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US20010018866A1 - Device for indicating the calcification status of flow heaters, particularly in expresso machines - Google Patents

Device for indicating the calcification status of flow heaters, particularly in expresso machines Download PDF

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Publication number
US20010018866A1
US20010018866A1 US09/751,390 US75139001A US2001018866A1 US 20010018866 A1 US20010018866 A1 US 20010018866A1 US 75139001 A US75139001 A US 75139001A US 2001018866 A1 US2001018866 A1 US 2001018866A1
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diaphragm
pressure
flow heater
water
flow
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US6393967B2 (en
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Daniel Fischer
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/24Coffee-making apparatus in which hot water is passed through the filter under pressure, i.e. in which the coffee grounds are extracted under pressure
    • A47J31/34Coffee-making apparatus in which hot water is passed through the filter under pressure, i.e. in which the coffee grounds are extracted under pressure with hot water under liquid pressure
    • A47J31/36Coffee-making apparatus in which hot water is passed through the filter under pressure, i.e. in which the coffee grounds are extracted under pressure with hot water under liquid pressure with mechanical pressure-producing means
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/54Water boiling vessels in beverage making machines
    • A47J31/542Continuous-flow heaters
    • A47J31/545Control or safety devices

Definitions

  • the invention relates to a device for indicating the calcification status of flow heaters, particularly in espresso machines, with the flow heater having a cold-water inlet and a hot-water outflow.
  • a pump conveys water from a cold-water reservoir through the cold-water inlet and adjoining, indirectly-heated pipes of the flow heater, where the water is heated. Afterward, the hot or scalding water exits a hot-water outflow of the flow heater and is pumped into a brewing apparatus.
  • the water is heated to about 96° C. in the flow heater, also referred to as a thermoblock. Particularly if the cold water is very hard, sediment builds up in the heated pipes-also called flow-through pipes-after an operational time that is a function of the degree of hardness.
  • the sediment increasingly narrows the clearance cross section of the flow-through pipes, thereby decreasing their efficiency and limiting the function of the flow heater, until the heater becomes blocked.
  • the functioning capability of the flow heater can be restored through the use of commercially-available decalcifying agents, but this is an additional procedure that is often avoided because it is relatively laborious. Therefore, indicators are provided for clearly indicating when decalcifying is necessary.
  • Counters that indicate the number of batches through the flow heater are known as indicator devices. Because the throughput quantities for preparing a beverage lie within a predetermined range, the local degree of water hardness can be used to find an empirical value that determines how many batches should be processed between decalcifying procedures. This device, however, yields only imprecise results and approximations of the actual calcification status.
  • a measurement system known from the state of the technology uses the external temperature of the flow heater to estimate its calcification status. As the thermally-insulating calcification layer builds up, the external temperature increases due to the less effective dissipation of generated heat by the water flowing through the flow-through pipes. This thermal measuring device, however, operates imprecisely, because the measurable external temperature of the flow heater is dependent on further parameters, particularly previous brewing processes, if the required external heating of the flow heater has not diminished completely before the start of a new brewing process with a detection of the external temperature.
  • a flow detector into the supply line or discharge line of the flow heater for measuring the change in the flow speed, namely a decrease in the speed with increased calcification in the flow heater.
  • a flow detector of this type is, however, technically too complicated for applications such as small espresso machines intended for household use.
  • This indication is intended to be a direct measure for the present calcification status, without a separate, subsequent accounting of further parameters such as the degree of hardness of the cold water.
  • the solution is based on the principle that the flow through the flow heater is detected by an uncomplicated differential-pressure fluid gauge chamber, in which a diaphragm separates two pressure chambers that act in opposite directions on the diaphragm. Of the pressure chambers, the first is in a fluid-conducting connection with the cold-water inlet of the flow heater, and the second is connected to the hot-water outflow of the heater.
  • the outward bending of the diaphragm that results due to the pressure difference between the cold-water inlet and the hot-water outflow, and thus in the two chambers, during the operation of the flow heater stands as a measure for the flow resistance in the flow heater, and therefore the calcification of the heater.
