EP2798995B1 - Appareil de dosage - Google Patents

Appareil de dosage Download PDF

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Publication number
EP2798995B1
EP2798995B1 EP14164051.6A EP14164051A EP2798995B1 EP 2798995 B1 EP2798995 B1 EP 2798995B1 EP 14164051 A EP14164051 A EP 14164051A EP 2798995 B1 EP2798995 B1 EP 2798995B1
Authority
EP
European Patent Office
Prior art keywords
metering
channel
reservoir
tank
cleaning agent
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
EP14164051.6A
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German (de)
English (en)
Other versions
EP2798995A1 (fr
Inventor
Dirk Wegener
Cornelius Wolf
Tobias Malec
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.)
Miele und Cie KG
Original Assignee
Miele und Cie KG
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Miele und Cie KG filed Critical Miele und Cie KG
Priority to PL14164051T priority Critical patent/PL2798995T3/pl
Publication of EP2798995A1 publication Critical patent/EP2798995A1/fr
Application granted granted Critical
Publication of EP2798995B1 publication Critical patent/EP2798995B1/fr
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/44Devices for adding cleaning agents; Devices for dispensing cleaning agents, rinsing aids or deodorants
    • A47L15/4463Multi-dose dispensing arrangements

Definitions

  • the invention relates to a metering device for the metered introduction of a pourable cleaning agent in a treatment room of a program-controlled cleaning device, in particular a dishwasher.
  • Program-controlled cleaning devices also in the embodiment as a dishwasher are well known from the prior art. They serve the cleaning of items to be cleaned and have for this purpose a treatment room, which receives the items to be cleaned in the intended use case.
  • process chemicals are used, which are supplied in the course of a cleaning process to the treatment room of the cleaning device.
  • process chemicals are, for example, cleaning agents which are supplied to the treatment room of the cleaning appliance at a specific point in time of a program run.
  • a dishwasher When using a pourable cleaning agent in powder form, a detergent dosing must be carried out manually before each start of a washing program.
  • a dishwasher has for this purpose typically inside the door via a reservoir, which is to be equipped with a manually determined amount of cleaning powder. During a program run, this reservoir opens at a certain time and stored therein cleaning powder can be flushed out of the wash liquor located in the treatment room.
  • the metering device has a reservoir on the one hand and a metering unit on the other hand.
  • the reservoir is used for the storage of detergent.
  • the metering unit is used to dose the amount of detergent stored by the reservoir, ie to remove the reservoir metered amounts of detergent, which can then be supplied to the treatment room of the cleaning device.
  • the metering unit preferably allows the metering of a plurality of different metered quantities, for example a first metered amount for a standard cleaning and a second metered amount for cleaning heavily soiled items.
  • the first Dosage amount for example, 10 g or 15 g
  • the second dosage amount for example, 20 g or 30 g.
  • the metering unit has a metering channel provided by the storage container.
  • This metering channel serves to remove the reservoir for the amount of detergent to be supplied for a proper Spülprogrammablauf. This is predetermined by the geometric design of the metering and unique.
  • Reservoir side opens the dosing into a dosing. Through this, the metered by the metering amount of detergent is discharged and passes from there to the treatment room of the cleaning device.
  • the storage container according to the embodiment of the invention is movable, preferably mounted pivotably. As a result of, for example, a pivoting movement of the storage container, filling of the dosing channel provided by the storage container with cleaning agent occurs. Due to the size of the dosing channel, the amount of dosed detergent is predetermined. This dosage quantity of cleaning agent, which is determined via the metering channel, is then released in the direction of the device-side treatment chamber in the course of another pivoting movement of the storage container via the metering-side metering opening.
  • a drive device which is motor-driven is used according to the invention.
  • the motor-driven drive device is tax technology connected to the program control of the cleaning device, so that an automated operation of the dosing and thus an automatic dosing of detergent can take place in the treatment room of the cleaning device.
