). An aerosol generating article remover (104) is coupled to the heater (102) to facilitate removal of aerosol generating article or parts from the heating cavity. At least one slot (108) configured at edge of the heater (102) to facilitate movement of the article remover (104) relative to the heater (102). The article remover (104) includes a cap portion (104-1), at least one side handle portion (104-2), and a bottom portion (104-3). The article remover (104) is coupled to the heating element through the engagement of the side handle portion (104-2) with the slot (108). The side handle portion (104-2) moves laterally along the slot (108) to facilitate the removal of aerosol generating article or parts thereof from the heating cavity.
An aerosol generating device (100) includes a cartridge (106) including a storage chamber (108) having a primary reservoir (110), a secondary reservoir (112), and at least one channel (217, 116). The primary reservoir (110) stores an aerosol generating substrate and the at least one channel (217, 116) is defined between the primary and secondary reservoirs (110, 112) to convey the aerosol generating substrate from the primary reservoir (110) to the secondary reservoir (112). When a first end of the aerosol generating device (100) is oriented in an angular position above 0 to 90 degrees with respect to a horizontal plane (HH), a fluid communication between the primary and secondary reservoirs (110, 112) is established, and thereafter a fluid communication between the secondary reservoir (112) and a capillary material (122) of an atomizer is established in a direction substantially orthogonal to a longitudinal axis (C-C) of the aerosol generating device (100).
A method (300) for controlling resistance of a heating element (108) of an aerosol generating device (100) includes providing, by a Pulse Width Modulation (PWM) control unit (206), a Pulse Width Modulation (PWM) signal to the heating element (108) for each activation of the aerosol generating device (100). Further, the method (300) includes performing, by a heater control circuit coupled to the PWM control unit (206), one of: determining a change in resistance of the heating element (108) during an off-duty cycle of the PWM signal, and heating the heating element (108) during an on-duty cycle of the PWM signal.
G05D 23/24 - Control of temperature characterised by the use of electric means with sensing elements having variation of electric or magnetic properties with change of temperature the sensing element having a resistance varying with temperature, e.g. thermistor
A24F 40/42 - Cartridges or containers for inhalable precursors
11.
AN AEROSOL GENERATING DEVICE WITH PERFORMANCE CONTROL FEATURES
An aerosol generating device (100) comprises a cartridge (104) having an atomizer (126), and a main body (102) having a control unit (108). A proximal end of the main body (102) is configured to receive the cartridge (104) either in a first orientation or in a second orientation relative to the main body (102). When the cartridge (104) is present in the first orientation, airflow enters through a first airflow path within the aerosol generating device having a first inlet area (A1), and the control unit (108) is configured to supply a first power level to the atomizer (126). When the cartridge (104) is present in the second orientation, the airflow enters through a second airflow path within the aerosol generating device having a second inlet area (A2), and the control unit (108) is configured to supply a second power level to the atomizer (126).
Provided herein is a composition comprising antimicrobial peptide having sequence of SEQ ID 1 and a natural active such that the composition provides 5 log reduction of bacteria in 1 minute. In the said composition the natural active is selected from medium chain fatty acid (6 to 12 carbon atoms) and selective essential oil like eugenol and citronellal from clove oil and citronella oil respectively.
A61Q 17/00 - Barrier preparationsPreparations brought into direct contact with the skin for affording protection against external influences, e.g. sunlight, X-rays or other harmful rays, corrosive materials, bacteria or insect stings
13.
A SYNERGISTIC COMBINATION OF AN ANTIMICROBIAL PEPTIDE AND ACTIVES FOR HYGIENE APPLICATIONS
A synergistic combination of antimicrobial peptide having Sequence ID 1 or salts and derivatives thereof and at least one active selected from thymol or caprylic acid such that said combination achieves >5 log kill in 1 minute for both Gram positive and Gram negative organisms and composition thereof.
A61Q 17/00 - Barrier preparationsPreparations brought into direct contact with the skin for affording protection against external influences, e.g. sunlight, X-rays or other harmful rays, corrosive materials, bacteria or insect stings
14.
