EP3705641B1 - Ensemble pourvu de sortie d'eau et mélangeur pour une douche - Google Patents

Ensemble pourvu de sortie d'eau et mélangeur pour une douche Download PDF

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Publication number
EP3705641B1
EP3705641B1 EP19161760.4A EP19161760A EP3705641B1 EP 3705641 B1 EP3705641 B1 EP 3705641B1 EP 19161760 A EP19161760 A EP 19161760A EP 3705641 B1 EP3705641 B1 EP 3705641B1
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EP
European Patent Office
Prior art keywords
mixing chamber
water outlet
water
structural unit
flow path
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP19161760.4A
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German (de)
English (en)
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EP3705641C0 (fr
EP3705641A1 (fr
Inventor
Andreas Wawrla
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Aquis Systems AG
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Aquis Systems AG
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Publication date
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Priority to EP19161760.4A priority Critical patent/EP3705641B1/fr
Priority to PCT/EP2020/056272 priority patent/WO2020182773A1/fr
Publication of EP3705641A1 publication Critical patent/EP3705641A1/fr
Application granted granted Critical
Publication of EP3705641C0 publication Critical patent/EP3705641C0/fr
Publication of EP3705641B1 publication Critical patent/EP3705641B1/fr
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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/06Devices for suspending or supporting the supply pipe or supply hose of a shower-bath
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/05Arrangements of devices on wash-basins, baths, sinks, or the like for remote control of taps
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/04Water-basin installations specially adapted to wash-basins or baths
    • E03C2001/0417Water-basin installations specially adapted to wash-basins or baths having space-saving features, e.g. retractable, demountable