  • a metering device is provided as a whole, which makes it possible to meter pourable cleaning agent in powder form and to automatically supply it in metered quantity to the treatment chamber of the cleaning device.
  • the metered amount is determined by the metering channel provided by the reservoir, wherein a filling of the same takes place as a result of a movement or pivoting movement of the reservoir.
  • the metering device according to the invention is easy to use and practical, since a detergent dosage takes place by means of the metering channel provided by the reservoir and thus outside of the treatment chamber of the cleaning device, whereby the unwanted entry of moisture in the detergent is basically prevented, so that clumping of the detergent due a moisture entry are prevented.
  • a dispenser is provided which allows pourable powder detergent for multiple program cycles, i. To store rinsing programs and with minimized tendency to lump an automatic dosing of detergent in the treatment room of the cleaning device allows.
  • the metering channel has, according to a further feature of the invention, a labyrinth guide.
  • This labyrinth guide is dimensioned in its geometric configuration such that it allows a portionwise removal of detergent from the reservoir.
  • the filling of the metering channel preferably results in a minimum amount of cleaning agent, for example of the order of 10 g, required for a standard program. If the treatment room of the cleaning device for cleaning heavily soiled items to be charged with a quantity of, for example, 20 g of detergent, the dosing is to be filled twice and to empty.
  • the reservoir is to move for this purpose in the same way twice, preferably to pivot. This is done by the motor-driven drive device, which is connected by control technology to the program control of the cleaning device, so that takes place depending on the user selected washing program an automatic detergent dosing.
  • the metering device has a closure element for the metering opening.
  • This closure element seals the metering opening in non-use position. This advantageously provides an undesirable introduction of moisture into the dosing channel and / or the storage container.
  • the closure element releases the metering opening as soon as the metering device reaches its intended use and a detergent metering and delivery to the treatment chamber of the cleaning device takes place.
  • additional protection against unwanted clumping of the cleaning agent is achieved by moisture.
  • Some detergent i. Powder clumping, in particular crusting after prolonged disuse, can not always be avoided, in particular not in unfavorable climatic conditions, for example in the case of high atmospheric humidity of the ambient air. It is therefore proposed to rotate the reservoir regardless of a proper use of time to time, for example programmatically. It can also be provided reciprocating movements. These movements ensure that the detergent absorbed by the reservoir is moved through, so that it comes to breaking up possibly formed by moisture incrustation encrustations.
  • a particular problem with regard to possible encrustation is the labyrinth guidance. This can accumulate especially in undercut corners detergent residues, which lead in combination with moisture to a lump formation. To counter this, different measures can be taken.
  • a first measure provides for a labyrinth guide which, when the reservoir is turned to the right, leads to a detergent dosage in the intended manner. In the case of a reverse twisting movement of the storage container, however, the geometry of the labyrinth guide ensures that powder residues possibly contained in the labyrinth guide can flow back, new powder, i. But detergent can not penetrate into the labyrinthine guide.
  • a second measure is to make the labyrinth guide at least partially replaceable.
  • the labyrinth guide is formed in a separate part which is arranged pivotably or removably on the reservoir. In the pivoted or removed state of this part of the labyrinth guide an opening is released, so that a manual emptying and / or cleaning of both the pivoted and / or removed part of the labyrinth guide and the rest of the labyrinth guide can take place. After such an emptying and / or cleaning, the removed or swiveled part of the labyrinth guide can be used again, so that a proper operation is ensured in the further.
  • the Drive device comprises a support unit for interchangeable arrangement of the reservoir.
  • the support unit of the drive device takes on the reservoir.
  • the arrangement of the reservoir within the carrying unit is replaceable, which allows to remove the reservoir of the support unit.
