Portable warming blender
12478937 ยท 2025-11-25
Inventors
Cpc classification
B01F33/4532
PERFORMING OPERATIONS; TRANSPORTING
B01F35/3213
PERFORMING OPERATIONS; TRANSPORTING
B01F35/2205
PERFORMING OPERATIONS; TRANSPORTING
B01F35/3204
PERFORMING OPERATIONS; TRANSPORTING
B01F33/5011
PERFORMING OPERATIONS; TRANSPORTING
B01F33/86
PERFORMING OPERATIONS; TRANSPORTING
B01F33/5014
PERFORMING OPERATIONS; TRANSPORTING
B01F35/93
PERFORMING OPERATIONS; TRANSPORTING
B01F2101/14
PERFORMING OPERATIONS; TRANSPORTING
B01F27/808
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01F35/93
PERFORMING OPERATIONS; TRANSPORTING
B01F27/808
PERFORMING OPERATIONS; TRANSPORTING
B01F33/501
PERFORMING OPERATIONS; TRANSPORTING
B01F35/221
PERFORMING OPERATIONS; TRANSPORTING
B01F35/222
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A portable warming blender includes a base assembly with a recessed portion; a temperature control system; a detachable agitator rotatably mounted on an axle extending longitudinally into the recessed portion; an electric motor; a rechargeable power system; and a controller. The base assembly includes a housing with a cylindrical sidewall, housing the motor, the power system, and the controller. An inner surface of the recessed portion is threaded. The temperature control system includes a temperature sensor and a heating element. The temperature sensor is mounted adjacent to the axle. The heating element heats the recessed portion. The motor is magnetically coupled with the agitator. The rechargeable power system includes a rechargeable battery and a charging port. The controller selectively transmits power to the temperature control system and the motor from the power system when an operating mode is selected. The blender warms, blends, or both in one device anywhere, anytime.
Claims
1. A portable warming blender, comprising: a base assembly including a housing with a cylindrical sidewall and a recessed portion, wherein an inner surface of the recessed portion is threaded and configured for receipt of a baby bottle; a whisk post extending longitudinally into the recessed portion, the whisk post extending to form four evenly spaced, parallel, rounded protrusions at one end, disposed at 90 intervals; a temperature control system including a temperature sensor and a heating element, the temperature sensor being mounted adjacent to the whisk post, the heating element being in thermal communication with the recessed portion of the housing; a detachable blending foil consisting essentially of a first substantially rectangular prismatic member and a second substantially rectangular prismatic member rotatably and detachably mounted on the whisk post, wherein the detachable blending foil is configured to homogenize liquid and a particular substance into a uniform suspension while minimizing air bubble formation and stratification, wherein each of the first substantially rectangular prismatic member and the second substantially rectangular prismatic member includes an opposing curved surface, and wherein the four evenly spaced, parallel, rounded protrusions of the whisk post are configured to enable the detachable blending foil to mechanically engage in a releasable interference fit with a complementary structure of the detachable blending foil; an electric motor mounted within the housing, the electric motor being magnetically coupled with the detachable blending foil, wherein the electric motor is coaxially aligned with the whisk post and magnetically drives the blending foil through an axial magnetic coupling housed within the base assembly; a rechargeable power system mounted within the housing, comprising a rechargeable battery electrically communicating with a charging port within the cylindrical sidewall; and a controller operative to selectively transmit power to the temperature control system and the electric motor from the rechargeable power system upon receipt of an operating mode selection.
2. The portable warming blender of claim 1, further comprising a detachable storage compartment threadedly coupled with the housing distal to the recessed portion.
3. The portable warming blender of claim 1, further comprising an adapter operative to couple the recessed portion of the base assembly with a mouth of the baby bottle.
4. The portable warming blender of claim 1, wherein the base assembly is to fit into a cup holder configured to facilitate use during travel and prevent device tipping.
5. The portable warming blender of claim 1, further comprising a strap attached to the base assembly.
6. The portable warming blender of claim 1, wherein the controller further comprises a network interface card.
7. The portable warming blender of claim 1, wherein the cylindrical sidewall further comprises a display electrically communicating with the temperature sensor and operative to display a temperature sensed by the temperature sensor.
8. The portable warming blender of claim 1, further comprising at least one switch operative to power on the portable warming blender and operative to transmit a selected operating mode to the controller.
9. The portable warming blender of claim 1, further comprising a lid removably attached to the recessed portion of the housing.
10. The portable warming blender of claim 1, wherein the inner surface of the recessed portion is configured to threadedly attach to the baby bottle such that the whisk post and the detachable blending foil extend a predetermined distance into the baby bottle.
11. The portable warming blender of claim 1, wherein the detachable blending foil consists of a pair of circularly shaped magnets.
12. The portable warming blender of claim 1, wherein the electric motor turns a pair of circularly shaped magnets configured for magnetically coupling with the detachable blending foil.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(6) The following detailed description is of the best currently contemplated modes of carrying out exemplary embodiments of the invention. The description is not to be taken in a limiting sense but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims.
(7) Broadly, one embodiment of the present invention is a portable, rechargeable, and temperature-controlled device for blending and warming baby formula or breast milk in baby bottles.
(8) The inventive blender includes all bottle-making components and rapid, timed, temperature-controlled warming and thorough blending capabilities in one device for at home or on-the-go use anywhere, anytime, including in the car and stroller. The device is reliable, convenient, efficient, portable, and lightweight, with a storage component to keep formula ready for use. This rechargeable and portable blender enables a user to rapidly warm, to rapidly blend, or to rapidly warm and blend simultaneously. The bottle is properly blended with temperature control, resulting in minimal bubbles, and without chunks that may lead to health problems for baby.
(9) The blender may have a base assembly that serves as a housing for blending and heating components. The base is preferably shaped and dimensioned to fit into cup-holders in cars, strollers, etc.
(10) The blender may have a temperature control system comprising a computer, or controller, in the base that monitors a temperature sensor, alerting the user once the liquid is heated to a temperature selected by the user, such as 98.6 degrees Fahrenheit. The computer may also provide a timer to alert the user when the liquid is homogenized.
(11) The device may have a detachable agitator, such as a blade or whisk, on an axle, said whisk being spinnable by the computer in the base for a predetermined period, e.g., until the liquid is homogenized or homogenized and warmed. The computer may be controlled by selecting a setting on a computer control panel using, e.g., blend or blend/warm buttons to indicate the user's operating mode selection. Upon receipt of the selected operating mode, the computer selectively activates one or both the heating element and the whisk. The whisk is effective to thoroughly mix baby formula without any bubbles.
(12) A lid may removably close the device when a bottle is not present.
(13) The device may be recharged with a universal serial bus (USB) cord coupled with a built in USB charging port. The charging port enables users to utilize the device in a portable manner and enables the device to work for several hours, depending on usage. The user may charge the device beforehand or may charge the device on location to ensure the device is always available for use. The computer may have an indicator to alert the user of the charging status (in progress/complete). Once charged, the lid of the mechanism may be opened.
(14) In some embodiments, the blender may have an adapter to fit various bottle sizes, operative to couple the bottle to the base assembly.
(15) In some embodiments, instead of setting the device on top of the bottle with the mixing element toward the bottom, and flipping the device over for operation, a portable whisk device with a heating element may be configured to be operated on top of the bottle.
(16) In some embodiments, the device may further comprise a carrying strap.
(17) In some embodiments, the device may have wireless connectivity with a network interface card and a computer application loaded, for example, on the user's smartphone, to enable users to track feedings and other information for baby, including alerting the user once the bottle is ready or reminding the user of feedings.
(18) In some embodiments, the device may have a detachable storage compartment that twists onto the bottom of the base opposite the attachment point for the whisk. The user may put formula powder in the storage component, reducing the number of items to carry for making the bottle.
(19) The materials of manufacture are not particularly limited provided that the device may be cleaned quickly and efficiently for repeated use. The inside of the base where the liquid mixes is preferably a metal or rubber material easily cleaned. The whisk is preferably a rubber material as well. The components are preferably bisphenol A (BPA)-free.
(20) The device is not limited to use with baby formula and may be used to mix and/or warm any suitable liquid, powder, or solid substance. The inventive device may blend a liquid, warm a liquid, or blend and warm at the same time, eliminating additional cumbersome components of bottle preparation. To blend and warm a liquid, a user may fill a baby bottle with a predetermined water/formula ratio, e.g., using formula from the storage component; place the whisk on the axle; place the blender base on top of the bottle with the whisk inside the bottle, using an adapter in some cases; twist the device to tighten; and invert the entire assembly. The user may select the blend and warm setting; the device indicates when the blending and warming is complete. The user may then invert the assembly such that the bottle is right side up; unscrew the blender from the bottle and wipe the device clean. To warm a liquid, the steps above may be followed without attaching the whisk and selecting the warming setting. To blend a liquid, the steps above may be followed including attaching the whisk and the user may select the blending setting.
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(22) As shown in
(23) A cord with a USB plug 34 may be inserted into the USB charging port 18 to charge the batteries 36, as shown in
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(25) It should be understood, of course, that the foregoing relates to exemplary embodiments of the invention and that modifications may be made without departing from the spirit and scope of the invention as set forth in the following claims.