ANTIMICROBIAL COMPOSITIONS FOR HYGIENE APPLICATIONS
A61K 8/64 - ProteinsPeptidesDerivatives or degradation products thereof
A61Q 17/00 - Barrier preparationsPreparations brought into direct contact with the skin for affording protection against external influences, e.g. sunlight, X-rays or other harmful rays, corrosive materials, bacteria or insect stings
The present invention relates to antimicrobial combinations for topical application. Particularly, it relates to antimicrobial combinations comprising an Indolicidin peptide analogue (C2), one or more non-ionic surfactants and at least an organic acid and/ or metal salt thereof based chelating agent.
A cartridge assembly (104) of an aerosol generating device (100) includes a cartridge housing (105) having a proximal end (105a) and a distal end (105b). The cartridge housing (105) includes a storage portion (108) and a connector portion (110). The storage portion (108) is configured to hold an aerosol generating substrate (L). The connector portion (110) is 5 configured to be inserted into a receptacle (112) of a control unit (102) of the aerosol generating device (100). The cartridge housing (105) is having a protruded surface (120) extending towards both the proximal end (105a) and the distal end (105b) of the cartridge housing (105). The protruded surface (120) is being visible in one or more orientations and is configured to display an amount of the aerosol generating substrate (L) present in the storage 0 portion (108), when the cartridge assembly (104) is in engagement with the control unit (102).
The present disclosure relates to an improved aerosol generating device (100) comprising a body (102), a cartridge (104), and a mouthpiece (106). The body (102) includes a control unit (110) and a power source (112). The cartridge (104) is coupled to the body (102), and configured to hold an aerosol generating substrate. The mouthpiece (106) includes at least one sensor (124) operatively coupled to the control unit (110). The body (102) having a channel (126B) in fluid communication with the least one sensor (124) secured in a seating member (202) of the mouthpiece (106). The at least one sensor (124) is positioned in proximity to a source of actuation to detect airflow indicative of inhalation from a user.
The present disclosure provides an extruded protein composition, particularly derived from soy, comprising protein (45-56%), crude fiber (1-2.5%), and sodium (<20 mg/100g). The composition exhibits enhanced surface porosity, superior water absorption capacity, improved masala absorption capacity, reduced bulk density, and softer texture with average hardness of 1250-2600g and chewiness of 8500-20000 g.sec, synergistically delivering a well-rounded sensorial profile. The disclosure also provides a chemical-free extrusion method for preparation. The present disclosure eliminates the bland core and undesirable chewy texture of conventional soy chunks by arriving at a novel composition rather than using chemical additives, providing consumers with organoleptically superior, nutritionally beneficial plant-based protein.
The disclosed system (100) comprises a charging assembly (400) configured to regulate supply of electric power to charge an aerosol generating device (102). The system (100) includes a control unit (110) positioned within the aerosol generating device (102) to receive the electric power from the charging assembly (400). An energy source (106) is operatively coupled to the control unit (110) to receive the electric power for charging from the control unit (110) through a polarity converter (104). A terminating end (200a) of a body (200) of the aerosol generated device (102) is directed along a longitudinal axis of the aerosol generating device (102), to engage with a receptacle (400a) of the charging assembly (400) in orientations relative to the receptacle (400a) of the charging assembly (400), establishing electrical connection to supply the electric power to the energy source (106).
The present invention discloses an aerosol-generating device. An aerosol-generating device comprises a body (200) configured to hold a cartridge (100). The aerosol generating device includes a pressure sensor (307) capable of detecting pressure in at least one airflow channel of the aerosol generating device. Further, the aerosol generating device includes a control unit (300). The control unit (300) receives a pressure signal from the pressure sensor (307), determines a plurality of pressure signal parameters, detects a plurality of events based on at least two of the determined plurality of pressure signal parameters. Further, the control unit (300) controls operation of the aerosol generating device in response to a detected event from the plurality of events.