  • reusable storage containers can be used. These have a loading opening. If a storage container is emptied, a manual refilling of the storage container with cleaning agent can take place via this charging opening.
  • the reservoir of the support unit of the drive means is to be refilled via the feed opening with detergent and then reinserted in the filled state in the support unit of the drive device.
  • disposable storage containers can be used. These are filled by the manufacturer with detergent and after use, i. disposed of according to regulations and replaced by a new disposable storage container. On the user side you can freely choose between returnable storage containers and disposable storage containers.
  • the dosing device has an outlet channel opening into the treatment chamber of the cleaning device.
  • an immediate release of cleaning agent does not take place via the metering opening provided by the metering in the treatment room of the cleaning device. Rather, it is provided that the metered quantity of cleaning agent leaves the metering channel via the metering channel-side metering opening and is discharged into a metering device-side outlet channel. From here, a forwarding of the cleaning agent then takes place in the treatment room of the cleaning appliance.
  • a reciprocating piston is guided according to a further feature of the invention.
  • This reciprocating piston conveys the quantity of cleaning agent metered into the outlet channel in a stroke-like manner via a corresponding outlet opening into the treatment chamber of the cleaning appliance.
  • this construction proves to be advantageous for two reasons in particular.
  • the reciprocating piston serves to seal the outlet channel, which provides further protection against unwanted ingress of moisture into the dosing device and thus into the detergent stored by the reservoir.
  • the reciprocating piston is connected to the drive device.
  • a drive of both the reservoir and the reciprocating piston is created in a structurally simple design with only one drive means.
  • the reservoir and the reciprocating piston are matched in their mechanical connection to the drive means such that in a first traversing step of the drive means a dosing of detergent in the outlet channel and then a expulsion of the reciprocating takes place for introducing the dosed detergent in the treatment chamber of the cleaning device.
  • the movement of the reservoir on the one hand and reciprocating piston on the other hand is preferably coordinated so that when not yet moved reservoir of the outlet channel for the cleaning agent is closed by the reciprocating. The unwanted ingress of moisture is thus prevented.
  • the support unit has a sprocket assembly with a first sprocket and a second sprocket, wherein the first sprocket with the motor-gear assembly and the second sprocket cooperates with a drive gear for the reciprocating piston.
  • the reservoir is designed as a drum container and the support unit is formed corresponding thereto in cross section also circular. It serves insofar as a drum container receptacle. It is equipped for the purpose of driving with a sprocket assembly, said sprocket assembly provides a first sprocket and a second sprocket. The first sprocket cooperates with the engine-gearbox arrangement.
  • the sprocket assembly has a second sprocket. This interacts with the drive gear for the reciprocating piston. As a result of a caused by the motor-gear arrangement twisting movement of the support unit, it also leads to a drive of the meshing with the second ring gear of the sprocket drive gear for the reciprocating piston, as a result of which Hubkolbenterrorism takes place.
  • the second sprocket is designed as a partial sprocket. This ensures that in certain positions of the support unit, the drive gear for the reciprocating piston comes out of engagement with the sprocket assembly. In these positions, a rotational movement of the carrying unit initiated via the motor-gear arrangement continues to take place, but no movement of the reciprocating piston takes place, since the associated drive gear is not in engagement with the toothed rim arrangement. Only when this again comes into engagement with the second ring gear, a drive of the reciprocating piston is effected via the rotational movement of the support unit.
  • Fig. 1 can be seen in a schematic perspective view of the dosing device 1 according to the invention. This is the door side of a door equipped with a panel 8 7 of a cleaning device, not shown in the figures, for example, a dishwasher formed.
  • a cleaning device of the previously known type typically has a rinsing container which provides a treatment space, also called a rinsing room.
