DEVICE FOR DISTRIBUTING LIQUIDS

IT202400017863B1Active Publication Date: 2026-08-24GESSI SPA
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Patent Information

Application Number
IT102024000017863
Authority / Receiving Office
IT · IT
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2026-08-24
Estimated Expiration
2044-07-31

AI Technical Summary

Technical Problem

Existing devices for dispensing liquids, such as coffee machines and sanitary fixtures, often fail to deliver fluids at optimal temperatures and pressures, leading to issues like burnt tastes, non-optimal aroma extraction, or component damage, and can pose safety risks.

Method used

A device equipped with a flow control element that regulates fluid delivery based on temperature and pressure, ensuring safe and optimal dispensing by allowing fluid flow only when certain characteristics are met, featuring a thermostatic or electronically controlled valve system.

Benefits of technology

Ensures safe and optimal fluid delivery by controlling temperature and pressure, preventing damage and enhancing taste, while maintaining operational safety.

✦ Generated by Eureka AI based on patent content.
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Description

GES1P25IT Eng. Marco Brasca, Register n° 1094 BM DESCRIPTION attached to a patent application for INDUSTRIAL INVENTION PATENT entitled: “Device for dispensing liquids” On behalf of: Gessi SPA, an Italian company based in Serravalle Sesia Agents: see letter of appointment. Field of technology 10 This disclosure relates to the sector of devices intended to deliver liquids, and in particular concerns a device for dispensing liquids, in particular waterfall. Known art 15 Devices for dispensing liquids, such as sanitary devices, are currently widely used and integrate a plurality of technical functions. Machines and systems for dispensing drinks are further examples of devices for dispensing liquids. Such machines and systems for dispensing drinks are used for example for 20 to dispense alcoholic beverages or to dispense coffee, tea or herbal teas. For optimal dispensing of a beverage, the liquid with which the beverage is made prepared requires certain characteristics. For example, for the delivery of the coffee, too high temperatures of the water with which the coffee is prepared can lead to a burnt taste, too low temperatures can cause a 25 non-optimal extraction of aromas from the granules or powder contained in the capsule. With specific regard to coffee, too low brewing pressures can lead to to the delivery of a coffee that is too liquid. Pressures that are too high, on the other hand, can cause a breakage of some components, including the capsule itself. Nonetheless, GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Too high temperatures can interfere with the capsule materials, and can therefore represent a danger. The above described with specific reference to the supply of drinks, can be considered valid also for the dispensing of liquids in general. Summary The Applicant has in particular observed that even in the use of sanitary ware such as bathroom fixtures, there may be a need to dispense liquids, for example for example water, only when these liquids have certain characteristics, 10 for example a temperature higher than a certain threshold. In order to provide optimal fluid delivery, and in order to prevent conditions of dangerous operation, the Applicant first created a device for distributing liquids equipped with a flow control element which is primarily designed to allow the delivery of a fluid only when 15 certain characteristics are verified. This disclosure illustrates, in addition to the device for distributing liquids above described, further devices whose main aspects are described below. The following aspects can be combined with each other, with portions of the detailed description and / or claims. Beverage dispensing device with flow control element According to a first independent aspect, a device is described here dispenser (108) for drinks extracted from drinks dispensing containers, preferably configured for, and specifically intended to be coupled to 25 a tap (100) for water supply; the beverage dispensing device (108) comprising: - a supporting body (108b); GES1P25IT Eng. Marco Brasca, Register n° 1094 BM - a distributor body (108a) connected to said support body (108b) and comprising a dispensing portion (109) configured to permit a dispensing a drink; in which: 5 - at least one between said support body (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a container for beverage dispensing (190); - said support body (108b) comprises a power supply input of water (122) configured to receive water from a supply conduit (107); 10 - said dispensing device (108) comprises at least one control element of flow (400) operatively connected to said support body (108b), and receiving in use water from said supply pipe (107); said flow control element (400) having at least one first input powered by said water supply inlet (122) and at least a first 15 outlet (401) configured to supply water to said support body (108b) and / or said distributor body (108a), and wherein said flow control element (400) is configured to allow or selectively prevent the supply of water to said container for dispensing of beverages (190) in accordance with at least one value assumed by at least one 20 characteristic, preferably the temperature, of said water. According to a further non-limiting aspect, said support body (108b) is configured to be coupled to, or to be an integral part of, a body (103) of a tap (100) for water supply. According to a further non-limiting aspect, called supply duct (107) 25 is a supply duct (107) of said tap (100) and / or said distributor body (108a) is solidly connected to said supporting body (108b) or is movably or removably mounted on said support body (108b). According to a further non-limiting aspect, said distributor body (108a) is translatable and / or rotatably mounted on said support body (108b). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, it dictates at least a first exit (401) configured to supply water to said beverage dispensing container (190) when retained and / or contained by, or in, said supporting body (108b) and / or said distributor body (108a). 5 According to a further non-limiting aspect, at least one of the said body of support (108b) and said distributor body (108a) is configured to hold and / or contain removably, optionally operationally removably, at least part of said container for dispensing drinks (190) and / or for being removably coupled to said beverage dispensing container (190). 10 According to a further non-limiting aspect, said container for dispensing drinks (190) can be consumed and / or refilled. According to a further non-limiting aspect, the disbursement portion (109) is configured to allow dispensing of said beverage into a container (800) intended to allow the drink to be consumed by a user. 15 According to a further non-limiting aspect, said portion of disbursement (109) It has a variable extension to adapt to a proximity and / or size of said container (800) and is optionally configurable in a first configuration of extension, preferably in use placed at a first distance from said container (800), and in a second extension configuration, preferably in 20 use arranged at a second distance from said container (800). According to a further non-limiting aspect, the said second distance is greater of the said first distance. According to a further non-limiting aspect, said container is a container final product intended to allow the drink to be consumed by a user. 25 According to a further non-limiting aspect, the flow control element (400) is configured to open or close the first output (401) respectively to allow or selectively prevent the supply of water to said container for beverage dispensing (190). According to a further non-limiting aspect, the flow control element (400) 30 is configured to selectively allow or prevent the supply of water to GES1P25IT Eng. Marco Brasca, Register n° 1094 BM said support body (108b) and / or towards said distributor body (108a) in accordance with at least one value assumed by said at least one characteristic of said water. According to a further non-limiting aspect, called flow control element (400) includes a second exit (402). 5 According to a further non-limiting aspect, the said second exit (402) is connected to said at least one first input. According to a further non-limiting aspect, the said second exit (402) is connected to an exhaust duct (199). According to a further non-limiting aspect, called flow control element 10 (400) is configured to open or close said first output (401) alternatively, and preferably automatic, with respect to said second output (402), to deliver said water on said first outlet (401) or alternatively on said second outlet (402) in according to said at least one value of said at least one characteristic of said water. According to a further non-limiting aspect, called flow control element 15 (400) is configured to open or close said first output (401) alternatively, and preferably automatic, with respect to said second exit (402), to allow or selectively prevent the supply of water to said container for dispensing beverages (190), according to said at least one value of said at least one characteristic of said water. 20 According to a further non-limiting aspect, called flow control element (400) is configured to open and keep open said first exit (401) and, at simultaneously and preferably automatically, close and keep closed the said second exit (402), or to open and keep open said second exit (402) and, at the same time and preferably automatically, close and keep closed the said 25 first exit (401), according to said at least one value of said at least one characteristic of said water. According to a further non-limiting aspect, called flow control element (400) is configured to deliver said water to said first outlet (401) and at the same time to prevent the delivery of said water to said second outlet (402), or to deliver 30 said water on said second outlet (402) and at the same time prevent a supply of GES1P25IT Eng. Marco Brasca, Register n° 1094 BM said water on said first outlet (401), automatically in accordance with said at least a value of said at least one characteristic of said water. According to a further non-limiting aspect, the at least one characteristic of said water is at least one temperature and / or one pressure. 5 According to a further non-limiting aspect, the flow control element (400) It is preferably unidirectional. According to a further non-limiting aspect, the flow control element (400) is configured to prevent a backflow of water from said first outlet (401) and / or from said second exit (402) towards said entrance. 10 According to a further non-limiting aspect, called flow control element (400) is configured to automatically open or close said first output (401), respectively to allow or prevent the delivery of said water to said first output (401) according to said at least one value of said at least one characteristic of said water. 15 According to a further non-limiting aspect, called flow control element is a passively controlled element, and / or includes a thermostatic valve, preferably a valve with a shape memory actuator or a valve with wax or fluid or gas actuator. According to a further non-limiting aspect, called thermostatic valve, 20 preferably called shape memory actuator or wax or fluid or gas actuator, is configured to open or close said first output (401), or to open or close said first exit (401) in an alternative manner to said second exit (402), or to open and keep open said first exit (401) and, at the same time, close and to keep said second exit (402) closed, or to open and keep open said second exit (402) 25 second exit (402) and, at the same time, close and keep closed said first exit (401), in accordance with said at least one value assumed by said at least one characteristic of said water. According to a further non-limiting aspect, called flow control element (400) is an actively controlled element, preferably electronically controlled. 30 According to a further non-limiting aspect, said dispensing device (108) is operationally connected with, optionally comprises, at least one sensor (405) GES1P25IT Eng. Marco Brasca, Register n° 1094 BM configured to detect said at least one value of said at least one characteristic of said water. According to a further non-limiting aspect, said sensor (405) is a sensor electronic. 5 According to a further non-limiting aspect, the said sensor is operationally coupled to, optionally arranged on or in, said supply duct (107) of said tap (100) or said water supply inlet (122) or said inlet of said flow control element (400). According to a further non-limiting aspect, called flow control element 10 (400) is configured to receive a signal, preferably an electronic signal, from said sensor (405). According to a further non-limiting aspect, called flow control element (400) is configured to open or close said first outlet (401), or to open or close said first exit (401) in an alternative manner to said second exit 15 (402), or to open and keep open said first exit (401) and, at the same time, close and keep closed said second exit (402), or to open and keep closed open said second exit (402) and, at the same time, close and keep closed said first exit (401), in accordance with the said signal. According to a further non-limiting aspect, said dispensing device (108) is 20 operatively connected with, or comprising, a data processing unit (404) configured to at least receive said signal from said sensor (405). According to a further non-limiting aspect, said data processing unit (404) includes a control output on which a control signal is transmitted determining, in use, a movement of a mobile element of said element of 25 flow control (400) to open or close said first outlet (401), or to open or close said first exit (401) in an alternative manner to said second exit (402), or to open and keep open said first exit (401) and, at the same time, close and keep closed said second exit (402), or to open and keep closed open said second exit (402) and, at the same time, close and keep closed said 30 first exit (401). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, called flow control element (400) is configured: - to open and keep open, or close and keep closed, said first output (401) when said at least one value of said at least one characteristic of 5 said water, or said liquid, passes a predefined switching threshold (P1, T1) in a first direction and as long as at least one value of said at least one is said characteristic of said water, or of said liquid, does not cross said threshold again default switching (P1, T1) in a second direction opposite to the first. According to a further non-limiting aspect, called flow control element 10 (400) is configured: - to open and keep open, or close and keep closed, said first output (401) in an alternative manner to said second output (402), or to open and keep the first exit (401) open and, at the same time, close and keep it open closed said second exit (402), or to open and keep open said second exit 15 exit (402) and, at the same time, close and keep closed said first exit (401) when said at least one value of said at least one characteristic of said water passes a predefined switching threshold (P1, T1) in a first direction and as long as that said at least one value of said at least one characteristic of said water not crosses the predefined switching threshold (P1, T1) again within one second 20 opposite direction to the first. According to a further non-limiting aspect, the so-called switching threshold default (P1, T1) is a switching threshold determined as a function of a preparation of a drink, and / or is settable by a user. According to a further non-limiting aspect, called flow control element 25 (400) is connected in a closed loop with said supply duct (107) of said tap (100), preferably through at least one of a storage tank (412), a heater, a pump (410), a one-way valve (411) and a valve control (408). According to a further non-limiting aspect, said second exit (402) and / or said 30 exhaust duct (199) is connected in a closed loop with said exhaust duct power supply of said tap (100). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, said dispensing device (108) has: - an assembled operating configuration, wherein said support body (108b) and said distributor body (108a) are coupled to allow a delivery of said beverage by flowing said water from said water supply inlet 5 (122), inside said beverage dispensing container (190), and towards said dispensing portion (109); - a disassembled operating configuration, wherein said support body (108b) and said distributor body (108a) are decoupled and allow access to said beverage dispensing container (190). 10 According to a further non-limiting aspect, in said operational configuration assembled, said distributor body (108a) and said support body (108b) are aligned along a predefined mating axis. According to a further non-limiting aspect, said distributor body (108a) is configured to be removably connected to said support body (108b) 15 by means of a translational coupling, or by means of a rotary coupling, or by means of a bayonet coupling and / or by means of a rotary coupling translational. According to a further non-limiting aspect, called roto-translational coupling comprehends: 20 - a substantially axial translational movement along an axis of coupling (Z) between said distributor body (108a) and said support body (108b), And - a substantially rotary movement (A) of said distributor body (108a) with respect to said support body (108b). 25 According to a further non-limiting aspect, said movement substantially rotary is axial to said coupling axis (Z). According to a further non-limiting aspect, in use, preferably when said dispensing device (108) is assembled in said operating configuration, said liquid, optionally called water, flows into said container for dispensing GES1P25IT Eng. Marco Brasca, Register n° 1094 BM drinks (190) and / or between said support body (108b) and said dispenser body (108a) and / or within said housing volume, along a predefined flow axis. According to a further non-limiting aspect, the coupling axis (Z) is parallel to, optionally coinciding with, said flow axis, preferably 5 when the dispensing device (108) is in said operating configuration assembled. According to a further non-limiting aspect, said dispensing device (108) is configured to identify, preferably automatically, a match between said distributor body (108a) and said support body (108b). 10 According to a further non-limiting aspect, said dispensing device (108) is configured to identify, optionally automatically, the existence of said assembled operating configuration, and / or the presence of said container for dispensing of drinks (190) between said dispensing body (108a) and said body of support (108b). 15 According to a further non-limiting aspect, the said dispensing device (108) is configured to allow an opening of said first exit (401) only when said coupling exists between said distributor body (108a) and said support body (108b), preferably said assembled operating configuration, and / or when there is the presence of said container for dispensing drinks 20 (190) between said distributor body (108a) and said support body (108b). According to a further non-limiting aspect, said dispensing device (108) includes a first temperature regulator (900). According to a further non-limiting aspect, the first temperature regulator (900) can also be nominated as a pre-treatment regulator. 25 According to a further non-limiting aspect, said first temperature regulator (900) is of the active type. According to a further non-limiting aspect, called first temperature regulator (900) is activated in substantial temporal simultaneity with said sensor (405) and / or with said data processing unit and / or with said flow regulator (400). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, called first temperature regulator (900) is operationally coupled to at least one of said power input of water (122) and said supply pipe (107) and / or is arranged upstream of said flow regulator (400). 5 According to a further non-limiting aspect, said dispensing device (108) is configured to activate said at least first temperature regulator (900) in substantial temporal simultaneity with said flow regulator (400). According to a further non-limiting aspect, called first temperature regulator (900) is operatively coupled to said at least one of said input 10 liquid supply, preferably water, (122) and said supply duct (107), and / or is arranged upstream of said flow regulator (400), to heat or cool the liquid, optionally water, or to force the maintenance of a predetermined temperature of the liquid, preferably water, in use contained in said liquid supply inlet, preferably water, (122) and said 15 supply duct (107) and / or the water upstream of said container for dispensing of beverages (190), preferably before its introduction into said beverage dispensing container (190). According to a further non-limiting aspect, called first temperature regulator (900) is located upstream of the inlet of said flow regulator (400). 20 According to a further non-limiting aspect, said dispensing device (108) is configured to deliver said beverage, in particular via said portion of dispensing (109), in a removable container (800), preferably a container final product intended to allow the direct intake of the drink by a user, more specifically a container that can be held by at least a single hand of a user, 25 optionally a cup. According to a further non-limiting aspect, the dispensing device (108) comprises, or is operationally connected with, at least one presence sensor (801, 802) configured to at least identify a presence of said container (800). According to a further non-limiting aspect, the dispensing device (108) 30 includes, or is operatively connected to, a first presence sensor (801) and a second presence sensor (802), where the first and second presence sensors GES1P25IT Eng. Marco Brasca, Register n° 1094 BM presence are configured to at least identify a presence of said container (800). According to a further non-limiting aspect, called presence sensor, in particular said first presence sensor (801) and / or said second presence sensor 5 presence (802), is operationally connected to said flow control element (400) and transmitting a presence signal having at least: - a first state, indicative of the presence of said container (800), - a second state, indicative of an absence of said container (800). According to a further non-limiting aspect, called flow control element 10 (400) has at least one first input powered by said power input of water (122) and at least one first outlet (401) configured to supply water to said support body (108b) and / or said distributor body (108a). According to a further non-limiting aspect, called flow control element (400) is configured to allow the supply of water to said container for 15 dispensing of drinks (190) when said presence signal is in said first state and to prevent the supply of water to said container for dispensing of drinks (190) when said presence signal is in said second state. According to a further non-limiting aspect, called flow control element (400) is configured to allow the supply of water to said container for 20 dispensing of drinks (190) when the presence signal is in said first state and to prevent the supply of water to said container for dispensing drinks (190) when said presence signal is in said second state, subject to said at least one value assumed by at least one characteristic, preferably the temperature of said water. 25 According to a further non-limiting aspect, said dispensing device (108) comprises a control device (222, 223) configured to identify said assembled operational configuration, and / or to identify the presence of a container for dispensing beverages (190) operationally coupled to, in particular interposed between said distributor body (108a) and said support body (108b). 30 According to a further non-limiting aspect, said dispensing device (108) is configured to allow said flow control member (400) to open said GES1P25IT Eng. Marco Brasca, Register n° 1094 BM first output (401) when said control device (222, 223) identifies said assembled operational configuration and / or identifies the presence of said container for beverage dispensing (190) placed between said dispensing body (108a) and said support body (108b). 5 According to a further non-limiting aspect, said dispensing device (108) is configured to identify electronically, by means of said control device (222, 223), at least a first type of container for dispensing beverages between a plurality of types of containers for dispensing beverages and / or a first type of substance contained in said at least one first type of beverage container (190) between a 10 plurality of substances containable in said at least one first type of beverage container (190), and is configured to regulate a dispensing volume of said beverage, and / or a volume of water flowing into said container for dispensing beverages (190) and / or at least one of a time of dispensing said water in said beverage dispensing container (190), a temperature of said water, a 15 pressure of said water, in accordance with said type of container for dispensing beverages and / or in accordance with said at least one first type of substance. According to a further non-limiting aspect, said control device (222, 223) is configured to electronically identify said at least one first type of beverage dispensing container (190) identifying at least one of the following 20 Features of Beverage Dispenser Container (190): - color of at least part of the beverage dispensing container (190); - shape of at least part of the beverage dispensing container (190); - weight of the beverage dispensing container (190); - graphic pattern of at least part of the beverage dispensing container (190). 