An aerosol generating device (100) is disclosed, comprising a communication unit (101) and a control unit (101A) operatively coupled thereto. The communication unit (101) is configured to autonomously establish a direct wireless connection with a gateway (103), receive operational data from a server (104) via the gateway (103) for each activation, and transmit monitored data to the server (104) each post-activation. The control unit (101A) dynamically controls device operation based on the received operational data, continuously monitors the device's functional status, and collects and transmits the monitored data. The device (100) is maintained in real-time synchronization with the server (104) through the gateway (103), enabling robust, bi-directional data exchange for precise operational control and monitoring. This architecture facilitates advanced remote management, data-driven optimization, and regulatory compliance, while supporting seamless integration into connected environments and ensuring high reliability and security throughout the device lifecycle.
H04L 67/12 - Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
A24F 40/10 - Devices using liquid inhalable precursors
A24F 40/65 - Devices with integrated communication means, e.g. wireless communication means
A61M 15/06 - Inhaling appliances shaped like cigars, cigarettes or pipes
H04L 67/125 - Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks involving control of end-device applications over a network
H04W 4/021 - Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences
H04W 4/80 - Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
23.
AEROSOL GENERATING DEVICE WITH LEAKAGE-RESISTANT CARTRIDGE
The present disclosure relates to an aerosol generating device (102) with a leakage-resistant cartridge or a cartridge (104) which can include a liquid storage tank (104-2) to store an aerosol-generating substrate. A heater assembly (106) of the cartridge (104) is operatively coupled to the liquid storage tank (104-2) and can include a heater (106-1) to heat the aerosol-generating substrate. A heater holder 106-3 of the heater assembly (106) can hold the heater (106-1). The cartridge can include a component (106-2) and a sleeve (108). The sleeve (108) can be positioned between a first surface (206) of the liquid storage tank (104-2) and a second surface (208) of the component (106-2), and compressive force is applied to the sleeve (108) along a longitudinal axis (104-4) of the cartridge (104) thereby forming a horizontal interface (110-1).
The present invention discloses Dry Powder Inhaler (DPI) technology, aiming to enhance the delivery efficiency of powdered formulation. The present invention includes a rotating pod (112) based delivery mechanism housed within a durable and lightweight housing (110). Key components include an upper housing (102) with an impeller (108) and a lower housing (104) with a rotating pod (112) in the mixing chamber (114) to deliver the powdered formulation to the user upon inhalation. This impeller (108), driven by breath actuation, rapidly rotates the rotating pod (112) upon inhalation, generating centrifugal forces upon the powdered formulation. An optimized release mechanism ensures precise delivery angles, 0 to ±85 degrees relative to the horizontal plane. The present invention represents a significant advancement in DPI technology, prioritizing usability, and dosage consistency.
The present disclosure relates to an enhanced cartridge for monitoring aerosol generating liquid in an aerosol generating device (100). Aerosol generating device (100) further include a device (102) comprising a receptacle slot (106) and a cartridge (104) that is detachably connected to the receptacle slot (106). The receptacle slot (106) includes a predefined volume having an open end (116) on a first side (120) of the device (102) and a closed end (118) on a second side (122) of the device (102). The cartridge (104) can be positioned in the receptacle slot (106) from the open end (116) and is in engagement with the closed end (118) to establish an electrical connection to a power source (114a) of the device (102). The cartridge (104) is positioned between a first end (124) and a second end (126) of the device (102) to ensure full visibility of liquid during an engaged position.
The disclosed aerosol generating device (102) includes a cartridge (106) having a liquid storage tank (124) to store an aerosol generating substrate and facilitate controlled transmission of the aerosol generating substrate to a heating element (110) through a capillary material (208). A heater bracket (206) holds the heating element (110) and the capillary material (208). The heating element (110) is coiled around the capillary material (208) to enable thermal contact of the transmitted aerosol generating substrate. A heater receptacle (112) is mechanically connected to the heater bracket (206) to direct aerosol generating substrate to heating element (110) for aerosolization upon reaching a boiling point, generating an aerosol. A pod base (218) is positioned beneath the heater receptacle (112) with a central air channel (220) to restrict the entry of the aerosol generating substrate upon overflow into a power control unit (120) thereby minimizes chances of aerosol generating substrate leaking out.