  • the deformation of the resiliently-yielding diaphragm itself can indicate the calcification of the flow heater, for example if a portion of the diaphragm projects out of the housing of the differential-pressure fluid gauge chamber.
  • the diaphragm is, however, preferably connected to further mechanical indicator elements, such as a pointer that moves relative to fixed markings, or electrical indicator elements, such as a light-emitting-diode (LED) display that is actuated by the diaphragm for signaling the need to decalcify the machine.
  • LED light-emitting-diode
  • the diaphragm is advantageously embodied as a catch-spring disk that is dimensioned to snap when a predetermined differential pressure equal to a maximum permissible differential pressure is attained.
  • This snapping is therefore effected at a differential pressure that is predetermined by the dimensioning of the catch-spring disk, and takes into consideration a differential-pressure tolerance range with which possible pressure influences due to a throttle effect -which varies within limits-of a brewing head connected to the hot-water outflow can be taken into consideration.
  • the chamber is disposed above the flow heater, with the diaphragm being oriented nearly vertically. With this positioning, residual water can flow out of the chambers of the differential-pressure fluid gauge chamber due to the effect of gravity. The residual water is also sucked out after the brewing process due to a corresponding vacuum in the flow heater and the brewing head.
  • optical indicator elements can be connected to the diaphragm.
  • the elements can include a counter in particular.
  • electrical indicator elements that can be controlled by the diaphragm can be provided in place of the optical indicator elements.
  • These indicator elements can comprise an LED in a circuit with a switch contact that is actuated by the diaphragm.
  • FIG. 1 is a schematic representation of the-water system of an espresso machine, in which a flow heater and a differential pressure fluid gauge according to the invention is disposed.
  • FIG. 2 is a detail of FIG. 1, namely a differential-pressure fluid gauge chamber having a catch-spring disk as a diaphragm, in a vertical section.
  • FIG. 3 is a side view of the differential-pressure fluid gauge chamber according to FIG. 2.
  • a flow heater which is represented by 1 , is supplied from a cold-water reservoir 3 by a pump 2 . More specifically, the cold water is fed in at a cold-water inlet line 4 . The flow heater 1 releases the water it has heated via a hot-water outflow line 5 , which is in a fluid-conducting connection with a brewing head 6 of an espresso machine for brewing the coffee grounds located in the brewing head.
  • a hot-water outflow line 5 which is in a fluid-conducting connection with a brewing head 6 of an espresso machine for brewing the coffee grounds located in the brewing head.
  • the device design is known. However, other types of brewing heads as well as other types of uses for the hot water may be provided.
  • a differential-pressure fluid gauge chamber 9 that represents a measuring capsule.
  • the essential element of the measuring capsule 9 is a diaphragm 10 , preferably as shown a catch-spring disk, which has a spherical curvature and separates a first pressure chamber 11 from a second pressure chamber 12 , into which the water-inlet connector 7 and the water outlet connector 8 , respectively, terminate.
  • the two pressure chambers 11 and 12 can also be referred to as pressure pockets.
  • the indicator elements controlled by the catch-spring disk 10 include a switch contact 13 , which turns a light (not illustrated) in a circuit on or off, for example.
  • the switch contact is actuated by an extension of the catch-spring disk 10 , as indicated by a tab 14 that projects from the measuring capsule 9 in the illustrated embodiment.
  • the catch-spring disk 10 In the inoperative position, and when the differential pressure between the first pressure chamber 11 and the second pressure chamber 12 does not exceed a predetermined value, the catch-spring disk 10 assumes the position illustrated in FIG. 2. This position also corresponds to an extensively or completely calcified state of the flow heater, in which the pressure difference between the first pressure chamber 11 and the second pressure chamber 12 is correspondingly small. In this instance, the switch contact 13 is not actuated by the tab 14 of the catch-spring disk 10 . If, in contrast, the flow resistance in the flow heater 1 exceeds a predetermined value due to calcification, the pressure difference between the first pressure chamber 11 and the second pressure chamber 12 increases correspondingly. Consequently, the curvature of the catch-spring disk 10 snaps in the opposite direction, as illustrated in FIGS. 1 and 2, with the tab 14 closing the switch contact 13 . Further electrical indicators can then visually indicate the calcification status that makes decalcifying advisable.
  • differential-pressure fluid gauge chamber 9 can be seen as being above the flow heater 1 , with the diaphragm or catch-spring disk 10 being oriented nearly vertically, so that residual water flows out of the pressure chambers 11 , 12 and is additionally sucked out of them.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Apparatus For Making Beverages (AREA)