25 According to a further non-limiting aspect, said dispensing device (108) is configured to identify said at least one first type of substance contained in said at least a first type of beverage container (190) indirectly, through at least one of said features of said beverage dispensing container (190). 30 According to a further non-limiting aspect, said control device (222, 223) is an optical recognition device. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, said control device (222, 223) is a radio frequency identification device. According to a further non-limiting aspect, said container for dispensing drinks (190) includes an RFID chip. 5 According to a further non-limiting aspect, said control device (222, 223) is configured to electronically identify said at least one first type of beverage dispensing container (190) by reading said RFID chip. According to a further non-limiting aspect, the RFID chip contains data electronic devices intended to be associated with a set of delivery characteristics 10 stored in said dispensing device (108). According to a further non-limiting aspect, called feature set of provision includes data capable of determining at least one of a predefined pressure of the water in use flowed into said container for dispensing drinks (190), a temperature of the water in use flowed into said container for dispensing 15 of drinks (190), a time of dispensing water into said container for beverage dispensing (190). According to a further non-limiting aspect, said RFID chip stores said set of delivery characteristics. According to a further non-limiting aspect, called flow control element 20 (400) is configured to selectively allow or prevent the supply of water towards said beverage dispensing container (190), preferably to open or close said first exit (401), respectively to allow or prevent a delivery of said water on said first outlet (401) in accordance with at least one value of at least one characteristic of said water, preferably subordinately 25 to the identification of the said assembled operational configuration and / or of the said presence of said container for dispensing drinks (190) interposed between said distributor body (108a) and said support body (108b) by said device control (222, 223). According to a further non-limiting aspect, said dispensing device (108) 30 includes a second temperature regulator (109z) configured to regulate a temperature of said drink. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, called the second regulator of temperature (109z) is also mentionable as a post-temperature regulator treatment. According to a further non-limiting aspect, called the second regulator of 5 temperature (109z) is operationally arranged downstream of said container for beverage dispensing (190), preferably being arranged in said body distributor (108a). According to a further non-limiting aspect, called the second regulator of temperature (109z) is to heat or cool said beverage or to maintain said beverage 10 drink at least at a predetermined temperature, optionally at least in a predetermined temperature range, optionally heating or cooling. According to a further non-limiting aspect, called the second regulator of temperature (109z) is placed in correspondence with said container for dispensing 15 of beverages (190) and is configured to regulate a temperature of said container for beverage dispensing (190), preferably being configured to heat or cooling said beverage dispensing container (190), or maintaining said container for dispensing drinks (190) at least to a first predetermined of temperature, optionally at least in a predetermined temperature range, 20 optionally heating or cooling,. According to a further non-limiting aspect, called the second regulator of temperature (109z) is an active type temperature controller, preferably electrically powered. According to a further non-limiting aspect, called the second regulator of 25 temperature (109z) includes a refrigeration duct or includes at least one cell Peltier. According to a further non-limiting aspect, called the second regulator of temperature (109z) is operationally connected to said data processing unit. According to a further non-limiting aspect, called the second regulator of 30 temperature (109z) is configured to force a predetermined temperature to be reached GES1P25IT Eng. Marco Brasca, Register n° 1094 BM temperature for said beverage or to maintain a predetermined temperature of said drink. According to a further non-limiting aspect, called the second regulator of temperature (109z) is configured to come into direct contact with said beverage and / or 5 is placed, in use, in direct contact with said beverage. According to a further non-limiting aspect, alternative to the previous aspect, said second temperature regulator (109z) is configured to heat said drink indirectly, preferably by means of a separating element arranged between said second temperature regulator (109z) and said beverage. 10 According to a further non-limiting aspect, said portion of disbursement (109) includes a dispensing cavity (109w). According to a further non-limiting aspect, said dispensing cavity (109w) is arranged downstream of said beverage dispensing container (190). According to a further non-limiting aspect, called the second regulator of 15 temperature (109z) is arranged inside said dispensing cavity (109w). According to a further non-limiting aspect, alternative to the previous aspect, said second temperature regulator (109z) is arranged outside said cavity of power output (109w). According to a further non-limiting aspect, in use said drink flows into said 20 dispensing cavities (109w). According to a further non-limiting aspect, the device distributor (108) is configured to activate said second temperature regulator (109z) in at least partial temporal simultaneity with said first regulator of temperature (900) and / or said second temperature regulator (109z) cooperates operationally with said first temperature regulator (900) to define a 25 dispensing temperature of said beverage. According to a further non-limiting aspect, called first temperature regulator (900) and / or said second temperature regulator (109z) is configured to be activated continuously or discontinuously. According to a further non-limiting aspect, said distributor device (108) is 30 configured to regulate, preferably in a time-varying operational manner, a GES1P25IT Eng. Marco Brasca, Register n° 1094 BM heat input or subtraction provided by said first temperature regulator (900) and / or from said second temperature regulator (109z). According to a further non-limiting aspect, said device (108) is in particular configured to determine, preferably in an operationally time-varying manner, 5 an electrical power supplied to first temperature regulator (900) and / or from said second temperature regulator (109z), to regulate an addition or subtraction of heat supplied by said first temperature controller (900) and / or by said second temperature regulator (109z). According to a further non-limiting aspect, said dispensing device (108) has 10 at least one dispensing operating configuration wherein said first outlet (401) is open and feeds said water towards said dispensing portion (109) and / or through said container for dispensing drinks (190). According to a further non-limiting aspect, said distributor device (108) has at least one block operating configuration of said operating configuration 15 assembled, in the continuation of said operational configuration of blocking of said assembled operational configuration. According to a further non-limiting aspect, said distributor body (108a) is locked in connection with said support body (108b) and / or cannot be uncoupled and / or disconnected from said support body (108b). 20 According to a further non-limiting aspect, the dispensing device (108) is configured to maintain said operational block configuration of said operational configuration assembled for at least part of, preferably all of, continuation of said operational delivery configuration. 25 Device for dispensing liquids In accordance with a further independent aspect, a device is also described to distribute liquids, preferably a sanitary device, more preferably a faucet (100), more preferably kitchen faucet, comprising a device dispenser (108) in accordance with one or more of the aspects described herein. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In accordance with a further independent aspect, a device is also described to distribute liquids, preferably a sanitary device, more preferably a faucet (100), more preferably kitchen faucet, comprising a body (103) configured to be constrained, in particular fixed, to a support (200), 5 preferably a kitchen countertop, and configured to support a spout (101), in use dispensing water, said device for distributing liquids comprising at least a first valve (104) connected to said delivery barrel (101) and configured to allow a user to regulate at least one of a water flow in said delivery pipe (101) 10 and a temperature of the water delivered in use from said dispensing spout (101); the device for dispensing liquids comprising a dispensing device (108) in accordance with one or more of the aspects described here. According to a further non-limiting aspect, said device for distributing liquids comprises a secondary body, distinct from, and preferably separate from, 15 said body (103). According to a further non-limiting aspect, said dispensing device (108) is installed on said secondary body. According to a further non-limiting aspect, said device for distributing liquids includes a first temperature regulator (900). 20 According to a further non-limiting aspect, said first temperature regulator (900) is operationally coupled to at least one of said power input of water (122) and said supply duct (107). According to a further non-limiting aspect, called first temperature regulator (900) is operatively coupled to said at least one of said input 25 water supply (122) and said supply duct (107) for heating, in use, the water contained in said water supply inlet (122) and said supply duct (107). According to a further non-limiting aspect, called supply duct (107) is connected to, and supplies water to, said at least one first valve (104). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, called supply duct (107) does not supply water to said at least one first valve (104). According to a further non-limiting aspect, said liquid dispensing device comprises a user interface (105) preferably of the electronic type. 5 According to a further non-limiting aspect, said user interface (105) is configured to allow you to select the dispensing of a drink through the said dispensing device (108). According to a further non-limiting aspect, said user interface (105) is configured to allow the activation of at least one of a pump or a valve 10 for the introduction of water, or liquid, into said supply duct (107) and / or in said water supply inlet (122). According to a further non-limiting aspect, said user interface (105) is configured to determine a timed delivery and / or is configured to allow a selection of at least a first dispensing volume, preferably 15 a plurality of dispensing volumes. According to a further non-limiting aspect, said at least a first volume of disbursement, or said plurality of disbursement volumes, are calculated, and / or determined and / or associated with at least one first predefined container type (800) and / or said at least a first type of beverage dispensing container (190), and / or said interface 20 user (105) is configured to allow a change of said at least one first dispensing volume, according to a type of said container (800), and / or according to said at least a first type of container for dispensing drinks (190) identified by said control device (222, 223). According to a further non-limiting aspect, said user interface (105) is 25 configured to determine an automatic interruption of said water supply, or liquid, in said supply conduit (107) and / or in said supply inlet of water (122) upon reaching a predetermined delivery time of said drink and / or upon reaching a dispensing volume equal to said at least one first volume of dispensing. 30 According to a further non-limiting aspect, said user interface (105) is configured to allow you to select one of a variety of drinks and is GES1P25IT Eng. Marco Brasca, Register n° 1094 BM configured to allow the temperature of the water introduced into the system to be regulated said supply duct (107) and / or in said water supply inlet (122), optionally as a result of a selection of a particular beverage among said plurality of selectable drinks. 5 According to a further non-limiting aspect, called flow control element (400) is configured: - to open and keep open, or close and keep closed, said first output (401) when said at least one value of said at least one characteristic of this water passes through a predefined switching threshold (P1, T1) in a first 10 towards and as long as said at least one value of said at least one characteristic of said water does not pass again the predefined switching threshold (P1, T1) in a second verse opposite to the first; - to open and keep open, or close and keep closed, said first output (401) in an alternative manner to said second output (402), or to open and 15 keep the said first exit (401) open and, at the same time, close and keep it open closed said second exit (402), or to open and keep open said second exit exit (402) and, at the same time, close and keep closed said first exit (401) when said at least one value of said at least one characteristic of said water passes a predefined switching threshold (P1, T1) in a first direction and as long as 20 that said at least one value of said at least one characteristic of said water not crosses the predefined switching threshold (P1, T1) again within one second opposite direction to the first. According to a further non-limiting aspect, said user interface (105) is configured to allow adjustment of the default switching threshold 25 (P1, T1). According to a further non-limiting aspect, said liquid dispensing device (100) is configured to be operationally connected to a storage tank (412) suitable for containing said water in use. According to a further non-limiting aspect, said accumulation tank (412) is 30 placed upstream of said inlet duct (107). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, said an input of said element flow control (400) is connected to an exhaust duct (199) configured for re-introduce water in a closed loop into said inlet duct (107) preferably through at least one of a storage tank (412), a heater, a pump 5 (410), a one-way valve (411) and a control valve (408). According to a further non-limiting aspect, said second exit (402) and / or said exhaust duct (199) are connected in a closed loop with said exhaust duct power supply (107) of said liquid dispensing device (100). 10 Additional dispensing device (capsule presence / coupling) In accordance with this disclosure, a dispensing device is also described. (108) for beverages dispensed from beverage dispensing containers, preferably configured for, and specifically intended to be paired with, a device to distribute liquids, 15 the beverage dispensing device (108) comprising: - a supporting body (108b); - a distributor body (108a) connected to said support body (108b) and comprising a dispensing portion (109) configured to permit a dispensing a drink; 20 where: - at least one of said support body (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a container for beverage dispensing (190); - said support body (108b) comprises a power supply input of 25 liquids (122) configured to receive a liquid from a supply conduit (107); - said dispensing device (108) comprises at least one control element of flow (400) operatively connected to said support body (108b), and receiving in use said liquid from said supply line (107); GES1P25IT Eng. Marco Brasca, Register n° 1094 BM said flow control element (400) having at least one first input powered by said water supply inlet (122) and at least a first outlet (401) configured to supply said liquid to said support body (108b) and / or to said distributor body (108a), 5 wherein said dispensing device (108) has: - an assembled operating configuration, wherein said support body (108b) and said distributor body (108a) are coupled to allow a delivery of said beverage by flowing said liquid from said water supply inlet (122), inside said beverage dispensing container (190), and towards said 10 servings of dispensing (109); - a disassembled operating configuration, wherein said support body (108b) and said distributor body (108a) are decoupled and allow access to said beverage dispensing container (190), wherein said dispensing device (108) comprises a control device 15 (222, 223) configured to identify said assembled operating configuration, and / or to identify the presence of a beverage dispensing container (190) operationally coupled to, in particular interposed between, said distributor body (108a) and said support body (108b), and is configured to allow said flow control element (400) to open said first outlet (401) when said 20 control device (222, 223) identifies said assembled operating configuration and / or identifies the presence of said beverage dispensing container (190) interposed between said distributor body (108a) and said support body (108b). According to a further non-limiting aspect, said dispensing device (108) is configured to control said flow control element (400) to maintain 25 closed said first exit (401) for a period of time corresponding to the period of time in which said control device (222, 223) identifies said configuration operational disassembled and / or identifies the absence of said container for dispensing drinks (190) interposed between said dispenser body (108a) and said support body (108b). 30 According to a further non-limiting aspect, said dispensing device (108) is configured to cause said flow control element (400) to maintain said GES1P25IT Eng. Marco Brasca, Register n° 1094 BM first exit (401) open for a whole period of time in which said device control (222, 223) identifies said assembled operating configuration and / or identifies the presence of said beverage dispensing container (190) placed between said distributor body (108a) and said support body (108b). 5 According to a further non-limiting aspect, said liquid dispensing device includes a plumbing device. According to a further non-limiting aspect, said sanitary device includes a tap (100). According to a further non-limiting aspect, the flow control element (400) 10 is configured to selectively allow or prevent the supply of said liquid towards said beverage dispensing container (190), preferably to open or close said first exit (401), respectively to allow or prevent a dispensing said liquid on said first outlet (401) in accordance with at least one value of at least one characteristic of said liquid, preferably subordinately 15 to the identification of the said assembled operational configuration and / or of the said presence of said container for dispensing drinks (190) interposed between said distributor body (108a) and said support body (108b), by said device control (222, 223). According to a further non-limiting aspect, said control device (222, 20 223) includes at least one movable portion. According to a further non-limiting aspect, said mobile portion is operationally coupled to, preferably arranged on, said distributor body (108a) and / or said support body (108b). According to a further non-limiting aspect, said control device (222, 25 223) is an electrical and / or magnetic and / or capacitive control device. According to a further non-limiting aspect, said distributor body (108a) is disconnectable, preferably completely disconnectable from said body of support (108b). According to a further non-limiting aspect, in said operational configuration 30 disassembled, said distributor body (108a) has been disconnected, preferably completely disconnected from the supporting body (108b). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, the dispensing device (108) has at least one operational block configuration of said configuration operational assembled. According to a further non-limiting aspect, in the continuation of this configuration 5 operating block of said assembled operating configuration, said body distributor (108a) is locked in connection with said support body (108b) and / or cannot be uncoupled and / or disconnected from said support body (108b). According to a further non-limiting aspect, said dispensing device (108) has at least one dispensing operating configuration wherein said first outlet (401) is 10 open and feeds said liquid towards said dispensing portion (109) and / or through said container for dispensing drinks (190). According to a further non-limiting aspect, the dispensing device (108) is configured to maintain said operational block configuration of said operational configuration assembled for at least part of, preferably all of, 15 continuation of said operational delivery configuration. According to a further non-limiting aspect, at least one of the said body distributor (108a) and said support body (108b) defines at least part of a housing cavity for said beverage dispensing container (190). According to a further non-limiting aspect, the dispensing device (108) 20 comprises at least one flow and / or pressure identification element, configured to detect the flow of said beverage and / or the flow of said liquid towards said dispensing portion (109) and / or through said dispensing container beverages (190), and / or configured to detect an increase in pressure in the cavity of housing. 25 According to a further non-limiting aspect, said housing cavity is made at least partially in at least one of said distributor body (108a) and said support body (108b) and configured to house at least part of said beverage dispensing container (190), According to a further non-limiting aspect, said operational configuration of 30 delivery is identified by the said flow identification element and / or pressure. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Additional dispensing device, with flow control element In accordance with a further independent aspect, a device is described here dispenser (108) for drinks extracted from drinks dispensing containers, 5 preferably configured for, and specifically intended to be coupled to a liquid dispensing device; the beverage dispensing device (108) comprising: - a supporting body (108b); - a distributor body (108a) connected to said support body (108b) and 10 comprising a dispensing portion (109) configured to permit a dispensing a drink; in which: - at least one of said support body (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a container for 15 beverage dispensing (190); - said support body (108b) comprises a power supply input of liquids (122) configured to receive a liquid from a supply conduit (107); - said dispensing device (108) comprises at least one control element of flow (400) operatively connected to said support body (108b), and receiving in 20 use water from said supply pipe (107); said flow control element (400) having at least one first input powered by said liquid supply inlet (122) and at least a first outlet (401) configured to supply water to said support body (108b) and / or said distributor body (108a), 25 and wherein said flow control element (400) is configured to allow or selectively prevent the supply of said liquid to said container for dispensing of beverages (190) in accordance with at least one value assumed by at least one characteristic, preferably the temperature, of said liquid. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, said power input of liquids (122) is a water supply input. According to a further non-limiting aspect, said liquid includes water. 5 Device for dispensing liquids, with flow control element In accordance with a further independent aspect, a device is described here for distribute liquids, preferably a sanitary ware, including: - a liquid supply inlet (122); - a portion of liquid distribution and / or dispensing, operationally connected with 10 the liquid supply input; - a flow control element (400) having at least one first powered input from said liquid supply inlet (122) and at least one first outlet (401) configured to supply a liquid to said distribution and / or dispensing portion of liquids, 15 and wherein said flow control element (400) is configured to permit or selectively prevent the supply of said liquid to said portion of distribution and / or dispensing of liquids, by opening or closing, preferably in a automatic, said at least one first output (401) according to at least one value assumed by at least one characteristic, preferably the temperature, of said liquid. 20 According to a further non-limiting aspect, called flow control element (400) includes a second outlet (402), and said second outlet (402) is connected he said at least a first entry. According to a further non-limiting aspect, the said second exit (402) is connected to an exhaust and / or recirculation duct (199) of said device to distribute 25 liquids. According to a further non-limiting aspect, said device for distributing liquids includes a beverage dispenser and / or includes a sanitary device, preferably a liquid dispensing device intended to be installed in a bathroom or in a kitchen, optionally a faucet (100) or a shower head. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, called flow control element (400) is configured to open or close said first output (401) alternatively, and preferably automatic, with respect to said second exit (402), to allow or selectively prevent the supply of said liquid to said portion of 5 distribution and / or dispensing of liquids, in accordance with said at least one value of said at least one characteristic of said liquid. According to a further non-limiting aspect, the at least one characteristic of said liquid is at least one temperature and / or pressure. According to a further non-limiting aspect, said device for distributing liquids 10 comprises an inlet conduit (107) connected to said power input of liquids (122) and in use feeding said liquid to said feed inlet of liquids (122). According to a further non-limiting aspect, said inlet duct (107) is connected to a liquid source. 