Definitions

  • the invention relates to a structural unit as part of a shower device according to the preamble of claim 1 and a shower device according to the preamble of claim 14.
  • a shower head from FM Mattsson Mora Group AB, Sweden is known, which is sold under the name "Mora Tronic Compact", with cold and warm water being mixed directly in this shower head.
  • the shower head itself is also equipped with an integrated valve for adjusting the volume flow.
  • the object of the invention is to propose a structural unit as part of a shower device, which can be operated advantageously and also meets modern requirements and demands of consumers or enables improved comfort or improved performance.
  • the structural unit according to the invention serves as a component of a shower device. Depending on the design variant, it can be partially embedded in a wall so that it is aligned flush with the wall surface, or placed on a wall.
  • the structural unit includes the water outlet, for example in the form of a shower head.
  • the water outlet can emit one or more jets of water with which people/users can wash themselves.
  • the water outlet is usually fixed or variably installed at a sufficient height above the floor or a shower tray so that the water emerging from the water outlet can completely wet a person of normal size when showering.
  • the water outlet can optionally be designed to be adjustable, so that different exit options for the water jets (rain shower, many or few, fine or thick jets, etc.) can be set.
  • a mixing and control device is provided with which not only the volume flow but also the water temperature can be adjusted.
  • the mixing and control device accordingly comprises a first and a second feed line for supplying the warm and cold water, respectively, and for mixing the warm and cold water.
  • the actual mixing process of water quantities at different temperatures takes place in the so-called mixing chamber.
  • the mixing chamber can, for example, be designed in such a way that a flow is created in it, which ensures that the hot and cold water supplied can mix as homogeneously as possible.
  • a flow element in the mixing chamber can also be used for this purpose be arranged, which ensures good mixing and, for example, generates a partially turbulent flow to improve the shower mixture.
  • the mixing chamber is connected to the water outlet in a fluid-conducting manner, so that the water outlet can be fed with tempered mixed water.
  • the structural unit according to the invention is initially characterized in particular by its particular compactness, since the mixing and control device as well as the water outlet are completely integrated in a first construction phase.
  • the mixing chamber and water outlet are therefore arranged very close to one another, so that short distances can be used for the water route.
  • better performance can be achieved by the structural unit according to the invention because, among other things, the temperature adapts more quickly to the new mixture, because the distance or the volume between the mixing chamber and the water outlet can be significantly shorter according to the invention.
  • the mixing and control device can, for example, be hidden from the outside by a housing or a housing section or housed therein, while only the water outlet is then located outside the housing.
  • the first construction phase can be a compact section in a certain area or at a certain height of the shower device.
  • the structural unit according to the invention is characterized in that not only two valve devices, namely a first valve device for controlling the flow from the first inlet line and a second valve device for Control of the flow from the second inlet line are provided, both of which open into the mixing chamber, but also in that both valve devices are each equipped with an actuator for opening and closing the respective valve device.
  • the actuators both include, for example, a separate electric motor.
  • the actuators are designed in such a way that they can be controlled by a control or monitoring unit.
  • the control or monitoring unit can be operated or controlled by an operating device (such as a rotary knob, a button, a lever or the like) and/or regulate the temperature or the volume flow (flow meter) by a sensor (temperature sensor).
  • the water temperature and possibly also the volume flow can be influenced by any computer, if necessary also using an app and/or a facility management system (e.g. predetermined, individual temperature settings).
  • the volume flow and the water temperature are then adjusted using an operating device.
  • the operating unit is not integrated into the first construction phase.
  • the actuators are connected to the operating device via an electrical control line or, if necessary, wirelessly.
  • both the cold and hot water supply lines each have their own control valve in the form of the valve device, not only the volume flow but also the temperature of the water can be adjusted during operation by the user who is taking a shower.
  • the invention also differs very much from conventional shower devices from the prior art, since although a mixture of warm and cold water is generally provided in the shower head or in the area of a water outlet, conventional shower heads have a temperature setting that can be changed during operation and is therefore comfortable not possible from the current state of the art. Rather, a fixed pre-setting has previously had to be carried out on the valves on the hot or cold water inlet using an adjusting screw. During operation, such a conventional shower head or the housing surrounding it would have to be opened, which is no longer necessary according to the invention.
  • the operating device is integrated in a second construction phase, which is different from the first construction phase or does not overlap with the first construction phase.
  • the mixing chamber were arranged directly on the operating device and mechanically coupled to it, a relatively large water path and therefore a relatively large volume would be found between the mixing chamber and the water outlet.
  • This circumstance is structurally due to the fact that the control unit must be easily accessible to the user, while the actual water outlet must be installed at such a height that people are usually hit by the water jets from above/on their heads. The water outlet must therefore be installed at an appropriate height.
  • the advantage is that the mixing chamber is arranged in a first construction section that differs from that of the operating device.