  • the treatment room receives items to be cleaned.
  • a feed opening provided by the washing compartment is provided for charging the treatment room with items to be cleaned.
  • This is closed fluid-tight by means of a door 7, which is preferably mounted about a horizontally extending pivot axis, for which purpose this has Anlenkflansche 9.
  • the dosing device 1 according to the invention is arranged on the door 7 pivotally mounted on the washing container of the cleaning appliance, as shown in FIG Fig. 1 lets recognize.
  • the door 7 provides a door inside on the one hand and a door outside on the other.
  • the dosing device 1 is preferably accessible to the user on the outside of the door.
  • a pivotally mounted on the door 7 and in the figures Cover plate not shown may be provided.
  • the cover plate not shown in the figures is to be pivoted or moved.
  • the dosing device 1 could also be designed to be accessible to the user on the inside of the door.
  • the dosing device 1 has a reservoir 3. This is in the FIGS. 7 . 8th and 9 shown in more detail. He has a main body 30 on the one hand and a lid 31. For a better overview because of the reservoir 3 is spaced from the door 7 and with the lid removed 31 in Fig. 1 shown.
  • the storage container 3 provides a volume space 38 for storing pourable detergent in powder form. It can be designed as a disposable or as a reusable container.
  • the reservoir 3 is circular in plan view and can be referred to insofar as drum container.
  • the metering device 1 has for the purpose of detergent dosing via a metering unit 2. This has a provided from the reservoir 3 metering 4. On the output side, the metering channel 4 opens into a metering opening 5 formed on the reservoir side.
  • the metering device 1 further has a motor-driven drive device 6 for the storage container 3.
  • the drive device 6 takes the reservoir about a rotational axis 35 pivotally.
  • the drive device 6 has a support unit 10.
  • the reservoir 3 is inserted into the support unit 10, as this Fig. 2 lets recognize.
  • the drive device 6 further has a motor-gear assembly 18.
  • This is equipped with a motor 19 and a gear 20, which gear 20, the gears 21, 22 and 23 has.
  • gear 20 In the assembled state meshes with the gear 23 of the transmission 20th with a first sprocket 16 of a sprocket assembly 15 which is circumferentially formed of the support unit 10.
  • the gear 20 is driven by the motor 19, which leads to a rotational movement of the support unit 10 and thus also to a rotational movement of the reservoir 3.
  • a drive of the storage container 3 in the direction of the arrow 36 that is provided in a clockwise direction.
  • the drive device 6 is formed encapsulated within a housing 24.
  • This housing 24 provides an outlet channel 11, via which detergent in a metered amount inside the door 7 of the door can be discharged into the treatment room of the cleaning device.
  • a reciprocating piston 12 is guided within the outlet channel 11, a reciprocating piston 12 is guided.
  • the drive gear 13 in turn meshes with a second ring gear 17 provided by the support unit 10 sprocket assembly 15.
  • the second sprocket 17 is interrupted in contrast to the first sprocket 16, that is formed as a partial sprocket.
  • Fig. 4a allows the support unit 10 to recognize more accurately.
  • the support unit 10 has slots 25 of a bayonet closure, by means of a in Fig. 4 not shown reservoir 3 positionally safe within the support unit 10 can be arranged.
  • Fig. 4a and Fig. 4b can also recognize the trained as a partial sprocket second sprocket 17 which drives the drive gear 13 for the reciprocating piston 12 in the intended use case.
  • Fig. 4b are beyond finding and guiding means 41, 42 can be seen, which ensure an exact meshing of the second ring gear 17 and the ring gear of the drive gear 13.
  • FIGS. 5 to 9 let recognize in different representation the reservoir 3.
  • the reservoir 3 provides the pre-explained dosing channel 4 ready, which has a labyrinth guide.
  • the metering channel 4 has on the input side an inlet opening 37 and on the output side via the already mentioned metering opening 5.
  • the storage container 3 stores cleaning powder.
  • the storage container 3 has a volume space 38. This volume space 38 is in fluid communication via the inlet opening 37 with the metering channel 4. If, in the intended use, a twisting movement of the storage container 3 in the direction of the arrow 36 occurs, the detergent supplied by the volume space 38 passes through the inlet opening 37 into the metering channel 4.
  • this sub-volume is sized in size so that it serves to accommodate about 10 g of detergent.
