Illuminated liquid container cap
10899513 ยท 2021-01-26
Inventors
Cpc classification
F21V33/0004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21L4/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0464
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65D47/06
PERFORMING OPERATIONS; TRANSPORTING
Y02B20/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B65D1/02
PERFORMING OPERATIONS; TRANSPORTING
F21V23/0492
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0435
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65D47/42
PERFORMING OPERATIONS; TRANSPORTING
B65D51/248
PERFORMING OPERATIONS; TRANSPORTING
B65D41/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D51/24
PERFORMING OPERATIONS; TRANSPORTING
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21L4/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65D1/02
PERFORMING OPERATIONS; TRANSPORTING
B65D47/42
PERFORMING OPERATIONS; TRANSPORTING
F21V33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65D47/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Embodiments of an illuminated liquid container are disclosed herein. The illuminated liquid container can include a light source that, when activated, emits light, and a switch that activates the light source. Some embodiments of the illuminated liquid container include a bottle for holding a liquid and a cap through which the liquid can be passed.
Claims
1. A liquid container cap that is configured to engage a bottle and to provide a seal for the bottle, the liquid container cap comprising: a first end and a second end, the first end comprising a passageway that is configured to channel the liquid from the bottle and toward a surface that is outside of the bottle and outside of the cap, wherein the cap is configured to engage a portion of the bottle via connection mechanisms located at the second end, and wherein opening the passageway unseals the bottle; and a light source that is located at the first end, wherein the light source, when activated, emits light directed away from the second end and toward the surface that is outside of the bottle and outside of the cap.
2. The liquid container cap of claim 1, further comprising: a switch that is selectable to activate and deactivate the light source.
3. The liquid container of claim 2, further comprising: a battery that provides an electrical charge to the light source.
4. The liquid container cap of claim 1, further comprising a wireless networking device that is used to generate a notification when the liquid container cap is used.
5. The liquid container cap of claim 4, wherein the notification is used for compliance tracking.
6. A liquid container cap that is configured to engage the bottle and to provide a seal for the bottle, the liquid container cap comprising: a first end comprising a connection mechanism that is configured to engage a portion of the bottle; a second end comprising a passageway that is configured to channel the liquid from the bottle and toward a surface that is outside of the bottle and outside of the cap, wherein opening the passageway unseals the bottle; and a light source that is located at the first end, wherein the light source, when activated, is configured to emit light away from the second end and directed toward the surface that is outside of the bottle and outside of the cap.
7. The liquid container cap of claim 6, further comprising: a switch that is selectable to activate and deactivate the light source.
8. The liquid container cap of claim 7, further comprising: a battery that provides an electrical charge to the light source.
9. The liquid container cap of claim 6, further comprising a wireless networking device that is used to generate a notification when the liquid container cap is used.
10. The liquid container cap of claim 9, wherein the notification is used for compliance tracking.
11. The liquid container cap of claim 9, wherein the notification is used for billing for use of the liquid.
12. A liquid container cap comprising: a first end comprising a bottle connection mechanism; a second end comprising a passageway configured to channel a fluid from a liquid container toward a surface that is outside of the liquid container and outside of the liquid container cap, wherein opening the passageway unseals the liquid container; and a light source that is located at the first end, wherein the light source is configured to emit light away from the second end and to illuminate the surface that is outside of the bottle and outside of the cap.
13. The liquid container cap of claim 12, further comprising a photocell that is configured to deactivate the light source unless a low light condition is detected at the liquid container cap.
14. The liquid container cap of claim 12, further comprising: a switch that is selectable to activate and deactivate the light source.
15. The liquid container cap of claim 14, further comprising: a battery that provides an electrical charge to the light source.
16. The liquid container cap of claim 12, further comprising a wireless networking device that is used to generate a notification when the liquid container cap is used.
17. The liquid container cap of claim 16, wherein the notification is used for one of compliance tracking or for use of the liquid.
18. The liquid container cap of claim 12, further comprising a relay that is configured to deactivate the light source after a predefined time period passes after the light source is activated.
19. The liquid container cap of claim 12, further comprising a timer that is configured to deactivate the light source after a predefined time period passes after the light source is activated.
20. The liquid container cap of claim 12, further comprising an orientation sensor that is configured to activate the light source when the liquid container cap is oriented in an application position and to deactivate the light source when the liquid container cap is not oriented in the application position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) The following detailed description is directed to an illuminated liquid container or dispenser. In some embodiments, an illuminated liquid container contains a fluid. The illuminated liquid container can include a light source. The light source can be incorporated into the illuminated liquid container and/or a portion thereof such as a bottle or a cap. In some embodiments, the light source can be included in an illuminated liquid container, and in some embodiments, the light source can be included in a cap or other structure that can be retrofitted to an existing liquid container or other dispensing package.
(10) The illuminated liquid container can include a switch for activating and/or deactivating the light source. The functionality of the switch can be provided by an electrical switch, a photocell, an orientation sensor, and/or a combination thereof. Activation of the switch and/or other hardware such as photocells, orientation sensors, or the like, can result in activation of the light source. Thus, the illuminated liquid container can be activated to illuminate the liquid and/or a surface to which the liquid is applied. These and other embodiments of the concepts and technologies described herein will be illustrated and described in detail below.
(11) In the following detailed description, references are made to the accompanying drawings that form a part hereof, and in which are shown by way of illustration specific embodiments or examples. It must be understood that the disclosed embodiments are merely illustrative of the concepts and technologies disclosed herein. The concepts and technologies disclosed herein may be embodied in various and alternative forms, and/or in various combinations of the embodiments disclosed herein. The word illustrative, as used in the specification, is used expansively to refer to embodiments that serve as an illustration, specimen, model or pattern.
(12) Additionally, it should be understood that the drawings are not necessarily to scale, and that some features may be exaggerated or minimized to show details of particular components. In other instances, well-known components, systems, materials or methods have not been described in detail in order to avoid obscuring the present disclosure. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art to variously employ the present disclosure. Referring now to the drawings, in which like numerals represent like elements throughout the several figures, aspects of illuminated liquid containers will be presented.
(13) Turning to
(14) As in
(15) In the illustrated embodiment, the cap 108 includes a nozzle or other passageway 110 through which liquid held by the bottle 102 passes. The passageway 110 can include a rotating cap portion that is pivotally attached to the cap 108, whereby opening the passageway 110 can unseal the illuminated liquid container 100, as is sometimes used with shampoo bottles, or the like. In the illustrated embodiment, the cap 108 can also include an electrical or mechanical switch 112. The switch 112 can be activated or deactivated to activate or deactivate a light source 114 such as an LED, a light bulb, combinations thereof, or the like. Thus, although not visible in
(16) Turning now to
(17) In the embodiment shown in
(18) Turning now to
(19) In some embodiments, the column is formed as a hollow cylinder of plastic, glass, acrylic, or the like, and a light source 204 can be located at one end of the illumination column 300, at more than one location within the illumination column 300, and/or elsewhere within the illuminated liquid container. In the embodiment illustrated in
(20) Turning now to
(21) Although not visible in
(22) The bottle 102 or other container portion of the illuminated liquid container 100 can be formed from almost any type of material. For example, the bottle 102 can be formed from various plastics or other polymers such as, for example, plastics, thermoplastics, glasses, acrylics, composites, polymers, metals, woods, combinations thereof, or the like. The cap 108 of the illuminated liquid container 100 can be formed from a clear or translucent material. The cap also can be formed from an opaque material, if desired. In some embodiments, a dispensing end of the cap 108 can be clear or translucent to allow the light emitted by the light source 114/204 to illuminate a site at which the liquid is applied. The cap 108 can be formed from various materials and/or combinations thereof including, but not limited to, plastics, thermoplastics, glasses, acrylics, composites, polymers, metals, woods, combinations thereof, or the like.
(23) In some embodiments, the dispensing end of the container has a rocker type dispensing structure and/or a switch for activating the device, which can be located at the dispensing end of the container as noted above with reference to
(24) In some other embodiments, a switch for activating the illumination device can be located at the bottom of the illuminated liquid container 100 with the light source 204 as shown in
(25) Turning to
(26) Turning to
(27) In various embodiments of the concepts and technologies described herein, light emitted by the various light sources 114/204 can be colored for various effects, for example, for low light conditions. Thus, the light can be red, for example. The light also can be blue, green, yellow, white, purple, and/or almost any other desired color or combination of colors. In some embodiments, for example, the light source 114/204 can be configured to cycle colors, to pulse on and/or off, or the like. In one contemplated embodiment, the light device is incorporated into a personal lubricant container, and the light is cycled and/or pulsed through various colors for desired effects. It should be understood that this embodiment is illustrative, and should not be construed as being limiting in any way.
(28) The dispensing device can include a nozzle for precision aiming of the liquid and the illumination device can be within the cap and refracted and/or reflected into or through the nozzle itself. For example, the dispensing end and the nozzle can be formed from a material that can refract light and aims the light toward the area at which the liquid is being dispensed. An example of this is shown in
(29) Combinations of the various embodiments disclosed herein are contemplated and are possible. For example, in some embodiments the switch for the illumination device is located at the bottom of the dispensing containers and the illumination device is located at the top, or vice versa. In some embodiments, the bottle itself is illuminated and ambient light generated by the illumination device can be used to illuminate the area at which the liquid is applied instead of aiming or directing the light to or through the liquid of dispensing end. Thus liquids can be aimed in dark environments or dark places without using an external light source. All embodiments can be combined, if desired, and/or interchanged with one another.
(30) Turning now to
(31) It also should be understood that the method 800 disclosed herein can be ended at any time and need not be performed in its entirety. Some or all operations of the method 800, and/or substantially equivalent operations, can be performed by execution of computer-readable instructions included on a computer storage media instead of, or in addition to, a logic or controller as discussed herein. The term computer-readable instructions, and variants thereof, as used herein, is used expansively to include routines, applications, application modules, program modules, programs, components, data structures, algorithms, and the like. Computer-readable instructions can be implemented on various system configurations including single-processor or multiprocessor systems, minicomputers, mainframe computers, personal computers, hand-held computing devices, microprocessor-based, programmable consumer electronics, combinations thereof, and the like.
(32) Thus, it should be appreciated that the logical operations described herein are implemented (1) as a sequence of computer implemented acts or program modules running on a computing system and/or (2) as interconnected machine logic circuits or circuit modules within a computing system and/or other hardware such as the cap 108 disclosed herein. The implementation is a matter of choice dependent on the performance and other requirements of the computing system. Accordingly, the logical operations described herein are referred to variously as states, operations, structural devices, acts, or modules. These states, operations, structural devices, acts, and modules may be implemented in software, in firmware, in special purpose digital logic, by electrical/mechanical logic, and/or combination thereof. For purposes of illustrating and describing one contemplated embodiment of the illuminated liquid container, operations of the method 800 are described as being performed by the controller 700. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way.
(33) Flow of the method 800 begins at operation 802, wherein the controller 700 determines if a switch is on or off. It should be understood that the controller 700 may not truly determine that the switch is on or off. Rather, the logic flow illustrated by the method 800 may be initiated by powering of the logic by turning the switch on. Because it is possible for processor and memory to provide the operations illustrated and described in
(34) If the controller 700 determines, in operation 802, that the switch is not on, flow of the method 800 can end. If the controller 700 determines, in operation 802, that the switch is on, flow of the method 800 can proceed to operation 804.
(35) In operation 804, the controller 700 can determine if a low-light condition exists at the bottle 102 and/or the illuminated liquid container 100. In some embodiments, the controller 700 can determine, for example, that a photocell 704 (if included) is true or false. According to some embodiments, the photocell 704 can be considered true if the photocell 704 is activated. In some other embodiments, the photocell 704 can be considered true if the photocell 704 is deactivated. In other words, the controller 700 can consider the photocell 704 to be on or off in low-light conditions (though the photocell 704 may in actuality be deactivated in low-light conditions). If the controller 700 determines, in operation 804, that a low-light condition does not exist at the bottle 102 and/or the illuminated liquid container 100, e.g., that a high-light or other than low-light condition exists, flow of the method 800 can end. If the controller 700 determines, in operation 804, that a low-light condition exists, flow of the method 800 can proceed to operation 806.
(36) In operation 806, the controller 700 can determine if the bottle 102 and/or the illuminated liquid container 100 is tilted. According to some embodiments, the controller 700 can determine that the bottle 102 and/or the illuminated liquid container 100 is tilted based upon a reading and/or state associated with an orientation sensor 706 or other device. If the controller 700 determines, in operation 806, that the bottle 102 and/or the illuminated liquid container 100 is not tilted, flow of the method 800 can end. If the controller 700 determines, in operation 806, that the bottle 102 and/or the illuminated liquid container 100 is tilted, flow of the method 800 can proceed to operation 808.
(37) Based upon the above description of the various embodiments of the concepts and technologies described herein, it should be understood that operations 802, 804, and/or 806 can be omitted in various embodiments. Thus, some embodiments of the illuminated liquid container 100 may include only a switch 112/202, only a photocell 704, and/or only an orientation sensor 706. Some other embodiments of the concepts and technologies described herein include two or more of the switch 112/202, the photocell 704, and the orientation sensor 706. As such, the method 800 can omit zero, one, or two of the operations 802-806. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way.
(38) In operation 808, the controller 700 can activate the light source 114/204. In some embodiments, the controller 700 can be configured to start a counter or timer when the light source 114/204 is activated. In some other embodiments, activation of the light source 114/204 can trigger a relay. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way. From operation 808, flow of the method 800 can proceed to operation 810.
(39) In some embodiments, the controller 700 can generate a communication at operation 808, at operation 810, between operations 808 and 810, and/or at other times. As explained below, the communication can indicate that the illuminated liquid container 100 has been used. This communication can include an alert, a notification, and/or other type of communication, and can be used for compliance tracking, for billing purposes (e.g., tracking use of an ointment or medication in the illuminated liquid container 100), generating social networking updates (e.g., indicating use of the illuminated liquid container 100), tracking other activities (as explained below), combinations thereof, or the like. Because the communication described herein may not be generated and/or because the communication may be generated at almost any time, it should be understood that the illustrated embodiment is illustrative and therefore should not be construed as being limiting in any way.
(40) In operation 810, the controller 700 can determine if the switch 112/202 is turned off. If the controller 700 determines, in operation 810, that the switch is turned off, flow of the method 800 can proceed to operation 812. In operation 812, the light source 114/204 can be deactivated and flow of the method 800 can end. If the controller 700 determines, in operation 810, that the switch is not turned off, flow of the method 800 can proceed to operation 814.
(41) In operation 814, the controller 700 can determine if a low light condition exists at the bottle 102 and/or the illuminated liquid container 100. In some embodiments, the controller 700 can determine, for example, that a photocell 704 (if included) is true or false. According to some embodiments, the photocell 704 can be considered true if the photocell 704 is activated. In some other embodiments, the photocell 704 can be considered true if the photocell 704 is deactivated. In other words, the controller 700 can consider the photocell 704 to be on or off in low-light conditions (though the photocell 704 may in actuality be deactivated in low-light conditions). If the controller 700 determines, in operation 814, that a low-light condition does not exist at the bottle 102 and/or the illuminated liquid container 100, e.g., that a high-light or other than low-light condition exists, flow of the method 800 can proceed to operation 812, wherein the light source 112/202 is deactivated, and flow of the method 800 can end. If the controller 700 determines, in operation 814, that the low-light condition exists, flow of the method 800 can proceed to operation 816.
(42) In operation 816, the controller 700 can determine if the bottle 102 and/or the illuminated liquid container 100 is tilted. According to some embodiments, the controller 700 can determine that the bottle 102 and/or the illuminated liquid container 100 is tilted based upon a reading and/or state of an orientation sensor 706. If the controller 700 determines, in operation 816, that the bottle 102 and/or the illuminated liquid container 100 is not tilted, flow of the method 800 can proceed to operation 812, wherein the light source 112/202 can be deactivated and flow of the method 800 can end. If the controller 700 determines, in operation 816, that the bottle 102 and/or the illuminated liquid container 100 is tilted, flow of the method 800 can proceed to operation 818.
(43) In operation 818, the controller 700 can determine if a timer or relay has expired. If the controller 700 determines, in operation 818, that the timer or relay has expired, flow of the method 800 can proceed to operation 812, wherein the light source 112/202 can be deactivated and flow of the method 800 can end. If the controller 700 determines, in operation 818, that the timer or relay has not expired, flow of the method 800 can return to operation 810. Thus, execution of the method 800 can repeat until the controller 700 determines, in any iteration of operations 810-818, that a condition for deactivating the light source 112/202 is satisfied. It should be understood that these examples are illustrative and therefore should not be construed as being limiting in any way.
(44) Based upon the above description of the various embodiments of the concepts and technologies described herein, it should be understood that one or more of the operations 810-818 can be omitted in various embodiments. Thus, some embodiments of the illuminated liquid container 100 may include only a switch 112/202, only a photocell 704, and/or only an orientation sensor 706, and may include and/or omit a timer or relay. Some other embodiments of the concepts and technologies described herein include two or more of the switch 112/202, the photocell 704, the orientation sensor 706, and/or the timer/relay (which can be provided by logic and/or programs included in the controller 700, if desired). As such, the method 800 can omit zero, one, two, and/or three of the operations 810-818. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way.