15 According to a further non-limiting aspect, called flow control element (400) is configured to open and keep open said first exit (401) and, at simultaneously and preferably automatically, close and keep closed the said second exit (402), or to open and keep open said second exit (402) and, at the same time and preferably automatically, close and keep closed the said 20 first exit (401), according to said at least one value of said at least one characteristic of said liquid. According to a further non-limiting aspect, the flow control element (400) is configured to prevent a backflow of said liquid from said first outlet (401) and / or from said second exit (402) towards said input, independently of said 25 at least one value assumed by said at least one characteristic of said liquid. According to a further non-limiting aspect, called flow control element is a passively controlled element, and / or includes a thermostatic valve, preferably a valve with a shape memory actuator or a valve with wax or fluid or gas actuator, 30 preferably said thermostatic valve, preferably said memory actuator shaped or with a wax or fluid or gas actuator, it is configured to open or close GES1P25IT Eng. Marco Brasca, Register n° 1094 BM said first exit (401), or to open or close said first exit (401) in such a way alternative to said second exit (402), or to open and keep open said first exit (401) and, at the same time, close and keep closed said second exit (402), or to open and keep open said second exit (402) and, at the same time, 5 close and keep closed said first exit (401), in accordance with said at least one value assumed by said at least one characteristic of said liquid. According to a further non-limiting aspect, said device for distributing liquids comprises at least one sensor (405) configured to detect said at least one value assumed by said at least one characteristic of said liquid. 10 According to a further non-limiting aspect: - said sensor (405) is an electronic sensor, - said flow control element (400) is configured to receive a signal, preferably an electronic signal, from said sensor (405). According to a further non-limiting aspect, the said sensor is operationally 15 coupled to, optionally arranged on or in, said supply duct (107) or said water supply inlet (122) or said inlet of said element of flow control (400), According to a further non-limiting aspect, called flow control element (400) is connected in a closed loop with said supply duct (107) 20 preferably through at least one of a storage tank (412), a heater, a pump (410), a one-way valve (411) and a check valve control (408). According to a further non-limiting aspect, said at least one of said tank of accumulation (412), heater, pump (410), one-way valve (411) and valve 25 control (408) in use supplies said fluid to said supply conduit (107), According to a further non-limiting aspect, said second exit (402) and / or said exhaust and / or recirculation duct (199) is connected in a closed loop with said duct power supply (107). According to a further non-limiting aspect, said device for distributing liquids 30 comprises a body (103) configured to be constrained, in particular fixed, to GES1P25IT Eng. Marco Brasca, Register n° 1094 BM a support (200), preferably a kitchen counter or bathroom surface, and configured to support said liquid distribution and / or dispensing portion. According to a further non-limiting aspect, said distribution portion and / or liquid dispensing comprises a dispensing body (101), optionally a 5 substantially rigid rod or a substantially flexible and / or extensible body. According to a further non-limiting aspect, said liquid dispensing device comprises at least a first valve (104) connected to said distribution portion and / or liquid dispensing and configured to allow a user to adjust at least one between a flow in said liquid distribution and / or delivery portion and a 10 temperature of the liquid in use dispensed through said distribution portion and / or dispensing of liquids. According to a further non-limiting aspect, called flow control element (400) is configured to open and hold open, or close and hold closed, said first output (401) when said at least one value assumed by said at least 15 a characteristic of said liquid, passes a predefined switching threshold (P1, T1) in a first direction and as long as said at least one value assumed by said at least a characteristic of said liquid, does not pass again said threshold of default switching (P1, T1) in a second direction opposite to the first. According to a further non-limiting aspect, called flow control element 20 (400) is configured to open and hold open, or close and hold closed, said first exit (401) in an alternative manner to said second exit (402), or to open and keep open said first exit (401) and, at the same time, close and to keep said second exit (402) closed, or to open and keep open said second exit (402) second exit (402) and, at the same time, close and keep closed said first exit 25 (401) when said at least one value is assumed by said at least one characteristic of the said liquid passes through a predefined switching threshold (P1, T1) in a first towards and as long as at least one value of said at least one characteristic is assumed from said liquid does not pass again said predefined switching threshold (P1, T1) in a second direction opposite to the first. 30 According to a further non-limiting aspect, said user interface (105) is configured to allow adjustment of a predefined switching threshold (P1, T1). GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, said user interface (105) is a physical user interface, located on said device, optionally on said body (103), in a fixed or rotatable and / or translatable manner, and / or being a remote user interface, optionally including a virtual assistant. 5 According to a further non-limiting aspect, said device is in the form of beverage dispenser (108). According to a further non-limiting aspect, said dispensing device drinks (108) includes: - a supporting body (108b); 10 - a distributor body (108a) connected to said support body (108b) and comprising a dispensing portion (109) configured to permit a dispensing a drink; in which: - at least one of said support body (108b) and said distributor body (108a) 15 is configured to hold and / or contain at least part of a container for beverage dispensing (190); - said support body (108b) comprises a power supply input of water (122) configured to receive said liquid from said supply conduit (107); 20 and wherein said at least one flow control element (400) is operatively connected to said support body (108b), and receives in use said liquid from said supply duct (107), and is configured to allow or prevent selectively feeding said to said container for dispensing beverages (190) in accordance with at least one value assumed by said at least one 25 characteristic of said liquid. According to a further non-limiting aspect, at least one of the said body of support and said distributor body (108a) realizes said distribution portion and / or dispensing of liquids. According to a further non-limiting aspect, said device for distributing liquids 30 comprises a first temperature regulator (900), of the active type, operationally GES1P25IT Eng. Marco Brasca, Register n° 1094 BM coupled to at least one of said liquid supply inlet (122) and said supply duct (107) for heating or cooling, in use, the liquid contained in said liquid supply inlet (122) and said supply conduit (107). 5 According to a further non-limiting aspect, called first temperature regulator (900) is placed in substantial proximity to, in particular in substantial correspondence of, said portion of distribution and / or dispensing of liquids. Additional dispensing device 10 In accordance with this disclosure, a dispensing device is also described (108) including: - a supporting body (108b); - a distributor body (108a) connected to said support body (108b) and comprising a dispensing portion (109) configured to permit a 15 dispensing a liquid; in which: - said support body (108b) comprises a power supply input of water (122) configured to receive water from a supply conduit (107); - said dispensing device (108) comprises at least one control element of 20 flow (400) operatively connected to said support body (108b), and receiving in I use a liquid from the said supply line (107); said flow control element (400) having at least one first input powered by said water supply inlet (122) and at least a first outlet (401) configured to dispense said liquid, 25 and wherein said flow control element (400) is configured to allow or selectively prevent the supply of water to said at least one first output (401) according to at least one value assumed by at least one characteristic, preferably the temperature of said liquid. According to a further non-limiting aspect, said liquid includes water. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, said liquid is a liquid with room temperature. According to a further non-limiting aspect, said liquid is a pre- heated. 5 According to a further non-limiting aspect, said liquid is a pre- cooled down. According to a further non-limiting aspect, the said dispensing device is for beverages dispensed from beverage dispensing containers, preferably configured for, and specifically intended to, be coupled to a dispensing device 10 of liquids, preferably a tap (100) for water dispensing. According to a further non-limiting aspect, said disbursement portion (109) is configured to allow the dispensing of a beverage, in particular a drink water-based. According to a further non-limiting aspect, at least one of the said body of 15 support (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a beverage dispensing container (190). According to a further non-limiting aspect, first exit (401) configured for supply water to said beverage dispensing container (190). According to a further non-limiting aspect, called flow control element 20 (400) is configured to selectively allow or prevent the supply of water towards said beverage dispensing container (190) in accordance with at least said value assumed by said at least one characteristic, preferably the temperature, of said liquid, preferably said water. 25 Using the dispensing device In accordance with a further independent aspect the use of the dispensing device (108) according to one or more of the aspects described herein for the dispensing of a liquid, preferably a beverage, optionally a coffee. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Using the device to dispense liquids In accordance with a further independent aspect the use of the device for dispensing liquids according to one or more of the aspects described herein for the dispensing of a liquid, preferably a beverage, optionally a coffee. Additional dispensing device with container presence detector In accordance with a further independent aspect, a device is described here dispenser (108), preferably configured to, and specifically intended to, be coupled with a device for dispensing liquids, the beverage dispensing device 10 (108) including: - a supporting body (108b); - a distributor body (108a) connected, preferably removably connected to said support body (108b) and comprising a portion of dispensing (109) configured to allow dispensing of a beverage in a 15 container (800); wherein said support body (108b) comprises a power input (122) configured to receive a liquid, preferably water, from a conduit power supply (107); said dispensing device (108) comprising at least one control element of 20 flow (400) operatively connected to said support body (108b), and receiving in use said liquid from said supply conduit (107) and comprises at least one first presence sensor (801, 802) configured to identify at least one presence of said container (800), said at least one first presence sensor (801, 802) being operatively connected to said flow control element (400) and 25 transmitting a presence signal having at least: - a first state, indicative of the presence of said container (800); - a second state, indicative of an absence of said container (800); said flow control element (400) having at least one first input powered by said power input (122) and at least one first output (401) GES1P25IT Eng. Marco Brasca, Register n° 1094 BM configured to supply said liquid to said support body (108b) and / or to said distributor body (108a), and wherein said flow control element (400) is configured to allow the supply of said liquid to said distributor body (108a) and / or to said 5 support body (108b) when said presence signal is in said first state and to prevent the feeding of said liquid towards the distributor body (108a) and / or said support body (108b) when said presence signal is in said second state. According to a further non-limiting aspect, said power input (122) 10 is a liquid feed inlet, optionally a feed inlet of water. According to a further non-limiting aspect, called flow control element (400) is configured to allow the supply of said liquid to said body distributor (108a) and / or towards said support body (108b) via said input 15 power supply (122). According to a further non-limiting aspect, said dispensing device (108) is a device for dispensing beverages extracted from dispensing containers drinks. According to a further non-limiting aspect, said dispensing device (108) is 20 configured for and / or specifically intended to, dispense a beverage extracted from beverage dispensing containers. According to a further non-limiting aspect, at least one of the said body of support (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a beverage dispensing container (190). 25 According to a further non-limiting aspect, said supply duct (107) it is a supply duct of said device for distributing liquids. According to a further non-limiting aspect, said liquid includes, optionally is, water. According to a further non-limiting aspect, called flow control element 30 (400) is configured to allow the supply of said liquid to said body GES1P25IT Eng. Marco Brasca, Register n° 1094 BM distributor (108a) and / or towards said support body (108b), causing said liquid to flow in said beverage dispensing container (190) when said signal presence is in said first state and to prevent the feeding of said liquid towards distributor body (108a) and / or said support body (108b), preventing the delivery 5 of water in said beverage dispensing container (190), when said presence signal is in said second state. According to a further non-limiting aspect, the disbursement portion (109) is configured to allow dispensing of a beverage into a container (800) arranged in at least one first predefined position with respect to said portion of 10 dispensing (109), optionally in at least one of a first predefined position and a second predefined position with respect to said delivery portion (109). According to a further non-limiting aspect, the said first state is indicative of the presence of said container (800) in said predefined position, optionally in at least one of said first default position and said second default position, 15 and said second state is indicative of the absence of said container (800) in said default position, optionally in at least one of said first default position and said second default position. According to a further non-limiting aspect, called presence sensor (801, 802) includes or is at least one of a load cell sensor or an optical sensor. 20 According to a further non-limiting aspect, called presence sensor (801, 802) is arranged, optionally in a fixed position, on a body (103) of said device to distribute liquids. According to a further non-limiting aspect, alternative to the previous aspect, the presence sensor (801, 802) is arranged in a movable position on a body (103) 25 of said device for dispensing liquids. According to a further non-limiting aspect, called flow control element (400) is configured to selectively permit or prevent powering of said liquid to said beverage dispensing container (190) according to a value assumed by at least one characteristic, preferably the temperature, of said liquid, 30 subject to said presence signal in said first state. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM According to a further non-limiting aspect, the dispensing device (108) comprises a first presence sensor (801) and a second presence sensor (802), wherein the first and second presence sensors are configured to at least identify a presence of said container (800). 5 According to a further non-limiting aspect, the said load cell sensor is configured to identify the presence or absence of said container (800) in said first default position and, preferably, is configured to identify at least one first weight of said container (800) and a second weight of said container (800), optionally said first weight of said container (800) and said second weight of 10 said container (800) comprising a weight of said beverage contained in said container (800). According to a further non-limiting aspect, the dispensing device (108) is configured to interrupt, preferably automatically, a supply of said drink upon reaching a certain volume or weight of said drink in 15 said container (800) and / or upon reaching a certain weight of said container (800) as a consequence of a dispensing of said beverage in said container (800), preferably for direct or indirect measurement of said volume or weight of said beverage carried out by said first presence sensor (801) and / or by said second presence sensor (802). 20 According to a further non-limiting aspect, said dispensing device (108) comprises, or is operationally connected with, a data processing unit, called data processing unit being configured to receive a control signal from said first presence sensor and / or said second presence sensor (802), and to interrupt, preferably automatically, the delivery of said drink 25 upon reaching a certain volume or weight of said beverage in said container (800) and / or upon reaching a certain weight of said container (800) as a consequence of dispensing said beverage into said container (800), preferably for direct or indirect measurement of said volume or weight of said beverage performed by said first presence sensor (801) and / or by said second presence sensor 30 presence (802). According to a further non-limiting aspect, said container (800) is intended to allow a user to consume the drink. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Device for dispensing liquids In accordance with a further independent aspect, a device is described for distribute liquids, preferably a sanitary device, more preferably a 5 tap (100), most preferably kitchen tap, comprising a dispensing device (108) in accordance with one or more of the aspects described herein. According to a further non-limiting aspect, said device for distributing liquids comprises a body (103) configured to be constrained, in particular fixed, to a support (200), preferably a kitchen top, and configured to support a 10 body, preferably a reed, of dispensing (101), in use dispensing said liquid, preferably water. According to a further non-limiting aspect, said device for distributing liquids comprises at least a first valve (104) connected to said delivery pipe (101) and configured to allow a user to adjust at least one of a flow 15 water in said dispensing body (101) and a temperature of the dispensed liquid, in use, from said dispensing body (101). Distributor device with coupling lock In accordance with a further independent aspect, a device is described here 20 dispenser (108) for drinks extracted from drinks dispensing containers, preferably configured for, and specifically intended to be coupled to a device for dispensing liquids, preferably a sanitary device and more preferably a tap (100), the beverage dispensing device (108) including: 25 - a supporting body (108b); - a distributor body (108a) connected to said support body (108b) and comprising a dispensing portion (109) configured to permit a dispensing a drink; in which: GES1P25IT Eng. Marco Brasca, Register n° 1094 BM - at least one of said support body (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a container for beverage dispensing (190); - said support body (108b) comprises a power supply input of 5 liquids (122) configured to receive a liquid from a supply conduit (107); wherein said dispensing device (108) has: - an assembled operating configuration, wherein said support body (108b) and said distributor body (108a) are coupled to allow a delivery of said beverage by flowing said liquid from said liquid supply inlet 10 (122), inside said beverage dispensing container (190), and towards said dispensing portion (109); - a disassembled operating configuration, wherein said support body (108b) and said distributor body (108a) are decoupled and allow access to said beverage dispensing container (190); 15 said dispenser device (108) having at least one operating configuration of blocking of said assembled operational configuration, in the continuation of said block operating configuration of said assembled operating configuration, said distributor body (108a) being locked in connection with said support body (108b) and / or not being able to be uncoupled and / or disconnected from said body of 20 support (108b). According to a further non-limiting aspect, said dispensing device (108) comprises at least one flow control element (400) operatively connected to said support body (108b), and receiving in use said liquid from said conduit power supply (107); 25 According to a further non-limiting aspect, said dispensing device (108) has at least one dispensing operating configuration wherein said first outlet (401) is open and feeds said liquid to said dispensing portion (109) and / or through said container for dispensing drinks (190). According to a further non-limiting aspect, the dispensing device (108) is 30 configured to maintain said operational block configuration of said GES1P25IT Eng. Marco Brasca, Register n° 1094 BM operational configuration assembled for at least part of, preferably all of, continuation of said operational delivery configuration. Volume control 5 In accordance with a further independent aspect, a device is described here for distribute liquids, preferably a sanitary device, more preferably a faucet (100), more preferably kitchen, comprising a body (103) configured to be constrained, in particular fixed, to a support (200), preferably a kitchen counter, and configured to support a spout 10 (101), in use dispensing water, said device for distributing liquids comprising at least a first valve (104) connected to said delivery barrel (101) and configured to allow a user to regulate at least one of a water flow in said delivery pipe (101) and a temperature of the water delivered in use from said delivery spout (101); 15 the device for dispensing liquids comprising a dispensing device (108) for beverages dispensed from beverage dispensing containers; the dispensing device (108) comprising: - a supporting body (108b); - a distributor body (108a) connected to said support body (108b) and 20 comprising a dispensing portion (109) configured to permit a dispensing a drink; in which: - at least one of said support body (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a container for 25 beverage dispensing (190); - said support body (108b) comprises a power input (122) configured to receive water from a supply line (107); and wherein said dispensing device (108) comprises: GES1P25IT Eng. Marco Brasca, Register n° 1094 BM - an assembled operating configuration, wherein said support body (108b) and said distributor body (108a) are coupled to allow a delivery of said beverage by flowing said water from said supply inlet (122), inside said beverage dispensing container (190), and towards said portion of 5 disbursement (109); - a disassembled operating configuration, wherein said support body (108b) and said distributor body (108a) are decoupled and allow access to said beverage dispensing container (190); wherein said liquid dispensing device comprises a user interface (105) 10 preferably of the electronic type, wherein said user interface (105) is configured to allow the selection the dispensing of a beverage through said dispensing device (108), wherein said user interface (105) is configured to allow the activation of at least one of a pump or a valve for the introduction of water, or liquid, into said 15 supply duct (107) and / or in said supply inlet (122), wherein said user interface (105) is configured to determine a delivery timed and / or is configured to allow a selection of at least one first delivery volume, preferably a plurality of delivery volumes; and wherein said at least a first delivery volume, or said plurality of volumes 20 of disbursement, are calculated, and / or determined and / or associated with at least one first default container type (800) and / or said at least one first container type for dispensing of drinks (190) and / or a first type of substance contained in said at least one first type of beverage container (190) among a plurality of substances containable in said at least one first type of beverage container (190), and / or said 25 user interface (105) is configured to allow a change of said at least a first dispensing volume, according to a type of said container (800), and / or in agreement to said at least one first type of container for dispensing drinks (190), and / or a first type of substance contained in said at least one first type of container of beverages (190) among a plurality of substances contained in said at least one first type of 30 beverage container (190), identified by a control device (222, 223) of said dispensing device (108), configured to identify said configuration GES1P25IT Eng. Marco Brasca, Register n° 1094 BM assembled operational, and / or to identify the presence of a dispensing container of beverages (190) operationally coupled to, in particular interposed between, said distributor body (108a) and said support body (108b). 5 Adjust dispensing characteristics according to the type of dispensing container of drinks. In accordance with a further independent aspect, a device is described here for distribute liquids, preferably a sanitary device, more preferably a faucet (100), more preferably kitchen, comprising a body (103) 10 configured to be constrained, in particular fixed, to a support (200), preferably a kitchen counter, and configured to support a spout (101), in use dispensing a liquid, preferably water, said device for distributing liquids comprising at least a first valve (104) connected to said delivery barrel (101) and configured to allow a 15 user to regulate at least one of a water flow in said delivery pipe (101) and a temperature of the liquid in use dispensed from said dispensing spout (101); the device for dispensing liquids comprising a dispensing device (108) for beverages dispensed from beverage dispensing containers; the dispensing device (108) comprising: 20 - a supporting body (108b); - a distributor body (108a) connected to said support body (108b) and comprising a dispensing portion (109) configured to permit a dispensing a drink; - a control device (222, 223), configured to identify 25 electronically at least a first type of beverage dispensing container (190) between a plurality of types of containers for dispensing beverages, and / or a first type of substance contained in said at least one first type of beverage container (190) among a plurality of substances containable in said at least one first type of container drinks (190), 30 in which: GES1P25IT Eng. Marco Brasca, Register n° 1094 BM - at least one of said support body (108b) and said distributor body (108a) is configured to hold and / or contain at least part of a container for beverage dispensing (190); - said support body (108b) comprises a power input (122) 5 configured to receive a liquid, preferably water, from a conduit power supply (107); wherein said liquid dispensing device comprises a user interface (105) preferably of the electronic type, wherein said user interface (105) is configured to allow the selection 10 the dispensing of a beverage through said dispensing device (108), wherein said user interface (105) is configured to allow the activation of at least one of a pump or a valve for the introduction of water, or liquid, into said supply duct (107) and / or in said supply inlet (122), said dispensing device (108) being configured to regulate a volume of 15 dispensing of said beverage, and / or a dispensing volume of said flowing liquid within said beverage dispensing container (190) and / or at least one of a time of dispensing said liquid into said beverage dispensing container (190), a temperature of said liquid, a pressure of said liquid, according to said type of container for dispensing drinks (190) and / or a first type of contained substance 20 in said at least one first type of beverage container (190) among a plurality of substances containable in said at least one first type of beverage container (190). According to a further non-limiting aspect, said control device (222, 223) is also configured to identify said assembled operational configuration, and / or to identify the presence of a beverage dispensing container (190) 25 operationally coupled to, in particular interposed between, said distributor body (108a) and said support body (108b). According to a further non-limiting aspect, said user interface (105) is configured to determine a timed delivery and / or is configured to allow a selection of at least a first dispensing volume, preferably 30 a plurality of dispensing volumes; GES1P25IT Eng. Marco Brasca, Register n° 1094 BM and wherein said at least one first delivery volume, or said plurality of delivery volumes disbursement, are calculated, and / or determined and / or associated with said at least one first default container type (800) and / or said at least one first container type for beverage dispensing (190), and / or said user interface (105) is configured for 5 allow a variation of said at least one first delivery volume, in accordance to a type of said container (800), and / or in accordance with said at least one first type of beverage dispensing container (190) identified by said device control (222, 223). According to a further non-limiting aspect, said dispensing device (108) 10 includes: - an assembled operating configuration, wherein said support body (108b) and said distributor body (108a) are coupled to allow a delivery of said beverage by flowing said liquid from said supply inlet (122), inside said beverage dispensing container (190), and towards said portion of 15 disbursement (109); - a disassembled operating configuration, wherein said support body (108b) and said distributor body (108a) are decoupled and allow access to said beverage dispensing container (190). 20 Figure The following detailed description refers to some forms of non-limiting and preferred implementations of the dispensing device and object tap of this disclosure. The following detailed description refers to the attached figures, one of which 25 A brief description is provided below. Figure 1 illustrates a front view of a kitchen faucet, arranged on a support surface and including a beverage dispensing device. Figures 2 to 5 illustrate some examples of containers for dispensing drinks. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Figure 6 illustrates a simplified view of a dispensing device. comprising a flow control element having a single outlet; the element flow control is passive. Figure 7 illustrates a diagram showing the opening or closing of the outlet 5 of the flow control element according to a water temperature; if the temperature exceeds a threshold T1, the flow control element opens the outlet, and allows the drink to be dispensed. Figure 8 illustrates a diagram showing the opening or closing of the outlet of the flow control element according to a water pressure; if the 10 water pressure exceeds a threshold P1, the flow control element opens the exit, and allows the drink to be dispensed. Figure 9 illustrates a simplified view of a dispensing device. comprising a flow control element having a single outlet; the element flow control is of the active (electronic) type. 15 Figure 10 illustrates a simplified view of a dispensing device comprising a flow control element having a first outlet and a second exit; the flow control element is of the active (electronic) type. Figure 11 illustrates a simplified view of a dispensing device comprising a flow control element having a first outlet and a 20 second output; the flow control element is of the passive type. Figure 12 illustrates a diagram showing the switching between the supply between the first outlet and the second outlet according to a water temperature; if the temperature exceeds a threshold T1, the flow control element opens the first outlet, and allows the drink to be dispensed. 25 Figure 13 illustrates a diagram showing the switching between the supply between the first outlet and the second outlet according to a water pressure; if the pressure exceeds a threshold P1, the flow control element opens the first outlet, and allows the drink to be dispensed. Figure 14 shows a first simplified diagram of a closed recirculation loop. 30 at least partial of the water supplied to the dispensing device. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Figure 15 illustrates a second simplified diagram of a closed loop of at least partial recirculation of the water supplied to the dispensing device. Figure 16 illustrates a particular example of a first temperature regulator, part of, or associated with, a dispensing device which is the subject of this disclosure. 5 Figure 17 illustrates a detail of a part of the object dispensing device of the present disclosure; in the embodiment the dispensing device is equipped with a temperature variator element. Figure 18 illustrates a sectional view of a dispensing portion of a dispensing device which is the subject of this disclosure. 10 Figure 19 illustrates a sectional view of part of a dispensing device subject of this disclosure, provided with contacts suitable for identifying the coupling of the support body to the distributor body. Detailed description Description of a specific embodiment of a device for dispensing liquids. The reference number 100 indicates as a whole a specific form of construction of a device for distributing liquids in the form of a tap 100 per 20 water supply. The faucet 100 is configured to be installed on a support surface 200 preferably of a substantially planar type. The installation of the tap 100 on the support surface 200 is of the fixed type, or alternatively allows a relative mobility between the tap 100 and the surface of support 200. 25 In a non-limiting embodiment, the support surface 200 is a surface of a kitchen top. In this case, the tap 100 becomes a tap Kitchen. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The tap 100 comprises a body 103 having a substantially longer development vertical, orthogonal to the support surface 200. The body 103 is preferably but not limited to made of metal material. The body 103 is connected to a delivery spout 101, which is movable. 5 relative to body 103 and preferably is at least rotatable relative to body 103. The dispensing spout 101 ends with a dispensing mouth 102 which may include, for example and not limited to, a water aerator. The dispensing barrel 101 is a non-limiting example of a portion of distribution and / or dispensing of liquids, which may include a substantially 10 rigid, or flexible and / or extensible and which may include a single jet dispenser or multi-jet, i.e. equipped with a plurality of selectively selectable nozzles. The dispensing barrel 101 may comprise a rigid portion and a rigid portion. terminal equipped with a flexible and / or removable shower from the body 103. At least one valve 104 is installed on the body 103 which allows the regulation 15 at least one of a temperature of the water delivered through the spout 101 and a flow (l / min) of said water. In a non-limiting embodiment, the valve 104 allows the two adjustments to be made by means of an initial movement of rotation and a second rotation movement, on two different axes or planes and preferably orthogonal. 20 In the embodiment of figure 1 the valve 104 extends substantially laterally from the body 103, and in particular it develops at least partially along a direction substantially orthogonal to a main development direction of the body 103 or of the assembly formed by the dispensing spout 101 and the body 103. The valve 104 receives water from at least one conduit 107 which extends beyond 25 below the support surface 200 and which is at least partially arranged inside of body 103. It can be deduced that body 103 is at least partially hollow. Figure 1 illustrates a particular embodiment of the tap 100 in which This tap is configured to deliver conditioned water, such as non-ferrous water. only more or less hot, but also boiling water, or iced water or water 30 sparkling. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM For this purpose the faucet 100 may comprise a user interface 105 preferably of the electronic type and comprising at least one of a display and a selector, preferably a rotary selector placed around the display itself. The selector and / or display allow the selection of water conditioning. 5 It therefore appears clear that in one embodiment, the user interface 105 is a physical user interface. In figure 1 the user interface 105 is shown installed in a fixed position on the body 103 of the faucet. This configuration is not to be understood as limiting. In fact, in one embodiment, the user interface 105 can be 10 installed on a body separate from body 103. Installation on body 103, or on the body separate from the body 103, it can be fixed, or rotatable and / or translatable. The dispensing device. The faucet 100 includes a dispensing device 108, which is shown below 15 described in detail. Although this portion of the description refers to a dispensing device intended to be applied to the tap 100, this specific application of use should not be construed in a limiting manner. In fact, the dispensing device 108 may also be configured to be operationally coupled with, or be an integral part of, a generic device for dispensing liquids, 20 such as a shower head, or more generally any type of sanitary, a self-standing beverage dispensing device. In a preferred embodiment, the device identified by the number of reference 108 is a dispensing device for drinks extracted from containers for dispensing of beverages, in particular consumable and / or refillable containers. 25 Although reference is made in this detailed description to the fact that the dispensing device 108 is associated with tap 100, this association must not be understood in a restrictive way. In a preferred, but not limiting, embodiment, the dispensing device 108 is configured to, and specifically intended to, be coupled to the faucet 30 100, and is therefore different from dispensing devices such as coffee machines or similar, which are instead so-called “stand-alone” devices. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Although intended to be integrated into the tap 100, the dispensing device 108 can also be used separately from the traditional ones typical functions of the 100 tap, in particular relating to the dispensing of water cold, hot or air conditioned. 5 For this reason, the tap 100 which integrates the dispensing device 108 is can also be used as a coffee machine. The dispensing device 108 comprises a support body 108b and a body distributor 108a which will be better described in the following portion of description. 10 In the embodiment illustrated in the accompanying figures, the valve 104 and the support body 108b are positioned at a substantially identical height and are positioned on two opposite sides of the body 103 of the tap 100. The user interface 105 may be configured to determine the actuation of a dispensing pump, preferably placed below the support surface 15 200, which allows the dispensing of the drink via the dispensing device 108 described here. In particular, the user interface 105 may be configured to allow select a predetermined dispensing time or dispensing volume predetermined. This is particularly convenient where drinks are dispensed 20 which are typically consumed from a container of size standard. The predetermined dispensing volume can be displayed on the interface user 105 and / or selected with a volumetric criterion (for example, being expressed in ml) or with pictograms (for example a coffee cup, two coffee cups, a 25 teacup). In one embodiment, through the user interface 105 the user can select one of a plurality of dispensing volumes according to the type of container 800 that you intend to use. Thanks to this technical feature the user can position the container appropriate (for example, an espresso coffee cup, identified with the reference 30 numeric 800), insert the beverage dispensing container 190 into the device dispenser 108 as described below and start dispensing the drink GES1P25IT Eng. Marco Brasca, Register n° 1094 BM taking care to stop the flow of the same, which is stopped automatically by means of pump shutdown determined on the basis of the volume selected. An appropriate flowmeter is provided for the purpose of measuring the actual volume delivered. 5 The dispensing volumes can be defined as desired by the user or loaded by a list of predefined dispensing volumes, the corresponding electronic data of which are stored on a memory that is electronically accessed by the drive data processing that is operationally connected to the user interface 105. Additionally, or alternatively, the user interface 105 may be configured to 10 allow you to select a water delivery temperature based on the type of beverage dispensed. In this specific case, the user interface 105 may present one or more pictograms identifying a particular drink, to which is operationally associated with a predetermined delivery temperature. While one embodiment of the faucet 100 described herein allows for 15 select the temperature directly via the user interface 105 (e.g. by adjusting the temperature to 90°C, or to 92°C, or to 95°C), an embodiment favorite allows you to adjust the temperature as a result of the type of drink selected. It is in fact known that optimal coffee dispensing requires the infusion of the granules 20 of coffee in water whose temperature is in the range [92-96] °C; it is also known The best appreciation of the flavor of a green tea requires infusion in water. whose temperature is in the range [70-80]°C. Therefore, when the user introduces into the dispensing device 108 described here a green tea capsule, he will select via the user interface 105 a 25 pictogram corresponding to green tea, and consequently the tap 100 object of this disclosure will select the most appropriate dispensing temperature of water in the dispensing device 108, for example 75°C. If instead the user introduces in the dispensing device 108 a coffee capsule, he will select via the interface user 105 a pictogram corresponding to a coffee cup, and 30 consequently the tap 100 object of this disclosure will select a water temperature of for example 94°C. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The user therefore does not necessarily need to know the exact temperature of water to best enjoy the drink dispensed via the device dispenser 108 described here. In the embodiment illustrated in the accompanying figures, the portion of 5 delivery 109 takes the form of a single outlet spout; otherwise, in In a further embodiment, the dispensing portion 109 may take the shape of a two-outlet spout. In an optional embodiment, not illustrated in the accompanying figures, the dispensing portion 109 has a variable extension to adapt to a 10 proximity and / or size of the final container 800. In this embodiment, the dispensing portion is configurable in a first extension configuration, preferably in use arranged at a first distance from the final container 800, and in a second extension configuration, preferably in use arranged at a second distance from the final container 800; the 15 second distance is greater than first distance. This embodiment acts dually with respect to having a possibility of varying the quota assumed by the dispensing device 108 with respect to the support plan 200, and it is advantageously useful to compensate for different dimensions or heights of the final container 800. 20 The two extension configurations can be altered manually, or with an electric command, or automatically when the water starts to flow drink. In this regard it is noted that the dispensing device 108 which is the subject of the This disclosure may be provided with a plurality of distributor bodies 108a 25 which are alternatively connectable to the support body 108b. For the purposes of this disclosure, therefore, the dispensing device 108 object of the present disclosure may comprise a distributor body 108a and a body auxiliary distributor 108a, alternatively connectable to the support body 108b at distributor body location 108a. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM This option is preferable where it is possible with the 105 user interface select different volumes, for example to dispense enough coffee for one or alternatively for two coffee cups. It is clear that this disclosure describes a particular form of 5 embodiment wherein a dispensing portion 109 of the dispenser body 108a and a dispensing portion 109 of the auxiliary distributor body 108a differ in shape and / or structure. Preferably, the dispensing portion 109 of the dispenser body auxiliary 108a includes a first output and a second output which allow for dispense the drink simultaneously into two different containers. 10 Figure 1 schematically illustrates some components of the dispensing device 108 which will be described in detail below. A first component of the dispensing device 108 is the support body 108b. In a preferred, non-limiting embodiment, the support body 108b is configured to be coupled, especially directly coupled, and more in 15 particular fixed to the body 103 of the tap 100. In particular, the support body 108b may be an integral part of the body 103 of the faucet 100. A second component of the dispensing device 108 is the dispensing body 108a, which is connected to said support body 108b. In the embodiments illustrated in the attached figures, the distributor body 20 108a is removably connected to the support body 108b but this configuration does not must be understood as restrictive. In fact, a form of embodiment of the dispensing device 108 wherein the support body 108b and the dispenser body 108a they are connected in a movable but not separable way. A further embodiment of the dispensing device 108 which is the subject of the 25 This disclosure includes a distributor body 108a integrally connected to the support body 108b. The dispenser body 108a comprises a dispensing portion 109 configured to allow a beverage to be distributed into a final container 800, such as for example a small cup. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The ideal axis for dispensing the drink into the container is identified by the letter K. Figure 1 also illustrates the presence of a dispensing plate 108c which is positioned on the support surface 200 and which is for example made of material 5 plastic and / or metal. The dispensing plate 108c is arranged below the dispensing portion, ad example in axis with the ideal delivery axis K. The purpose of the dispensing plate 108c is to collect part of the beverage which could leak out of the final container 800 during dispensing. 10 The final container 800 is a container specifically designed to allow the user to drink the beverage directly from the container itself. For example, and Not limited to, the final container 800 is a coffee cup. Preferably, but not limited to, the tap 100 which is the subject of this invention. disclosure is configured to maintain the support body 108b at a 15 predetermined height with respect to the support 200. Figure 1 illustrates an example of tap characterized by this feature. Further examples of tap 100, which however are not illustrated in the figures annexes, are configured to allow an adjustment of a quota assumed by the support body 108b with respect to support 200. In particular, the support body 20 108b can translate vertically on the body 103 of the tap 100 between a first and a minor height and a second greater height. The first lesser height can pose a for example the support body 108b and, when coupled, the distributor body 108a, at a height substantially close to a coffee cup placed on the support 200. The above mentioned height adjustment is reflected in an adjustment of the 25 share assumed by the disbursement portion 109. The support body 108b develops along a substantially oblique direction with respect to the direction of development (substantially vertical) of the body 103 of the tap and / or with respect to the overall development direction identified from the assembly formed by the body 103 and the delivery barrel 101. 30 The distributor body 108a is removably connectable to said support body 108b along the substantially oblique direction and / or along the axial direction to the axis GES1P25IT Eng. Marco Brasca, Register n° 1094 BM of development of the supporting body 108b. The axis of development of the supporting body 108b is indicated in the attached figures with the reference Z. This axis also constitutes the axis of coupling or in any case of approach between the distributor body 108a and the support body 108b. 5 The embodiment illustrated in the attached figures shows a solution in where the distributor body 108a is removably connectable to the support body 108b along a direction substantially axial to the axis of a water flow that passes through the beverage dispensing container 190. 10 Examples of Drink Dispensing Containers. Before going into the detailed description of the various components of the dispensing device 108, some embodiments of dispensing containers of drinks will be described below. Please refer to figures 2 to 5. 15 A first example of a beverage dispensing container 190 is described in figure 2. This beverage dispensing container 190 takes the form essentially a truncated conical capsule and is preferably of the “disposable” type. After use, the beverage dispensing container 190 is appropriately thrown in the garbage. 20 The capsule has a lateral wall, a head wall 191 and a wall at the bottom, opposite the head wall and which creates a 193 delivery portion. The dispensing portion 193 is the one from which, in use, the drink comes out due to the effect of the introduction of water into the internal volume of the capsule. The internal volume of the capsule is defined by the head wall, the lateral wall 25 and from the back wall. As can be seen in figure 2, the head wall 191, of substantially rectangular shape discoidal and planar, it is joined at an upper annular edge of the side wall. The back wall, also substantially discoid in shape and planar, is joined at a lower annular edge of the wall 30 lateral. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The capsule comprises a ring 192, which forms an engagement portion for the capsule in mechanisms that determine its retention in a predetermined position. Preferably the ring is substantially rigid. The engagement portion is a peripheral portion. In the case of the embodiment of 5 figure 2, the engagement portion is arranged at one end of the capsule. However, the commitment portion could also be placed in correspondence of an intermediate portion of the lateral wall of the capsule (referred to the average direction of infusion between the head wall 191 and the delivery portion 193). 