  • connection from the operating device to the mixing and control device takes place via an electrical line or, if necessary, wirelessly, ie distances of typically 1 m to 1.50 m, if necessary even more, can generally be bridged without difficulty.
  • a cable between the operating device and the first construction phase requires very little installation space. this applies especially in the event that a wireless connection is provided.
  • the operating device is able to adjust temperature and volume flow together via its own control unit. So if the temperature is to be changed with a constant volume flow, one of the valve devices must be opened more to adjust the temperature accordingly, while the other valve device is closed more to maintain the volume flow.
  • the distance over which the mixing chamber is fluidly connected to the water outlet is at most 150 mm. Smaller distances of at most 120 mm or even at most 100 mm are even more preferred.
  • the volume that is present as a fluid-conducting connection between the mixing chamber and the water outlet can be at most as large as the volume of the mixing chamber.
  • the first construction phase can have a small volume, for example less than 1-2 liters.
  • the distances to essential components in the first construction phase can be kept very short. Accordingly, the compactness, which is immediately recognizable from the outside, is once again emphasized.
  • the operating device can thus be mechanically decoupled from the mixing and control device or from the actuators, so that the operating device, for example
  • Valve device is not directly operated mechanically, for example by exerting a force on the valve tappet via an axis. This measure makes it possible to easily bridge such a distance between the operating device and the actual mixing and control device.
  • a structural unit according to the invention is characterized in that it can be particularly easily retrofitted into existing shower systems without additional space having to be created.
  • the water outlet can be at the level of the mixing chamber be arranged so that a compact construction section is created.
  • the two valve devices can also be arranged at the height of the mixing chamber or the water outlet.
  • the water outlet can usually be small and compact and sit directly on the wall or on the housing, so that it is not arranged in the room via another pipe section separated from the wall; As a result, the volume in which water can remain when switching off is rather small.
  • the immediate proximity of the mixing and control device or the two valve devices to the water outlet enables the volume on the path of the water between the mixing chamber and the water outlet to be as small as possible.
  • the line path of the water in the first construction section can form a flow path which has at least three flow path sections, of which the first flow path section runs through one of the valve devices, a second through the mixing chamber and a third leads from the mixing chamber towards the water outlet , wherein the first, the second and the third directly adjoin one another and wherein the first and the third flow path sections each run essentially completely perpendicular to the second flow section.
  • the first, second and third flow path sections together form a U-shaped line path. This makes it possible for the arrangement of the two valve devices together with the mixing chamber and any remaining path to the water outlet to be designed to be highly compressed and one compact design is made possible within the first construction phase.
  • the components can be arranged in such a way that a functional unit that is as space-saving as possible is created.
  • the first flow path sections of the first or second valve device can each be arranged parallel or skewed to one another, or the first flow path section of the first or second valve device can each be aligned parallel or skewed to the third flow path section.
  • a skewed arrangement ensures greater flexibility in the positioning of the valve devices within the first construction phase, in particular in the part of the first construction phase that is integrated into a housing, for example in the wall.
  • both valve devices can be arranged at the height of the mixing chamber in order to ensure a particularly compact structural unit.
  • the line path described can also branch off at 90° within the respective valve devices. Due to their length, the valve devices can, for example, be aligned horizontally.
  • the inlet lines can then open vertically into the valve devices to save space.
  • the valve devices can then turn perpendicular to the main flow direction Mixing chamber open.
  • a fourth flow path section can also connect to the third and, if necessary, run essentially perpendicular to the third flow path section.
  • a temperature sensor can be provided in or after the mixing chamber in order to check whether the amount of water flowing out of the water outlet has a predetermined temperature.
  • the temperature sensor can be connected to the operating device, which is also used to set the water temperature, so that the target temperature of the water can be compared directly with the temperature measured by the sensor.
  • a control device for controlling or regulating the valve devices can generally be arranged in the operating device, in the area of the sensor, etc.
  • first and second valve devices can each have a proportional valve. This basically makes the setting easier.
  • Embodiments of the proposed structural unit can be inserted, in particular flush, into a wall as a shower element or placed or mounted on the wall as a shower panel.
  • Such embodiments of the invention are characterized by the fact that a design with a small depth is possible due to the compactness, so that little space is required.
  • the compactness also advantageously allows it to be used as a hand shower element.
  • FIG 1 shows the first construction section I of a structural unit 1 according to the invention as part of a shower device.
  • the first construction phase I itself can in principle also form its own structural unit.
  • This construction section I includes a water outlet 2 in the form of a shower head, which is connected to a mixing and control unit MC by a housing 3 or a housing cover 3.
  • the mixing and control unit MC as in Figure 1 shown, but is located behind the cover of the housing 3.
  • From the outside only the water outlet 2 (and possibly the housing 3) is actually visible. Point at the water outlet 2 the nozzles 4 downwards so that the water is dispensed downwards towards the user through the water outlet 2 for showering.
  • a mixing chamber 5 can be seen, which has a cylindrical shape.
