Beverage Metering and Dispensing Machine

The integration of a detachable ice supply device with a branch valve and pivoting flap in beverage machines ensures precise ice dispensing and easy cleaning, addressing the limitations of existing machines in producing diverse beverages and maintaining cleanliness.

JP7772775B2Active Publication Date: 2025-11-18STEINER WEGGIS AG
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Patent Information

Application Number
JP2023505919
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-08-11
Filing Date
2021-07-29
Publication Date
2025-11-18
Estimated Expiration
2041-07-29

AI Technical Summary

Technical Problem

Existing beverage dispensing machines lack the ability to produce a variety of beverages with high quality and efficiently dispense small amounts of ice while ensuring easy cleaning and preventing blockages.

Method used

An ice supply device is integrated above the coffee maker unit with a detachable tubular ice channel that includes a branch valve and a pivoting flap, allowing precise ice dispensing and easy assembly/disassembly for cleaning, using measuring means to control the ice amount.

Benefits of technology

Enables reliable dispensing of specific ice amounts without blockages and facilitates thorough cleaning, maintaining hygiene and operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The beverage dispensing machine (10) comprises a cabinet housing (11) in which are located at least a coffee maker unit (16), a milk frothing device, a water heating device, an ice supply device (12), and an outlet unit (15) accessible from the front and located in the lower region of the coffee maker unit (16) and having a plurality of outlet openings (35) for each beverage. The ice supply device (12) is located above the coffee maker unit (16) in the cabinet housing (11). A tubular ice channel (20) leads to the outlet openings (35) of the outlet unit (15), through which ice can be dropped, and the tubular ice channel (20) is composed of pieces that can be detached from each other. This arrangement of the ice supply device and ice channel allows precise amounts of ice to be dispensed in a simple manner and without the risk of clogging. Due to the ease of assembly and disassembly of the ice channel, the ice channel can be thoroughly cleaned, thus ensuring the required cleanliness of the ice channel at all times.
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Description

[Technical Field]

[0001] The present invention relates to a beverage dispensing machine for dispensing beverages, in particular coffee, milk, chocolate and / or mixed drinks, comprising a cabinet housing in which are located at least one coffee maker unit, a milk frothing device, a water heating device, an ice supply device and an outlet unit arranged in a lower area of ​​the coffee maker unit, accessible from the front side, with a plurality of outlet openings for the respective beverages, according to the preamble of claim 1. [Background technology]

[0002] In the case of the known beverage machine according to publication 2897509B1 for receiving hot or cold beverages, including coffee, milk drinks, tea, chocolate, syrups, flavored drinks, and ice, a cabinet housing is provided with a pivoting door at the front, in which the components necessary for producing the beverages mentioned are contained, as well as a main control system for the machine, which controls and monitors the components and can be operated by a user using an operating system, in particular a touch screen. Known modules for brewing coffee, heating milk or making milk froth, heating and serving water, carrying ice, syrup, etc., and containers with flavoring substances such as chocolate powder are used as components. Additionally, a magazine for the beakers to be used is provided, which can be received from the front side of the housing. Summary of the Invention [Problem to be solved by the invention]

[0003] Starting from this general machine, the present invention is based on the object of improving the beverage dispensing machine so that a variety of different beverages can be produced and dispensed with high quality using it, and in addition, so that an ice supply device for dispensing ice in small amounts is integrated with the aim of achieving simple and reliable dispensing of specific amounts of ice and making it possible to carry out cleaning of the device with little effort. [Means for solving the problem]

[0004] This object is solved according to the present invention by the features of claim 1.

[0005] In such a situation, an ice supply device is arranged above the coffee maker unit in the cabinet housing, and a tubular ice channel leads from this ice supply device to the outlet opening of the dispensing unit, through which ice is dropped in small amounts, and wherein this tubular ice channel is made up of partial sections that can be detached from each other.

[0006] This arrangement of the ice supply device and ice channel makes it possible to simply dispense the correct amount of ice without the risk of blockage, and by assembling and disassembling the ice channel, which can be carried out in only a few work steps, the channel can be thoroughly cleaned, thus always ensuring the required cleanliness of the ice channel.

[0007] Very advantageously, the ice supply device is controlled in such a way that a specific amount of ice is trickled down through the ice channel to the dispensing unit, the ice channel being integrated with measuring means for determining the amount of ice to be passed through, and by means of which measuring means the ice supply device is stopped when the required amount of ice is reached, so that the amount of ice supplied can be dispensed in fixed or measured portions, even when ice cubes are produced in various sizes.

[0008] A partial section of the ice channel is advantageously formed from an upper pipe piece connected to the ice supply device, a branch valve, and a lower pipe piece opening into the outlet opening, so that the ice channel can be easily assembled and disassembled, as mentioned above.

[0009] This diversion valve has been found to be another significant advantage of the present invention and comprises a pivoting flap and a branch into the outlet pipe through which ice is directed into a catchment container or the like, so that this flap on the ice channel can close without the risk of ice getting stuck between the flap and the wall of the diversion valve.

[0010] The invention and further advantages thereof will be explained in more detail below on the basis of exemplary embodiments and with reference to the drawings. [Brief explanation of the drawings]

[0011] [Figure 1] 1 is a partial front view showing a beverage dispensing machine according to the present invention in an open position; [Figure 2] 2 is an exploded view showing an ice channel for installation in the beverage dispensing machine according to FIG. 1. [Figure 3] FIG. 1 is a partial longitudinal cross-sectional view of the ice channel in an installed state. [Figure 4] 2 shows a view from below of the outlet unit of the beverage dispensing machine according to FIG. 1; DETAILED DESCRIPTION OF THE INVENTION

[0012] 1 shows a beverage dispensing machine 10 for dispensing beverages. It is particularly well suited to being an automatic beverage device by means of which a plurality of beverages can be dispensed, preferably mixed drinks with coffee, milk, tea, chocolate, and flavorings, where in the case of coffee, a choice can be made between espresso, regular coffee, cappuccino, and even latte macchiato. The cabinet housing 11 is shown in an open state without a front side, where the front side is typically a horizontally pivoting door or the like, which can be opened for cleaning, maintenance, and for refilling coffee beans, milk, and chocolate powder, as well as flavoring substances in liquid or powder form.

[0013] Thus, in each case, among other elements, at least one coffee maker unit 16 is integrated into the cabinet housing 11, the coffee maker unit 16 comprising a coffee bean container 17 as well as a milk frothing and water heating device, the latter not being visible here, and in addition a storage space for a corresponding container is provided for the transfer of aroma substances in liquid or powder form.

[0014] An outlet unit 15 is arranged in the lower region of the coffee maker unit 16, below which there is a standing space for a drip container 18, accessible from the front by the user for a container 19, such as a cup, beaker or jug. The outlet unit 15 is equipped with a number of outlet openings 31 to 34 for the respective beverages and an additional outlet opening 35 for ice, as can be seen in Figure 4.

[0015] Additionally, a magazine 13 is arranged next to the outlet unit 15, the magazine 13 preferably containing beakers 19 or the like, the magazine 13 being made in each case of a disposable material such as plastic or cardboard. As a result, a user can pull out an individual beaker 19 from the magazine 13 and place it on the stand surface of the drip container 18, after which the desired beverage can be selected from a control panel such as a touch screen. This touch screen is advantageously located in the upper region of the cabinet housing 11, on the front side, near the door, and as close to eye level as possible for good access. Of course, counting means may also be assigned to the beverage dispensing machine 10. The counting means is not shown in more detail.

[0016] According to the present invention, an ice-feeder device 12 is arranged above the coffee maker unit 16 in the cabinet housing 11, and a tubular ice channel 20 extends from the ice-feeder device 12 to the outlet opening 35 of the outlet unit 15, and ice is dropped from the ice-feeder device 12 in small amounts, where the ice channel 20 is made up of partial sections that are detachable from each other.

[0017] 2, these partial sections consist of an upper tubular part 22 connected to the ice supply device 12, a branch valve 25 and a lower tubular section 26 opening into the outlet opening 35. These partial sections are in this situation merely inserted into each other. Likewise, at the top, in the fixed connecting pipe 14 of the ice feeder device 12, and at the respective bottom, the partial sections are inserted without any fixing means. The fixing means in each case comprise hubs 22a, 22b, 25a, 25b, 26a, 26b as pipe end connectors, into which the connectors of adjacent partial sections fit securely, and the fixing means are additionally provided at the hubs 22a, 22b, 25a, 25b, 26a, 26b with engaging means 22', 25', 26' (not shown in detail) which engage with the smallest curvature of the hubs when the partial sections are inserted into one another, locking them in the inserted state, and disengage again when they are pulled apart. Of course, it is also possible to lock or fix these partial sections to one another in some other way.

[0018] According to the invention, a two-part flap 28 is assigned to the diverter valve 25 and can be driven, for example, by a rotary motor 28', so that the diverter element 23 is arranged downward inside the outlet pipe 29, through which ice can be transported and melted in an ice collection container (not shown in more detail) or the like. The angled upper pipe piece 22, with its lower end at the hub 22b, and the outlet pipe 29, connected downstream to the diverter valve 25, extend approximately vertically and coaxially with each other. A pipe section 26, opening into the outlet opening 35, is connected to the support 27 of the diverter valve 25 and projects outward at an angle of less than 90 degrees, preferably between 60 and 30 degrees, relative to the vertical. After a certain length, this pipe section 26 extends as a curved section with an equal inclination angle, is bent downwards at its end, and opens into the outlet opening 35.

[0019] The upper pipe piece 22, the branch valve 25, and the lower pipe section 26 each have a partially circular and partially rectangular or square cross section. The support 27 and the pipe section 26 of the branch valve 25 are arranged so that their underside 24 forms a flat sliding surface for the ice, i.e., so that, among other features, the side surface 24' of the underside of the support 27 extends substantially horizontally. The support 27 is equipped at its top with a removable cover 27', which allows the two-part flap 28 to be removed from the branch valve 25. In this case, the cover 27' can be located on top of the support 27 by a plug or clamp connection. The flap 28 is held by a hinge 38 so that it can pivot and can be manually removed from the branch valve 25 for cleaning without tools by simply releasing the hinge 38, and can then be reattached.

[0020] This arrangement and configuration of the partial elements allows the ice channel 20 to be quickly assembled and disassembled within the machine for cleaning or other purposes without requiring special technical knowledge. Advantageously, these partial sections of the ice channel 20 are made of lightweight plastic components, preferably silicone or similar material.

[0021] Downstream of the flap 28, a measuring means 30, merely indicated as a mark, is housed in the support 27, the measuring means 30 preferably comprising a light barrier, by means of which the amount of ice passed in small increments can be determined, for example by counting the number of ice cubes.

[0022] 3 shows the branch valve 25 with this flap 28, which can be pivoted by a rotary motor 28' that is controllable in the closed position of the outlet pipe 29, to a closed position 28' shown in dashed lines, in which the pipe section 26 is closed. This closed position is also adopted when the rotary motor 28' is stopped, so that ice cannot unintentionally escape through the outlet opening.

[0023] The flap 28 has a rectangular profile that matches the cross-sectional shape of the diverter valve 25, is arranged to be pivotable about an axis within the diverter valve 25 by a hinge 38, and is aligned to extend longitudinally in the same plane as the support 27 and the underside 24 of the pipe section 26 in the closed position for the outlet pipe 29 shown, for the purpose of favorably affecting ice throughput. In addition, the uniform cross-section of the ice channel 20 has such a branching configuration, preventing ice from accumulating in this location as it falls. In the closed position for the pipe section 26, the flap 28 is positioned vertically, thus forming an additional wall of the branch 23 that leads into the outlet pipe 29.

[0024] FIG. 4 shows an outlet unit 15 with a plurality of outlet openings 31, 32, 33, 34 arranged like adjacent nozzles for the individual outlet of various beverages. These outlet openings are connected in each case by lines, such as pipes or hoses, to the coffee maker unit 16, the milk frothing device, the water heating device, and the aroma container. Additionally, the ice outlet 35 has a larger opening cross-section than the beverage outlet openings 31 to 34. In this case, the outlet 35 is configured to have a rectangular shape and is arranged with its longitudinal inner side 35' adjacent to the outlet openings 31 to 34, where the outlet openings 31 to 34 are positioned in a line adjacent to one another, so that when a beaker 19 is placed on the stand surface, all of the outlet openings 31 to 34 are located within the upper opening area of ​​the beaker. This eliminates the need to move the beaker, and the beaker is positioned below the outlet unit 15 above the drip container 18 due to the configuration of the stand surface. This outlet 35 may of course be of a different shape, such as circular or oval, if desired.

[0025] Advantageously, this ice supply device 12 is equipped with an ice making device, not shown in more detail. Ice may be emptied from the bags placed in the cooler container in the cabinet housing 11, from which ice can be removed. The ice supply device 12 is equipped with a motor-controlled transport unit, such as a so-called hopper motor, which is known and will not be described in more detail, by which ice can be gradually removed through the ice channel 20 and placed in the container 19. This transport unit can be controlled in this situation to allow the amount of ice to be delivered as various rations as desired.

[0026] When the user selects on the control panel to dispense a specific amount of ice, the first step is to switch on the transport unit of the ice supply device 12 and, simultaneously or already before, to pivot the flap 28 to the position shown in FIG. 3 by means of the switched-on rotary motor 28', so that the ice falls through the tube section 22 onto the flap 28 and thus onto the sliding surface 24 and into the container 19 located below. In this case, the amount of ice flowing is measured by the measuring means 30 in the support 27, and as soon as the selected amount has passed, the flap 28 is pivoted to close the tube section 26 as shown by the dashed line in FIG. 3, and the transmission unit is simultaneously switched off. This device can also be adjusted to automatically switch off after a predetermined time, the time period being adjusted depending on the amount of ice already measured at the next subsequent selection.

[0027] Advantageously, the rotary motor 28' is equipped with a position indicator to make it possible to detect if the flap 28 has not pivoted to its respective closed position, for example if an ice cube gets stuck between the flap and the inner wall of the diverter valve 25 or if an ice blockage occurs therein, preventing the flap from pivoting any further.

[0028] In principle, a measuring means for determining the amount of ice can be arranged at the outlet in the ice supply device, or it is also possible not to provide a measuring means, in which case only control of duration etc. is carried out in the transport unit.

[0029] Although the present invention has been fully described with reference to the exemplary embodiments presented, other variations may be contemplated.

[0030] Of course, depending on the size of the cabinet housing 11 and on the requirements, it is also possible to use more or fewer partial elements in the ice channel. For example, the upper pipe section, the branch valve, or the lower pipe section may in each case consist of two partial elements which can be detached from each other.

[0031] Similarly, depending on the spatial requirements within the cabinet housing, the ice channels can be configured in any desired manner, thus offering another advantage of high flexibility in terms of their installation.

[0032] In principle, with a simpler configuration, it is possible to dispense with the branch valve and outlet pipe and provide only an ice channel.

Claims

1. A beverage dispensing machine for dispensing beverages, comprising a cabinet housing (11) in which are arranged at least one coffee maker unit (16) with at least one bean container (17), a milk frothing device, a water heating device, an ice supply device (12), and an outlet unit (15) accessible from the front and located in a lower area of ​​the coffee maker unit (16) with a plurality of outlet openings (31 to 35) for each beverage, the ice supply device (12) in the cabinet housing (11) is arranged above the coffee maker unit (16) and the at least one bean container (17), a tubular ice channel (20) leads from the ice supply device (12) to the outlet opening (35) of the outlet unit (15), and ice can be dropped through the tubular ice channel (20), the tubular ice channel (20) being composed of partial sections that can be detached from each other; a partial section of the tubular ice channel (20) formed from an upper tubular piece (22) connected to the ice supply device (12), a branch valve (25) connected to the upper tubular piece (22), and a tubular piece (26) opening downwards into the outlet opening (35); A pivot flap (28) and a branch element (23) entering an outlet pipe (29) are assigned to the branch valve (25), as well as a support (27) connected to the pipe piece (26) downstream of the pivot flap (28), Through said outlet pipe (29), ice can be moved and conveyed into the ice collection container, At least one measuring means (30) is housed in said support (27), by means of which it is possible to measure the amount of ice or the number of ice cubes that have been able to pass through, Using the at least one measuring means (30), the ice supply device (12) is controlled so that a specific amount of ice or a specific number of ice cubes is dropped bit by bit through the tubular ice channel (20) to the outlet unit, and the ice supply device (12) is stopped when the specific amount of ice is reached. A beverage dispensing machine comprising:

2. A beverage dispensing machine as described in claim 1, characterized in that the tubular ice channel (20) is integrated with a measuring means (30) for detecting the amount of ice or the number of ice cubes passing through, and the ice supply device (12) is stopped using the measuring means (30) when a specific amount of ice is reached.

3. 3. The beverage dispensing machine according to claim 1 or 2, characterized in that the upper tubular piece (22) with its lower end (22a) and the outflow pipe (29) connected downstream of the branch valve (25) extend substantially vertically and coaxially with each other, whereas the pipe piece (26) opening into the outlet opening (35) projects outward from the branch valve (25) at an angle of less than 90°.

4. 4. A beverage dispensing machine according to any one of claims 1 to 3, characterized in that at least the upper tubular piece (22), the branch valve (25) and the pipe piece (26) are arranged in each case over a partial length so as to have a rectangular cross section, the underside of the pipe piece (26) forming a sliding surface (24) for ice.

5. 5. A beverage dispensing machine according to claim 1, wherein the pipe piece (26) projects linearly outward from the support (27) of the branch valve (25), then extends as a curved section, is bent downwards at its lower end and opens into the outlet opening (35).

6. 5. The beverage dispensing machine according to claim 4, characterized in that the pivoting flap (28) can be adjusted to a closed position for the pipe piece (26) or the outlet pipe (29) by a controllable motor (28') at the branch valve (25), and in the stopped state of the motor (28'), the pivoting flap (28) closes the pipe piece (26).

7. 7. The beverage dispensing machine of claim 6, wherein the pivoting flap (28) has a rectangular outer shape and is held by a hinge (38) so as to be able to pivot about an axis within the branch valve (25) and so as to be aligned vertically in the closed position for the pipe piece (26) and so as to be aligned as an extension of the sliding surface (24) on the lower surface of the pipe piece (26) in the closed position for the outlet pipe (29).

8. 8. The beverage dispensing machine according to claim 1, wherein the outlet unit (15) comprising the plurality of outlet openings (31, 32, 33, 34) arranged adjacent to one another in a nozzle pattern for the respective outlets of the beverages and the additional outlet opening (35) for ice has an opening cross-section larger than the outlet openings (31, 32, 33, 34) for the beverages.

9. 9. The beverage dispensing machine according to any one of claims 1 to 8, characterized in that an externally accessible drip container (18) stand surface for a receptacle (19) is arranged in the cabinet housing (11) below the outlet unit (15).

10. 10. The beverage dispensing machine according to any one of claims 1 to 9, characterized in that the upper tubular piece (22), the branch valve (25), the pivot flap (28) in the branch valve (25), the tubular piece (26), and the outlet pipe (29) of the tubular ice channel (20) are connected to each other in each case so as to enable them to be detachably connected together or fixed in each case.

11. 11. The beverage dispensing machine according to any one of claims 1 to 10, characterized in that the support (27) allocated to and arranged for the branch valve (25) is equipped with a removable cover (27'), which makes it possible to remove the pivot flap (28) from the branch valve.

12. A beverage dispensing machine as described in any one of claims 1 to 11, characterized in that at least one measuring means (30) housed within the support (27) is provided with a lightweight barrier.

13. Beverage dispensing machine according to any one of claims 1 to 12, characterized in that partial sections of the tubular ice channel (20) are made of silicone or plastic parts.

Citation Information

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