(45) Although not visible in the drawings, it should be understood that some embodiments of the concepts and technologies described herein include various power sources such as inductance coils for charging a battery or capacitor when the illuminated liquid container 100 is moved, one or more solar cells for charging a batter or capacitor when the illuminated liquid container 100 is exposed to light, combinations thereof, or the like. Thus, the some embodiments of the concepts and technologies described herein can support extended battery life and/or can support embodiments that operate without batteries. It should be understood that these examples are illustrative and therefore should not be construed as being limiting in any way.
(46) According to some contemplated embodiments of the concepts and technologies described herein, the illuminated liquid container 100 and/or a portion thereof (e.g., the cap 108) can include a wireless networking device such as a WiFi transceiver, a Bluetooth transceiver, or the like (labeled 710 in
(47) In another contemplated embodiment, the illuminated liquid container 100 contains a personal lubricant or other fluid that may be used during intercourse. Thus, uses of the illuminated liquid container 100 can be tracked to track activities of a couple in attempting to conceive, for example. Thus, use of the illuminated liquid container 100 can be used as part of treatment for infertility, during marriage counseling, or the like. Tracking activity may be helpful in detecting trends, increasing the odds of conception (e.g., in combination with other methods for forecasting ovulation), or the like. It should be understood that this example embodiment is illustrative and therefore should not be construed as being limiting in any way.
(48) The tracking also can be used for compliance tracking, in some embodiments. Thus, for example, if the illuminated liquid container 100 contains a medication, the use of the illuminated liquid container 100 can indicate that the patient has taken or used the medication. This information can be used by healthcare personnel or other entities to determine compliance with a prescribed treatment and/or regimen. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way.
(49) The tracking also can be used for billing. For example, if the illuminated liquid container 100 contains an ointment, medication, or the like, the use of the illuminated liquid container 100 can be a billable event at a hospital or other healthcare facility. Similarly, if the illuminated liquid container 100 contains vehicle lubricants or additives (or the like), the use of the illuminated liquid container 100 can be a billable event at a mechanic's shop, garage, or the like. Thus, use of the illuminated liquid container 100 can prompt an alert, notification, or other communication that can be used to generate a bill or invoice (or billing event). In a hospital, for example, use of the illuminated liquid container 100 may be logged and billed to a patient. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way.
(50) The ability to detect use of the illuminated liquid container 100 can be used for other purposes. For example, after a specified number of uses (which can be tracked not only by activation of the light source 114, but also via orientation of the illuminated liquid container 100 or the like), the illuminated liquid container 100 can trigger a purchase of another illuminated liquid container 100, a new power source (e.g., a battery), refilling of the illuminated liquid container 100, or the like. It should be understood that these examples are illustrative and therefore should not be construed as being limiting in any way.
(51) In one contemplated embodiment of the concepts and technologies described herein, the illuminated liquid container 100 can be used in hospitals. In one specific embodiment, the illuminated liquid container 100 can be used at night by doctors, nurses, technicians, or the like to apply liquids and/or other fluids without requiring another light source (e.g., an overhead light, a flashlight, or the like). Thus, for example, healthcare personnel may use an embodiment of the illuminated liquid container 100 to dispense oral medications, ointments, anesthetics, and/or other fluids to children without turning lights on and/or interfering with a patient's sleep. It should be understood that this example is illustrative and therefore should not be construed as being limiting in any way.
(52) In yet another contemplated embodiment, the illuminated liquid container 100 can correspond to a baby bottle that can be illuminated in low light conditions to facilitate feedings. Thus, for example, the light source 114 can be activated to provide light at or near a nipple, which can be one embodiment of the cap 108. Such an embodiment can be used to minimize interruptions to parents' and/or a baby's sleep during feedings. It should be understood that these examples are illustrative and therefore should not be construed as being limiting in any way.
(53) Based on the foregoing, it should be appreciated that embodiments of an illuminated liquid container have been disclosed herein. Although the subject matter presented herein has been described in conjunction with one or more particular embodiments and implementations, it is to be understood that the embodiments defined in the appended claims are not necessarily limited to the specific structure, configuration, or functionality described herein. Rather, the specific structure, configuration, and functionality are disclosed as example forms of implementing the claims.
(54) The subject matter described above is provided by way of illustration only and should not be construed as limiting. Various modifications and changes may be made to the subject matter described herein without following the example embodiments and applications illustrated and described, and without departing from the true spirit and scope of the embodiments, which is set forth in the following claims.