10 All the walls of the capsule are essentially airtight, and this allows the granules contained within to be preserved for a long time. The body of the container for dispensing drinks 190 is in this case made of plastic material and in particular can be made of plastic material specifically intended for provide an oxygen barrier, in order to preserve the aroma of the granulated or shredded material therein 15 content for as long as possible. However, at least one of the upper wall and the lower wall are configured to be drilled by drillers, who determine the possibility for the water to wet the granules contained in the internal volume of the capsule in order to extract some aromas and determine the possibility of extracting the drink preferably from a 20 substantially opposite direction to that of water intake. Figure 3 illustrates a beverage dispensing container 190 of the shape substantially discoidal, formed by the juxtaposition of an upper portion which creates the head wall 191 and a lower portion which creates the portion of dispensing 193. The upper portion and the dispensing portion are 25 substantially identical and substantially mirror-like in shape and each one presents an annular peripheral portion preferably circular in shape. The upper portion and the dispensing portion are joined together for example by ultrasonic welding at the annular peripheral portion. Curves present on the central area of ​​the upper portion and on the portion 30 of dispensing defines the internal volume of the capsule. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM As clearly visible in figure 3, this capsule is reversible – that is, it can be flipped 180° - transforming the dispensing portion into the head wall and vice versa. The upper portion and the lower portion can be substantially 5 insulators (e.g. made of plastic / aluminum assembly) or include a porous material (e.g. cellulose) to allow the drink to pass through. Again, the upper portion and / or the lower portion can be perforated by at least one perforator to allow the extraction of the drink. 10 The beverage dispensing container 190 of figure 3 is also preferably of the “disposable” type. Figure 4 illustrates a further variant of a dispensing container. 190 drinks, with a substantially rigid bowl-shaped body. Above, the side wall – which defines a cross-section preferably 15 substantially circular – has a closing lip that defines a wall of head 191, and has a ring 192 which creates a portion of engagement of the capsule. At the bottom, the bowl is tapered and features a 193mm dispensing portion. in the form of a small duct or spout, which is also substantially rigid. Portion 20 of dispensing 193 can be equipped with a sealing lip, arranged in a distal position and accessible from outside the capsule or in an internal position to the bowl. The sealing lip can be fractured by the action of a punch or by action of the pressure exerted by the water that is released into use from the capsule 25 at the head wall 191. The capsule in figure 4 is preferably of the “disposable” type. Finally, a further variant of beverage dispensing container 190 is illustrated in figure 5. This is a container for dispensing drinks 190 of the type reusable. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In this case the beverage dispensing container 190 has a first body 190a and a second body 190b, for example substantially bowl-shaped, removable assembly at their contact portions which – when the container is in assembled configuration – determine the realization of 5 a ring 192 which provides an engagement portion of the capsule. On the first body 190a a delivery portion 193 is defined and on the second body 190b is defined as a portion of head 191. The granulate or shredded material is introduced into at least one of the first body 190a and the second body 190b. At this point, the two bodies can be coupled for 10 make the capsule described here, ready to be introduced into the device provision 108 which is the subject of this disclosure. The beverage dispensing container 190 is not to be considered necessarily closed or closable or provided with interlocking portions so as to define a substantially closed chamber, as illustrated in the shapes of 15 embodiment from 2 to 5. The beverage dispensing container 190 can be of the type substantially open and provided for example with a cup or a conformation funnel. In a tapered portion, such a cup or funnel defines the portion of delivery 193, which can have a plurality of small holes intended to allow the passage of water which has been enriched by the aroma of the granules, but which prevents 20 substantially the passage of the granulate itself. A non-limiting embodiment of the dispensing container beverages 190 may be specifically intended to be filled with a product granulate using a teaspoon, and can take the form of a funnel or Moka filter. 25 The retention of the container for dispensing drinks. In general, at least one of said support body 108b and said body dispenser 108a is configured to hold and / or contain at least part of a beverage dispensing container 190. As will be better clarified in the following description, one embodiment 30 preferred comprises a support body 108b configured to contain substantially the entire beverage dispensing container 190, while the body GES1P25IT Eng. Marco Brasca, Register n° 1094 BM dispenser 108a holds said beverage dispensing container 190 in a manner removable, but the beverage dispensing container 190 is not substantially introduced into the distributor body 108a. Due to the fact that the support body 108b and the distributor body 108a are 5 removably connectable (in some embodiments, completely disconnectable), it is clear that the dispensing device 108 described here has: - an assembled operating configuration, wherein said support body 108b and said distributor body 108a are coupled to allow a delivery of said drink by making said water flow from the supply pipe 107 of the tap, 10 through the water supply inlet duct 122 into the container for dispensing 190e drinks towards the dispensing portion, and - a disassembled operating configuration, in which the support body 108b and the distributor body 108a are decoupled and allow access to the container for dispensing drinks 190. 15 A specific embodiment provides that the support body 108b and the distributor body 108a, in the assembled operating configuration, although disconnected may be held by a retainer, such as wire, tape or flexible or otherwise deformable, or mobile element. A further embodiment, alternative to the previous one, is such that the 20 support body 108b and distributor body 108a, in the operating configuration assembled, are completely disconnected; in this case no element holds the distributor body 108a to the support body 108b. As will be better clarified in the following portion of the description, some forms of the realization of the dispenser device 108 described here can be 25 configured to transport a generic liquid, and are associated with a generic device for dispensing liquids. Therefore, it should not be understood that the inlet of water supply 122 is intended for water only. This inlet must be considered in general as a liquid supply inlet. Clearly, the assembled operational configuration and the configuration 30 disassembled operational are alternatives. In the operational configuration disassembled, the beverage dispensing container 190 is freely GES1P25IT Eng. Marco Brasca, Register n° 1094 BM coupling or decoupling to at least one of the support body 108b and the body distributor 108a. The name “support body” is given by the fact that – as can be clearly seen from example from figure 6, and / or from the exploded view of figure 7 – this body supports and in particular 5 supports the distributor body 108a when connected thereto. The name “distributor body” is given by the fact that this body is mainly responsible for finalizing the dispensing of the drink into the final container. When the support body 108b and the distributor body 108a are in assembled operating configuration, the beverage dispensing container 190 10 is interposed, in particular compressed and / or blocked, between the supporting body 108b and the distributor body 108a. In light of this it appears evident that the support body 108b and the body distributor 108a, when coupled in the assembled operating configuration, they define as a whole a housing volume configured to contain, 15 preferably completely, the beverage dispensing container 190. The housing volume is defined in a housing cavity which, a depending on the embodiments, it can be defined in the support body 108b, or fully defined in the distributor body 108a, or partially defined in the body of support 108b and in the distributor body 108a. 20 As will be better clarified later, the housing volume is defined at least partially from a cavity which is configured to contain at least part of the beverage dispensing container 190. The dispensing of the drink. 25 In a dispensing operating configuration, which is a configuration at least temporarily taken from the dispensing device 108, the water, or more generally the liquid from which the drink is made, flows from the water supply inlet 122 within the support body 108b, and in particular flows inside the cavity of the same. The water, therefore, flows substantially entirely within the GES1P25IT Eng. Marco Brasca, Register n° 1094 BM beverage dispensing container 190, and from the latter flows into the body dispenser 108a so that it can then be finally dispensed into the final container. Inside the beverage dispensing container 190 there is a granulate which includes for example ground coffee beans or parts of leaves of plants such as 5 For example, tea. This granule offers resistance to the free flow of water, and therefore a back pressure towards the water supply inlet 122. The flow of water permeates the granulate and some aromatic substances are extracted from the granulate itself, also thanks to the fact that this flow of water is preferably warm. 10 A flavored liquid, the drink, comes out of the container for beverage dispensing 190 and is dispensed through the dispensing portion 109 in the final container. The beverage dispensing container 190 can be configured in general to also contain a small amount of organic product. Consequently, the tap 15 100 described herein is preferably configured to dispense the beverage into a container final product intended to allow direct intake of the drink by the user of the user. Selecting the hot water supply to the dispensing device 108 here described can conveniently be performed via the user interface 105; a 20 appropriate user action on the user interface 105 may for example determine an automatically time-limited opening of a determining solenoid valve the introduction of hot water into the water supply inlet 122. The delivery of hot water to the dispensing device 108 may also have place by remote control. 25 Such remote control may be a remote control, preferably of the wireless (dedicated device or portable electronic device, including a appropriate software application). The delivery of hot water to the dispensing device 108 can also be carried out by means of a virtual assistant. The virtual assistant is in particular in 30 capable of receiving a voice command from the user. The virtual assistant can therefore conveniently perform remote user interface function. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In this case, a data processing unit will conveniently be present which allows control of the virtual assistant and is operationally connected with the pump and / or valve that allows the delivery of hot water into the inlet water supply 122. 5 The data processing unit may comprise a general purpose processor purpose, or a dedicated processor or integrated circuit (ASIC) or an FPGA or a programmable logic controller, and may include, and / or be operationally connected with, a memory. The data processing unit mentioned above can conveniently be the data processing unit 10 data processing that is configured to control the operation of a data processing element flow control, part of the dispensing device. This flow control element will be better described later. It is particularly known that the delivery of quality espresso coffee takes place by means of an extraction determined by a pressurization of the container for 15 dispensing of beverages 190. Therefore, the dispensing device 108 is intended for to withstand – as a whole – a predetermined hydraulic pressure, for example equal to 2 or 4 or 6 bar or 10 bar or 15 bar or 20 bar or 25 bar. The operational dispensing configuration can advantageously be identified through a flow and / or pressure identification element, which can 20 include a mechanical sensor and / or an electronic sensor. Conveniently, both the mechanical sensor that the electronic sensor can be operationally connected to the data processing unit mentioned above. The flow and / or pressure identification element can be for example placed at, or made operatively active at, the 25 dispensing portion 109, the cavity housing the dispensing container of beverages 190, the inlet duct 107, the water supply inlet 122. The flow and / or pressure identification element is configured to detect the flow of said beverage and / or the flow of said liquid to said dispensing portion (109) and / or through said beverage dispensing container, and / or configured for 30 detect an increase in pressure in the housing cavity, a sign of the flow resistance exerted by the beverage dispensing container 190. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In particular, in the preferred embodiment the support body 108b must be able to withstand the above pressure due to the fact that it contains the beverage dispensing container 190. The dispenser body 108a must however to bear the above mentioned pressure due to the fact that, as will be better clarified 5 in the following portion of the description, is pushed axially into expulsion from the coupling on the support body 108b (in particular from the cavity) due to the the aforementioned pressure which is discharged first on the head wall 191. In light of the above description it appears clear that the present disclosure illustrates a technical solution in which the support body 108b and the body 10 distributor 108a, when in said assembled operating configuration, define a liquid-tight coupling. More specifically, this coupling is intended to allow the transit of said water from said supply inlet 122 to said dispensing portion 109 exclusively through the beverage dispensing container 190. 15 In a particular embodiment, at least one of the support body 108b and the dispenser body 108a is configured to retain and / or contain at least part of the beverage dispensing container 190 independently of its own orientation in space. Alternatively, at least one of the support body 108b and the distributor body 20 108a is configured to retain and / or contain at least part of the container for dispensing of drinks 190 only when in a first plurality of spatial orientation configurations (or at least in a first configuration of spatial orientation) and to release the beverage dispensing container 190 in a second plurality of spatial orientation configurations, the second plurality 25 being different from the first plurality. Again alternatively, or in combination, at least one of the supporting body 108b and the dispenser body 108a includes container retaining elements for dispensing drinks 190, and has: - an operational detention configuration in which such detention elements 30 holds the beverage dispensing container 190; and GES1P25IT Eng. Marco Brasca, Register n° 1094 BM - an operational release configuration, where such restraining elements are moved in order to release the beverage dispensing container 190. The presence of at least one spatial orientation configuration and / or the the presence of mobile retaining elements advantageously allows you not to have to 5 touch the beverage dispensing container 190 with your hands; this container, in fact, immediately after the drink is dispensed, it could be particularly hot, or slightly dirty. Therefore, the above mentioned technical features conveniently allow greater comfort of use of the dispensing device described here. Locking the assembled operating configuration. The dispensing device 108 which is the subject of this disclosure may have a assembled operational configuration block operating configuration. In this configuration it is not possible to detach the dispensing body 108a from the 15 support body 108b. This is particularly convenient in those cases where the drink is dispensed with a liquid at a high temperature and / or high pressure, as it prevents the user from being splashed with a liquid whose physical conditions can cause an injury, such as a burn. In the continuation of the operational configuration of the configuration lock 20 assembled operating, the distributor body 108a is locked in connection with the body 108b support and cannot be uncoupled and / or disconnected from it. Locking elements, e.g. movable pins, can for example be operated from the data processing unit through appropriate servoactuators, during the assembled operating configuration block operating configuration, and 25 determine the impossibility of translating or rotating the distributor body 108a with respect to the support body 108b. It is therefore clear that this disclosure illustrates a specific form for the construction of a dispensing device 108 for drinks extracted from containers for beverage dispensing, preferably configured for, and specifically intended for, GES1P25IT Eng. Marco Brasca, Register n° 1094 BM be coupled to a device for dispensing liquids, preferably a sanitary device and more preferably a tap 100. In this specific embodiment, which does not necessarily include the presence of the flow regulator 400, the beverage dispensing device 108 5 includes: - a support body 108b, in particular having the characteristics described herein, - a distributor body 108a connected to said support body 108b and comprising a dispensing portion 109 configured to permit a dispensing a drink. 10 The technical characteristics that regulate the coupling between the supporting body 108b and the distributor body 108a are those which are provided herein. disclosure. In this embodiment, at least one of said support body 108b and said distributor body 108a is configured to retain and / or contain at least part 15 of a beverage dispensing container 190 and, as in other embodiments described herein, the support body 108b includes a power input of liquids 122 configured to receive a liquid from a supply conduit 107. The dispensing device 108, as previously mentioned, may optionally comprise at least one flow control element 400. 20 Similar to other embodiments, the dispensing device 108 has: - an assembled operating configuration, wherein the support body 108b and the distributor body 108a are coupled to allow a dispensing of said beverage by flowing said liquid from said liquid supply inlet 122, inside the beverage dispensing container 190, and towards the dispensing portion 25 109; - a disassembled operating configuration, in which the support body 108b and the distributor body 108a are decoupled and allow access to said beverage dispensing container 190. The dispenser device 108 has at least one blocking operating configuration 30 of said assembled operational configuration, in the continuation of said configuration GES1P25IT Eng. Marco Brasca, Register n° 1094 BM blocking operation of said assembled operating configuration, said body distributor 108a is locked in connection with said support body 108b and / or not being able to be uncoupled and / or disconnected from said support body 108b. In a non-limiting embodiment, the dispensing device 108 is 5 configured to keep the configuration lock operational configuration operational assembled for at least part of the duration of the operational configuration of delivery, and preferably for the entire duration of the operational configuration of disbursement. Some embodiments may finally provide for the maintenance of the 10 operating configuration block operating configuration assembled for a predetermined time beyond the termination of the operational configuration of delivery. This allows for greater security, for example, of complete release of pressure inside the housing cavity of the 190 beverage dispensing container, and allows to further reduce the 15 risk of injury to the user when handling the dispenser body 108a in decoupling from the support body 108b. The restrainers. As schematically represented in figures 9-11, in a form of 20 non-limiting embodiment the dispensing device 108 comprises a retainer 118, 119, for the beverage dispensing container 190. The retainer 118, 119 can be placed entirely in correspondence with the, and / or be part of the distributor body 108a, or be placed in correspondence with the, and / or be part of the, support body 108b. 25 However, a preferred embodiment provides that the body comprising the retainer 118, 119 is actually the distributor body 108a. This retainer 118, 119 comprises a ring body and at two radially opposite portions of the same depart two fins 118 equipped with two flexible blades that hold the 190° beverage dispensing container in 30 correspondence of a portion of its commitment 192. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The retainer 118, 119 extends forward at a portion front of the distributor body 108a which in use is the portion that first meets the support body 108b when coupling the distributor body 108a with the latter. 5 When the distributor body 108a is coupled to the support body 108b, the retainer 118, 119 is introduced into the support body 108b itself, but lies preferably outside the previously mentioned housing volume. Two blades, which extend from the fins 118 towards a radially central part of the ring body, they hold the capsule at its ring 10 of commitment. Clearly, although not illustrated, the Applicant has conceived a form of dual embodiment, wherein the support body 108b comprises the aforementioned retainer 118, 119. In one embodiment, the retainer 118, 119 is rotationally fixed. 15 with respect to the outer casing of the distributor body 108a and / or the support body 108b, and in particular it cannot rotate with respect to the aforementioned external casing on an axis coinciding with the coupling axis between the support body 108b and the body dispenser 108a, and / or on an axis coinciding with the axis of flow of the beverage in the dispensing cavity and / or through the beverage dispensing container 190. 20 However, the retainer 118, 119 may be movable by rotation (in particular so as to be at least partially inclined with respect to the axis mentioned in the previous one paragraph), and / or by translation with respect to the external casing, in such a way as to favour, in a specific release usage configuration, the release of the container for dispensing of beverages 190, or alternatively, in a specific usage configuration 25 of commitment, so as to appropriately engage the container for beverage dispensing 190. In a further alternative embodiment to the previous one, the retainer 118, 119 can be rotationally movable relative to the outer casing of the body distributor 108a and / or the support body 108b, and the rotation occurs on the axis 30 coinciding with the coupling axis or the flow axis. Rotation can occur in particular between a first rotation configuration with respect to the external casing GES1P25IT Eng. Marco Brasca, Register n° 1094 BM (preferably rest configuration) and at least a second configuration rotation with respect to the external casing (preferably unstable configuration). The rotation between the first and second rotation configuration can occur without solution of continuity. 5 A first coupling method between the distributor body 108a and the body of support 108 provides for a purely axial insertion of at least part of one of the two within each other. A second coupling mode between the distributor body 108a and the body of support 108b provides a juxtaposition between these two, and the holding in 10 coupled configuration is determined by engagement means that engage in a rigid distributor body 108a to support body 108b. An additional coupling method is a bayonet coupling. The bayonet coupling is a rotary-translational coupling that includes: - a substantially axial translational movement along an axis of 15 Z coupling between said distributor body 108a and said support body 108b, and - a substantially rotary movement of said distributor body 108a with respect to to said support body 108b. The rototranslational movement could also be a movement of screwing, but specifically when in the form of a bayonet, the movement 20 translation has a first part and a second part, and specifically includes: - a first purely axial translational movement along the said axis coupling Z and wherein said distributor body 108a and said support body 108b are maintained in a predefined position of mutual angular rotation on said Z coupling axis; 25 - a second axial translational movement along said coupling axis Z, taking place simultaneously with said substantially rotary motion. The effect of the above mentioned movements is to determine a retention of the beverage dispensing container 190 in a predefined and fixed position within the housing volume and ensure that when water is fed to the 30 dispensing device 108 described here, such water – not finding substantially GES1P25IT Eng. Marco Brasca, Register n° 1094 BM space in any gaps between the external surface of the container for beverage dispensing 190 and the surfaces of the housing volume defined by the cavity and from the contact surface, is exclusively passed through within the beverage dispensing container 190. Flow control element. In order to optimize the dispensing of the drink, to allow the user to to better appreciate the organoleptic characteristics of the drink itself and contribute to reducing the risk of malfunctions, the dispensing device 108 object 10 of the present disclosure includes a flow control element 400. While this should not be construed in a restrictive way, the control element of flow 400 can be of unidirectional type and configured to prevent backflow from one of its outputs to one of its inputs, or if equipped with a plurality of outputs, from a or both exits towards the inlet. In particular, backflow is prevented 15 regardless of the value assumed by the water characteristic. As will be clarified in the following portion of the description, the control element of flow 400 is not to be construed as intended to be associated necessarily to a dispensing device 108 to dispense drinks. In one embodiment, the flow control element 400 is 20 operationally connected to the support body 108b, and receives water from the supply pipe 107 which is placed inside the tap body. Specifically, the flow control element 400 receives water from the inlet of water supply 122 which, in turn, receives water from the main power supply 107. 