Abstract

An arrangement for indicating the calcification status of flow heaters, particularly in espresso machines, with the flow heater having a cold-water inlet line and a hot-water outflow line, and which is intended to precisely indicate the calcification status, yet have an uncomplicated design. For this purpose, a differential-pressure fluid gauge (9) is provided, with the gauge having two pressure chambers (11, 12) separated by a diaphragm, with one of the pressure chambers (11) being in a fluid-conducting connection with the cold-water inlet line (4) and the other pressure chamber (12) being in a fluid-conducting connection with the hot-water outflow (5). The diaphragm acted upon by the pressure difference between the two chambers (11, 12) is coupled to indicator elements.

Description

    CROSS REFERENCE TO RELATED APPLICATIONS
  • The present application claims the right of foreign priority of German Application No. DE 299 23 063.5 filed Dec. 31, 1999, the subject matter of which is incorporated herein by reference. [0001]
  • BACKGROUND OF THE INVENTION
  • The invention relates to a device for indicating the calcification status of flow heaters, particularly in espresso machines, with the flow heater having a cold-water inlet and a hot-water outflow. [0002]
  • In the operation of a flow heater of this type, a pump conveys water from a cold-water reservoir through the cold-water inlet and adjoining, indirectly-heated pipes of the flow heater, where the water is heated. Afterward, the hot or scalding water exits a hot-water outflow of the flow heater and is pumped into a brewing apparatus. The water is heated to about 96° C. in the flow heater, also referred to as a thermoblock. Particularly if the cold water is very hard, sediment builds up in the heated pipes-also called flow-through pipes-after an operational time that is a function of the degree of hardness. The sediment increasingly narrows the clearance cross section of the flow-through pipes, thereby decreasing their efficiency and limiting the function of the flow heater, until the heater becomes blocked. The functioning capability of the flow heater can be restored through the use of commercially-available decalcifying agents, but this is an additional procedure that is often avoided because it is relatively laborious. Therefore, indicators are provided for clearly indicating when decalcifying is necessary. [0003]
  • Counters that indicate the number of batches through the flow heater are known as indicator devices. Because the throughput quantities for preparing a beverage lie within a predetermined range, the local degree of water hardness can be used to find an empirical value that determines how many batches should be processed between decalcifying procedures. This device, however, yields only imprecise results and approximations of the actual calcification status. [0004]
  • A measurement system known from the state of the technology uses the external temperature of the flow heater to estimate its calcification status. As the thermally-insulating calcification layer builds up, the external temperature increases due to the less effective dissipation of generated heat by the water flowing through the flow-through pipes. This thermal measuring device, however, operates imprecisely, because the measurable external temperature of the flow heater is dependent on further parameters, particularly previous brewing processes, if the required external heating of the flow heater has not diminished completely before the start of a new brewing process with a detection of the external temperature. [0005]
  • It is also known to insert a flow detector into the supply line or discharge line of the flow heater for measuring the change in the flow speed, namely a decrease in the speed with increased calcification in the flow heater. A flow detector of this type is, however, technically too complicated for applications such as small espresso machines intended for household use. [0006]
  • SUMMARY OF THE INVENTION
  • It is therefore the object of the present invention to provide a device for indicating the calcification status of flow heaters that is technically uncomplicated, yet permits a fairly precise indication of the actual calcification status of the flow heater. This indication is intended to be a direct measure for the present calcification status, without a separate, subsequent accounting of further parameters such as the degree of hardness of the cold water. [0007]
  • The above object is achieved according to the present invention by a device for indicating the calcification status of flow heaters of the generic type mentioned at the outset and possessing the features of [0008] claim 1.
  • The solution is based on the principle that the flow through the flow heater is detected by an uncomplicated differential-pressure fluid gauge chamber, in which a diaphragm separates two pressure chambers that act in opposite directions on the diaphragm. Of the pressure chambers, the first is in a fluid-conducting connection with the cold-water inlet of the flow heater, and the second is connected to the hot-water outflow of the heater. The outward bending of the diaphragm that results due to the pressure difference between the cold-water inlet and the hot-water outflow, and thus in the two chambers, during the operation of the flow heater stands as a measure for the flow resistance in the flow heater, and therefore the calcification of the heater. The deformation of the resiliently-yielding diaphragm itself can indicate the calcification of the flow heater, for example if a portion of the diaphragm projects out of the housing of the differential-pressure fluid gauge chamber. The diaphragm is, however, preferably connected to further mechanical indicator elements, such as a pointer that moves relative to fixed markings, or electrical indicator elements, such as a light-emitting-diode (LED) display that is actuated by the diaphragm for signaling the need to decalcify the machine. This represents a reliable decalcification indicator. It must be borne in mind here that, according to the invention, the differential pressure with a water hardness of about 20° increases by about [0009] 1 bar after approximately 40 liters have passed through the flow heater, which can effect a considerable change in the status of the indicator elements.