  • the metering opening 5 is sealed by a closure element 26.
  • This closure element 26 has a cooperating with the metering orifice 5 roller 27 which is mounted under the bias of a spring 29 hinged to an arm 28.
  • the roller 27 rolls circumferentially on the support unit 10 from.
  • the roller 27 In the normal position, ie in the basic position of the reservoir 3 comes the roller 27 to lie on the metering opening 5, as in Fig. 5 shown. In this position, a sealing of the metering opening 5, which prevents the unwanted ingress of moisture through the metering opening 5 in the metering 4 and thus in the reservoir 3.
  • the storage container 3 can be designed as a disposable container or as a reusable container.
  • the reusable design is in the FIGS. 7 to 9 shown.
  • a storage container 3 has a volume space 38 for storing detergent and a metering 4 for the metered removal of detergent from the volume space 38. Both the volume space 38 and the metering 4 through the main body 30 of the reservoir. 3 provided, wherein the base body 30 is covered in the final assembled state by the lid 31.
  • the storage container 3 has a rotary closure 33.
  • a feed opening 32 is released.
  • cleaning agent can be introduced into the storage container 3 on the user side, which can flow directly into the volume space 38 provided by the storage container 3 via the feed opening 32. In this way, a refilling of the reservoir 3 with detergent is possible.
  • the cleaning device has a folding or sliding door panel, so that a comfortable access on the reservoir 3 from the front, ie the front of the cleaning device is possible.
  • the reservoir could also be formed from the inside, ie removable from the inside of the door.
  • the volume space 38 of the reservoir 3 is sized in size so that cleaning powder can be stored for about 20 to 30 dosing.
  • the storage container 3 can be designed either as a disposable container or as a reusable container. In the case of the reusable embodiment, it is preferable to construct the storage container 3 from a main body 30 and a lid 31, wherein the lid 31 can be removed from the main body 30 on the user side in order to remove possible cleaning residues or lumps in the storage container 3.
  • a program-dependent switch-on pulse on the motor-gear assembly 18 is sufficient, whereby it puts the carrying unit 10 together with the reservoir 3 received by it in rotation in the direction of arrow 36 with the interposition of the transmission 20.
  • the carrying unit 10 performs a full revolution, i. a rotation of 360 °. During such a rotation, a portioning of the cleaning agent takes place via the geometric design of the labyrinth guide of the metering channel 4.
  • the dosage geometry is designed for a volume of, for example, 10 to 15 ml.
  • a reciprocating piston 12 is inserted between the metering 5 and the outlet to the treatment room, which is connected via a connecting rod 14 and a gear 13 with the sprocket assembly 15 of the support unit 10.
  • the metering opening 5 of the metering channel 4 is in the upper position. This ensures, in connection with the labyrinthine guidance of the metering channel 4 during the flushing operation of the cleaning device, a dry storage of the cleaning powder.
  • the above-described construction brings a total of a number of advantages.
  • an automatic cleaning dosage for 20 to 30 washing programs is achieved at the same time simply ergonomic filling possibility of the reservoir 3 with detergent.
  • the individual components of the dosing device 1 according to the invention are designed removable, which allows cleaning and maintenance.
  • the design is compact overall and relatively inexpensive, especially for the drive of both the support unit 10 and the reciprocating piston 12 only a motor-gear assembly 18 is required.
  • the structural design also offers the possibility, on the one hand reusable storage container and on the other hand disposable storage container allowing the customer to use disposable, disposable cartridges, which simplifies maintenance and maintenance.
  • the reservoir 3 is protected on the one hand constructively and on the other hand by means of the closure element 26 and the reciprocating piston 12 from the unwanted entry of moisture, so that clumps of stockpiled by the reservoir 3 detergent are safely avoided.
  • the rotational movement of the storage container 3, which takes place in the intended use case serves to ensure constant mixing and movement of the stored cleaning agent, so that even in the case of incrustations of the cleaning agent due to the introduction of moisture, they are broken so that the cleaning agent remains pourable for intended use ,