The present invention discloses an aerosol-generating device for releasing consistent aerosol. The device comprises a resistive heater (104) which is cylindrical in shape with a tapered head, at one of its ends, configured to penetrate an aerosol-generating substrate (103-A), a resistive heating track, configured to generate heat for aerosolizing the aerosol-generating substrate and a temperature-measuring sensor track, embedded alongside the resistive heating track, configured to measure temperature variations during the heating cycle. Further, the device comprises a controller, configured to receive input from the temperature-measuring sensor track, implement a multiphase heating cycle, adjusting power distribution to maintain predefined temperature profiles, wherein the heating cycle comprises at least two distinct phases, and dynamically regulate power supplied to the resistive heating track to ensure consistent aerosol delivery while minimizing energy consumption.
The present invention relates to an improved aerosol-generating device (100) featuring a constant voltage delivery mechanism to regulate power supplied to a heater (141). The device (100) comprises a constant voltage converter (122), a control unit (121), a heater (141), an energy source (battery) (123), an aerosol-5 generating substrate, and a cartridge (140). Unlike conventional pulse width modulation (PWM) methods that introduce power fluctuations, the invention ensures a steady voltage supply to the heater (141), minimizing thermal stress, enhancing heater (141) lifespan, and optimizing aerosol quality. The control unit (121) dynamically adjusts constant voltage supplied to heater (141) based on the 10 heater's resistance to ensure stable power delivery throughout the heating cycle. This prevents overheating, degradation of the aerosol-generating substrate, and fluctuations in aerosol production.
The proposed invention relates to an aerosol-generating device (100) that enables direct measurement of the aerosol-generating substrate level in the cartridge (120). The device comprises a body (140) and a cartridge (120). The body (140) includes a control unit (141), an energy source (142), and a charging port (143). The 5 cartridge (120) houses a heater (127), an aerosol-generating substrate, a condensation chamber (132), and connector pins (129). The condensation chamber (132) also acts as a capacitance sensing unit, with the aerosol-generating substrate serving as a dielectric medium. The control unit (141) measures the substrate level in the condensation chamber (132) by detecting capacitance variance and regulates 10 the activation of the heater (127) accordingly. This prevents thermal stress on the heater (127), avoids the production of dry inhalation, and ensures consistent performance.
The present invention relates to a smart aerosol generating device equipped with an interlocking mechanism that ensures user safety by preventing simultaneous operation of charging and inhalation modes. The device comprises an atomizer, a mouthpiece, a battery component, and a control unit. The control unit is configured to detect the presence of an external power supply and automatically disable inhalation functionality during charging. This prevents users from being exposed to electrical hazards associated with power failures or fluctuations. The device operates in two modes: Charging Mode and Inhalation Mode, determined by the presence of input power supply. The invention eliminates the need for mechanical interlocks or user intervention, providing a seamless and safe user experience. The device also features a processor that monitors the input supply and ensures that inhalation is only possible when the charging cable is removed, thereby enhancing safety margins.
The invention relates to an aerosol generating substrate comprising cut tobacco with 15-50 cuts per inch tobacco and a filling density in the range of 200-600 mg/cc; and at least one aerosol former in an amount not less than 15 % w/w. The invention also relates to an aerosol generating article for electronically heated aerosol delivery system comprising aforesaid aerosol generating substrate.
An inhalation device comprising: - a housing (1 ) with a reservoir (2) therein and a mouthpiece (3), wherein said reservoir is adapted to hold a composition and comprises at least one capillary tube (5), and said mouthpiece comprises at least one orifice (6) and a mouth end; and - an actuator means (4) provided on the housing and operatively connected to the capillary tube, said capillary tube is connected to at least one divergent release valve (7), such that the orifice and the divergent release valve are at an angle between 0 to 75°, and the orifice and the capillary tube are operatively connected so as to release said composition upon activation of said actuator means. Also provided are uses of said device and method of release of a composition from said device and refilling of the device.