  • According to a preferred embodiment, the diaphragm is advantageously embodied as a catch-spring disk that is dimensioned to snap when a predetermined differential pressure equal to a maximum permissible differential pressure is attained. This snapping is therefore effected at a differential pressure that is predetermined by the dimensioning of the catch-spring disk, and takes into consideration a differential-pressure tolerance range with which possible pressure influences due to a throttle effect -which varies within limits-of a brewing head connected to the hot-water outflow can be taken into consideration. [0010]
  • To avoid residual water in the differential-pressure fluid gauge chamber, according to a feature of the invention, the chamber is disposed above the flow heater, with the diaphragm being oriented nearly vertically. With this positioning, residual water can flow out of the chambers of the differential-pressure fluid gauge chamber due to the effect of gravity. The residual water is also sucked out after the brewing process due to a corresponding vacuum in the flow heater and the brewing head. [0011]
  • As an alternative to the above-mentioned indicators, optical indicator elements can be connected to the diaphragm. The elements can include a counter in particular. [0012]
  • Alternatively, electrical indicator elements that can be controlled by the diaphragm can be provided in place of the optical indicator elements. These indicator elements can comprise an LED in a circuit with a switch contact that is actuated by the diaphragm. [0013]
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • An exemplary embodiment of the invention is described in detail below in conjunction with a drawing with three figures. Further features and advantages of the invention ensue from this description. [0014]
  • FIG. 1 is a schematic representation of the-water system of an espresso machine, in which a flow heater and a differential pressure fluid gauge according to the invention is disposed. [0015]
  • FIG. 2 is a detail of FIG. 1, namely a differential-pressure fluid gauge chamber having a catch-spring disk as a diaphragm, in a vertical section. [0016]
  • FIG. 3 is a side view of the differential-pressure fluid gauge chamber according to FIG. 2. [0017]
  • DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
  • In FIG. 1 a flow heater, which is represented by [0018] 1, is supplied from a cold-water reservoir 3 by a pump 2. More specifically, the cold water is fed in at a cold-water inlet line 4. The flow heater 1 releases the water it has heated via a hot-water outflow line 5, which is in a fluid-conducting connection with a brewing head 6 of an espresso machine for brewing the coffee grounds located in the brewing head. To this point, the device design is known. However, other types of brewing heads as well as other types of uses for the hot water may be provided.
  • For indicating the calcification status of the [0019] flow heater 1, respective lines branch off from the cold-water inlet line 4 and hot-water outflow 5, leading to a pump-side water-inlet connector 7 and a brewing-head-side water-outflow connector 8 of a differential-pressure fluid gauge chamber 9 that represents a measuring capsule. The essential element of the measuring capsule 9 is a diaphragm 10, preferably as shown a catch-spring disk, which has a spherical curvature and separates a first pressure chamber 11 from a second pressure chamber 12, into which the water-inlet connector 7 and the water outlet connector 8, respectively, terminate. The two pressure chambers 11 and 12 can also be referred to as pressure pockets.
  • The indicator elements controlled by the catch-[0020] spring disk 10 include a switch contact 13, which turns a light (not illustrated) in a circuit on or off, for example. For this purpose, the switch contact is actuated by an extension of the catch-spring disk 10, as indicated by a tab 14 that projects from the measuring capsule 9 in the illustrated embodiment.
  • In the inoperative position, and when the differential pressure between the [0021] first pressure chamber 11 and the second pressure chamber 12 does not exceed a predetermined value, the catch-spring disk 10 assumes the position illustrated in FIG. 2. This position also corresponds to an extensively or completely calcified state of the flow heater, in which the pressure difference between the first pressure chamber 11 and the second pressure chamber 12 is correspondingly small. In this instance, the switch contact 13 is not actuated by the tab 14 of the catch-spring disk 10. If, in contrast, the flow resistance in the flow heater 1 exceeds a predetermined value due to calcification, the pressure difference between the first pressure chamber 11 and the second pressure chamber 12 increases correspondingly. Consequently, the curvature of the catch-spring disk 10 snaps in the opposite direction, as illustrated in FIGS. 1 and 2, with the tab 14 closing the switch contact 13. Further electrical indicators can then visually indicate the calcification status that makes decalcifying advisable.
  • The arrangement of the differential-pressure fluid gauge chamber [0022] 9 can be seen as being above the flow heater 1, with the diaphragm or catch-spring disk 10 being oriented nearly vertically, so that residual water flows out of the pressure chambers 11, 12 and is additionally sucked out of them.
  • It can be seen in detail from FIG. 2 how the catch-spring disk is seated between O-[0023] rings 15, 16 in the differential-pressure fluid gauge chamber 9, so that it can perform its snapping function and seal the two pressure chambers 11 and 12 from one another.
  • The invention now being fully described, it will be apparent to one of ordinary skill in the art that many changes and modifications can be made thereto without departing from the spirit or scope of the invention as set forth herein. [0024]