  • a temperature sensor 7 is arranged within this fluid-conducting connection 6.
  • Figure 2 shows a section that runs through the mixing chamber 5 and the first and second valve devices 8, 9.
  • the first valve device 8 regulates the inflow of warm water
  • the second valve device 9 regulates the inflow of cold water.
  • Both valve devices 8, 9 are directly connected to the mixing chamber 5.
  • the mixing chamber itself 5 can in turn be provided with a flow element inside, so that the incoming cold and warm water is mixed more effectively.
  • the mixing chamber 5 opens into the connection 6, which ultimately leads to the water outlet 2.
  • the sectional drawings in Figure 2 show the first construction phase 1 in a frontal view, so that the water outlet is in Figure 2 in front of the drawing plane.
  • the temperature sensor 7, which determines the temperature of the mixed water formed in the mixing chamber 5, is again arranged in the fluid-conducting connection 6.
  • the path of the hot water H and the is also shown cold water C, which ultimately flow into the mixing chamber 5 via the valve devices 8, 9 in order to form the mixed water of a predetermined temperature there.
  • the valve devices 8, 9 each have a valve seat 10, 11 and a matching plunger 12, 13, which seals against the respective valve seats 10, 11 in the closed state.
  • the tappets 12, 13 are moved along the longitudinal direction of the valves 8, 9, with the help of electric motors 14, 15. These units from the tappet 10, 11 to the electric motor 14, 15 form the actuators 16, 17.
  • the waterways H and C lead from below into the two valve devices 8, 9 (cf. Figure 2 ) and turn 90° in the area of the tappets 12, 13.
  • the adjoining, second flow path section M leads through the mixing chamber 5 again perpendicular to the outflow direction from the valve devices 8, 9.
  • FIG 3 again, another cut is perpendicular to the one in Figure 2 shown section. Also is in Figure 3 to see that from the outside, i.e. seen from the right in the illustration Figure 3 , only the water outlet 2 and the cover of the housing 3 can be seen.
  • the mixing and control device MC is located behind the cover of the housing 3.
  • the first and second valve devices 8, 9 are arranged offset from one another in the lower region.
  • the supply lines H and C for hot and cold water open from below into the two valve devices 8, 9.
  • the fluid-conducting connection N is in Figure 3 perpendicular to the drawing plane and still bends once vertically at a 90° angle and forms the flow path section O, which leads directly into the water outlet 2.
  • FIG. 6 again shows a structural unit 1, 20 in the form of a shower element for installation in a wall, which has a first structural section I in the upper section.
  • the mixing and control device MC is arranged at the level of the water outlet 2.
  • the height of the housing 3 extends over a much larger area.
  • a second construction section II with an operating device 22 is provided in the lower section.
  • the first construction phase I and the second construction phase II are only housed in the same housing 3 (with the exception of the water outlet 2 or the control button of the operating device 22), while the two construction phases I, II do not overlap.
  • the two construction phases I and II are otherwise separated from each other or only electrically connected to each other via cables. There is no mechanical coupling of the operating device 22 to the actuators 16, 17.
  • the present shower element 20 can be completely embedded in a wall. Like it in Figure 6 can be seen, the shower element 20 is advantageously characterized in that it is very narrow and not deep. Over and beyond It has the advantage that the water outlet is shut off in the first construction phase I. There are basically only electrical lines along the entire route between the operating device 22 and the water outlet 2, so that no water remains in pipes in these areas and the risk of germ contamination is reduced.
  • connections for hot and cold water H, C are even attached at the top, directly on the first construction section I, i.e. short water routes are provided.
  • the operating device 22 can be designed in various ways. One possibility is to provide this as a rotary knob. Another possibility is to design the operating device as a button, which may also enable other functions such as switching on a light. In any case, both the volume flow and the water temperature can be adjusted at the same time with a structural unit according to the invention.
  • a button can also be provided as an advantageous operating device, which has no stop, i.e. is essentially designed to be infinitely rotatable.
  • additional optical elements can also be provided, for example by displaying the temperature via an optical display.
  • the color selection can also be adjusted. For example, it is conceivable to have a display for the preselected standard temperature in a special color, while increasing the temperature or temperatures that are too hot are displayed in red, for example. Accordingly, cold temperatures can be symbolically displayed with a blue hue.
  • the temperature sensor 7 can in turn ensure that accidental selection of a water temperature that is too high is prevented, so that protection against scalding is provided.
  • the temperature sensor can interact directly with the actuators 16, 17 or associated control or monitoring units and, if necessary, reduce or even prevent the inflow of hot water.
  • the corresponding operating device 22 can also be controlled in a particularly advantageous manner via a computer, a tablet PC, a smartphone or the like via an app.
  • a facility management system e.g Standard temperature selections, ie presets of a preferred temperature, can be set in this way.
  • the mixing and control device and/or the operating device additionally has a memory so that such a selection can be set wirelessly using an app or a facility management system.
  • the mixing and control device and the water outlet are completely integrated in a first construction section, with the water outlet being arranged on the first construction section and the mixing and control device further comprising two valve devices for warm and cold water , so that the volume flow as a whole, but also the temperature, can be adjusted via both valves, specifically during operation by the user himself.
  • the electronics or a control unit can, if necessary, also be arranged in the operating device.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Bathtubs, Showers, And Their Attachments (AREA)
  • Domestic Plumbing Installations (AREA)

Claims (14)

  1. Unité de construction (1) en tant que constituant d'un dispositif de douche, comprenant :
    - une sortie d'eau (2) pour la sortie d'au moins un jet d'eau, la sortie d'eau (2) étant notamment réalisée sous forme de pommeau de douche, et
    - un dispositif de mélange et de contrôle (MC) pour contrôler le débit volumétrique et la température de l'eau par mélange d'eau chaude et d'eau froide, le dispositif de mélange et de contrôle (MC) comprenant :
    - une première conduite d'arrivée pour l'amenée d'eau chaude et
    - une deuxième conduite d'arrivée pour l'amenée d'eau froide,
    - une chambre de mélange (5) pour le mélange de l'eau chaude et de l'eau froide, notamment avec un élément d'écoulement agencé dans la chambre de mélange (5),
    - la chambre de mélange (5) étant reliée de manière conductrice de fluide à la sortie d'eau (2),
    - le dispositif de mélange et de contrôle (MC) et la sortie d'eau (2) étant entièrement intégrés dans une première section de construction (I), et
    - un premier dispositif de soupape (8) étant prévu pour contrôler le flux provenant de la première conduite d'arrivée ainsi que
    - un deuxième dispositif de soupape (9) pour contrôler le flux provenant de la deuxième conduite d'arrivée,
    - le premier et le deuxième dispositif de soupape (8, 9) débouchant dans la chambre de mélange (5) et
    - le premier et le deuxième dispositif de soupape (8, 9) présentant chacun un actionneur (16, 17) pour ouvrir et fermer le dispositif de soupape respectif (8, 9), caractérisé en ce que
    - les actionneurs (16, 17) sont réalisés de manière à pouvoir être commandés par l'intermédiaire d'une ligne de contrôle électrique (18, 19) et/ou sans fil par l'intermédiaire d'un dispositif de commande (22), de telle sorte que le débit volumétrique et la température de l'eau mélangée peuvent être ajustés par l'utilisateur pendant le fonctionnement,
    - le dispositif de commande (22) étant intégré dans une deuxième section de construction (II), qui est différente de la première section de construction (I) et/ou qui ne chevauche pas la première section de construction (1).
  2. Unité de construction (1) selon la revendication 1, caractérisée en ce que la distance sur laquelle la chambre de mélange (5) est reliée de manière conductrice de fluide à la sortie d'eau (2) est d'au plus 150 mm, notamment d'au plus 120 mm, de préférence d'au plus 100 mm et/ou le volume qui est réalisé en tant que liaison conductrice de fluide entre la chambre de mélange (5) et la sortie d'eau (2) est au plus aussi grand que le volume de la chambre de mélange (5).
  3. Unité de construction (1) selon la revendication 1, caractérisée en ce que la chambre de mélange (5) est directement reliée à la sortie d'eau (2).
  4. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que :
    - au regard de son centre géométrique,
    - la chambre de mélange (5) et au moins l'un des dispositifs de soupape (8, 9) et/ou ou
    - la sortie d'eau (2) et la chambre de mélange (5) et/ou
    - au moins l'un des dispositifs de soupape (8, 9) et la sortie d'eau (2)
    sont éloignés l'un de l'autre de moins de 100 mm, de préférence de moins de 70 mm, de manière particulièrement préférée de moins de 50 mm, et/ou
    - la première section de construction (I) présente un volume d'au plus 2 litres, de préférence d'au plus 1 litre.
  5. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que le dispositif de commande (22) est prévu pour l'ajustement du débit volumétrique et/ou de la température de l'eau, qui est relié par l'intermédiaire d'une ligne de contrôle électrique (18, 19) et/ou sans fil aux actionneurs (16, 17) et/ou à une unité de commande, afin de commander les actionneurs, le dispositif de commande (22) et/ou l'unité de commande étant de préférence réalisés pour ajuster conjointement la température et le débit volumétrique.
  6. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que le dispositif de commande (22) est découplé mécaniquement du dispositif de mélange et de contrôle (MC) et/ou des actionneurs (16, 17).
  7. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que le trajet de conduite de l'eau à l'intérieur de la première section de construction (I) réalise un trajet d'écoulement qui présente au moins trois sections de trajet d'écoulement, dont une première section de trajet d'écoulement (C) passe par au moins l'un des dispositifs de soupape (8, 9), une deuxième section (M) passe par la chambre de mélange (5) et une troisième section (N) passe de la chambre de mélange (5) en direction de la sortie d'eau (2), la première, la deuxième et la troisième section de trajet d'écoulement (C, M, N) se suivant directement et la première et la troisième section de trajet d'écoulement (C, N) s'étendant chacune essentiellement et/ou entièrement perpendiculairement à la deuxième section de trajet d'écoulement (M), la première, la deuxième et la troisième section de trajet d'écoulement (C, M, N) réalisant notamment ensemble un trajet de conduite en forme de U.
  8. Unité de construction (1) selon la revendication précédente, caractérisée en ce que la première section de trajet d'écoulement (C) du premier et du deuxième dispositif de soupape (8, 9) :
    - sont agencées parallèlement ou en travers l'une par rapport à l'autre, et/ou
    - la première section de trajet d'écoulement (C) du premier et/ou du deuxième dispositif de soupape (8, 9) est/sont respectivement orientée(s) parallèlement ou en travers par rapport à la troisième section de trajet d'écoulement (N).
  9. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que :
    - la sortie d'eau (2) est agencée à hauteur de la chambre de mélange (5), et/ou
    - au moins l'un des dispositifs de soupape (8, 9), notamment les deux, est/sont agencé(s) à hauteur de la chambre de mélange (5).
  10. Unité de construction (1) selon les revendications 7 ou 8, caractérisée en ce que le trajet de conduite (C) bifurque de 90° à l'intérieur du premier et/ou du deuxième dispositif de soupape (8, 9).
  11. Unité de construction (1) selon les revendications 7, 8 ou 10, caractérisée en ce que la troisième section de trajet d'écoulement (N) est suivie d'une quatrième section de trajet d'écoulement, laquelle s'étend essentiellement et/ou entièrement perpendiculairement à la troisième section de trajet d'écoulement (N).
  12. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce qu'un capteur de température (7) est prévu dans la chambre de mélange (5) et/ou dans le volume qui relie la chambre de mélange (5) à la sortie d'eau (2), pour la détection sensorielle de la température de l'eau mélangée, il étant prévu notamment un dispositif de surveillance pour la surveillance de la température, qui est relié au capteur de température et aux actionneurs (16, 17), afin de commander les actionneurs (16, 17) en fonction de la température de l'eau mélangée détectée par le capteur de température (7), afin d'ajuster la température de l'eau mélangée.
  13. Unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que :
    - le premier et/ou le deuxième dispositif de soupape (8, 9) comprend/comprennent une soupape proportionnelle et/ou
    - l'au moins un actionneur (16, 17) présente un moteur électrique (14, 15) en tant qu'entraînement.
  14. Dispositif de douche avec une unité de construction (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de construction (1) :
    - présente un boîtier (3) dans lequel est/sont intégré(s) notamment le dispositif de mélange et de contrôle (MC) et/ou le dispositif de commande (22) et/ou la conduite de contrôle (18, 19) et/ou
    - est réalisée :
    - en tant qu'élément de douche (20), afin d'être entièrement encastrée et/ou intégrée dans le mur, ou
    - en tant que panneau de douche afin d'être placée sur le mur, ou
    - en tant qu'élément de douche manuel avec une section de préhension pour être tenue à la main et un raccord pour raccorder au moins un tuyau d'eau à l'élément de douche manuel.
EP19161760.4A 2019-03-08 2019-03-08 Ensemble pourvu de sortie d'eau et mélangeur pour une douche Active EP3705641B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP19161760.4A EP3705641B1 (fr) 2019-03-08 2019-03-08 Ensemble pourvu de sortie d'eau et mélangeur pour une douche
PCT/EP2020/056272 WO2020182773A1 (fr) 2019-03-08 2020-03-09 Unité modulaire à évacuation d'eau et dispositif de mélange pour une douche

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Application Number Priority Date Filing Date Title
EP19161760.4A EP3705641B1 (fr) 2019-03-08 2019-03-08 Ensemble pourvu de sortie d'eau et mélangeur pour une douche

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EP3705641A1 EP3705641A1 (fr) 2020-09-09
EP3705641C0 EP3705641C0 (fr) 2023-11-22
EP3705641B1 true EP3705641B1 (fr) 2023-11-22

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Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2720431A1 (de) * 1977-05-06 1978-11-09 Alfons Dr Knapp Gelenkhalterung fuer eine dusche mit eingebautem steuerorgan
DE3665757D1 (en) * 1985-03-26 1989-10-26 Walter Holzer Process and device to actuate a tap
US9512601B2 (en) * 2010-03-16 2016-12-06 Edgar Lehrer Bronstein Remote Controlled Showering Apparatus and Related Methods

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WO2020182773A1 (fr) 2020-09-17
EP3705641C0 (fr) 2023-11-22
EP3705641A1 (fr) 2020-09-09

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