Method and apparatuses for providing a selectable beverage

Information

  • Patent Grant
  • 10046959
  • Patent Number
    10,046,959
  • Date Filed
    Friday, August 22, 2014
    9 years ago
  • Date Issued
    Tuesday, August 14, 2018
    5 years ago
Abstract
Methods and apparatuses for providing a selectable beverage from a post-mix beverage dispenser are provided. In one embodiment, the method for providing a beverage having a separately selected color from a post-mix beverage dispensing system comprises: (a) providing at least two beverage bases for dispense from the post-mix beverage dispensing system; (b) separately storing at least two colorants in the post-mix beverage dispensing system; (c) receiving a request for a selected beverage base and the separately selected color with a computer processor; and (d) in response to the selection of the selected beverage base and the separately selected color, automatically dispensing through a single faucet of the post-mix beverage dispensing system, continuously in a predetermined ratio for any volume of the beverage dispensed, the selected beverage base and at least one of the colorants to provide the beverage having the separately selected color.
Description
TECHNICAL FIELD

The present invention relates to methods and apparatuses for providing a selectable beverage.


BACKGROUND OF THE INVENTION

In various applications, products are produced with a particular color and/or flavor. For example, there are a number of beverage dispensing systems in which flavors containing colorants are added. Generally, the color of the beverage is directly linked to the flavor or flavors added to the beverage such as dark brown for cola. For manufacturers, the option to produce a specific beverage having a variety of flavors and/or colors is unavailable or burdensome, thereby limiting the specific product to only one flavor and one color. For users, the variety of selection is limited by the beverage provided by the manufacturer.


Therefore, it would be desirable to provide a beverage in a manner that employs minimum burden and yet provides more options for the coloring and/or flavoring of the beverage. More particularly, it would be desirable to provide a beverage wherein the color of the beverage is not essentially linked to the flavor of the beverage. In addition, it would be desirable to provide more options for mixing beverages based on a user's individual preference. Moreover, it would be desirable to allow the user to select the option of have a random beverage provided.


SUMMARY OF THE INVENTION

In one aspect, the present invention relates to a method for providing a beverage having a separately selected color from a post-mix beverage dispensing system comprising: (a) providing at least two beverage bases for dispense from the post-mix beverage dispensing system; (b) separately storing at least two colorants in the post-mix beverage dispensing system; (c) receiving a request for a selected beverage base and the separately selected color with a computer processor; and (d) in response to the selection of the selected beverage base and the separately selected color, automatically dispensing through a single faucet of the post-mix beverage dispensing system, continuously in a predetermined ratio for any volume of the beverage dispensed, the selected beverage base and at least one of the colorants to provide the beverage having the separately selected color.


In another aspect, the present invention relates to a method for providing a beverage from a post-mix beverage dispensing system comprising: (a) providing at least two beverages for dispense from the post-mix beverage dispensing system; (b) providing a user interface for user interactions with a computer processor; (c) presenting via the user interface a choice of one of the beverages or a blended beverage, wherein the blended beverage comprises at least two of the beverages; (d) receiving a selection of one of the beverages or the blended beverage via the user interface with the computer processor; and (e) in response to the selection of one of the beverages or the blended beverage, automatically dispensing through a single faucet of the post-mix beverage dispensing system the selected beverage or at least two of the beverages to form the blended beverage.


In yet another aspect, the present invention relates to a method for providing a beverage from a post-mix beverage dispensing system comprising: (a) providing at least two beverages for dispense from the post-mix beverage dispensing system; (b) providing a user interface for user interactions with a computer processor programmed with a randomizing program; (c) presenting via the user interface a choice of one of the beverages or a random beverage; (d) receiving a selection of one of the beverages or the random beverage via the user interface with the computer processor; (e) in response to the selection of the random beverage, determining with the randomizing program a random selection of at least one of the beverages; and (f) automatically dispensing the selected beverage or the random beverage from the post-mix beverage dispensing system.


In a further aspect, the present invention relates to a post-mix beverage dispensing system for providing a beverage having a separately selected color, the post-mix beverage dispensing system comprising: (a) at least two sources for providing at least two beverage bases for dispense from the post-mix beverage dispensing system; (b) at least two colorant storage containers for separately storing at least two colorants in the post-mix beverage dispensing system; (c) a computer processor for receiving a request for a selected beverage base and the separately selected color; and (d) a single faucet for automatically dispensing, continuously in a predetermined ratio for any volume of the beverage dispensed, in response to the selection of the selected beverage base and the separately selected color, the selected beverage base and at least one of the colorants to provide the beverage having the separately selected color.


In another aspect, the present invention relates to post-mix beverage dispensing system comprising: (a) at least two sources for providing at least two beverages for dispense from the post-mix beverage dispensing system; (b) a user interface for user interactions with a computer processor; and (c) a single faucet. The user interface is adapted to present a choice of one of the beverages or a blended beverage. The blended beverage comprises at least two of the beverages. The computer processor is adapted to receive a selection of one of the beverages or the blended beverage. The single faucet is adapted for automatically dispensing, in response to the selection of one of the beverages or the blended beverage, the selected beverage or at least two of the beverages to form the blended beverage.


In an additional aspect, the present invention relates to a post-mix beverage dispensing system comprising: (a) at least two sources for providing at least two beverages for dispense from the post-mix beverage dispensing system; and (b) a user interface for user interactions with a computer processor programmed with a randomizing program. The user interface is adapted to present a choice of one of the beverages or a random beverage. The computer processor is adapted to receive a selection of one of the beverages or the random beverage. The computer processor also is adapted to, in response to the selection of the random beverage via the user interface, determine with the randomizing program a random selection of at least one of the beverages. The post-mix beverage dispensing system is adapted to automatically dispense the selected beverage or the random beverage.


Other objects, features, and advantages of this invention will be apparent from the following detailed description, drawing, and claims.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a schematic illustration of an apparatus for providing a variety of beverages having separately selectable beverage colors and/or separately selectable beverage flavors, a blended beverage, and a randomly selected beverage in accordance with an embodiment of the present invention.



FIG. 2 is a schematic illustration of a user input means for selecting a beverage product having a separately selectable beverage color and a separately selectable beverage flavor, a blended beverage, and a randomly selected beverage in accordance with an embodiment of the present invention.





DETAILED DESCRIPTION OF THE INVENTION

While the specification concludes with the claims particularly pointing out and distinctly claiming the invention, it is believed that aspects of the present invention will be better understood from the following description.


As used herein, “comprising” means that other steps which do not affect the end result can be added. This term encompasses the terms “consisting of” and “consisting essentially of”. The methods of the present invention can comprise, consist of, and consist essentially of the essential elements and limitations of the invention described herein, as well as any of the additional or optional components, steps, or limitations described herein.


“Beverage,” as used herein, includes, but is not limited to, pulp and pulp-free citrus and non-citrus fruit juices, fruit drink, vegetable juice, vegetable drink, milk, soy milk, protein drink, soy-enhanced drink, tea, water, isotonic drink, vitamin-enhanced water, soft drink, flavored water, energy drink, coffee, smoothies, yogurt drinks, hot chocolate and combinations thereof. The beverage may also be carbonated or non-carbonated. The beverage may comprise beverage components (e.g., beverage bases, colorants, flavorants, and additives).


The terms “native color” or “native-colored” refers to the color of the beverage component in its natural, unaltered form. For example, a beverage component of the present invention may be a “native-colored” beverage such as milk. In such case, the native color is white. Another example would be that of orange juice wherein the native color is orange.


“Uncolored” refers to the substantially clear, substantially colorless form of a beverage component, or to that of a beverage component which has not been altered from its native color.


The terms “native flavor” or “native-flavored” refers to the flavor of a beverage component in its natural, unaltered form absent of additives such as sweeteners, etc.


“Unflavored” refers to the substantially flavorless form of a beverage component or to that of a beverage component which has not been altered from its native flavor.


The term “beverage base” refer to parts of the beverage or the beverage itself prior to additional colorants, additional flavorants, and/or additional additives being added by the methods or apparatuses of the present invention and may be distinguishable from the beverages of the present invention, i.e. final product (a) wherein a particular color and/or flavor has been selected or (b) wherein two or more beverages have been blended. According to certain embodiments, beverage bases may comprises a mixture of beverage base components.


The term “beverage base component” refers to components which may be included in beverage bases. According to certain embodiments of the present invention, the beverage base component may comprise parts of beverages which may be considered food items by themselves.


Thus, for the purposes of requesting, selecting, or dispensing a beverage base, a beverage base formed from separately stored beverage base components may be equivalent to a separately stored beverage base. For the purposes of requesting, selecting or dispensing a beverage, a beverage formed from separately stored beverage components may be equivalent to a separately stored beverage


The term “blended beverage” includes final products wherein two or more beverages have been blended or mixed or otherwise combined to form a final product.


By “separately stored” it is meant that the components of the present invention are kept separate until combined. For instance, the components may be separately stored individually in each container or may be all stored in one container wherein each component is individually packaged (e.g., plastic bags) so that they do not blend while in the container. In some embodiments, the container, itself, may be individual, adjacent to, or attached to another container.


According to certain embodiments, the present invention provides for methods and apparatuses that allow for the dispensing of a variety of beverages having a variety of selected colors and/or selected flavors, a blended beverage, and/or a randomly selected beverage. Embodiments are described in detail below and are exemplified in FIGS. 1 and 2. It should be understood that any of the features in embodiments of the methods and apparatuses of the present invention described may be used in combination with each other in alternate embodiments.


According to certain embodiments, the beverages and beverage components of the present invention may comprise, but are not limited to, vitamins, dairy products, soy products, food products, beauty products, health care products and combinations thereof. Additionally, beverages and beverage components of some embodiments of the present invention may be in forms, including, but not limited to, liquids, gases, gels, colloids, solid/fluid mixtures or suspensions, liquid/gas mixtures or solutions, and mixtures thereof.


According to certain embodiments of the present invention, methods for providing a beverage wherein at least two beverage bases are provided for dispense from a post-mix beverage dispensing system and wherein the color of the beverage may be separately selected from at least two colorant storage containers comprising at least two separately stored colorants. Suitable beverage bases for use in some embodiments of the present invention include, but are not limited to syrups, concentrates, and the like. In certain embodiments, the beverage bases may be provided by separately storing the beverage bases in the post-mix beverage dispenser. In alternate embodiments, the beverage bases may be provided from beverage base sources external to the post-mix beverage dispenser.


In some embodiments, the beverage bases may be provided by separately storing in the post-mix beverage dispenser at least two beverage base components for forming the beverage bases. Examples of beverage base components for use in certain embodiments include sweeteners such as water, carbonated water, sweeteners, thickeners, dairy products, soy products, fruit products, vegetable products, food products, and combinations thereof.


According to certain embodiments, the colorant may be flavored, unflavored or native-flavored. In some embodiments, the colorant may be any substance that affects the color of a beverage and which typically would not be considered a food item by itself. In particular embodiments, the colorant may be a natural colorant or an artificial colorant. Suitable colorants for use in some embodiments of the present invention include, but are not limited to, food coloring, caramel coloring, cochineal, titanium dioxide, food grade dyes, vegetable extracts, or any other suitable coloring and combinations thereof.


According to certain embodiments of the present invention, in response receipt by a computer processor of the selection of a beverage having a separately selected color, the selected beverage base and at least one of the colorants may be automatically dispensed, continuously in a predetermined ratio for any volume of the beverage dispensed, from a single faucet of a post-mix beverage dispenser to provide a beverage having the particularly selected color. In some embodiments, the dispensing of the selected beverage base may comprise dispensing beverage base components which form the selected beverage base. Thus, for example, certain embodiments of methods of the present invention may provide for a selected beverage that is milk wherein green is the separately selected color. In such embodiments, the final beverage, therefore, would be green milk.


Options provided by embodiments of the present invention's separate storage of colorants are even more infinite as the varied intensity of colors contributes to the endless possibilities for color variance. For example, certain embodiments of methods of the present invention may comprise colorant storage containers wherein at least one storage container comprises a red food coloring, at least one storage container comprises a yellow food coloring, at least one storage container comprises a blue food coloring, and at least two storage containers comprises at least two substantially colorless beverage bases. In such an embodiment, the variety of selectable colored products may include, but is not limited to, red, yellow, blue, purple, orange, green, brown, various hues, intensities, saturations, or brightness thereof or almost any spectral color, as different amounts of some or all of the colorants can be used to provide any color to the beverage bases.


In certain embodiments, a separately selected color having a separately selected intensity, separately selected saturation, or separately selected brightness.


Additionally, certain embodiments of the present invention provide methods for providing a beverage wherein the color and the flavor of the beverage may be separately selected from at least two colorant storage containers and at least two flavorant storage containers. According to certain embodiments, the flavorants may each be colored, uncolored or native-colored. In some embodiments, the flavorant may be any substance that affects the flavor of a beverage and which typically would not be considered a food item by itself. In particular embodiments, the flavorants may be natural flavorants or artificial flavorants. Suitable flavorants for use in certain embodiments of the present invention include, but are not limited to, food acids, flavor oils, flavor chemicals, natural flavor extracts, or any other suitable food grade flavoring and combinations thereof. According to certain embodiments, in response to the selection of a beverage having a separately selected color and a separately selected flavor, at least one separately stored colorant, at least one separately stored flavorant, and at least one separately stored beverage base may be automatically dispensed, continuously in a predetermined ratio for any volume of the beverage dispensed, from a single faucet of a post-mix beverage dispenser to provide a beverage having the particularly selected color and flavor. Thus, for example, embodiments of methods of the present invention may provide for a selected beverage that is juice wherein purple is the selected color and strawberry is the selected flavor. In such an example, the final beverage, therefore, would be purple-colored, strawberry-flavored juice.


As a consequence of storing the colorants and the flavorants separately in certain embodiments, the number of selectable beverages can exceed the number of stored colorants and the number of stored flavorants. Therefore, according to such embodiments, more options may be provided without the worries of additional or excess storage space for the various options. For example, an embodiment of the present invention may provide seven storage containers comprising two storage containers comprising two substantially colorless beverage bases; a first colorant storage container comprising a red colorant and a second colorant storage container comprising a yellow colorant; and a first flavorant storage container comprising a substantially colorless cola flavor, a second flavorant storage container comprising a substantially colorless cherry flavor, and a third flavorant storage container comprising a substantially colorless vanilla flavor. In such an embodiment, seven storage containers are able to provide at least 24 different colorless and colored varieties of selectable flavored beverages including red cola, red cherry flavored cola, red cherry and vanilla flavored cola, red vanilla flavored cola, yellow cola, yellow cherry flavored cola, yellow cherry and vanilla flavored cola, yellow vanilla flavored cola, orange cola, orange cherry flavored cola, orange cherry and vanilla flavored cola, orange vanilla flavored cola, and various color hues thereof with either of the two beverage bases.


In certain embodiments of the present invention, the variety of selectable beverages may be further increased by the possibilities of providing additives as optional beverage components. In some embodiments, the additive may be any substance which affects a property of the beverage other than flavor or color and which typically would not be considered a food item by itself. Suitable additives for embodiments of the present invention, may include but are not limited to, preservatives, surfactants, thickeners, anti-foaming agents, food acids, vitamins, minerals, supplements (e.g., chlorella, spirulina, and the like), caffeine, caloric sweeteners (natural and artificial), non-caloric sweeteners (natural and artificial), carbonation, diluents, beauty products, health care products, and the like. For example, an embodiment of the methods of the present invention may comprise at least two storage containers comprising at least two beverage bases, at least one storage container comprising a yellow colorant, at least one storage container comprising a cola flavorant, and at least one storage container comprising an additive, wherein the additive may be a non-caloric sweetener or a nutritive sweetener such as sucrose or high fructose corn syrup. In such an example, the option of the beverage to be dispensed has now just been expanded to include a “regular,” a “mid-cal,” or a “diet” sweetened version of the beverage. Thus, a user privy to the benefits of such an embodiment of the present invention could select a yellow diet cola.


Colorants, flavorants, additives, and other beverage components of certain embodiments of the present invention can be combined in a variety of ways. For example, such elements may be combined in certain embodiments of the present invention within a post-mix beverage dispenser that will dispense the beverage, within the dispenser (e.g., in a nozzle), outside of the dispenser (e.g., in-air mixing), or combinations thereof. Thus, for example, certain embodiments of the present invention may provide a beverage wherein the selected colorant, selected flavorant, and selected beverage base may be dispensed outside the apparatus separately and combined at a point that is within or proximate to a container suitable to hold such beverage. Without being limiting, some embodiments of the present invention may be used within manufacturing facilities such as within in-store apparatuses, vending apparatuses, and the like.


Because the colorants, flavorants, additives, and beverage bases are stored separately in accordance with certain embodiments of the present invention, an infinite variety of beverages may be produced wherein the color is not necessarily associated with a particular flavor or beverage and vice-versa. In some embodiments of the present invention, a variety of colors may be produced by adjusting the amount and proportion of the colorant dispensed. It should be understood that, in certain embodiments of the present invention, adjustment of the amount and proportion of the colorant dispensed may be dependant upon whether the flavorants, additives, and other beverage components dispensed for a particular beverage are colored, substantially colorless (e.g., substantially clear), or native colored. Thus, beverages of certain embodiments of the present invention may have color saturation and flavor intensity adjusted independently from one another. As a result of the flexibility of embodiments of the present invention, the color of a beverage, for example, can be any color and is independent of the flavor of the beverage. Thus, in certain embodiments, a beverage with a very strong cherry flavor could have a faint red color while a beverage having a very mild cherry flavor could be a deep saturated red color. Furthermore, embodiments of the present invention may advantageously provide the aesthetically pleasing qualities of visually undesirable beverages without affecting the native flavor and/or beverage itself.


Moreover, embodiments of methods of the present invention provide for continuous mixing and flows in the correct ratio for a pour of any volume in contrast to a conventional batch operation where a predetermined amount of ingredients are combined. In particular, embodiments of methods of the present invention may dispense the beverage base or beverage base components, the colorants, the flavorants, and/or the additives continuously in a predetermined ratio for any volume of the beverage dispensed. Thus, in certain embodiments of the present invention, the same volume ratios of each component remain constant for any amount of beverage dispensed.


Certain embodiments of the present invention additionally provide methods for providing a beverage wherein at least two beverages are provided for dispense from a post-mix beverage dispensing system and wherein a user interface provides a choice of one of the beverages and a blended beverage. In some embodiments the beverages blended to form the blended beverage may be selected by an automated program.


In other embodiments, the beverages blended to form the blended beverage may be selected by a user. For instance, in one embodiment, in response to receipt by a computer processor of a selection of the blended beverage, a choice of beverages to be blended may be presented via the user interface. Upon receipt by the computer processor of a selection of at least two of the beverages to be blended in such an embodiment, the beverages corresponding to the selection may be automatically dispensed through a single faucet of the post-mix beverage dispensing system.


Thus, for example, embodiments of methods of the present invention may provide for a selected beverage that is a blend of a cola beverage, a lemon-lime beverage, and an orange beverage. By providing a blended beverage option in certain embodiments of the present invention, users are provided with the convenience of blending beverages of their choice in one pour, thus improving speed and reproducibility in providing the blended beverages.


In addition, embodiments of methods of the present disclosure may provide for beverage components and colorants stored separately in a post-mix beverage dispenser and wherein a user interface provides a choice of one of the beverages, a blended beverage, and a separately selected color. In response to receipt by a computer processor of one of the beverages or the blended beverage and a separately selected color in such embodiments, at least two of the beverage components and at least one of the colorants corresponding to the selection may be automatically dispensed through a single faucet of the post-mix beverage dispensing system. Thus, such embodiments provide blended beverages which may have a color not necessarily associated with a particular chosen beverage to be blended.


In other embodiments, methods of the present disclosure may provide for a blended beverage comprising a branded beverage. Suitable examples of branded beverages for use in embodiments of the present invention include, but are not limited to, COCA-COLA®, SPRITE®, FANTA®, or POWERADE®.


While the foregoing embodiments of methods provide a beverage wherein each component may be individually selected, it is well within the scope of embodiments of the present invention to also provide a beverage requested from an automated program such as a pre-programmed recipe, a randomizing program or a combination thereof. For example, the separately selected color and/or the beverage base in certain embodiments may be selected by a pre-programmed recipe or a randomizing recipe. Likewise, the beverages in certain embodiments may be selected by a pre-programmed recipe or a randomizing recipe to provide a blended beverage. For instance, of a pre-programmed blended beverage of branded beverages in certain embodiments may be a blended beverage comprising COCA-COLA® and SPRITE®.


Moreover, embodiments of the present invention include methods for providing a beverage wherein at least two beverages are provided for dispense from a post-mix beverage dispensing system and wherein a user interface provides a choice of one of the beverages and a random beverage. In particular embodiments, the random beverage may comprise one of the beverages or a mixture of two of the beverages (i.e., a random blended beverage). In some embodiments, the random beverage may comprise a random beverage base and separately selected random color. In certain embodiments, in response to receipt by a computer processor, which is programmed with a randomizing program, of a selection of the random beverage, a random selection of one or more of the beverages is determined with the randomizing program and the random selection is automatically dispensed.


In addition, embodiments of methods of the present disclosure may provide for beverage components and colorants stored separately in a post-mix beverage dispenser and wherein a user interface provides a choice of one of the beverages, a random beverage, and a separately selected color. In such embodiments, in response to receipt by a computer processor, which is programmed with a randomizing program, of a selection of the random choice and a separately selected color, a random selection of at least one of the beverage bases is determined with the randomizing program and at least one of the beverage components and at least one of the colorants corresponding to the selection may be automatically dispensed. Thus, in such embodiments, a random beverage may have a color which is separately chosen.


According to certain embodiments of the present invention, user preferences could be further catered to by using devices for receiving identification information associated with a user and retrieving a user profile based on the identification information with the methods of the present invention. According to certain embodiments of the present invention, the user profile may include a beverage preference list or a beverages recommendations list based on the beverage preference list. According to certain embodiments of the present invention, the beverage preference list could be complied based on past selections or determined from current user information. Thus, embodiments of the methods of the present invention may include providing any beverage chosen from a beverage preference list or a beverage recommendations list upon selection of the random choice or the blended beverage choice.



FIG. 1 illustrates an apparatus 10 made in accordance with an embodiment of the present invention. Examples of suitable beverage dispensers 10 for certain embodiments of the present invention include, but are not limited to, a post-mix dispenser, a vending machine dispenser, an in-store dispenser, and the like.


As shown, the apparatus 10 may comprise a plurality of separate storage containers 12 wherein two storage containers 12 may each comprise at least two beverage base (B1, B2 . . . BN), at least two storage containers 12 may comprise colorants (C1, C2, . . . CN), at least two storage containers 12 may comprise flavorants (F1, F2, . . . FN), and at least one storage container 12 may comprise an additive (A). In addition, the apparatus 10 may comprise a user interface 14, a dispenser nozzle 16, and a computer processor 18.


The colorant storage containers 12 (C1, C2, . . . CN) may each comprise a bag, a tank, a box, or any container suitable for storing colorants. The colorant storage containers 12 (C1, C2, . . . CN) may be positioned within the apparatus 10 itself as opposed to being remotely positioned in conventional bag in box containers or otherwise. Any other type of storage arrangements may also be used.


The flavorant storage containers 12 (F1, F2, . . . FN) may each comprise a bag, a tank, a box, or any container suitable for storing flavorants. The flavorant storage containers 12, (F1, F2, . . . FN) may be positioned within the apparatus 10 itself as opposed to being remotely positioned in conventional bag in box containers or otherwise. Any other type of storage arrangements may also be used.


Once a request for a beverage is made through the user interface 14, the contents of the necessary storage containers 12 may be dispensed automatically and continuously in a predetermined ratio for any volume of beverage dispensed to combine and ultimately provide the requested beverage accordingly. Any combination of a beverage base, colorants, flavorants, and/or additives, may be dispensed automatically in response to the selection to provide the selected beverage. For example, a user may request through the interface 14 a green, cherry-flavored diet soda. As shown, the storage container 12 comprising a beverage base (B1) 12 may comprise carbonated soda and the storage container comprising the additive (A) 12 may comprise a non-caloric sweetener. At least one of the storage containers 12 comprising a colorant (C1), may comprise a green colorant and at least one of the storage containers 12 comprising a flavorant (F1), may comprise a cherry flavorant. At the request of such beverage, each of the appropriate storage containers 12 will dispense the necessary component to provide the requested beverage via the nozzle 16.


The ability to dispense the appropriate ingredients in the appropriate proportions for a given flow rate results from the use of individual pumps and/or metering devices for each of the beverage bases, colorants, flavorants, and/or additives. Thus, the apparatus 10 could further comprise a means, such as a pump (not shown) or metering device (not shown) that is connected with each storage container 12 to dispense the contents from within the storage containers 12. In certain embodiments, a control device (not shown) or computer processor 18 may control the pumps and metering devices. Pumps included in certain embodiments of the present invention may be any conventional pump suitable for dispensing from within the storage containers 12 including, but not limited to, solenoid pump, positive displacement pump, or the like. Positive displacement pumps provide portion control for the more highly concentrated components that may be stored in one of the storage containers 12. An example of a positive displacement pump is shown in commonly owned U.S. patent application Ser. No. 11/276,548, filed in the U.S. Patent Office on Mar. 6, 2006 and entitled “Pump System with Calibration Curve”. In addition, the pumps and the metering devices may be in fluid communication with the dispensing nozzle 16.


According to certain embodiments of the present invention, the pumps and the metering devices may be pulsed on and off as desired to vary the flow rate. Such pulsing, for example, may ensure mixing of the ingredients. The beverage may be mixed at the dispensing nozzle 16 or anywhere downstream (e.g., back room, in-line, etc.) to combine the beverage base, colorant, flavorant, and/or additives. According to certain embodiments of the present invention, different flow rates and flow timing may be employed. For example, certain fluid streams may be added early, late, or certain fluid streams may be pulsed.


The dispensing nozzle 16 may be any dispensing nozzle capable of dispensing beverages from the apparatus 10 including, but not limited to, a multi-flavor dispensing valve which has the ability to mix a number of fluids at the same time. The nozzle 16 may be integrated within the apparatus 10 or may be separate and attached thereto. Examples of dispensing nozzles 16 that may be used herein are shown in commonly owned U.S. patent application Ser. No. 10/233,867 (U.S. Patent Publication No. US 2004/0040983 A1) entitled “Dispensing Nozzle” and commonly-owned U.S. patent application Ser. No. 11/276,551, filed in the U.S. Patent Office on Mar. 6, 2006 and entitled “Dispensing Nozzle Assembly”. In particular embodiments wherein the dispensing nozzle 16 is a multi-flavor dispensing valve (not shown), the nozzle 16 may include a flow director (not shown) in fluid communication with some or all of the storage containers 12. In some embodiments, the nozzle 16 may further include a tertiary flow assembly (not shown) having multiple conduits (not shown) in fluid communication with some or all of the storage containers. In certain embodiments, the tertiary flow assembly may be placed adjacent to the flow director such that the flow of fluid from the flow director and the flow of fluid from the conduits are configured to intersect or be adjacent to one another. As a result of such placement, the contents of the storage containers can be mixed to form the selected beverage. The multiple conduits may have differing sizes and configurations in order to vary the flow rate. Suitable examples of a flow director and a tertiary flow assembly are illustrated in FIGS. 1. and 4 of U.S. patent application Ser. No. 11/276,551. Examples of dispensers and other dispensing nozzles suitable for use in embodiments of the present invention can be found in commonly owned U.S. patent application Ser. No. 11/276,550, filed in the U.S. Patent Office on Mar. 6, 2007 and entitled “Beverage Dispensing System”.


According to certain embodiments of the present invention, the user interface 14 may include, but is not limited to, a user input means (not shown) such as a key pad, touch pad, a processor, a memory device, a controller, and the like to command the necessary storage containers to dispense the appropriate ingredients. According to certain embodiments of the present invention, the user interface 14 may be programmed such that the user can select from at least two beverages, a blended beverage, a random beverage, flavors, colors, and additives via the user input means. In addition to selecting a particular beverage, embodiments of the user interface 14 may also provide via the user input means the ability for the user to alter the concentrations and intensity of beverage components and size of beverages. In other embodiments, the user interface 14 may also provide automatic, pre-programmed selections wherein specific pre-programmed recipes or randomized recipes may be requested as an aspect of the selected product. In some embodiments, the user interface 14 is programmed such that the user can select from at least two beverages, at least two beverage components, a blended beverage, or a random beverage via the user input means and the user interface then manipulates other components of the apparatus 10, in accordance with recipes or other beverage parameters stored in the interface, to continuously deliver the appropriate beverage components in accordance with the user's selection in a predetermined ratio for any volume of the beverage dispensed. Thus, in such embodiments, the user can alter the ingredients of the beverage. In some embodiments, the user can also alter the intensity of the beverage or additives to taste. As such, the user can submit an entire “recipe” for a beverage in some embodiments of the present invention. According to certain embodiments of the present invention, the apparatus 10 thus provides the user with the ability to create and blend numerous types of beverages as desired by altering the ingredients the beverage to taste.


According to certain embodiments of the present invention, the user interface 14 may also include, but is not limited to, a wireless signal receiver (not shown) and/or a wireless signal transmitter (not shown) so that the user can communicate with the user interface wirelessly to request a selected beverage having a selected color and/or flavor. Additionally, particular embodiments of the user interface 14 may include a card reader (not shown) including, but not limited to a prepaid card reader, a credit card reader, a debit card reader, a smart card reader, or the like to allow the user to purchase a beverage using various methods that are alternative to cash. Also, some embodiments of the user interface 14 may include a parental control device to prevent an unwanted selection.



FIG. 2 illustrates a user interface 14 comprising a user input means 20 used for selecting a beverage in accordance with an embodiment of the present invention. The user input means 20 may be a key pad having various buttons 22 corresponding to the various components and options for the selected product. Accordingly, as shown, the first row of buttons may correspond to the colorants (C1, C2, . . . , CN); the second row of buttons may correspond to the flavorants (F1, F2, . . . FN); the third row of buttons may correspond to the beverages (B1, B2, . . . BN); the fourth row of buttons may correspond to the additives (A1, A2, . . . AN); the fifth row of buttons may correspond to the sizes (S1, S2, . . . SN); the sixth row of buttons may correspond to other various options such as flow rate (F), a blended beverage (Y), or a randomizing program (Z); the seventh row of buttons may correspond to pre-programmed recipes (R1, R2, . . . RL) (e.g., branded beverages), and lastly there may be a button to finally dispense (P) the beverage once all the selections have been made. In one embodiment, selection of the blended beverage choice may allow selection of the beverages to be blended from the buttons available, for instance from the buttons corresponding to the beverages (B1, B2, . . . BN) and the pre-programmed recipes (R1, R2, . . . RL).


It should be understood that alternate embodiments may include less buttons, omitted types of buttons, more buttons, and buttons for different functions, for example, buttons for canceling a selection or for displaying nutritional information. For example, in alternate embodiments the user input means 20 may be a touch screen panel (not shown) comprising an intensity indicator such as a color spectrum indicating the intensity or hue of the color selected from the touch screen color spectrum. In one embodiment, selection of the blended beverage choice may result in a change in the screen of a touch screen panel such that only the beverages to be blended are displayed.


According to alternate embodiments, the user input means 20 may also include a display (not shown) or communication means (not shown), including, but not limited to, an light emitting diode (LED) display, a graphical interface, or a communication device to display information such as dispenser statistics or communicate to the user information such as troubleshooting. For example, there may be LED displays or lights which communicate to the user suggested additives for the selected beverage. Additionally, in some embodiments, the display may reveal the components of a pre-programmed recipe or of a randomizing program.


As stated earlier, the interface 14 may comprise a user input means 20 wherein the user input means is a key pad having various buttons 22. There may be at least one button 22 corresponding to size indicating a pre-programmed size (S1, S2, . . . SN) of the beverage being dispensed from the apparatus 10. According to certain embodiments of the present invention, the actual and relative volumes of beverage dispensed may be adjusted or set accordingly. There may be at least one button 22 corresponding to the flow rate (F) providing the option of a continuous flow rather than a pre-programmed volume. Once the desired selections have been made, the user can select the button 22 to dispense (P) the selected beverage having the selected beverage components. Accordingly, there may also be other buttons 22 in alternate embodiments that provide additional elements not provided herein. Further detail regarding operation of the apparatus 10 and user input means 20 is described in commonly owned U.S. patent application Ser. No. 11/276,553, filed in the U.S. Patent Office on Mar. 6, 2007 and entitled “Methods and Apparatuses for Making Compositions Comprising an Acid and an Acid Degradable Component and/or Compositions Comprising a Plurality of Selectable Components”.


Embodiments of the present invention provide for methods and apparatuses for providing beverages having selected colors and/or flavors, blended beverages, and a random beverage wherein the selection may be made by an individual selection, pre-programmed selections, randomized selections, or combinations thereof. Accordingly, embodiments of the present invention provide for a vast array of options that will allow manufacturers and users alike to enjoy the benefits of promotional products, novelty products and the like wherein such options were not previously available.


All documents cited in the Detailed Description of the Invention are, in relevant part, incorporated herein by reference; the citation of any document is not to be construed as an admission that it is prior art with respect to the present invention. To the extent that any meaning or definition of a term in this written document conflicts with any meaning or definition of the term in a document incorporated by reference, the meaning or definition assigned to the term in this written document shall govern.


It should be understood that the foregoing relates to particular embodiments of the present invention, and that numerous changes may be made therein without departing from the scope of the invention as defined from the following claims.

Claims
  • 1. A method for providing a beverage from a post-mix beverage dispensing system comprising: a. providing at least three beverage components for dispensing from a post-mix beverage dispensing system;b. providing a user interface;c. receiving a selection of a blended beverage comprising at least two beverages via the user interface; andd. in response to the selection of the blended beverage, automatically dispensing through a single faucet of the post-mix beverage dispensing system at least three beverage components to form the blended beverage,wherein the step of providing the at least three beverage components comprises separately storing at least three beverage components for forming the at least two beverages, and wherein the step of automatically dispensing comprises automatically dispensing through the single faucet at least three of the beverage components to provide the blended beverage.
  • 2. The method of claim 1, wherein the blended beverage comprises at least two of the beverages selected by an automated program.
  • 3. The method of claim 2, wherein the automated program is a pre-programmed recipe, a randomizing program, or a combination thereof.
  • 4. The method of claim 1, wherein the blended beverage comprises at least one branded beverage.
  • 5. The method of claim 1, wherein the beverage components are selected from the group consisting of beverage bases, diluents, water, carbonated water, sweeteners, beverage base components, colorants, flavorants, additives, and combinations thereof.
  • 6. The method of claim 1, wherein the user interface comprises a wireless signal receiver, the method further comprising: e. wirelessly receiving identification information associated with a user via the user interface; andf. retrieving a user profile associated the identification information,wherein the user profile comprises a blended beverage preference list, a blended beverage recommendations list, or combinations thereof and wherein the step of receiving a selection of a blended beverage comprises determining with a randomizing program a random selection of a blended beverage on the blended beverage preference list or the blended beverage recommendations list.
  • 7. The method of claim 6, wherein the blended beverage preference list is compiled based on past selections or determined from current user information.
  • 8. A method for providing a beverage from a post-mix beverage dispensing system comprising: a. providing at least three beverage components for dispensing from a post-mix beverage dispensing system;b. providing a user interface;c. receiving a selection of a blended beverage comprising at least two beverages via the user interface; andd. in response to the selection of the blended beverage, automatically dispensing through a single faucet of the post-mix beverage dispensing system at least three beverage components to form the blended beverage;wherein the user interface comprises a wireless signal receiver, and receiving a selection via the user interface comprises wirelessly receiving a selection from a user of the blended beverage.
  • 9. A method for providing a beverage from a post-mix beverage dispensing system comprising: a. providing at least three beverage components for dispensing from a post-mix beverage dispensing system;b. providing a user interface;c. receiving a selection of a blended beverage comprising at least two beverages via the user interface;d. in response to the selection of the blended beverage, automatically dispensing through a single faucet of the post-mix beverage dispensing system at least three beverage components to form the blended beverage;e. separately storing at least one additive;f. receiving a request for at least one selected additive via the user interface; andg. in response to the selection of the blended beverage and the at least one selected additive, automatically dispensing through the single faucet at least three of the beverage components and the at least one selected additive to provide the blended beverage having the at least one selected additive.
  • 10. A method for providing a beverage from a post-mix beverage dispensing system comprising: a. providing at least three beverage components for dispensing from a post-mix beverage dispensing system;b. providing a user interface;c. receiving a selection of a blended beverage comprising at least two beverages via the user interface; andd. in response to the selection of the blended beverage, automatically dispensing through a single faucet of the post-mix beverage dispensing system at least three beverage components to form the blended beverage;wherein the user interface comprises a wireless signal receiver and a wireless signal transmitter.
  • 11. A post-mix beverage dispensing system comprising: a. at least three separately-stored beverage components for providing at least two beverages for dispense from the post-mix beverage dispensing system;b. a user interface; andc. a single faucet for automatically dispensing, in response to a selection of a blended beverage, at least three beverage components to form the blended beverage,wherein the user interface comprises a wireless signal receiver configured to wirelessly receive a selection of a blended beverage comprising at least two beverages.
  • 12. The post-mix beverage dispensing system of claim 11, wherein the blended beverage comprises at least two beverages selected by an automated program.
  • 13. The post-mix beverage dispensing system of claim 12, wherein the automated program is a pre-programmed recipe, a randomizing program, or a combination thereof.
  • 14. The post-mix beverage dispensing system of claim 11, wherein the blended beverage comprises at least two beverages selected by a user.
  • 15. The post-mix beverage dispensing system of claim 11, wherein the beverage components are selected from the group consisting of beverage bases, diluents, water, carbonated water, sweeteners, beverage base components, colorants, flavorants, additives, and combinations thereof.
  • 16. A post-mix beverage dispensing system comprising: a. at least three separately-stored beverage components for providing at least two beverages for dispense from the post-mix beverage dispensing system;b. a user interface; andc. a single faucet for automatically dispensing, in response to the selection of one of the beverages or the blended beverage, the selected beverage or at least three of the beverage components to form the blended beverage, wherein the post-mix beverage dispensing system is capable of dispensing any of the at least two beverages and any combination of the at least two beverages,wherein the post-mix beverage dispenser system is adapted to receive identification information associated with a user via the user interface and retrieve a user profile associated with the identification information, and wherein the user profile comprises a beverage preference list, a beverage recommendations list, or combinations thereof, and wherein the post-mix beverage dispenser system is adapted to determine with a randomizing program a random selection of any one of the beverages or blended beverages on the beverage preference list or the beverage recommendations list.
  • 17. The post-mix beverage dispensing system of claim 16, wherein the beverage preference list is compiled based on past selections or determined from current user information.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. patent application Ser. No. 13/888,138, filed May 6, 2013, which is a continuation of U.S. patent application Ser. No. 13/439,516, filed Apr. 4, 2012, now U.S. Pat. No. 8,434,642, which is a continuation of U.S. patent application Ser. No. 12/171,698, filed Jul. 11, 2008, now U.S. Pat. No. 8,162,176, which claims the benefit of U.S. Provisional Application No. 60/970,278, filed Sep. 6, 2007, each of which is incorporated herein by reference in their entireties.

US Referenced Citations (247)
Number Name Date Kind
2988450 Bulatkin Jun 1961 A
3335911 Stutz Aug 1967 A
3777937 Buck Dec 1973 A
3934759 Giannella et al. Jan 1976 A
3940019 Kross Feb 1976 A
4008832 Rodth Feb 1977 A
4211342 Jamgochian et al. Jul 1980 A
4392588 Scalera Jul 1983 A
4433795 Maiefski Feb 1984 A
4487333 Pounder et al. Dec 1984 A
4619378 de Man Oct 1986 A
4753370 Rudick Jun 1988 A
4779761 Rudick et al. Oct 1988 A
4784495 Jonsson et al. Nov 1988 A
4793518 Burton Dec 1988 A
4793520 Gerber Dec 1988 A
4797293 Evans et al. Jan 1989 A
4815633 Kondo et al. Mar 1989 A
4821925 Wiley et al. Apr 1989 A
4827426 Patton et al. May 1989 A
4830511 Smazik May 1989 A
4830870 Davis, Jr. et al. May 1989 A
4860923 Kirschner et al. Aug 1989 A
4881663 Seymour Nov 1989 A
4889148 Smazik Dec 1989 A
4923092 Kirschner et al. May 1990 A
4923093 Gerber May 1990 A
4932564 Austin et al. Jun 1990 A
4934567 Vahjen et al. Jun 1990 A
4938387 Kervefors Jul 1990 A
4955507 Kirschner et al. Sep 1990 A
4962866 Phillips Oct 1990 A
5000357 Shannon et al. Mar 1991 A
5027284 Senghaas et al. Jun 1991 A
5033648 Nakayama et al. Jul 1991 A
5033651 Whigham et al. Jul 1991 A
5056686 Jarrett Oct 1991 A
5082143 Schramm, Jr. Jan 1992 A
5087469 Acree Feb 1992 A
5116632 Miller May 1992 A
5139708 Scott Aug 1992 A
5154586 Rudick Oct 1992 A
5192003 Billings Mar 1993 A
5207148 Anderson et al. May 1993 A
5265520 Giuliano Nov 1993 A
5292030 Kateman et al. Mar 1994 A
5303846 Shannon Apr 1994 A
5316779 Morey May 1994 A
5341957 Sizemore Aug 1994 A
5350587 Plester Sep 1994 A
5433967 Kateman et al. Jul 1995 A
5465870 Sizemore Nov 1995 A
5473909 Kateman et al. Dec 1995 A
5507415 Sizemore Apr 1996 A
5522660 O'Dougherty et al. Jun 1996 A
5526959 Green Jun 1996 A
5603257 Kateman et al. Feb 1997 A
5650186 Annoni et al. Jul 1997 A
5653157 Miller Aug 1997 A
5673820 Green et al. Oct 1997 A
5725125 Bessette et al. Mar 1998 A
5727713 Kateman et al. Mar 1998 A
5731981 Simard Mar 1998 A
5740946 Swier et al. Apr 1998 A
5753294 Savello May 1998 A
5758571 Kateman et al. Jun 1998 A
5778761 Miller Jul 1998 A
5797436 Phallen et al. Aug 1998 A
5803320 Cutting et al. Sep 1998 A
5842603 Schroeder et al. Dec 1998 A
5868065 Haggerty et al. Feb 1999 A
5868279 Powell Feb 1999 A
5878964 Hansen Mar 1999 A
5890626 Wolski et al. Apr 1999 A
5925392 Sponholtz Jul 1999 A
5955132 Spica et al. Sep 1999 A
5960997 Forsythe Oct 1999 A
5967367 Orsborn Oct 1999 A
5980969 Mordini et al. Nov 1999 A
5996650 Phallen et al. Dec 1999 A
5997236 Picioccio et al. Dec 1999 A
6045007 Simmons Apr 2000 A
6047859 Schroeder et al. Apr 2000 A
6098524 Reese Aug 2000 A
6116460 Kim et al. Sep 2000 A
6126983 Miller Oct 2000 A
6135319 Camezon Oct 2000 A
6149035 Gorski et al. Nov 2000 A
6170707 Wolski et al. Jan 2001 B1
6182555 Scheer et al. Feb 2001 B1
6186193 Phallen et al. Feb 2001 B1
6223948 Davis May 2001 B1
6240829 McGarrah Jun 2001 B1
6253963 Tachibana Jul 2001 B1
6286721 Pellegrini Sep 2001 B1
6298769 Stettes et al. Oct 2001 B1
6321938 Edwards et al. Nov 2001 B1
6345729 Santy, Jr. Feb 2002 B1
6350484 Ault Feb 2002 B1
6364159 Newman et al. Apr 2002 B1
6374845 Melendez Apr 2002 B1
6375042 Goodwin Apr 2002 B1
6375043 LeBlanc Apr 2002 B1
6394312 Endou May 2002 B1
6419120 Bertone Jul 2002 B1
6421583 Sudolcan et al. Jul 2002 B1
6422422 Forbes Jul 2002 B1
6435375 Durham Aug 2002 B2
6450369 Heyes Sep 2002 B1
6464464 Sabini et al. Oct 2002 B2
6478192 Heyes Nov 2002 B2
6496752 Sudolcan et al. Dec 2002 B2
6536626 Newman et al. Mar 2003 B2
6547100 Phillips et al. Apr 2003 B2
6550641 Newman et al. Apr 2003 B2
6550642 Newman et al. Apr 2003 B2
6588725 Wisnieski et al. Jul 2003 B1
6600968 Sudolcan et al. Jul 2003 B2
6600969 Sudolcan et al. Jul 2003 B2
6607013 Leoni Aug 2003 B1
6650962 Sudolcan et al. Nov 2003 B2
6669053 Garson et al. Dec 2003 B1
6685054 Kameyama Feb 2004 B2
6689410 Gerber Feb 2004 B2
6694748 Sergio et al. Feb 2004 B2
6698228 Kateman et al. Mar 2004 B2
6698621 Landers et al. Mar 2004 B2
6745595 Kateman et al. Jun 2004 B1
6751525 Crisp, III Jun 2004 B1
6756069 Scoville et al. Jun 2004 B2
6758571 Heaton Jul 2004 B2
6759072 Gutwein Jul 2004 B1
6763860 Jungmann et al. Jul 2004 B2
6896159 Crisp, III et al. May 2005 B2
6907741 Kateman Jun 2005 B2
6915732 Jones et al. Jul 2005 B2
6915926 Naik Jul 2005 B2
6934602 Sudolcan et al. Aug 2005 B2
6935532 Tinucci et al. Aug 2005 B2
6941858 Kateman Sep 2005 B2
6945157 Brown et al. Sep 2005 B2
6952928 Kateman et al. Oct 2005 B2
6957125 Rifkin Oct 2005 B1
6983863 Santy, Jr. Jan 2006 B2
6988641 Jones et al. Jan 2006 B2
6994231 Jones Feb 2006 B2
7013933 Sher et al. Mar 2006 B2
7021197 Chen et al. Apr 2006 B2
7032818 Thomas et al. Apr 2006 B2
7036686 Newton May 2006 B2
7059761 Gerber Jun 2006 B2
7108156 Fox Sep 2006 B2
7147131 Sher et al. Dec 2006 B2
7156259 Bethuy et al. Jan 2007 B2
7159743 Brandt et al. Jan 2007 B2
7162391 Knepler et al. Jan 2007 B2
7231279 Ghidotti Jun 2007 B2
7243818 Jones Jul 2007 B2
7311224 Emmendoerfer et al. Dec 2007 B2
7311225 Newton Dec 2007 B2
7311226 Kado et al. Dec 2007 B2
7328815 Lowe Feb 2008 B2
7337920 Duck et al. Mar 2008 B2
7347344 Engels et al. Mar 2008 B2
7367475 Harth et al. May 2008 B2
7380494 Tobin et al. Jun 2008 B2
7383969 Harth et al. Jun 2008 B2
7445133 Ludovissle et al. Nov 2008 B2
7494028 Litterst et al. Feb 2009 B2
7577498 Jennings et al. Aug 2009 B2
7651010 Orzech Jan 2010 B2
7806294 Gatipon et al. Oct 2010 B2
7891290 Chatterjee et al. Feb 2011 B1
7899713 Rothschild Mar 2011 B2
8162176 Rudick Apr 2012 B2
8434642 Rudick May 2013 B2
8490829 Deo Jul 2013 B2
8746507 Metropulos Jun 2014 B2
20010017815 Ackermann et al. Aug 2001 A1
20010041139 Sabini et al. Nov 2001 A1
20020129712 Westbrook et al. Sep 2002 A1
20030012081 Jungmann et al. Jan 2003 A1
20030012864 Gerber Jan 2003 A1
20030091443 Sabini et al. May 2003 A1
20030097314 Crisp, III et al. May 2003 A1
20030227820 Parrent Dec 2003 A1
20040007594 Esch et al. Jan 2004 A1
20040026447 Badin et al. Feb 2004 A1
20040026452 Santiago et al. Feb 2004 A1
20040040983 Zeisel Mar 2004 A1
20040056046 Jones et al. Mar 2004 A1
20040071841 Carhuff et al. Apr 2004 A1
20040103033 Reade et al. May 2004 A1
20040129720 Cheng et al. Jul 2004 A1
20040170727 Howard et al. Sep 2004 A1
20040194629 Jones et al. Oct 2004 A1
20050061837 Sudolcan et al. Mar 2005 A1
20050103799 Litterst et al. May 2005 A1
20050112249 Herrick et al. May 2005 A1
20050121466 Sher et al. Jun 2005 A1
20050133420 Rinker et al. Jun 2005 A1
20050166761 Jones et al. Aug 2005 A1
20050166766 Jones et al. Aug 2005 A1
20050175767 Gerber Aug 2005 A1
20050178793 Cheng et al. Aug 2005 A1
20050199646 Moy Sep 2005 A1
20050201196 Gerber Sep 2005 A1
20050211768 Stillman Sep 2005 A1
20050258186 Hart et al. Nov 2005 A1
20050269360 Piatnik et al. Dec 2005 A1
20050284885 Kadyk et al. Dec 2005 A1
20060036454 Henderson Feb 2006 A1
20060054614 Baxter et al. Mar 2006 A1
20060081653 Boland et al. Apr 2006 A1
20060097009 Bethuy et al. May 2006 A1
20060108415 Thomas et al. May 2006 A1
20060115570 Guerrero et al. Jun 2006 A1
20060115572 Guerrero et al. Jun 2006 A1
20060157504 Barker et al. Jul 2006 A1
20060169715 Emmendoerfer et al. Aug 2006 A1
20060172056 Tobin et al. Aug 2006 A1
20060196886 Fox Sep 2006 A1
20060249536 Hartman et al. Nov 2006 A1
20060278090 Spisak Dec 2006 A1
20060283884 Saggin et al. Dec 2006 A1
20070009365 Litterst et al. Jan 2007 A1
20070012719 Holler Jan 2007 A1
20070080169 Sher et al. Apr 2007 A1
20070095859 Maser et al. May 2007 A1
20070114243 Kershaw et al. May 2007 A1
20070114244 Gatipon et al. May 2007 A1
20070257059 Stevenson Nov 2007 A1
20080023488 Guerrero et al. Jan 2008 A1
20080029541 Wallace et al. Feb 2008 A1
20080029542 Keller Feb 2008 A1
20080041876 Frank et al. Feb 2008 A1
20080083780 Romanyszyn et al. Apr 2008 A1
20080083782 Heusser et al. Apr 2008 A1
20080093382 Sher et al. Apr 2008 A1
20080099506 Jamison et al. May 2008 A1
20080110930 Wittkamp et al. May 2008 A1
20080115672 Jones et al. May 2008 A1
20080121655 Schultz et al. May 2008 A1
20080142548 Moen et al. Jun 2008 A1
20080149126 Abergel Jun 2008 A1
20080149666 LaFlamme et al. Jun 2008 A1
20080149669 Nicholson et al. Jun 2008 A1
Foreign Referenced Citations (275)
Number Date Country
8782624 Dec 1990 AU
8943614 Oct 1992 AU
9182541 Jul 1993 AU
9180850 Mar 1994 AU
9456371 Sep 1994 AU
9516757 Jul 1997 AU
9719013 Oct 1997 AU
2002362597 Dec 1997 AU
9645173 Jan 1998 AU
734299 Jun 1998 AU
745372 Jul 1999 AU
199921393 Oct 1999 AU
744022 Feb 2000 AU
199891349 May 2000 AU
745539 Jun 2000 AU
756406 Aug 2000 AU
9892355 Aug 2000 AU
756091 Feb 2001 AU
760653 Jun 2001 AU
2001251732 Oct 2001 AU
2001100273 Nov 2001 AU
2001274664 Dec 2001 AU
2001281056 Feb 2002 AU
2002234639 Sep 2002 AU
200238172 Nov 2002 AU
2002256450 Nov 2002 AU
2002308704 Nov 2002 AU
2001270993 Jan 2003 AU
2002353654 Jun 2003 AU
2002300732 Nov 2003 AU
768650 Dec 2003 AU
2004280313 Apr 2005 AU
2005239709 Dec 2005 AU
2006201657 May 2006 AU
2005202597 Aug 2006 AU
2005225146 Aug 2006 AU
2007202881 Jul 2007 AU
2001282509 Sep 2007 AU
2002340677 Sep 2007 AU
2002257124 Oct 2007 AU
1005369 Jul 1993 BE
1242676 Feb 1988 CA
2036622 Aug 1991 CA
1290150 Oct 1991 CA
2088976 Feb 1992 CA
1300904 May 1992 CA
1305104 Jul 1992 CA
1336200 Jul 1995 CA
2143512 Aug 1995 CA
2205260 Jun 1996 CA
2213081 Aug 1996 CA
2215413 Oct 1996 CA
2233275 Apr 1997 CA
2195929 Sep 1997 CA
2265623 Feb 1998 CA
2243960 Jun 1998 CA
2276189 Jul 1998 CA
2211051 Aug 1998 CA
2291152 Dec 1998 CA
2135904 Apr 1999 CA
2229832 Aug 1999 CA
2336367 Jan 2000 CA
2339361 Feb 2000 CA
2339750 Feb 2000 CA
2378126 Feb 2001 CA
2378288 Feb 2001 CA
2380439 Feb 2001 CA
2568231 Feb 2001 CA
2568233 Feb 2001 CA
2568237 Feb 2001 CA
2568239 Feb 2001 CA
2568246 Feb 2001 CA
2313794 Jan 2002 CA
2422277 Mar 2002 CA
2429523 May 2002 CA
2432679 Jun 2002 CA
2434818 Aug 2002 CA
2441144 Sep 2002 CA
2127808 Nov 2002 CA
2386433 Nov 2002 CA
2447082 Jan 2003 CA
2453324 Jan 2003 CA
2422545 Mar 2003 CA
2473961 Mar 2003 CA
2461307 Apr 2003 CA
2466752 May 2003 CA
2466961 May 2003 CA
2419356 Aug 2003 CA
2479243 Sep 2003 CA
2482542 Nov 2003 CA
2484170 Nov 2003 CA
2486349 Nov 2003 CA
2495317 Feb 2004 CA
2501747 Apr 2004 CA
2513719 Aug 2004 CA
2513891 Aug 2004 CA
2515188 Aug 2004 CA
2444027 Nov 2004 CA
2521098 Nov 2004 CA
2522843 Nov 2004 CA
2524049 Nov 2004 CA
2476338 Jan 2005 CA
2530383 Jan 2005 CA
2533058 Feb 2005 CA
2486041 Apr 2005 CA
2544144 May 2005 CA
2544274 May 2005 CA
2576374 Jul 2005 CA
2554502 Aug 2005 CA
2557674 Sep 2005 CA
2558876 Sep 2005 CA
2565821 Nov 2005 CA
2566240 Nov 2005 CA
2566463 Dec 2005 CA
2570288 Jan 2006 CA
2574860 Jan 2006 CA
2572230 Feb 2006 CA
2518803 Mar 2006 CA
2577849 Mar 2006 CA
2584150 Apr 2006 CA
2587098 May 2006 CA
2588282 Jun 2006 CA
2588393 Jun 2006 CA
2591788 Jun 2006 CA
2592052 Jun 2006 CA
2594854 Jul 2006 CA
2596016 Aug 2006 CA
2596020 Aug 2006 CA
2545868 Nov 2006 CA
2598590 Nov 2006 CA
2527520 May 2007 CA
2537775 Aug 2007 CA
2580317 Sep 2007 CA
1504159 Jun 2004 CN
1906590 Jan 2007 CN
1942392 Apr 2007 CN
381482 Sep 1923 DE
0083467 Jul 1983 EP
0104447 Apr 1984 EP
0105017 Apr 1984 EP
0112638 Jul 1984 EP
0136005 Apr 1985 EP
0154681 Sep 1985 EP
0158096 Oct 1985 EP
0175815 Apr 1986 EP
307150 Mar 1989 EP
0643667 Apr 1996 EP
727165 Aug 1996 EP
0729741 Sep 1996 EP
0786948 Feb 1999 EP
0958234 Nov 2001 EP
1380536 Jan 2004 EP
1453018 Sep 2004 EP
1538124 Jun 2005 EP
0672616 Sep 2005 EP
1829818 Sep 2007 EP
2429694 Mar 2007 GB
H04502298 Apr 1992 JP
H11262649 Sep 1999 JP
2003506107 Feb 2003 JP
2006014745 Jan 2006 JP
2009514746 Apr 2009 JP
2009528919 Aug 2009 JP
8809766 Dec 1988 WO
9325465 Dec 1993 WO
9325466 Dec 1993 WO
9522505 Aug 1995 WO
9606036 Feb 1996 WO
9612644 May 1996 WO
9747555 Dec 1997 WO
9806660 Feb 1998 WO
9850165 Nov 1998 WO
9902449 Jan 1999 WO
9907634 Feb 1999 WO
0009437 Feb 2000 WO
0010909 Mar 2000 WO
0015049 Mar 2000 WO
0017090 Mar 2000 WO
0018499 Apr 2000 WO
0038825 Jul 2000 WO
0063107 Oct 2000 WO
0065316 Nov 2000 WO
0069274 Nov 2000 WO
0122836 Apr 2001 WO
0134470 May 2001 WO
0154551 Aug 2001 WO
0156918 Aug 2001 WO
0191601 Dec 2001 WO
02057178 Jul 2002 WO
02059035 Aug 2002 WO
02066835 Aug 2002 WO
02078498 Oct 2002 WO
02087350 Nov 2002 WO
03002449 Jan 2003 WO
03016198 Feb 2003 WO
03041513 May 2003 WO
03068665 Sep 2003 WO
03084860 Oct 2003 WO
03091152 Nov 2003 WO
03097497 Nov 2003 WO
03099704 Dec 2003 WO
03107110 Dec 2003 WO
2004011361 Feb 2004 WO
2004019707 Mar 2004 WO
2004036515 Apr 2004 WO
2004050537 Jun 2004 WO
2004050541 Jun 2004 WO
2004051163 Jun 2004 WO
2004083789 Oct 2004 WO
2004084688 Oct 2004 WO
2004094585 Nov 2004 WO
2004100756 Nov 2004 WO
2004101122 Nov 2004 WO
2004101424 Nov 2004 WO
2004107938 Dec 2004 WO
2005007559 Jan 2005 WO
2005007560 Jan 2005 WO
2005012157 Feb 2005 WO
2005018788 Mar 2005 WO
2005021417 Mar 2005 WO
2005047171 May 2005 WO
2005047172 May 2005 WO
2005068349 Jul 2005 WO
2005069919 Aug 2005 WO
2005070816 Aug 2005 WO
2005071267 Aug 2005 WO
2005077811 Aug 2005 WO
2005079329 Sep 2005 WO
2005079361 Sep 2005 WO
2005085121 Sep 2005 WO
2005089922 Sep 2005 WO
2005094642 Oct 2005 WO
2005095229 Oct 2005 WO
2005097665 Oct 2005 WO
2005099469 Oct 2005 WO
2005111955 Nov 2005 WO
2005113411 Dec 2005 WO
2005113416 Dec 2005 WO
2006001277 Jan 2006 WO
2006005401 Jan 2006 WO
2006005923 Jan 2006 WO
2006013362 Feb 2006 WO
2006016182 Feb 2006 WO
2006021039 Mar 2006 WO
2006023310 Mar 2006 WO
2006024409 Mar 2006 WO
2006036353 Apr 2006 WO
2006043808 Apr 2006 WO
2006058692 Jun 2006 WO
2006058713 Jun 2006 WO
2006066338 Jun 2006 WO
2006076733 Jul 2006 WO
2006078370 Jul 2006 WO
2006082211 Aug 2006 WO
2006088990 Aug 2006 WO
2006118697 Nov 2006 WO
2006123131 Nov 2006 WO
2006128695 Dec 2006 WO
2006131431 Dec 2006 WO
2006131940 Dec 2006 WO
2007000028 Jan 2007 WO
2007001578 Jan 2007 WO
2007001580 Jan 2007 WO
2007002575 Jan 2007 WO
2007011830 Jan 2007 WO
2007056407 May 2007 WO
2007056407 May 2007 WO
2007127525 Nov 2007 WO
2007146452 Dec 2007 WO
2008015097 Feb 2008 WO
2008022300 Feb 2008 WO
2008028294 Mar 2008 WO
2008065401 Jun 2008 WO
2008066757 Jun 2008 WO
2009032686 Mar 2009 WO
Non-Patent Literature Citations (21)
Entry
First Office Action for Chinese Application No. 201310306023.0 dated Feb. 28, 2015.
First Office Action for Chinese Application No. 201310306124.8 dated Apr. 3, 2015.
Baeyens, Frank et al., “Flavor-Flavor and Color-Flavor Conditioning in Humans,” Learning and Motivation 21, 434-455 (1990).
European Search Report dated Jan. 25, 2013 for Application No. EP 12183955.
Disclosure Under 37 CFR 1.56, dated Jul. 30, 2013, for U.S. Appl. No. 13/888,138.
Disclosure Under 37 CFR § 1.56, dated Jan. 16, 2009, for U.S. Appl. No. 12/171,698.
European Examination Report dated Sep. 1, 2010 for Application No. EP 08798790.5.
Fast & Fluid—The Tinting Company, “Dispensers,” (http://www.fast-fluid.com/product/cosmeticsDispensersEng.asp?MenuItemiD=12&parentID=28) Dec. 28, 2005.
Fast & Fluid—The Tinting Company, “Mixers & Shakers,” (http://www.fst-fluid.com/product/cosmeticsShakersMixersEng.asp?MenuItemID=13&parentID=28) Dec. 28, 2005.
Fast & Fluid—The Tinting Company, “Prismapro,” (http://www.fast-fluid.com/software/primaProEng.asp?ParentID=29) Dec. 28, 2005.
Fast & Fluid—The Tinting Company, “TintMasterHairCare (hair dye dispenser),” (http://www.fast-fluid.com/product/detailProduct.asp?ProductID=71&parentID=28) Dec. 28, 2005.
International Preliminary Report on Patentability for PCT/US2008/074458 dated Oct. 23, 2009.
International Search Report & Written Opinion for PCT/US2007/062973 dated Dec. 21, 2007.
International Search Report & Written Opinion for PCT/US2008/074458 dated Nov. 26, 2008.
Ipifini, “Choice Enabled Packaging,” (www.ipifini.com/tech.html) 2006.
Lancer, “Redirect your store traffic from the cooler to your more profitable post-mix fountain area by adding fun and creating excitement,” FS Series (Apr. 2003), p. 4.
Stillman, J.A., “Color Influences Flavor Identification in Fruit-flavored Beverages,” Journal of Food Science, vol. 58, No. 4, Jul. 1993, pp. 810-812.
Taylor, “702 Soft Serve Freezer,” published at www.taylor-company.com/products/s_pdf/s0702.pdf, publication date: Dec. 2004.
Baeyens F et al: “Parameters of human evaluative flavor-flavor conditioning,” Learning and Motivation, Academic Press, Amsterdam, NL, vol. 26, No. 2,May 1, 1995 (May 1, 1995), pp. 141-160.
Summons to Attend Oral Proceedings Pursuant to Rule 115(1) EPC dated Apr. 16, 2013 for Application No. EP 08798790.5.
English Translation of Japanese Office Action dated Dec. 15, 2015 for Patent Application No. JP2015-006600.
Related Publications (1)
Number Date Country
20140361035 A1 Dec 2014 US
Provisional Applications (1)
Number Date Country
60970278 Sep 2007 US
Continuations (3)
Number Date Country
Parent 13888138 May 2013 US
Child 14465976 US
Parent 13439516 Apr 2012 US
Child 13888138 US
Parent 12171698 Jul 2008 US
Child 13439516 US