Claims (6)

We claim:
1. An arrangement for indicating the calcification status of a flow heater, comprising: a flow heater having a cold-water inlet line and a hot-water outflow line, a differential-pressure fluid gauge having first and second pressure chambers and a diaphragm disposed between and separating the first pressure chamber from the second pressure chamber, with the first pressure chamber being in a fluid-conducting connection with the cold-water inlet line and the second pressure chamber being in a fluid-conducting connection with the hot-water outflow line; and, the diaphragm acted upon by the pressure difference between the first pressure chamber and the second pressure chamber is coupled to an indicator.
2. The arrangement according to
claim 1
, wherein the diaphragm is a catch-spring disk that is dimensioned such that it snaps when a predetermined pressure difference is attained.
3. The arrangement according to
claim 2
, wherein the differential-pressure fluid gauge is disposed above the flow heater with a nearly vertical diaphragm.
4. The arrangement according to
claim 1
, wherein the differential-pressure fluid gauge is disposed above the flow heater with a nearly vertical diaphragm.
5. The arrangement according
claim 1
, wherein the indicator element that is connected to the diaphragm is an optical element.
6. The arrangement according to
claim 1
wherein the indicator element coupled to the diaphragm is an electrical indicator element that can be controlled by the diaphragm.
US09/751,390 1999-12-31 2001-01-02 Device for indicating the calcification status of flow heaters, particularly in expresso machines Expired - Lifetime US6393967B2 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE29923063U 1999-12-31
DE29923063U DE29923063U1 (en) 1999-12-31 1999-12-31 Device for displaying the calcification status of instantaneous water heaters, in particular espresso machines
DE29923063.5 1999-12-31