The present invention relates to a delivery system which enables selective entrapment. The delivery system comprises a solvent system which is a hydro-alcoholic solvent system; 1.5-10% of at least one polymer; and 0.00025-0.75% of at least one enabler. It may optionally comprise one or more benefit agent.
The present disclosure discloses a composition comprising a beverage having a weight percentage in the range of 0.1-35% with respect to the composition, at least one structurant having a weight percentage in a range of 10-35% with respect to the composition, at least one sweetening agent having a weight percentage in a range of 40-70% with respect to the composition; and at least one dissolver having a weight percentage in a range of 10-20% with respect to the composition. The present disclosure further provides a read-to consume beverage. Also, disclosed herein is a process for preparing the composition and ready-to-consume beverage.
The present invention relates to a delivery system which enables selective entrapment. The delivery system comprises a solvent system which is a hydro-alcoholic solvent system; 1.5-10% of at least one polymer; and 0.00025-0.75% of at least one enabler. It may optionally comprise one or more benefit agent.
Embodiments disclose an aerosol generating article (10) comprising: an outer body (11, 111) extending in a longitudinal direction to operably couple an end cap (12, 112) at one end and a cartridge assembly (13, 118, 20) at the other end; said outer body (11, 111) enclosing a housing (113), said housing (113) comprising electronic circuitry, a battery assembly (114), and a charging mechanism (117) embedded therein; said cartridge assembly (20) enclosing therein: a liquid storage compartment (22) for storing vaporizable liquid material or an aerosol source liquid; a heater assembly comprising: a wick to absorb the vaporizable liquid material; and a heating element wounded on the wick material, wherein the wick is arranged to transfer the vaporizable liquid via capillary action to the wick for vaporizing the vaporizable liquid material, and an air pipe (4103) integrated into liquid storage compartment (22) for carrying the condensed vapor towards the end of said cartridge assembly (20), where a user inhales the condensed vapor through a mouthpiece (21).
Embodiments of the invention relate to a real time, automatic, particle measurement system and a method thereof, for a variety of agricultural products and confectionaries having an irregular shape and size, said method comprising the steps of: sampling of agricultural products and confectionaries sample from an input main line; feeding of the drawn agricultural products and confectionaries sample into a particle measurement system, the system comprising a conveyor unit comprising a plurality of multi-speed counter direction conveyors, a camera vision system positioned in proximity to the conveyor unit, said camera vision system comprising a combination of at least one colour camera and at least one monochrome camera with Infra-Red backlight, and an integration system comprising a PLC controller, an interface panel for display of results, and a data acquisition system for storage and reporting of data of the agricultural products and confectionaries sample; creating a monolayer of the agricultural products and confectionaries sample feed, by the plurality of multi-speed counter direction conveyors; detecting the particle size of the agricultural products and confectionaries sample, and detect the particle density of the agricultural products and confectionaries sample from the monolayer of the sample, by the camera vision system; and displaying and storage of data of the agricultural products and confectionaries sample.
An aerated beverage composition is described herein. The aerated beverage composition comprises coffee having a weight percentage in a range of 0.1-20% with respect to the aerated beverage composition, at least one structurant having a weight percentage in a range of 10-40% with respect to the aerated beverage composition, at least one sweetener having a weight percentage in a range of 21-60% with respect to the aerated beverage composition, at least one solvent. The viscosity of the aerated beverage composition is in a range of 10,0000-3,40,000 cps. The aerated beverage composition, when reconstituted with water, provides a creamy, frothy, and stable ready-to-drink beverage. The present disclosure also provides a simple and convenient process for preparing the aerated beverage composition.
A23L 29/30 - Foods or foodstuffs containing additivesPreparation or treatment thereof containing carbohydrate syrupsFoods or foodstuffs containing additivesPreparation or treatment thereof containing sugarsFoods or foodstuffs containing additivesPreparation or treatment thereof containing sugar alcohols, e.g. xylitolFoods or foodstuffs containing additivesPreparation or treatment thereof containing starch hydrolysates, e.g. dextrin
76.
