The present invention relates to a coffee machine, in particular a filter coffee machine, for preparing a caffeinated hot beverage comprising: a boiler for producing hot, in particular boiling, water and having a brewing unit installed downstream of the boiler, which is preferably a coffee filter unit, and having at least one collection vessel installed downstream of the brewing unit, from which a prepared caffeinated hot beverage can be conducted in particular through an outlet conduit to at least one dispensing device in order to dispense it when the dispensing device is opened.
Such coffee machines, especially filter coffee machines, are known in a large variety of embodiments.
Against this background, it is an object of the invention to optimize the output of the coffee in order to be able to break new ground in the design of coffee machines, in particular filter coffee machines, of the generic type described above.
The present invention solves this problem by means of a coffee machine, in particular a filter coffee machine, including a boiler for producing hot water and having at least one brewing unit installed downstream of the boiler, which can preferably be a coffee filter unit, as well as having at least one or more collection vessel(s) installed downstream of the brewing unit, in particular heat-collection vessel(s), from which a prepared caffeinated hot beverage can be conducted through at least one outlet conduit to at least one dispensing device, in order to dispense the beverage into a container such as a cup when the at least one dispensing device is opened, and at least one or more liquid pump(s) for conveying liquid, in particular the caffeinated hot beverage, from the at least one collection vessel in the direction of the at least one dispensing device and/or for conveying liquid in the opposite direction, in particular back into the at least one collection vessel.
The invention makes it possible to break new ground in the design of a coffee machine, in particular a filter coffee machine, especially preferably a fully automatic coffee filter machine, for example because the at least one outlet can also be positioned higher than was possible according to the prior art.
A major disadvantage of the prior art without the liquid pump to convey the coffee to the outlet was that it was mandatory to have a slope from the collection vessel to the outlet. This inevitably resulted in restrictions in the height of the beverage container in relation to the dispensing height. This problem is solved by the invention in a simple and cost-effective way.
However, the invention also offers the opportunity to eliminate further disadvantages of the prior art. According to the prior art, the dispensing speed of the coffee beverage was continuously reduced by the free outlet when the fill level in the collection vessel fell. According to the invention, this problem can also be remedied or eliminated if the delivery rate of the liquid pump can be set to a constant level.
In one embodiment the at least one or more liquid pump(s) can be controlled by a control device. The respective liquid pump may be a gear pump, generally a low-cost and easily and precisely controllable gear pump, according to a further embodiment of the invention. The gear pump may be controlled via the control device with regard to its delivery parameters, for example by influencing the speed, and can in particular be controlled in both directions.
An advantage of the invention is that a constant volume dosage can be controlled independently of the filling level of the warmer.
According to an embodiment, the at least one liquid pump is connected directly into the at least one outlet conduit between the at least one collecting vessel and the at least one dispensing device.
In another embodiment, a filter device, such as a filter screen, may be connected upstream of the liquid pump to protect the liquid pump from contamination. In this case, it can also be provided that the filter screen is cleaned by backwashing with the liquid pump via an output device, in particular cyclically into a drain.
It may be particularly advantageously provided that the respective fluid pump is designed and controllable for pumping in two directions.
This is because it can be provided so that water and/or cleaning fluid can be easily pumped back from the respective collection vessel and the respective brewing unit, in particular the coffee filter, using the respective fluid pump in order to clean these units.
In addition, the filter screen in the brewing unit can be rinsed and cleaned from below using liquid.
It is also conceivable that the product output is carried out by a jet control as a dispensing device (aerator).
The term ‘caffeinated hot beverage’ for the purposes of the present invention relates to a coffee beverage, in particular a filtered coffee, and other hot beverages containing caffeine such as tea.
In the following, the invention is explained in more detail in several embodiment variants on the basis of the enclosed figures, wherein the invention is not limited to the concretely represented embodiment variants, wherein:
The respective coffee machine 1, 1′ has a water supply line 2, which can be connected, for example, to a conventional water tap, a house conduit or the like.
The water supply line 2 flows into a boiler 3, which is used to produce hot, especially boiling water.
The water heated by the boiler 3 of
Referring more particularly to
From the collection vessel 5, the coffee can flow through an outlet conduit 6 to a dispenser 7, which can be a freely closable outlet. When this dispensing device 7 is opened, the prepared coffee flows into a container like a cup 9.
A liquid pump 8 is interconnected in the outlet conduit 6 between the collection vessel 5 and at least one dispensing device 7.
This liquid pump 8 has the advantage that it can be used to convey the prepared caffeinated hot beverage with additional pressure, so that the dispensing device 7 can be mounted at a greater height than was the case with the prior art, in which the position of the collection vessel 5 determined the possible height of the dispensing device. It is also possible to convey the coffee through other devices not shown here.
This, in turn, makes it possible to break new ground in the design of a filter coffee machine, for example, because the at least one dispensing device 7 can be positioned higher than was possible according to the prior art, for example also significantly higher than the point at which the outlet conduit 6 is or will be led out of the collection vessel 5.
This is also advantageous if more than one collection vessel 5 is provided, for example two warming containers (5, 5′) which are filled alternately, as shown in
Optionally, a filter device 10 connected upstream of the liquid pump 8 can be provided to protect the liquid pump 8 from contamination in the same way as a filter screen.
It may also be optionally provided that two or more of the output devices are provided which may be at the same or different heights.
It may optionally also be provided that two or more of the liquid pumps are provided. Such an embodiment is shown in
As an option, it can again be provided that a filter device 10, 10′ connected upstream of the respective liquid pump 8, 8′ protects each liquid pump from contamination like a filter screen.
It is advisable to connect respectively controllable valves 11, 11′, in particular shut-off valves, between the brewing unit, in this case the coffee filter 4, and the two collection vessel(s) 5, 5′, i.e., before the respective collection vessel(s) 5, 5′. In this way, in conjunction with the control unit, it is easy to control which of the two collection vessels 5, 5′ is to be filled with the coffee prepared from the one brewing unit 4 or one of several brewing units 4. This filling can, for example, take place depending on various parameters, such as the fill level and/or the time elapsed since the last filling.
Flushing processes and the like can be initiated through conduits 12, 12′ between the outlet conduits 6, 6′, shown here as dashed lines, which can be used alternatively through controllable directional valves not shown here and which are led back into brewing unit 4. The liquid pump(s) have a very beneficial effect(s) here.
Number | Date | Country | Kind |
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20 2018 102 091.9 | Apr 2018 | DE | national |
20 2018 102 872.3 | May 2018 | DE | national |
This application is a United States National Stage Application of International Application No. PCT/EP2019/059277 filed Apr. 11, 2019, claiming priority from German Patent Application No. 20 2018 102 091.9 filed Apr. 17, 2018 and from German Patent Application No. 20 2018 102 872.3 filed May 23, 2018.
Filing Document | Filing Date | Country | Kind |
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PCT/EP2019/059277 | 4/11/2019 | WO | 00 |