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1839541A1 (en) * 2006-03-28 2007-10-03 Tuttoespresso S.p.a. Process and apparatus for preparing beverage under controlled pressure
WO2007110768A3 (en) * 2006-03-28 2007-12-06 Tuttoespresso Spa Process and apparatus for preparing a beverage under controlled pressure
WO2012011051A1 (en) 2010-07-22 2012-01-26 Koninklijke Philips Electronics N.V. Prevention or reduction of scaling on a heater element of a water heater
WO2012011026A2 (en) 2010-07-22 2012-01-26 Koninklijke Philips Electronics N.V. Prevention or reduction of scaling on a heater element of a water heater
IT202000017107A1 (en) * 2020-07-14 2022-01-14 G B Progetti S R L METHOD OF CONTROL AND DEVICE FOR DELIVERY OF A HOT FLUID.
US12090129B2 (en) 2017-11-22 2024-09-17 Axcess Global Sciences, Llc Non-racemic beta-hydroxybutyrate compounds and compositions enriched with the R-enantiomer and methods of use
US12128020B2 (en) 2016-04-19 2024-10-29 Axcess Global Sciences, Llc Administration of R-beta-hydroxybutyrate and related compounds in humans
US12144814B2 (en) 2023-03-10 2024-11-19 Axcess Global Sciences, Llc Compositions containing paraxanthine and beta-hydroxybutyrate or precursor for increasing neurological and physiological performance
US12167993B2 (en) 2019-06-21 2024-12-17 Axcess Global Sciences, Llc Non-vasoconstricting energy-promoting compositions containing ketone bodies
US12186297B2 (en) 2020-08-26 2025-01-07 Axcess Global Sciences, Llc Compositions and methods for increasing lean-to-fat mass ratio

Families Citing this family (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE20217408U1 (en) * 2002-11-08 2004-04-01 Eugster/Frismag Ag Device for the preparation of hot drinks, especially coffee or espresso
EP1495702A1 (en) 2003-07-10 2005-01-12 Nestec S.A. Device for the extraction of a cartridge
DE102006042902B4 (en) * 2006-09-13 2008-08-14 Eugster/Frismag Ag Method and device for electrical monitoring of the calcification state of an electrically heated instantaneous water heater
CL2008002963A1 (en) 2007-10-04 2010-01-22 Nestec Sa Heating device for a machine for the preparation of liquid food or drink, comprising a thermal unit with a metallic mass, through which the liquid circulates, and accumulates heat and supplies it to the liquid, and has one or more insured electrical components rigidly to the thermal unit; and machine.
KR20100075980A (en) * 2007-10-04 2010-07-05 네스텍 소시에테아노님 Beverage brewing unit
PT2218371T (en) 2007-10-04 2017-05-03 Nestec Sa Liquid food or beverage preparation machine
US8850957B2 (en) * 2008-04-22 2014-10-07 Nestec S.A. Modular assembly of a beverage preparation machine
EP2309900B1 (en) * 2008-08-08 2015-05-27 Nestec S.A. Beverage machine with carrying handle and configurable appearance&side functions
EP2223641B1 (en) * 2009-02-18 2016-05-11 Nestec S.A. Heating device with a multi powering configuration
CA2754848C (en) 2009-03-23 2018-06-05 Nestec S.A. Pump mount in a beverage preparation machine
US9347682B2 (en) 2010-05-21 2016-05-24 Nestec S.A. Dynamic double-circuit in-line heater
CN105902166B (en) 2010-06-17 2020-04-03 雀巢产品有限公司 Apparatus and method for controlling energy transfer of a thermal conditioning device
DE102010024987B4 (en) * 2010-06-24 2021-02-25 Stiebel Eltron Gmbh & Co. Kg Radiators for a water heater as well as a water heater
JP6018054B2 (en) 2010-07-16 2016-11-02 ネステク ソシエテ アノニム High performance heating device
JP5881726B2 (en) 2010-12-02 2016-03-09 ネステク ソシエテ アノニム Low inertia heat sensor in beverage equipment
WO2016202705A1 (en) * 2015-06-19 2016-12-22 Koninklijke Philips N.V. Method for retrieving aroma from a quantity of coffee particles as present in a coffee chamber
EP3589175B1 (en) 2017-02-28 2023-08-23 Société des Produits Nestlé S.A. Dispenser with parallel dispensing paths
CN110325082B (en) 2017-03-10 2022-05-17 雀巢产品有限公司 Beverage preparation machine and method of controlling a thermal conditioning device of such a beverage preparation machine