AN AEROSOL GENERATING ARTICLE FOR AN AEROSOL GENERATING DEVICE
An aerosol generating device (100) comprising of at least three segments, wherein the first segment (101) comprising an aerosol generating substrate; a second segment (102) is a tubular segment configured for cooling the aerosol generating substrate; and a third segment (103) with a filtering material, preceded by the second segment (102). The second segment (102) is placed immediately downstream to the first segment (101) and first segment (101) comprises reconstituted tobacco packed at high densities. The second segment (102) provides ventilation holes (102a) running along both its length for dilution, which further reduces the temperature of the aerosol generated from the preceding segment (101).
A heater mount assembly for use in an aerosol generating device (100) comprising of a heater pin (200); a two -part mounting means (203, 204) for mounting said pin shaped heater (200); a plurality of heater pin terminals (201); a heating chamber (101) for heating the pin shaped heater (200); a heat spreader (301) is a metallic sheet that covers the core hater, the heater mount assembly and absorbs the heat transferring to the outer device body; and a back support (203) adapted for maintaining the heater pin (200) in an upright position within the heating chamber (101).
An aerosol generating device with a monolithic design comprising of a single tube body structure (100) closed at one end and open at other. A switch (103) adapted to switch ON/OFF the aerosol generating device, a heating element (102); an extractor cap (101); wherein said single tube body structure (100) encloses the heating element (102) and averts the exposure of said heating element (102) to the outside environment. The open end is covered by the extraction cap when cleaning of the heating element (102) is not needed.
Cigarettes; raw or manufactured tobacco; tobacco products;
tobacco substitutes (other than for medical use); cigars,
cigarillos; lighters; matches; smokers' articles;
cigarette paper, cigarette tubes, cigarette filters; pocket
apparatus for rolling cigarettes; hand-held machines for
injecting tobacco into paper tubes; electronic cigarettes;
liquids for electronic cigarettes; tobacco products for the
purpose of being heated.
Cigarettes; raw or manufactured tobacco; tobacco products;
tobacco substitutes (other than for medical use); cigars,
cigarillos; lighters; matches; smokers' articles;
cigarette paper, cigarette tubes, cigarette filters; pocket
apparatus for rolling cigarettes; hand-held machines for
injecting tobacco into paper tubes; electronic cigarettes;
liquids for electronic cigarettes; tobacco products for the
purpose of being heated.
Eucalyptus camaldulensis, as well as a polynucleotide sequence comprising the promoter fragment and an operably-linked heterologous polynucleotide, and a method of using the polynucleotide sequence to express a heterologous polynucleotide exclusively in male reproductive tissues of a plant.
The present disclosure relates to plant genetic engineering and plant biology. In particular, the present disclosure relates to a polynucleotide fragment(s) with promoter activity that is plant male reproductive tissue specific.
This invention relates generally to a packet for holding substantially elongated articles such as cigarettes and the like. This invention can be used for secure packing of cigarettes, candy and the like products. It provides a click lock feature of the double layered folding lid (2). It is achieved through creating integrated notches (3) from the folding lid (2), which lock within the slots (15) created on the outer container with a click, delivering a secure closing and opening experience.
B65D 85/10 - Containers, packaging elements or packages, specially adapted for particular articles or materials for compressible or flexible articles rod-shaped or tubular for cigarettes
87.
ROLLING BUNDLING MECHANISM FOR AUTOMATIC OPENING AND CLOSING
The present invention relates generally to a packaging assembly. More particularly the present invention relates to a packet for holding similar and/or dissimilar objects wherein said packet facilitates dispensing of objects when desired and reclosing to secure the said objects. It can be used in applications like a cigarette packet and like containers. This invention provides an advantageous feature of doubly securing the objects in the container.
B65D 85/10 - Containers, packaging elements or packages, specially adapted for particular articles or materials for compressible or flexible articles rod-shaped or tubular for cigarettes
88.
NANOPARTICLES DISPERSION FOR DETECTION OF SKIN HEALTH CONDITIONS AND A DIAGNOSTIC KIT THEREOF
Nanoparticles dispersion is provided for diagnosing skin health conditions comprising at least three components selected from glucose, chloroauric acid, potassium hydroxide, sodium borohydride, and water, wherein said nanoparticle dispersion has a particle size of 1 to 100 nm. A test kit is provided for diagnosing skin health conditions such as normal, dry or dandruff comprising nanoparticles dispersion comprising at least three components selected from glucose, chloroauric acid, potassium hydroxide, sodium borohydride, and water. A method of diagnosing the skin health conditions comprising the steps of collecting the skin test sample and treatment with nanoparticle and measuring the color of test samples and diagnosing the skin dryness.
G01N 33/50 - Chemical analysis of biological material, e.g. blood, urineTesting involving biospecific ligand binding methodsImmunological testing
B82Y 15/00 - Nanotechnology for interacting, sensing or actuating, e.g. quantum dots as markers in protein assays or molecular motors
G01N 33/52 - Use of compounds or compositions for colorimetric, spectrophotometric or fluorometric investigation, e.g. use of reagent paper
A61B 10/00 - Instruments for taking body samples for diagnostic purposesOther methods or instruments for diagnosis, e.g. for vaccination diagnosis, sex determination or ovulation-period determinationThroat striking implements
89.
PROCESS FOR SURFACE TREATMENT OF PAPER AND PAPERBOARDS
Process for transferring a surface treatment formulation (210) onto a base paper is described. In one embodiment, the process comprises applying at least one layer of the surface treatment formulation (210) on a non-absorbent film (204) to form a treated substrate (218). The process further comprises transferring the surface treatment formulation (210) from the treated substrate (218) to the base paper (220), to make a treated base paper (226). Surface energy of the surface treatment formulation (210) is less than surface energy of the non-absorbent film (204) and surface energy of the base paper (220).
A powdered polymeric coating composition for coating liquid filled beads or capsules comprising modified cellulose, alkali salts of alginate, natural gum, starch, metal oxide, wherein said modified cellulose, alkali salts of alginate, natural gum, starch, metal oxide are present in amounts of 5 to 20%, 60 to 85%, 2 to 12%, 2 to 10%, 0.5 to 5% w/w by weight of the powdered polymeric coating composition and are mixed in ratios ranging from 0.5:8:0.5:0.25:0.1 to 2:15:2:2:1, preferably 1:8:2:0.25:0.1 to 1:12:1 :1:0.2. Also provided are methods for coating and preparing coating liquid filled beads or capsules with the powdered polymeric coating composition.
A deadlock mechanism (10) that comprises a bolt (40), moveable between a deployed configuration and a retracted configuration, a deadlock member (60) coupled to the bolt (40), and an actuator means (50,70). The deadlock member (60) is moveable relative to the bolt (40) to engage surrounding structure (34) and thereby resist movement of the bolt (40) from the deployed configuration. The actuator means (50,70) is moveable between a first position in which the deadlock member (60) is free to engage the surrounding structure (34) and a second position in which the actuator means (50,70) engages and retracts the deadlock member (60) from the surrounding structure (34), thereby allowing the bolt (40) to be moved to the retracted position. Movement of the bolt (40) between the deployed and retracted configuration is rotary.
06 - Common metals and ores; objects made of metal
09 - Scientific and electric apparatus and instruments
17 - Rubber and plastic; packing and insulating materials
Goods & Services
(1) Compression fittings of metal (other than parts of machines).
(2) Electricity conduits; sleeves, jackets and conduits for electrical conductors and cables; conduits for electrical conductors through walls; electrical cable sealing glands; feed through conduits.
(3) Packing, stopping and insulating materials made of metal and of non-metallic materials; glands, seals and gaskets for pipes; materials for jointing; insulators for cables; insulators for electrical cables; pipe jackets, joint packings; packing materials of rubber or plastics.
29 - Meat, dairy products, prepared or preserved foods
Goods & Services
Packaged and ready-to-serve curry meals consisting primarily of vegetables, cottage cheese, pulses, lentils and beans all prepared therefrom with an Indian cuisine