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Claims (10)

  1. Appareil de dosage pour l'introduction dosée d'un produit de nettoyage coulant pulvérulent dans un espace de traitement d'un appareil de nettoyage commandé par programme, en particulier d'un lave-vaisselle, comprenant un réservoir (3) et une unité de dosage (2), l'unité de dosage (2) comprenant un conduit de dosage (4), et un dispositif d'entraînement (6), entraîné par moteur et comportant une unité de support (10), pour le réservoir (3), lequel est monté de manière mobile, de préférence de manière pivotante,
    caractérisé en ce que
    le réservoir (3) disposé de manière remplaçable dans l'unité de support (10) fournit le conduit de dosage (4), le conduit de dosage (4) servant à prélever sur le réservoir (3) la quantité de produit de nettoyage à acheminer pour un déroulement de programme de nettoyage correct, le conduit de dosage (4) débouchant dans une ouverture de dosage (5) côté réservoir, ouverture de dosage à travers laquelle la quantité de produit de nettoyage dosée au moyen du conduit de dosage est distribuée et parvient à partir de là jusqu'à l'espace de traitement de l'appareil de nettoyage.
  2. Appareil de dosage selon la revendication 1, caractérisé en ce que
    le conduit de dosage (4) comprend un guide à labyrinthe, lequel comprend une barrière (39) qui délimite un volume partiel du conduit de dosage (4), de telle sorte que, lors d'un déplacement rotatif du réservoir (3), tout d'abord un remplissage du volume partiel avec une quantité, prédéfinie par la taille du volume partiel, de produit de nettoyage a lieu et, lors d'un déplacement rotatif supplémentaire, la quantité de produit de nettoyage dosée dans le volume partiel peut s'écouler devant la barrière (39) dans l'autre partie du conduit de dosage (4) en direction de l'ouverture de dosage (5) sans que le produit de nettoyage supplémentaire ne s'écoule dans le conduit de dosage (4).
  3. Appareil de dosage selon la revendication 1 ou 2, caractérisé par
    un élément de fermeture (26) pour l'ouverture de dosage (5).
  4. Appareil de dosage selon l'une des revendications précédentes, caractérisé par
    un conduit de sortie (11) débouchant dans l'espace de traitement de l'appareil de nettoyage.
  5. Appareil de dosage selon la revendication 4,
    caractérisé en ce
    qu'un piston alternatif (12) est guidé dans le conduit de sortie (11).
  6. Appareil de dosage selon la revendication 5, caractérisé en ce que
    le piston alternatif (12) est raccordé au dispositif d'entraînement (6).
  7. Appareil de dosage selon l'une des revendications précédentes, caractérisé en ce que le dispositif d'entraînement (6) comprend un ensemble moteur-transmission.
  8. Appareil de dosage selon l'une des revendications précédentes, caractérisé en ce que l'unité de support (10) comprend un ensemble de couronnes dentées (15) doté d'une première couronne dentée (16) et d'une deuxième couronne dentée (17), la première couronne dentée (16) coopérant avec l'ensemble moteur-transmission (18) et la deuxième couronne dentée (17) coopérant avec une roue dentée d'éntraînement (13) pour le piston alternatif(12).
  9. Appareil de dosage selon la revendication 8, caractérisé en ce que la deuxième couronne dentée (17) est réalisée sous forme de couronne dentée partielle.
  10. Réservoir (3) destiné à être monté de manière mobile et à être agencé de manière remplaçable dans un appareil de dosage selon l'une des revendications précédentes.
EP14164051.6A 2013-04-30 2014-04-09 Appareil de dosage Active EP2798995B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL14164051T PL2798995T3 (pl) 2013-04-30 2014-04-09 Urządzenie dozujące