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2525647B1 (en) 1975-06-09 1976-01-15 Rowenta Werke Gmbh Domestic filter coffee maker with furring-up warning mechanism - has differential pressure gauge responding to pressure changes indicative of excessive scaling
DE2615824B2 (en) * 1976-04-10 1978-04-27 Wigo Gottlob Widmann & Soehne Gmbh Und Co Kg, 7220 Villingen-Schwenningen Household coffee machine with calcification display
DE2646312B2 (en) * 1976-10-14 1978-10-19 Wigo Gottlob Widmann & Soehne Gmbh Und Co Kg, 7220 Villingen-Schwenningen Household coffee machine with calcification display
DE2621159A1 (en) * 1976-05-13 1977-11-24 Licentia Gmbh Household coffee maker with calcination indicator - includes parallel water route to riser opened up by pressure rise caused by reduced internal dia.
DE2652419A1 (en) 1976-11-17 1978-05-18 Bosch Siemens Hausgeraete Electric coffee maker with furring up indicator - has pressure measuring unit to respond only to high pressure reducing false alarms
DE2652375A1 (en) * 1976-11-17 1978-05-18 Bosch Siemens Hausgeraete Furring-up indicator for electric coffee maker - has nominal furring-up point in hot water pipe connected to pressure gauge
DE2655669A1 (en) * 1976-12-08 1978-06-15 Bosch Siemens Hausgeraete Furring-up indicator for coffee maker - has microswitch or bellows of pressure sensitive shape actuated by water hose which changes in cross=section with pressure
DE7711177U1 (en) 1977-04-07 1981-01-22 Bosch-Siemens Hausgeraete Gmbh, 7000 Stuttgart ELECTRIC COFFEE MAKER WITH A CALCIFICATION INDICATOR
DE2839062C2 (en) * 1978-09-07 1980-11-13 Siemens Ag, 1000 Berlin Und 8000 Muenchen Electronic calcification display for PTC-heated instantaneous water heaters
US5369398A (en) * 1992-11-05 1994-11-29 The West Bend Company Circuit for detecting calcification in a coffee maker

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU2007231019B2 (en) * 2006-03-28 2013-10-03 Société des Produits Nestlé S.A. Process and apparatus for preparing a beverage under controlled pressure
WO2007110768A3 (en) * 2006-03-28 2007-12-06 Tuttoespresso Spa Process and apparatus for preparing a beverage under controlled pressure
US20090136639A1 (en) * 2006-03-28 2009-05-28 Tuttoespresso S.P.A. Process and apparatus for preparing a beverage under controlled pressure
EP1839541A1 (en) * 2006-03-28 2007-10-03 Tuttoespresso S.p.a. Process and apparatus for preparing beverage under controlled pressure
US8945647B2 (en) 2006-03-28 2015-02-03 Tuttoespresso S.R.L. Process and an apparatus for preparing a beverage under controlled pressure conditions
US8367136B2 (en) 2006-03-28 2013-02-05 Tuttoespresso S.P.A. Process and apparatus for preparing a beverage under controlled pressure
US9347684B2 (en) 2010-07-22 2016-05-24 Koninklijke Philips N.V. