IP Library Granted Patent US 12,629,443
Granted Patent B2
US 12,629,443 · App. 19/010,497 · Granted May 19, 2026

Scent dispenser with modular drum

Inventors: Avner Gal (Herzliya, IL); Uzi Malimovka (Givat Shmuel, IL)
Assignee: iRoma Scents A.B. Ltd.
A61L9/14A61L2209/11A61L2209/133A61L2209/134
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Quick Facts
Patent No.
US 12,629,443
App. No.
19/010,497
Granted
May 19, 2026
Kind
B2
Abstract

A modular scent dispenser may include a drum with chambers that can be inserted into the drum. The chambers may contain different scent essence fluids in order to disperse different scents, and may include mechanical components such as pumps and actuators in order to effectuate scent dispensing. The drum and chambers may be inserted into a housing, which in turn may include motors and other mechanical components for use in actuating the actuators and rotating the drum in order to enable dispensing scents of choice. The scent dispenser including such drum, chambers, and housing may further include computing components such as a scanner in order to scan machine-readable and writeable tags, which may be utilized to determine positions of compartments in the drum and/or scent essences disposed in chambers.

Claims (33)

1 . An assembly, comprising:

a housing;

a platform disposed in the housing;

a drum disposed on the platform, the drum having a tray defining a plurality of compartments, wherein at least one first compartment of the plurality of compartments is adapted to receive a respective chamber of a plurality of chambers;

a first motor, wherein the first motor is connected to the platform;

a second motor, wherein the second motor is adapted to connect to a plurality of actuators of the plurality of chambers, wherein each chamber of the plurality of chambers defines a cavity, wherein each chamber of the plurality of chambers includes a nozzle connected to a pump, wherein the pump of each chamber includes one of the plurality of actuators and is in fluid connection with the cavity of the chamber, wherein each actuator of the plurality of actuators has a corresponding actuator port; and

a controller communicatively connected to the motor, the controller including a processing circuitry and a memory, wherein the controller is configured to provide a first set of input signals to the first motor in order to cause the first motor to engage the drum, wherein the platform rotates when engaged by the first motor, wherein the controller is further configured to provide a second set of input signals to the second motor in order to cause the second motor to engage actuators among the plurality of actuators, wherein the second motor causes the actuator of a first chamber of the plurality of chambers to move in order to exert force on the fluid in the cavity defined in the first chamber, wherein the exertion of force on the fluid in the cavity defined in the first chamber causes the fluid to be ejected via the actuator port of the actuator and through the pump and nozzle.

2 . The assembly of claim 1 , further comprising:

the plurality of chambers, wherein each chamber of the plurality of chambers is disposed in a compartment of the plurality of compartments, wherein each chamber of the plurality of chambers includes a casing defining the cavity of the chamber adapted to store a respective fluid of a plurality of fluids.

3 . The assembly of claim 2 , wherein fluid in the cavity of each chamber is ejected from the cavity and exits the chamber through the nozzle of the chamber when the force is exerted on the fluid in the cavity of the chamber.

4 . The assembly of claim 3 , wherein the pump of each chamber includes a respective actuator of the plurality of actuators that is in fluid connection with the cavity of the chamber such that movement by the actuator of the pump of the chamber exerts force on the fluid in the cavity of the chamber.

5 . The assembly of claim 4 , wherein the actuator of the pump of each chamber has a top portion defining a slot and a fin disposed in the slot defined in the top portion.

6 . The assembly of claim 2 , wherein each chamber of the plurality of chambers further includes a valve, wherein the valve of each chamber is fluidly connected to the cavity of the chamber.

7 . The assembly of claim 2 , wherein the tray defines a plurality of holes, wherein the casing of each cavity further includes a snap member, wherein the snap member of each chamber is configured to lock into one of the plurality of holes of the tray in order to lock the chamber in place within the tray.

8 . The assembly of claim 2 , wherein each chamber has a machine-readable marker disposed thereon, further comprising:

a scanner, wherein the scanner is configured to scan the machine-readable marker disposed on each chamber, wherein the controller is further configured to determine a scent essence of each chamber by scanning the machine-readable marker disposed on the chamber.

9 . The assembly of claim 2 , wherein the casing of each chamber defines a depression adapted to receive a machine-readable marker of a plurality of machine-readable markers, further comprising:

a scanner, wherein the scanner is configured to scan the plurality of machine-readable markers, wherein the controller is further configured to determine a scent essence of each chamber by scanning the plurality of machine-readable markers.

10 . The assembly of claim 2 , wherein the casing of each chamber further includes a first portion and a second portion, wherein the cavity of each chamber is defined in the first portion of the chamber, wherein the first portion of each chamber has a top side, wherein the second portion of each chamber extends from the top side of the first portion of the chamber.

11 . The assembly of claim 10 , wherein the second portion of the casing of each chamber has a first curved wall and a second curved wall.

12 . The assembly of claim 2 , wherein the housing defines an aperture, wherein the controller is further configured to:

cause rotation of the tray until a first chamber of the plurality of chambers is aligned with the aperture of the housing; and

cause fluid to be dispensed from the first chamber through the aperture of the housing by providing the input signals to the motor when the first chamber is aligned with the aperture of the housing.

13 . The assembly of claim 1 , wherein the plurality of compartments includes the at least one first compartment and a second compartment, wherein each of the at least one first compartment has a bottom end defining at least one aperture, wherein the second compartment has a bottom end which lacks an aperture.

14 . The assembly of claim 13 , wherein the second compartment has a machine-readable marker disposed thereon, further comprising:

a scanner, wherein the scanner is configured to scan the machine-readable marker disposed on the second compartment, wherein the controller is further configured to determine a type of the drum by scanning the machine-readable marker disposed on the second compartment.

15 . The assembly of claim 1 , wherein the plurality of compartments includes the at least one first compartment and a second compartment, the second compartment has a set of side walls and at least one rib, wherein each rib is disposed on one of the side walls of the set of side walls.

16 . A method for dispensing scents, comprising:

causing a drum to rotate until a first chamber of a plurality of chambers is aligned with an aperture defined in a housing by providing a first set of input signals to a first motor of an assembly; wherein the assembly includes a housing defining the aperture, a platform disposed in the housing, a drum disposed on the platform, the first motor, a second motor, and the plurality of chambers; wherein the drum has a tray defining a plurality of compartments; wherein each chamber of the plurality of chambers is disposed in a compartment of the plurality of compartments; wherein each chamber of the plurality of chambers includes a casing defining a cavity adapted to store a respective fluid of a plurality of fluids; wherein each chamber of the plurality of chambers further includes a nozzle connected to a pump; wherein the pump of each chamber includes a respective actuator of a plurality of actuators; wherein the pump of each chamber is in fluid connection with the cavity of the chamber; wherein each actuator of the plurality of actuators has a corresponding actuator port; and

causing the actuator of the pump of the first chamber of the plurality of chambers to exert force on the pump of the first chamber when the first chamber is aligned with the aperture defined in the housing by providing a second set of input signals to the second motor; wherein the second motor is connected to the plurality of actuators of the plurality of chambers; wherein fluid in the cavity of each chamber is ejected from the cavity and exits the chamber through the nozzle of the chamber when force is exerted on the fluid in the cavity of the chamber, wherein the second motor causes the actuator of a first chamber of the plurality of chambers to move in order to exert force on the fluid in the cavity defined in the first chamber, wherein the exertion of force on the fluid in the cavity defined in the first chamber causes the fluid to be ejected via the actuator port of the actuator and through the pump and nozzle.

17 . A non-transitory computer-readable medium having stored thereon instructions for causing a processing circuitry to execute a process, the process comprising:

causing a drum to rotate until a first chamber of a plurality of chambers is aligned with an aperture defined in a housing by providing a first set of input signals to a first motor of an assembly; wherein the assembly includes a housing defining the aperture, a platform disposed in the housing, a drum disposed on the platform, the first motor, a second motor, and the plurality of chambers; wherein the drum has a tray defining a plurality of compartments; wherein each chamber of the plurality of chambers is disposed in a compartment of the plurality of compartments; wherein each chamber of the plurality of chambers includes a casing defining a cavity adapted to store a respective fluid of a plurality of fluids; wherein each chamber of the plurality of chambers further includes a nozzle connected to a pump; wherein the pump of each chamber includes a respective actuator of a plurality of actuators; wherein the pump of each chamber is in fluid connection with the cavity of the chamber; wherein each actuator of the plurality of actuators has a corresponding actuator port; and

causing the actuator of the pump of the first chamber of the plurality of chambers to exert force on the pump of the first chamber when the first chamber is aligned with the aperture defined in the housing by providing a second set of input signals to the second motor; wherein the second motor is connected to the plurality of actuators of the plurality of chambers; wherein fluid in the cavity of each chamber is ejected from the cavity and exits the chamber through the nozzle of the chamber when force is exerted on the fluid in the cavity of the chamber, wherein the second motor causes the actuator of a first chamber of the plurality of chambers to move in order to exert force on the fluid in the cavity defined in the first chamber, wherein the exertion of force on the fluid in the cavity defined in the first chamber causes the fluid to be ejected via the actuator port of the actuator and through the pump and nozzle.

Continuity (2)
Provisional Application 63618736 · Jan 8, 2024
Related Publication 20250222156A1 · Jul 10, 2025
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