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013104391.7A DE102013104391A1 (de) 2013-04-30 2013-04-30 Dosiergerät

Publications (2)

Publication Number Publication Date
EP2798995A1 EP2798995A1 (fr) 2014-11-05
EP2798995B1 true EP2798995B1 (fr) 2018-10-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP14164051.6A Active EP2798995B1 (fr) 2013-04-30 2014-04-09 Appareil de dosage

Country Status (5)

Country Link
EP (1) EP2798995B1 (fr)
DE (1) DE102013104391A1 (fr)
ES (1) ES2701801T3 (fr)
PL (1) PL2798995T3 (fr)
TR (1) TR201816600T4 (fr)

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DE102022133066A1 (de) 2022-12-13 2024-06-13 Miele & Cie. Kg Verfahren zum Betreiben eines Reinigungsgerätes, Steuereinheit und Reinigungsgerät

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DE102015109699A1 (de) 2015-06-17 2016-12-22 Miele & Cie. Kg Dosiergerät
DE102015109749B4 (de) 2015-06-18 2017-01-12 Miele & Cie. Kg Dosiereinheit
DE102015120419A1 (de) 2015-11-25 2017-06-01 Miele & Cie. Kg Dosiergerät
DE102015120422A1 (de) 2015-11-25 2017-06-01 Miele & Cie. Kg Vorratsbehälter für ein Dosiergerät
DE102015120386A1 (de) 2015-11-25 2017-06-01 Miele & Cie. Kg Dosiergerät
DE102015120412A1 (de) 2015-11-25 2017-06-01 Miele & Cie. Kg Geschirrspülmaschine, insbesondere Haushaltsgeschirrspülmaschine
DE102015120400A1 (de) 2015-11-25 2017-06-01 Miele & Cie. Kg Dosiergerät
EP3173515B1 (fr) 2015-11-25 2023-05-31 Miele & Cie. KG Dispositif de dosage
DE102016100384A1 (de) 2016-01-12 2017-07-13 Miele & Cie. Kg Vorratsbehälter für eine automatische Reinigungsmitteldosierung, Sensorvorrichtung zum Erfassen eines Füllstands eines Reinigungsmittels und Dosiersystem
EP3219243B1 (fr) 2016-03-17 2021-08-25 Miele & Cie. KG Procede de surveillance de la fonction d'un bras d'aspersion
DE102016116448A1 (de) 2016-09-02 2018-03-08 Miele & Cie. Kg Vorratsbehälter zur Anordnung in einer Dosiereinrichtung eines Reinigungsgeräts
DE102017122265A1 (de) 2016-10-06 2018-04-12 Miele & Cie. Kg Dosiereinrichtung
EP3305160B1 (fr) 2016-10-06 2019-05-01 Miele & Cie. KG Dispositif de dosage d'un apppareil de nettoyage comprenant un réservoir
EP3305970B1 (fr) * 2016-10-06 2019-01-30 Miele & Cie. KG Appareil de dosage
DE102016122242A1 (de) 2016-11-18 2018-05-24 Miele & Cie. Kg Dosiergerät
EP3305969B1 (fr) 2016-10-06 2019-05-22 Miele & Cie. KG Réservoir permettant la disposition d'un appareil de nettoyage dans un dispositif de dosage
TR201901570T4 (tr) 2016-10-06 2019-02-21 Miele & Cie Dozlama Düzeneği
CN111345765B (zh) * 2018-12-22 2024-05-14 emz-汉拿两合有限公司 片剂配量系统和配备有这种片剂配量系统的用水的家用清洁装置
DE102020100363A1 (de) * 2020-01-09 2021-07-15 Miele & Cie. Kg Dosiergerät

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ES2701801T3 (es) 2019-02-26
EP2798995A1 (fr) 2014-11-05
PL2798995T3 (pl) 2019-02-28
TR201816600T4 (tr) 2018-11-21
DE102013104391A1 (de) 2014-10-30

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