25 The flow control element can be equipped with a single inlet or with a plurality of inputs. The flow control element 400 includes at least a first outlet 401 configured to supply water to the support body 108b and, consequently, to the dispenser body 108a, and – when present – ​​to the container for dispensing 30 drinks 190. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Various embodiments of flow control elements 400 may be used in the dispensing device 108. Some of these forms of Some have a single output, others have multiple outputs. The flow control element 400 is configured to open or, alternatively, 5 close the first exit 401, respectively to allow or prevent a water supply on the first outlet 401 in accordance with at least one value of at least a feature of water. The flow control element 400 is specifically configured to open or, alternatively close the first exit 401 automatically in accordance with 10 at least one value assumed by at least one characteristic of water. Thanks to this technical feature the user does not have to perform any specific action for determine the transition from the open configuration to the closed configuration of the output. The flow control element is intended to operate without the need for a systematic control by the user. 15 The flow control element is then configured to allow or prevent selectively, and therefore alternatively, the supply of water to the beverage dispensing container 190 according to at least one assumed value from at least one characteristic of the water. The characteristic of water can be for example the pressure P [Pa] or the 20 temperature T [°C]. The embodiment of Figure 6 (ON / OFF, single output, passive). Figure 6 illustrates a non-limiting embodiment where the element of flow control 400 takes the form of an ON / OFF type valve, having a single 25 output and is of the passive type. In particular, the flow control element 400 realizes for example a thermostatic valve which, when the water reaches a at a certain temperature, it opens, allowing water to enter the container for dispensing drinks 190. Switching from open to closed configuration of output 401 30 is to be understood as almost instantaneous. A particular embodiment is such for GES1P25IT Eng. Marco Brasca, Register n° 1094 BM which when exit 401 is open, it is open almost with maximum light possible. Figure 7 shows a diagram of temperature versus time. Figure 7 identifies a temperature value T1 which identifies a switching threshold of 5 temperature. Between time 0 and time t1 the temperature of the water at of the flow control element 400 input is less than the threshold of Switch T1 and output 401 is closed. Water is not dispensed into the container for beverage dispensing 190. At time t1 the water temperature at the inlet 10 of the flow control element 400 reaches the switching threshold of temperature T1. Output 401 is open, and water is delivered into the container for beverage dispensing 190. So, regardless of whether the pump or valve is operated allows the water to be fed into the inlet pipe 107, the start of the delivery 15 of the drink occurs only after reaching the threshold of T1 switching. Previously indicated temperature values ​​can be used to define the temperature switching threshold. The thermostatic valve can be a valve with a switching element wax. A wax switching element is one that is sensitive to the change 20 of the volume as the temperature of the wax varies (which in turn is a function of the (inlet water temperature) to determine a position switching of the moving valve equipment, determining the opening or closing of the outlet 401. The thermostatic valve can be a valve with a switching element 25 liquid. A liquid switching element is one that is sensitive to variation in the volume of the liquid as the temperature varies (in turn a function (of the incoming water temperature) to determine a switching for determine a position switching of the valve's moving equipment, determining the opening or closing of output 401. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The liquid switching element can be replaced with a gas switching. Typically, the thermal inertia and / or valve reaction times they decrease as they pass from wax, to liquid and finally to gas. Further types of thermostatic valve can be valves with a 5 shape memory. The shape memory element is conveniently an element metallic, in particular made of metal alloy; the shape memory element can be placed in direct contact with water or in any case with the flowing liquid in the flow control element 400. A non-limiting example of a metal element shape memory comprises a Cu-Zn-Al or Ci-Al-Ni alloy. A further example 10 non-limiting shape memory metal element may include a Ni-alloy You. A shape memory element can assume a first conformation and / or a first resistance to deformation at a first temperature, and a second conformation and / or a second resistance to deformation at a second 15 temperature different from the first temperature. This shape memory element acts on the moving part of the valve to determine a switching between the closing and opening of exit 401. It is observed that in the embodiment illustrated in figure 6 and in accordance with the diagram of figure 7, the output 401 is kept open as long as the temperature 20 of the water is above the switching threshold T1. When the water temperature at the entrance of the flow control element 400 drops below the threshold of switching T1, the output is automatically closed. The user therefore does not have to act on the flow control element 400 to determine the opening or closing of exit 401. 25 Therefore, the crossing of the threshold in a first direction (upwards) determines an opening of exit 401. The crossing of the threshold in one second (downwards) causes exit 401 to close. The flow control element 400 may also provide a control valve. pressure, configured to determine the opening of its outlet only 30 when the pressure of the fluid, in this case water, at its inlet, exceeds a predetermined threshold. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Figure 8 shows a pressure versus time diagram. Figure 8 identifies a pressure value P1 which identifies a switching threshold of pressure. Between time 0 and time t1 the water pressure at of the flow control element 400 input is less than the threshold of 5 switching P1 and output 401 is closed. Water is not dispensed into the container for beverage dispensing 190. At time t2 the water pressure at the inlet of the element flow control 400 reaches switching threshold P1. Output 401 is open, and water is dispensed into the beverage dispensing container 190. 10 Therefore, the start of the drink delivery occurs only after the reaching the switching threshold P1. Previously set pressure values indicated can be used to define the pressure switching threshold. The embodiment of Figure 9 (active). 15 Figure 9 illustrates a further embodiment of the control element of flow 400, this time of the active type. The flow control element 400 is operationally connected, in particular electrically and / or optically, with a sensor 405 placed at its inlet, or water supply pipe 122 or inlet pipe 107 20 of the tap 100. The connection between the flow control element 400 and the sensor 405 occurs by means of a data processing unit 404 which is part of the dispensing device 108 or is a data processing unit of the tap 100, also responsible for carrying out additional electronic controls, such as the user interface 105. 25 The 405 sensor is an electronic type sensor designed to detect pressure and / or the water temperature. The sensor 405 transmits a signal to the data processing unit 404. This signal is proportional to the (measured) value of the measured water characteristic; for example, such a signal is a signal proportional to the temperature value 30 of water or to the water pressure value. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The data processing unit 404, based on the signal received from the sensor, transmits a control signal to the flow control element 400 which determines the switching between the closing and the opening of the output 401 so as to selectively allow water to be fed into the dispensing container 5 drinks. The closing and opening of the exit occurs in the manner already described in precedence, and therefore not repeated. It is observed that the switching thresholds identified in the diagram of figure 7 (temperature threshold) and figure 8 (temperature threshold) pressure) concern temperature and pressure respectively in this case 10 electronically detected by sensor 405. It is noted that it is convenient to place the sensor 405 in the closest place possible to the flow control element 400. In fact, the greater the distance between the 405 sensor and the flow control element, the greater the risk that there is a temperature difference, especially a decreasing one, between the temperature 15 of the water measured by sensor 405 and the actual water temperature present at the inlet of the flow control element 400. Similarly, the greater the distance between the sensor 405 and the element of flow control 400, the greater the risk of pressure loss between the pressure measured by sensor 405 and the pressure actually at the inlet 20 of the flow control element 400. The proximity between the flow control element 400 and the sensor 405 ensures appropriate timing of opening exit 401 only when conditions are right actually appropriate. 25 The embodiment of figure 10 (first exit and second exit). Figure 10 illustrates a further embodiment of the dispensing device. 108 wherein the flow control element 400 includes a first outlet 401 and a second exit 402. In this case, the flow control element 400 is configured to open or 30 close the first exit 401 in an alternative way to the second exit 402, for GES1P25IT Eng. Marco Brasca, Register n° 1094 BM deliver water to the first outlet 401 or alternatively to the second outlet 402 in agreement with at least one value of at least one water characteristic. As will be better clarified in the following portion of the description, a particular embodiment of the flow control element 400 is configured to open 5 or automatically close the first exit 401 in an alternative way to the second outlet 402, to supply water to the first outlet 401 or alternatively to the second output 402 according to the at least one value of the at least one characteristic of water. Thanks to the automatic control of the opening or closing of the outlet, the user You do not have to perform any specific action to cause the switch to occur. 10 of the water supply from the first outlet to the second outlet and vice versa. More specifically, the flow control element 400 is configured to open and keep the first exit 401 open and, at the same time and preferably automatically, close and keep closed the second exit 402, or to open and keep the second exit 402 open and, at the same time and preferably 15 automatically, close and keep closed the first exit 401, in accordance to at least one value of at least one water characteristic. In other words, the flow control element 400 is configured to deliver water on the first exit 401 and at the same time prevent a water supply on the second outlet 402, or to supply water on the second outlet 402 and to the 20 at the same time prevent the water supply to the first outlet 401, so automatic according to at least one value of at least one water characteristic. One embodiment of the flow control element 400 is configured to determine the switching of the opening between the first output 401 and the second output 402 almost instantly, going from a substantially maximum 25 opening of the light of the first exit 401 to the substantially maximum opening of the light of the second exit 402. In the specific case of the embodiment of figure 10 the characteristic of the water is detected electronically via sensor 405, the position of which has already been described above. 30 It is therefore clear that this disclosure concerns a device dispenser 108 wherein the flow control member 400 is configured to open and GES1P25IT Eng. Marco Brasca, Register n° 1094 BM keep open, or close and keep closed, the first exit 401 when at least one value of at least one water characteristic passes the threshold of default switching P1, T1 in a first direction and as long as at least one value of at least one characteristic of the water does not cross the threshold again 5 default switching P1, T1 in a second direction opposite to the first. Figure 11 illustrates a further embodiment of the dispensing device. 108 wherein the flow control element 400 includes a first outlet 401 and a second output 402, and wherein the flow control element 400 is of the passive type. Figure 12 shows a diagram of temperature versus time. Figure 10 12 identifies a temperature value T1 which identifies a switching threshold of temperature. Between time 0 and time t1 the water temperature at of the flow control element 400 input is less than the threshold of switching T1 and the first output 401 is closed, while the second output 402 is open. Water is not dispensed into the beverage dispensing container 190 due to 15 of the closure of the first exit 401, while it is delivered into an exhaust duct 199 connected to the second exit 402. At time t1 the water temperature at the inlet of the flow control element 400 reaches the switching threshold T1. Output 401 is opened, and at the same time the second output 402 is closed, 20 due to the movement of the valve's mobile equipment. The water is dispensed into the beverage dispensing container 190. So, regardless of whether the pump or valve is operated allows the water to be fed into the inlet pipe 107, the start of the delivery of the drink occurs only after reaching the threshold of 25 switching T1. Previously indicated temperature values ​​can be used to define the temperature switching threshold. It is observed that in the embodiment illustrated in figure 10 or 11 and in according to the diagram in figure 12, the first output 401 is kept open and the second outlet 402 is kept closed as long as the water temperature is above 30 the switching threshold T1. When the water temperature at the inlet of the flow control element 400 falls below the switching threshold T1, the GES1P25IT Eng. Marco Brasca, Register n° 1094 BM first exit 401 is automatically closed, and due to the movement of the mobile crew, the second exit 402 is opened. The user therefore does not have to act on the flow control element 400 to determine the opening or closing of the first exit 401 / second exit 402. 5 Therefore, the crossing of the threshold in a first direction (upwards) determines an opening of the first exit 401 and a corresponding and simultaneous closing of the second exit 402. The crossing of the threshold in one second (downwards) determines a closure of the first exit 401 and a corresponding and simultaneous one opening of the second exit 402. 10 As previously described, the flow control element 400 even when equipped with first exit 401 and second exit 402, it can realize a pressure control valve, configured to determine the opening of its exit only when the pressure of the fluid, in this case water, at its input, exceeds a predetermined threshold. 15 Figure 13 shows a pressure versus time diagram. Between time 0 and time t1 the water pressure at the inlet of the element flow control 400 is less than the switching threshold P1 and the first output 401 is closed, while the second exit 402 is open. Water is not supplied in the 190 beverage dispensing container due to the closure of the first exit 20 401, while it is delivered into an exhaust duct 199 connected to the second outlet 402. At time t1 the water pressure at the inlet of the element flow control 400 reaches the switching threshold P1. Output 401 is open, and at the same time the second exit 402 is closed, due to the effect of the movement of the valve's mobile equipment. Water is supplied in the 25 beverage dispensing container 190. Therefore, the start of the drink delivery occurs only after the reaching the switching threshold P1. Previously set pressure values indicated can be used to define the pressure switching threshold. In light of the above, it is clear that this disclosure concerns a 30 dispensing device 108 which includes a flow control element 400 configured to open and hold open, or close and hold closed, the first GES1P25IT Eng. Marco Brasca, Register n° 1094 BM exit 401 as an alternative to the second exit 402, or to open and keep the first exit 401 open and, at the same time, close and keep closed the second exit 402, or to open and keep open the second exit 402 and, at at the same time, close and keep closed the first exit 401 when at least one 5 value of at least one water characteristic passes a switching threshold default P1, T1 in a first direction and as long as the at least one value of the at least one water characteristic does not cross the switching threshold again default P1, T1 in a second direction opposite to the first. Figure 14 illustrates a closed loop circuit that allows the creation of a 10 at least partial recirculation of the water present in the inlet pipe 107 of the tap 100. Figure 14 in particular illustrates that at the entrance duct of water 122 there is a branch that creates a discharge duct 199, which diverts water in an alternative direction to the control element inlet 15 flow 400. The exhaust duct 199 ends at a valve inlet control 408, the output of which is connected to an input of a pump 410, preferably electric and automatically activated. A temperature sensor. 409 is arranged in a section of conduit that connects the control valve outlet 20 408 at the inlet of pump 410. Preferably, but not limited to, pump 410 is a pump of the peristaltic or gear, therefore a volumetric pump. The temperature sensor 409 is operationally connected, in particular electrically or optically connected, with the data processing unit 404. 25 The output of pump 410 feeds an input of a one-way valve 411; The check valve 411 is configured to allow flow from the inlet at the exit and to prevent reverse flow, from the exit to the entrance. The output of the one-way valve 411 is connected to the inlet of the tank accumulation 412, and therefore supplies the water not supplied to the inlet of the element 30 flow control 400 to the storage tank 412 itself. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM This technical feature allows to increase the thermal efficiency of the faucet as a whole. In fact, although it is possible that the hot water does not fed to flow control element 400 discharged into an exhaust system, This solution is neither energy nor environmentally efficient. 5 Conversely, re-introduce unused hot water for feeding to the flow control element 400 back into the storage tank 412 – which already contains hot water in use – helps avoid the waste of hot water potentially usable to dispense additional beverages or for additional purposes and increases thermal efficiency. 10 As schematically represented in figure 14, the accumulation tank 412 comprises a heater, preferably an electric heater, operationally controlled by data processing unit 404. A thermistor 413 is operationally active on the storage tank 412 and is operationally, preferably electrically or optically, connected to the unit 15 data processing 404. The purpose of the thermistor 413 (e.g. NTC type), is to to control the temperature of the water inside the storage tank 412 and, in depending on this temperature, adjust the activation or deactivation or the power supplied by the heater. The water heated by the heater and contained in the storage tank 412 is 20 in use fed to the inlet pipe 107 of the tap; it therefore appears clear that the accumulation tank 4112 is placed upstream of the inlet duct 107. If the storage tank 412 is under pressure, between the outlet of storage tank 412 and the inlet duct 107 of the tap 100 may contain a valve, for example for example a solenoid valve, to control the flow of water. 25 Otherwise, if the storage tank 412 is not pressurized, a pump will be able to appropriately draw water from the storage tank 412 and supply it towards the inlet duct 107 of the tap 100. A different embodiment of closed loop circuit is shown in figure 15. This embodiment differs from the one previously 30 described due to the fact that the branch to the exhaust duct 199 is not GES1P25IT Eng. Marco Brasca, Register n° 1094 BM located upstream of the flow control element 400 but is located on the second exit 402. The other components of the circuit are the same as those described above, and therefore the description is not repeated. 5 The temperature switching threshold T1 or pressure switching threshold P1 described above it can be fixed, in particular pre-set in the factory and not modifiable by the user, or be variable. In one embodiment that is not to be considered limiting, the above threshold can be set by the user through an action on user interface 105. Alternatively, or in combination with the above 10 described, the switching threshold can be adjusted manually directly on the flow control element 400. Identifying the coupling between the distributor body and the support body. A particular and non-limiting embodiment of the dispensing device 15 108 The subject of this disclosure is configured to identify whether the body distributor 108a is coupled to the support body 108b and / or to recognize whether the beverage dispensing container 190 is appropriately arranged inside of the cavity. More specifically, this embodiment may be configured to identify 20 if the distributor body 108a is in the assembled operating configuration such that allow, for example by blocking the bayonet coupling previously described, the dispensing of the beverage. In this embodiment, the dispensing element flow control 400 is configured to allow an opening of said first outlet 401 only if the coupling between the distributor body 108a and 25 the support body 108b and / or if the beverage dispensing container is appropriately arranged inside the aforementioned cavity 401. To carry out the above identification, a control device is provided. This control device 222, 223 can be of a purely mechanical type, or of a electronic or combined mechanical / electronic. 30 Where the distributor body 108a and the support body 108b are not coupled, and / or where there is no container for dispensing GES1P25IT Eng. Marco Brasca, Register n° 1094 BM drinks 190 between the dispenser body 108a and the support body 108b, even in the conditions in which the value of at least one water characteristic exceeds the threshold of default switching P1, T1, it will not be possible in any case to proceed with the water supply through the first outlet 401. Therefore, the supply through 5 the first exit 401 is subordinate to the presence of the coupled distributor body 108a to the support body 108b, and / or is subject to the presence of the container for beverage dispensing 190. This disclosure also relates to a particular embodiment of the dispensing device described herein. This embodiment is in particular 10 intended to subordinate the possibility of supplying water through the first exit 401 of the flow control element 400 in accordance with the coupling between the body distributor 108a and the support body 108b and / or to the operational coupling of the beverage dispensing container 190 with the dispenser body 108a and the body of support 108b, in particular to the interposition of the container for dispensing 15 drinks 190 between the dispenser body 108a and the support body 108b. Therefore, at least for the period of time in which the body coupling is not identified distributor 108a and support body 108b, and / or for the period of time in which the beverage dispensing container 190 is not interposed between the dispenser body 108a and the support body 108b, the first outlet 401 remains closed. If the element of 20 flow control 400 is equipped with a second outlet, the liquid flow, in particular of water, can conveniently be diverted to the second exit 402, in the In the meantime. In case the flow control element 400 is equipped with a single outlet, the flow of liquid, especially water, will be interrupted. This embodiment may be independent of the presence of an element of 25 flow control 400 specifically configured to open or close said first output 401, respectively to allow or prevent the supply of said water on said first output 401 according to at least the value of at least one characteristic of the water. However, preferably the dispensing device 108 in this case comprises 30 a flow control element 400 having the technical features disclosed in the previous paragraph. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In a non-limiting embodiment, electrical or magnetic contacts are arranged on the support body 108b and on the distributor body 108a to allow the identification of the coupling, and / or a moving element, e.g. translating, can be arranged in correspondence with the distributor body 108a and / or the body of 5 support 108b for contacting the engaging portion 192 of the container for dispensing drinks 190 when introduced into the cavity. These electrical contacts or magnetic and / or such moving element represent a non-limiting example of control device 222, 223, specifically configured to allow determine whether the distributor body 108a and the support body 108b are coupled 10 and / or if the beverage dispensing container 190 is present. Magnetic contacts can be equivalently replaced by, or coupled with with, elements capable of determining an alteration of an electrical capacity if it exists the presence of the container for dispensing drinks 190 placed between the body of support 108b and the distributor body 108a, and / or upon an alteration 15 of the coupling between the support body 108b and the distributor body 108a. Figure 19 illustrates a non-limiting embodiment of a device. control 222, 223 including magnetic and / or capacitive contacts and specifically intended to identify whether the support body 108b and the dispenser body 108a are coupled. 20 The control device 222, 223 comprises in particular a first pair of magnetic and / or capacitive contacts 222 and a second pair of magnetic and / or capacitive contacts capacitive 223; the first pair of magnetic contacts 222 is arranged in correspondence of a peripheral surface of the distributor body 108a, while the second pair of magnetic contacts 223 is arranged at a peripheral surface of the 25 support body 108b. When the support body 108b and the distributor body 108a are coupled, the second pair of magnetic contacts 223 is superimposed and aligned to the first pair of magnetic and / or capacitive contacts 222. In this case the control device 222, 223 does not require portions 30 essentially mobile. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Some further examples of control device 222, 223 have portions substantially mobile. A further embodiment in fact provides for the presence of a switch with a movable surface, intended to be moved when the support body 108b is coupled to the distributor body 108a, and / or to be 5 moved when an appropriate beverage dispensing container 190 is arranged in the housing cavity between the support body 108b and the body distributor 108a. Conveniently, in this case the control device 222, 223 features electrical contacts preferably connected to the data processing unit. For this 10 reason it is preferable that the control element 222, 223 is arranged exclusively on the support body 108b: this technical solution allows to leave the body 108a distributor without electrical contacts, and therefore simpler and cheaper realization. In use, when the distributor body 108a is coupled to the support body 15 108b, and / or when the beverage dispensing container 190 is operational interposed between the distributor body 108a and the support body 108b, such coupling causes movement of the moving surface of the device of control 222, 223, and this movement causes a state change of the control device. 20 The switching occurs between a first state, indicating a decoupling of the support body 108b with respect to the distributor body 108a and / or indicating the absence of the beverage dispensing container 190, and a second state, indicating the coupling of the support body 108b with respect to the distributor body 108a. In particular, the switching takes place immediately upon 25 decoupling and / or when the absence of the container is detected beverage dispensing 190. This technical feature is important to determine an immediate stop in the supply of water, or any liquid, when verify the conditions described above. For example, in fact, where a user disconnects the support body 108b from the dispenser body 108a during dispensing, 30 such user could be hit by a jet of liquid (water, in particular, and / or drink) even at high temperature and / or pressure, directed in an uncontrolled manner and be subjected to an injury such as a burn. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The switch can be normally closed or normally open. The normally closed switch is such that: - when the distributor body 108a is coupled to the support body 108b, and / or when the beverage dispensing container 190 is operational 5 interposed between the distributor body 108a and the support body 108b, its contacts are closed and, - when the distributor body 108a is decoupled from the support body 108b, and / or when the beverage dispensing container 190 is removed from the its position between the distributor body 108a and the support body 108b, its contacts 10 are open. The normally open switch is such that: - when the distributor body 108a is coupled to the support body 108b, and / or when the beverage dispensing container 190 is operational interposed between the distributor body 108a and the support body 108b, its contacts are 15 open and, - when the distributor body 108a is decoupled from the support body 108b, and / or when the beverage dispensing container 190 is removed from the its position between the distributor body 108a and the support body 108b, its contacts they are closed. 20 A hierarchical control of beverage dispensing, or more generally of the liquid dispensing, is made advantageously possible by the presence of the control device 222, 223. In a specific embodiment, there is the presence of a primary hierarchical control and a secondary hierarchical control. The dispensing device 108 which is the subject of this disclosure is in this case 25 configured to selectively allow or prevent the supply of liquid (in particular, water) towards the distributor body 108a and the corresponding portion of disbursement 109 in the following manner; - in accordance with the said primary hierarchical control, through the control device 222, 223, configured to identify said assembled operating configuration, and / or for 30 identify the presence of a beverage dispensing container 190 GES1P25IT Eng. Marco Brasca, Register n° 1094 BM operationally coupled to, in particular interposed between, said distributor body 108a and said support body 108b, - in accordance with a secondary hierarchical control, subordinate to the primary one, allowing said flow control member 400 to open said first outlet 401 5 to selectively allow water to be fed into the container for dispensing of beverages 190 in accordance with at least one value assumed by at least one characteristic, preferably the temperature, of said water. As can be clearly seen from the previous portion of the description, the control primary hierarchical is preferably an electronic type of hierarchical control, 10 conveniently performed by the data processing unit. In a specific form of implementation, both primary hierarchical control and secondary hierarchical control are carried out electronically through the data processing unit. This is the case where the flow control element is a control element of a substantially electronic. 15 Finally, it is noted that although the dispensing device 108 which is the subject of this disclosure has been described as being associated with a 100 tap, such association It should not be understood in a restrictive way; in fact, the dispensing device can be associated with a further type of sanitary device, different from a faucet. 20 The control device 222, 223, in particular when of the electronic type, can be specifically configured to identify what type of container to beverage dispenser 190 is operationally coupled between the dispenser body 108a and the support body 108b. By identifying the type of beverage dispensing container 190, 25 it may also be possible to identify the type of granulate contained in the container for dispensing drinks 190, and therefore it may be possible to adapt the beverage dispensing characteristics according to the type of container beverage dispensing 190. Therefore, the control device 222, 223 described herein can be considered to be intended to identify the type of substance that is contained in the 30 beverage dispensing container 190, and such identification is an identification indirect. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The device which is the subject of this disclosure is therefore configured to identify electronically, by means of said control device 222, 223, at least one first type of beverage dispensing container among a plurality of types of a container for dispensing drinks and / or, indirectly, at least a first type of 5 substance (preferably, but not limited to, granular), among a plurality of types of substances, contained in the said beverage dispensing container 190. This device is configured to regulate, preferably automatically, a beverage dispensing volume and / or a liquid dispensing volume, in particular water, in the beverage dispensing container 190, and / or at least one of 10 a time of dispensing the liquid into the beverage dispensing container 190, a temperature of the liquid flowing into the beverage dispensing container 190, a pressure of the liquid flowing into the beverage dispensing container 190, in according to the type of beverage dispensing container. Identifying the type of beverage dispensing container 190 can 15 occur in particular through at least one of the following methods: - optical recognition of at least one of a color, size, graphic pattern, shape, weight of at least part of the beverage dispensing container 190; - radio frequency identification, using an RFID chip, preferably passive, of the beverage dispensing container 190. 20 In particular, the graphic pattern of at least part of the dispensing container drinks can be a QR code, or a barcode. Where the identification of the beverage dispensing container 190 occurs by measuring its weight, there will be a specific sensor, preferably electronic, designed to measure the weight of the beverage dispensing container, especially when housed 25 in the housing cavity. For example, a first QR code can be used to identify the presence of tea (first type of substance) inside the container for dispensing drinks 190, while a second QR code can be used to identify the presence of coffee (second type of substance) inside the dispensing container 30 drinks 190. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The temperature of the water that is used is made to flow inside the container for dispensing of drinks 190, and therefore – indirectly – the temperature of the drink, can be adjusted using a temperature regulator like the one below described. 5 A drink dispensing time, and / or a water dispensing time which in use is made to flow inside the beverage dispensing container 190, can be conveniently regulated by an opening / closing control of a solenoid valve placed on the supply input 122 and / or by means of a activation / deactivation of a pump operationally connected to the input of 10 power supply 122. The delivery time indirectly determines the volume of dispensing the drink. Through the user interface 105 the user can confirm whether the container type for beverage dispensing 190 identified by the control device 222, 223 is correct, and therefore electronically confirm the corresponding volume of 15 delivery. The data processing unit operationally connected to the user interface 105, following confirmation, determines the regulation of the valve and / or pump for deliver the predefined volume. The device which is the subject of this disclosure may be equipped with a flow meter arranged at the supply inlet 122 to determine the volume of 20 water / drink dispensed, directly. The delivery pressure control can be conveniently carried out by adjusting the opening level of the above-mentioned solenoid valve and / or by regulating the pump speed. When the control device identifies the presence of a particular type 25 of beverage dispensing container 190, the dispensing device 108 subject of the This disclosure may be advantageously configured to impose a adjusting the beverage dispensing characteristics. Preferably, although not limited to, the device which is the subject of this disclosure can be configured to provide on a visual user interface a 30 confirmation request for the beverage dispensing characteristics before GES1P25IT Eng. Marco Brasca, Register n° 1094 BM of the actual delivery. The user provides confirmation via a command control represented by the user interface 105. In a non-limiting embodiment, the RIFD chip may contain data electronics that are associated with a set of delivery characteristics. This set is 5 stored in a data processing unit of the dispensing device 108, or in a unit of data processing of a device associated with it. The set of delivery characteristics includes data to determine at least one of a predefined pressure of water in use made to flow into said 190 degree beverage dispensing container, a water temperature in use made 10 flow into said beverage dispensing container 190, a dispensing time of water within said beverage dispensing container 190. In this case there is a logical relationship between the electronic data of the RFID chip and the stored set of delivery characteristics. In an alternative embodiment to the previous one, this logical relationship 15 does not exist, because the set of delivery characteristics is directly stored on the RFID chip. In any case, it is understood that the characteristics of the beverage dispensing they can however be altered by the user using appropriate commands, regardless of what is acquired through the identification of the specific 20 type of beverage dispensing container 190. In this regard, it is noted that this disclosure illustrates a specific embodiment of a device for dispensing liquids, preferably a sanitary device, more preferably a tap 100, more preferably from kitchen, which first of all comprises a body 103 configured to be constrained, 25 in particular fixed to a support 200, preferably a kitchen top, and configured to support a dispensing spout 101, in use dispensing water. The device for dispensing liquids comprises at least a first valve 104 connected to said delivery spout 101 and configured to allow a user to regulate at least one of a water flow in said delivery pipe 101 and a 30 temperature of the water dispensed in use from the dispensing spout 101. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The device for dispensing liquids comprises a dispensing device 108 for beverages dispensed from beverage dispensing containers, which includes at least: - a support body 108b; - a distributor body 108a connected to said support body 108b and 5 comprising a dispensing portion 109 configured to permit a dispensing a drink. In such dispensing device 108, at least one of the support body 108b and the distributor body 108a is configured to retain and / or contain at least part of a beverage dispensing container 190. 10 The support body 108b includes a water supply inlet 122 configured to receive water from a supply line 107. The dispensing device 108 has: - an assembled operating configuration, wherein the support body 108b and the dispenser body 108a are coupled to allow the drink to be dispensed 15 by flowing water from the water supply inlet 122, into the container for dispensing beverages 190, and towards said dispensing portion 109; and - a disassembled operating configuration, in which the support body 108b and the distributor body 108a are decoupled and allow access to the container for dispensing drinks 190. 20 The liquid dispensing device includes a user interface 105 preferably of the electronic type. The user interface 105 is configured to allow the selection of the delivery of a drink through the dispensing device 108. In use the user – with a movement, for example of a rotary-translational type, on an actuation command 25 of the user interface 105 – select the desired beverage dispensing. By actuating, the user interface 105 determines the activation of at least one of a pump or valve for the introduction of water, or liquid, into the conduit power supply 107 and / or power input 122. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In particular, the user interface 105 is configured to determine a timed delivery and / or is configured to allow a selection of at least a first dispensing volume, preferably a plurality of dispensing volumes. The at least one first dispensing volume, or said plurality of dispensing volumes, 5 are electronically calculated by the device described herein, and / or determined and / or electronically associated with at least one predefined first type of container 800 and / or to at least a first type of beverage dispensing container 190. It is therefore clear that the user interface 105 is configured to allow a variation of said at least one first delivery volume, in accordance with a type 10 of said container 800, and / or in accordance with the at least one first type of container for beverage dispensing 190 identified via the control device 222, 223. A further embodiment of the device which is the subject of this The disclosure includes a control device 222, 223 that is specifically configured to electronically identify a type of dispensing container 15 beverages from a variety of beverage dispensing container types, and for regulate a dispensing volume of said beverage, and / or a dispensing volume of flowing water within the beverage dispensing container 190 and / or at least one of a time of dispensing said water into said beverage dispensing container 190, a temperature of said water, a pressure of said water, in accordance with said 20 type of beverage dispensing container. Optionally, the control device 222, 223 can be configured to identify the presence of the beverage dispensing container 190 as previously described. 25 First temperature regulator. Optionally, the dispensing device 108 of the present disclosure may include a first temperature regulator, preferably of the electric type. The first temperature regulator is therefore of the active type, i.e. capable of forcing a alteration or maintenance of a certain temperature by means of a 30 energy supply from an external source. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The first temperature controller is preferably operationally connected to the data processing unit 404. The first temperature controller may be conveniently located at the water supply inlet 122 and / or the supply duct 107. The first temperature regulator, therefore, 5 is conveniently located upstream of the beverage dispensing container 190. The presence of the first temperature regulator is also possible where the The device which is the subject of this disclosure does not feed water, but generic liquids, and therefore where the water supply inlet is a generic inlet of liquid supply. 10 The first temperature regulator is so called because of a particular shape the construction of the device which is the subject of this disclosure is also equipped with a second temperature regulator. Where only the first regulator temperature is present, or where you want to define the function through the name technique of the first temperature regulator, this first temperature regulator will be able to 15 be called pre-treatment temperature controller. The purpose of the first temperature controller is to provide heating or cooling of the water that is present at the entrance of water supply 122 and / or supply pipe 107, and therefore upstream of the beverage dispensing container 199 and the dispenser body 108a. 20 The first temperature regulator is installed upstream of the flow regulator 400, in particular upstream of the inlet of the flow regulator 400. Conveniently, the first temperature controller is installed in close proximity of the flow regulator, especially near the inlet of the flow regulator flow 400. 25 The technical effect provided by the first temperature regulator is to allow – where required – rapid achievement of an optimal water temperature; This rapid achievement can, in turn, facilitate the crossing of the predefined threshold of temperature necessary to determine the opening of output 401. Therefore, where present, the first temperature regulator cooperates to 30 speed up the opening of exit 401. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In a first embodiment, the first temperature controller comprises an electrical resistance placed inside the pipe through which the water flows when in use intended for the production of the drink. In a second embodiment, the first temperature controller 5 includes an electrical resistance placed outside the aforementioned conduit. In both cases the electrical resistance is electrically isolated from the water which is made to flow into the duct in order to produce the drink. Electrical resistance comprises a resistive element proper and a waterproof insulation sheath. 10 However, the embodiment in which the electrical resistance is placed outside of the duct is such that there is a lower risk of electrical contact between the element resistive proper and the water where the insulation sheath should to break down. Figure 16 illustrates a particular example of a first temperature regulator, 15 which is associated with the power supply conduit 107 and / or the power supply inlet of water 122. This associated heater is schematically indicated with the reference numeric 900. The first temperature controller comprises a 901 resistive element surrounding the supply duct 107 and / or the water supply inlet 20 122 and also includes a sheath 902 for said resistive element. The sheath 902 It is electrically insulating. The first temperature controller 900 also includes a housing 904 for at least part of the supply duct 107 and / or for the supply inlet of water 122. The casing 904 defines a substantially closed chamber 905 25 surrounding at least part of the duct on its entire lateral surface power supply 107 and / or water supply inlet 122. Chamber 905 is preferably filled with a heat-conductive fluid, e.g. example glycol, for example but not limited to propylene glycol. From figure 16 it can be seen that the sheath 902 of the resistive element 901 is placed 30 at a predetermined distance from the supply duct 107 and / or the inlet of GES1P25IT Eng. Marco Brasca, Register n° 1094 BM water supply 122. Therefore, in the embodiment of Figure 16, the resistive element 901 and the sheath 902 are not in direct contact with the conduit power supply 107 and / or with the water supply inlet 122. Where there is a closed circuit of partial recirculation of water or 5 however of the liquid, as described here, conveniently the first regulator of temperature is placed downstream of the storage tank 412 or downstream of the pump 412 or of the one-way valve 411, and is conveniently interposed between at least one of the above mentioned devices and the water supply inlet 122. In one embodiment, in use the first temperature controller is activated 10 operatively together with the flow control element 400. Where the flow control element flow control 400 is electronically controlled, the flow control element 400 and the first temperature regulator are controlled simultaneously by the unit data processing, and thus the first 900 temperature controller cooperates actively with, and is at least temporarily activated in substantial simultaneity 15 time with, the sensor 405, the data processing unit and the control element of flow 400. In particular, where there is a closed loop as previously described, the water (or more generally, the liquid) flowing in the supply line 107 is forced into circulation, for example by pump 410. The control element of 20 flow 400 diverts the water (or more generally, the liquid) towards the second outlet 402, for allow circulation in the ring. Gradually, the temperature is varied by the first regulator temperature 900. This temperature variation leads to a crossing of the threshold of water temperature (or more generally, of the liquid) so as to determine a 25 flow control element output opening switching, from the second exit 402 to the first exit 401. A further example of a first 900 temperature controller can be a cell Peltier. The advantage of using a first 900 temperature controller as a cell Peltier is to allow heating or cooling of water, or more 30 in general of the liquid, which is fed in use to the flow regulator 400, with a single device. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The data processing unit can be configured to cause the activation of the first temperature regulator 900 when the presence of the beverage dispensing container 190, and / or when the dispensing device 108 is in the assembled operational configuration. 5 In particular, the data processing unit may be configured to cause a automatic and immediate activation of the first temperature regulator 900 when the presence of the beverage dispensing container 190 is detected and / or when the dispensing device 108 is in the operating configuration assembled. 10 The data processing unit may also be configured to cause a automatic and immediate activation of the first temperature regulator 900 when the presence of the final container 800 is detected. The data processing unit can be configured to cause a automatic and immediate deactivation of the first temperature regulator 900 15 when at least one of the following conditions exists: - the drink dispensing has finished, for example because the set point has been reached predetermined dispensing volume or dispensing time; - the dispensing device 108 switches from the assembled operating configuration to the disassembled operational configuration; 20 - the flow control element 400 switches by closing the first output 401, - the final container 800 is removed from the dispensing plate 108c. The definition of a particular strategy for controlling the activation of the first 900 temperature regulator allows you to optimize the energy consumption of the dispensing device 108 and / or the device for dispensing liquids described herein. In fact, 25 the first temperature controller 900 absorbs electrical energy (directly or indirectly) during its operation. The control, in particular automatic, carried out via the data processing unit advantageously relieves the user from the need to actively control the power supply or power failure of the first temperature regulator 900. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM Advantageously, the use of the first 900 temperature regulator allows for example a heating, or a cooling, or a maintenance of a certain level of heating or cooling, of the liquid placed in its proximity, without example need to empty the liquid supply line 122 and / or 5 without the need to empty the inlet duct 107. This operation moreover it could lead to significant problems in delivery, as could favor the passage of air bubbles, with the consequent risk of damage to parts of the 108 dispenser device and / or the device for distribute liquids associated with it. Application of the flow control element to a device for dispensing liquids It is also noted that the flow regulation functions provided by the element of flow control 400 described in association with dispensing device 108 specifically intended to dispense beverages from a dispensing container 15 drinks 190, can also be applied to a sanitary device and, more in general, to a device for dispensing liquids. It is therefore clear that this disclosure illustrates a device for distribute liquids, preferably a sanitary ware. In a non-limiting embodiment, the sanitary fixture is a faucet, in 20 a kitchen faucet in particular. Alternatively, such a device for distributing liquids can be a bathroom device, such as a shower device. It remains understood that the liquid dispensing device of the present disclosure may also be any other type of device capable of being installed in a manner fixed or movable on a support surface. 25 The liquid dispensing device comprises a power supply input of water 122 and a portion of dispensing and / or distributing liquids, and which comprises a flow control element 400 having at least one first input powered by said water supply inlet 122 and at least one first outlet 401 configured to supply water to said dispensing and / or distribution portion of 30 liquids. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The flow control element 400 of the liquid dispensing device is configured to allow or prevent the supply of water to the portion of supply and / or distribution of water, by opening or closing said at least one first output, according to at least one value assumed by at least one characteristic of said 5 liquids. Further features of the flow control element 400 have already been described above and therefore will not be repeated here in full. A specific embodiment of the sanitary device comprises a tap, but this tap is not equipped with the dispensing device 108 10 previously discussed. In particular, the faucet can be configured to to supply, under control of the user interface 105 already described, the supply of water boiling or at a certain pressure, on its dispensing portion and / or liquid distribution, which may conveniently include a mouth of adjustable dispensing. 15 A further embodiment of the device for dispensing liquids is a pure beverage dispensing device, such as a soda dispensing device alcoholic beverages, especially beer for example with the addition of an additional substance such as a carbonated drink. In this case, the control element of flow 400 can be installed in correspondence with a branch feeding the 20 carbonated beer drink and can be conveniently configured to determine an opening of the output 401 only when the temperature of the carbonated drink drops to a value equal to or below 6°C. It is understood in particular that the features offered by the control element of flow 400 regarding the possibility of carrying out at least partial recirculation of the 25 liquid in a closed loop circuit, are also intended to be supplied for a generic liquid dispensing device, in particular a sanitary device. Finally, it is noted that this disclosure also illustrates a form of embodiment of the dispensing device 108 not specifically designed to be coupled with a beverage dispensing container. 30 Specifically, such embodiment of dispensing device 108 comprehends: GES1P25IT Eng. Marco Brasca, Register n° 1094 BM - a support body 108b; - a distributor body 108a connected to the support body 108b and comprising a dispensing portion 109 configured to allow dispensing of a liquid; 5 where: - the support body 108b includes a water supply inlet 122 configured to receive water from a supply line 107. The present embodiment of the dispensing device 108 comprises at least one flow control element 400 operatively connected to the body of 10 support 108b, and receiving in use water from the supply pipe 107. The flow control element 400 has at least one first powered input from the water supply inlet 122 and at least one first outlet 401 configured to dispense liquid. The flow control element 400 is configured to allow or prevent 15 selectively supplying water to said at least one first outlet 401 in agreement on at least one value assumed by at least one characteristic, preferably the temperature of said liquid. The liquid may preferably comprise water or a beverage comprising water and, specifically, the dispensing device described here is intended to dispense 20 drinks extracted from beverage dispensing containers, and is preferably configured for, and specifically intended to be paired with, a device for dispensing liquids, preferably a 100 tap for dispensing water. Delivery according to the presence of the final container 25 A particular embodiment of the dispensing device 108 which is the subject of the This disclosure is configured to allow the dispensing of the beverage only if the presence of the cup is detected, and more generally of the container final 800. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In this embodiment, the dispensing device 108 of the present invention disclosure includes a flow control element 400 operably connected to the support body 108b, and receiving water from the conduit power supply 107, and also includes at least one presence sensor 801, 802. 5 The presence sensor 801, 802 is configured to identify a presence of the final container 800 and is operationally connected (electrically, and / or optically, via the data processing unit) to the flow control element 400. In light of the previous paragraph it appears clear that the operational connection established between the presence sensor 801, 802 and the flow control element 400 can 10 be direct or indirect. The presence sensor 801, 802 in use transmits a presence signal (preferably, an electronic signal) having at least: - a first state, indicative of the presence of the final container 800; - a second state, indicative of an absence of the final container 800. 15 Also in this embodiment, the flow control element 400 has a first input fed by the water supply input 120 and at least a first outlet 401 through which, in use, water is fed to said body of support 108b and / or said distributor body 108a, and therefore is fed to the beverage dispensing container 190. 20 However, in this embodiment, the presence (or absence) of the final container 800 determine a primary hierarchy role to establish whether the device which is the subject of this disclosure can dispense the beverage or if, at otherwise, the supply is prohibited. In particular, the flow control element 400 is configured to allow 25 water supply to the beverage dispensing container 190 when the presence signal is in the said first state and to prevent the power supply of water to the beverage dispensing container 190 when the signal presence is in the said second state. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In particular, the final container 800 must be placed in a predefined position with respect to said dispensing portion 109. This predefined position can advantageously be defined by the dispensing plate 108c. Therefore, in one embodiment, the first state is indicative of the presence 5 of the final container 800 in said predefined position on the dispensing plate 108c, and said second state is indicative of the absence of the final container 800 in the default position on the dispensing plate 108c. The final container 800 can be conveniently placed in a first default position and in a second default position, both valid for 10 allow the drink to be dispensed through the dispensing device object of this disclosure. This may be convenient for example because of the existence of various types or forms of final container 800 within which the device The dispenser described here can effectively dispense a beverage. In this case, therefore, the presence sensor must be able to 15 identify the presence of a first predefined position and a second predefined position position for the final container 800. Where the conditions of the previous paragraph exist, it is therefore clear that the first state is indicative of the presence of the final container 800 in the first default position or in the second default position, and the second state is 20 indicative of the fact that the final container 800 is in a different position than in first position or second position. In one embodiment, the flow control element 400 may act simply as an ON-OFF valve (single input, single output) for control of the dispensing of the drink according to the presence or absence of the container 25 final 800, and not have a control function with secondary hierarchy according to a value assumed by at least one characteristic of water. In a further, more complex embodiment, the control element of flow 400 is further configured to selectively allow or prevent the supply of water to said beverage dispensing container 190 in 30 agreement a value assumed by at least one characteristic, preferably the GES1P25IT Eng. Marco Brasca, Register n° 1094 BM temperature, of said water, subject to said presence signal in said first state. In this embodiment, for example, if the presence signal is in the second state, regardless of the value assumed by the water characteristic, the 5 drink cannot be dispensed (first exit 401 remains permanently closed). If instead the presence signal is in the first state, then: - when the at least one value of said at least one characteristic of said water passes a predefined switching threshold P1, T1, it will be possible to supply the drink by flowing water through the beverage dispensing container 190; 10 - if at least one value of said at least one characteristic of said water is not passes the predefined switching threshold P1, T1, the drink will be dispensed prevented. Some embodiments may provide for the dispensing of the beverage in agreement to a direction of transition of the predefined switching threshold P1, T1; 15 specificities of this technical feature have already been described above and therefore they are not repeated here. Figure 1 schematically illustrates the presence of a first sensor of presence 801 of an optical type, placed for example on the body 103 of the tap, and of a second presence sensor 802 in the form of a weight sensor (weight cell sensor) 20 load), positioned in correspondence with the dispensing plate 108c. One embodiment includes a first presence sensor 801 arranged in a fixed position on the body 103 of the faucet, while a further form of realization includes a first presence sensor 801 installed in a mobile on the body of the tap. 25 Preferably, both presence sensors 801, 802 are operationally connected to the data processing unit and transmit an appropriate signal to it control (electrical signal, optical signal) which is indicative of at least the presence or absence of the final container 800 but which can also be indicative of the quantity of beverage which is progressively introduced into the final container 800. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM The second presence sensor 802 can also perform the technical function of (indirect) identification of a volume of beverage actually dispensed in the final container 800. At the start of the drink dispensing, or before the drink dispensing, the 5 second presence sensor 802 measures final container weight 800. During the dispensing of the beverage, the final container 800 fills up progressively, and its weight measured by the second presence sensor 802 increases progressively. It therefore appears clear that a form of embodiment of the The dispensing device 108 which is the subject of this disclosure comprises a sensor 10 a load cell that is configured not only to identify the presence or the absence of the final container 800, but also to identify a first weight and a second weight of the final container 800, where the first and second weights hold account of a first volume of drink, and respectively, of a second volume of beverage contained in the final container. 15 The 802 presence sensor constantly measures the weight of the final container 800 including the drink contained therein, and sends a presence signal that contains a weight data. The weight data can be a relative weight data Wr, i.e. a weight data absolute Wa of the final container 800 with the drink contained therein from which is subtracted 20 a tare data Wb corresponding to the weight of the final container 800 before arrival of the drink. This relative weight data can be compared with a threshold Th corresponding to a volume of beverage dispensed. This threshold can be conveniently determined taking into account the specific weight of the water. 25 If the relative weight data Wr is equal to or greater than the threshold (Wr>=Th), then the dispensing of water into the beverage dispensing container 190 is stopped in automatic mode, since this condition indicates that the required volume has been reached of drink. Otherwise, where and as long as the relative weight Wr is less than the threshold 30 (Wr <Th), l’erogazione di acqua nel contenitore per erogazione di bevande 190 è maintained. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM In general, the technical feature of being able to detect the quantity of liquid content inside the final container 800 is not only unwindable by the sensor with a load cell. In fact, especially where the final container 800 is transparent or translucent, it is also possible that the optical sensor can determine the quantity 5 of beverage contained in the final container 800, and thus be the technical element through which, once a certain level of beverage has been reached in the final container 800, the drink delivery is interrupted. Heating or cooling the dispensing portion 10 A peculiar embodiment of the dispensing device 108 which is the subject of the This disclosure is characterized by the fact that it includes a second regulator of temperature 109z, placed downstream of the beverage dispensing container 190. The second temperature regulator can also be called the temperature regulator. post-treatment temperature. 15 The second temperature controller 109z is configured to force the reaching a predetermined temperature for at least one element, and therefore for the beverage, downstream of the beverage dispensing container 190, and / or is configured to maintain a predetermined temperature on said element and therefore on said beverage, downstream of the beverage dispensing container 190. 20 More specifically, the second temperature controller 109z can be configured to heat or cool the beverage, or to keep the beverage warm at least at a predetermined first temperature, optionally at least at a predetermined temperature range, in particular at least a first predetermined heating or cooling temperature or at a predetermined 25 heating or cooling temperature range. Alternatively to the configuration where the second temperature regulator 109z is arranged downstream of the beverage dispensing container 190, in a further embodiment such second temperature controller 109z may be arranged in correspondence with the beverage dispensing container 190, and in 30 particular to be placed in proximity to, or within, or immediately outside, the cavity housing the beverage dispensing container 190. In this case the GES1P25IT Eng. Marco Brasca, Register n° 1094 BM second temperature controller can be favorably configured for to heat or cool the beverage dispensing container 190, or to maintain the beverage dispensing container 190 at least to a predetermined first temperature, optionally at least in a predetermined temperature range, in 5 particular at least a first predetermined heating temperature or cooling or in a predetermined range of heating or cooling temperatures cooling. In particular, the second temperature controller 109z can be configured For: 10 - further heat the already hot drink by injecting water hot in the beverage dispensing container 190; - cool a hot drink by injecting cold water into it beverage dispensing container 190; - warming a cold drink by injecting hot water into it 15 beverage dispensing container 190; - further cool the already cold drink by injecting water cold in the beverage dispensing container 190. It therefore appears clear that a specific embodiment of the device dispenser 108 which is the subject of this disclosure is such that the second regulator 20 of temperature 109z cooperates operationally with the first temperature controller 900 to define a drink dispensing temperature. In a non-limiting embodiment, the second temperature controller 109z is placed at the dispensing portion 109. For example, the second temperature regulator 109z can be placed in substantial 25 corresponding to an external surface of the dispensing portion 109; in a further embodiment, the second temperature controller 109z can be arranged in substantial correspondence with an entire surface of the portion of delivery 109. An embodiment has therefore been conceived in which the Second temperature regulator 109z regulates the temperature of the downstream beverage 30 of the container for dispensing drinks 190 directly, and it was also an embodiment is conceived in which the second temperature controller 109z GES1P25IT Eng. Marco Brasca, Register n° 1094 BM regulates the temperature of the beverage downstream from the beverage dispensing container 190 indirectly. The dispensing portion 109 comprises a 190w dispensing cavity of the beverage, which is operationally placed downstream of the dispensing container 5 drinks 190 and in particular the contact surface for the container for 190W beverage dispensing cavity. The 109W beverage dispensing cavity is connected with a 109k delivery orifice. Various technologies can be used to realize the second regulator of temperature 109z. A particular technology includes the use of Peltier cells, 10 and is therefore a technology that uses a second temperature regulator 109z electric type. Electrical contacts can be arranged at contact surfaces between the distributor body 108a and the support body 108b; these electrical contacts are obviously decoupled when the distributor body 108a and the support body 15 108b are in disassembled operational configuration, and are instead coupled when the distributor body 108a and the support body 108b are in the assembled operational configuration. The electrical contacts are intended to transmit electrical energy to the Peltier cell to heat or cool it. 20 The Peltier cell, or more generally further examples of second regulator temperature 109z are conveniently operational (electrically, and / or optically) connected to the data processing unit, optionally via a power supply. The electrical power that can be supplied to the Peltier cell can be varied without any solution 25 of continuity between a first minimum value (optionally zero) and a second value maximum. This technical feature allows you to precisely adjust the heat or cold supply provided, directly or indirectly, downstream of the beverage dispensing container 190. In one embodiment, furthermore, for example via the processing unit 30 data, the second temperature controller 109z can be activated continuously or discontinuous. This technical feature, which can be present in combination GES1P25IT Eng. Marco Brasca, Register n° 1094 BM to, or as an alternative to, the technical feature of the adjustability of the electrical power supplied to the Peltier cell and more generally to the second temperature regulator 109z, is intended to allow a further possibility of precise regulation of the beverage temperature downstream of the beverage dispensing container 190. 5 Optionally, the data processing unit can simultaneously control the electrical power delivered to the second temperature controller 109z with the power electricity supplied to the first temperature regulator 900; these two regulatory elements temperature sensors can be activated in a temporally disjoint manner (first one, then the other), in a substantially entirely simultaneous manner (the ON / OFF times are 10 coinciding for the first and second temperature regulator), or in a partially substantially simultaneous (the ON / OFF times are not coincident for the first and second temperature regulator). A further embodiment comprises a second regulator of temperature 109z, always of the active type, in the form of a refrigeration circuit; for example, such 15 refrigeration circuit can be fixedly installed on the support body 108b, and however, be intended to act on the distributor body 108a, and in particular on the portion of delivery 109 of the same. This solution can be conveniently implemented where there is a partial overlap and / or insertion of the support body 108b onto the distributor body 108a (or vice versa), at least 20 in assembled operational configuration. In one embodiment, particularly where there is the presence of the according to temperature controller 109z, the dispensing portion 109 can be made of metal material, to promote heat exchange with the drink downstream of the beverage dispensing container 190; this technical solution can 25 be conveniently implemented for example where the second regulator of temperature 109z is placed outside the dispensing portion 109. Where the second temperature regulator 109z is placed within the portion of delivery 109, the latter can be made of material plastic. 30 As schematically shown in the figure, the second regulator of temperature 109z can be provided with a finned surface, arranged in the cavity 109w beverage dispensing downstream of beverage dispensing container GES1P25IT Eng. Marco Brasca, Register n° 1094 BM 190, to increase the heat exchange with the beverage downstream of the container for beverage dispensing 190. This finned surface can identify a tortuous path intended to increase the contact time with the second temperature regulator 109z so as to 5 promote heat exchange with the drink. The data processing unit can be configured to cause the activation of the second temperature regulator 109z when the presence of the beverage dispensing container 190, and / or when the dispensing device 108 is in the assembled operational configuration. 10 In particular, the data processing unit can be configured to cause a automatic and immediate activation of the second temperature regulator 109z when the presence of the beverage dispensing container 190 is detected and / or when the dispensing device 108 is in the operating configuration assembled. 15 The data processing unit may also be configured to cause a automatic and immediate activation of the second temperature regulator 109z when the presence of the final container 800 is detected. The data processing unit can be configured to cause a automatic and immediate deactivation of the second temperature regulator 109z 20 when at least one of the following conditions exists: - the drink dispensing has finished, for example because the set point has been reached predetermined dispensing volume or dispensing time; - the dispensing device 108 switches from the assembled operating configuration to the disassembled operational configuration; 25 - the flow control element 400 switches by closing the first output 401, - the final container 800 is removed from the dispensing plate 108c. The definition of a particular strategy for controlling the activation of the second 109z temperature controller allows you to optimize the energy consumption of the dispensing device 108 and / or the device for dispensing liquids described herein. In fact, 30 the second temperature controller 109z absorbs electrical energy (directly or GES1P25IT Eng. Marco Brasca, Register n° 1094 BM indirectly) during its operation. The control, in particular automatic, carried out via the data processing unit advantageously relieves the user from the need to actively control the power supply or power failure of the first 109z temperature controller. 5 The data processing unit can be configured to control preferably automatic a time-synchronized activation of the first temperature regulator 900 and the second temperature regulator 109z. In particular, a period of time for the activation of the first regulator has been defined temperature (first time period) in which the first temperature controller 900 is 10 activated, and defined a time period for the activation of the second regulator temperature (second time period) at which the second temperature controller 109z is activated, the data processing unit can be configured to: - overlap the first time period and the second time period so that a initial instant and a final instant of the first time period are coincident with a 15 initial instant and one final instant of the second time period; - first activate the first temperature regulator 900, in one of the following two ways: - the initial instant of the first time period precedes the initial instant of the second time period, and the final instant of the first time period precedes or is 20 equal to the final instant of the second time period; - the initial instant of the first time period precedes the initial instant of the second time period, and the final instant of the first time period follows the instant end of the second period of time; - the initial instant of the first time period follows the initial instant of the second 25 time period, and the final instant of the first time period precedes or is equal to at the final instant of the second time period; - the initial instant of the first time period follows the initial instant of the second period of time, and the final instant of the first period of time follows the final instant of the second period of time. GES1P25IT Eng. Marco Brasca, Register n° 1094 BM *** The invention is not limited to the embodiments of the figures; for this reason, the numbers and reference marks in the claims are provided for illustration purposes only. to increase their intelligibility, and are not limiting in nature. 5 Finally, it is clear that the subject of this disclosure may include applied additions, modifications or variations, obvious to a technician in the field, without this is outside the scope of protection provided by the attached claims.

Claims

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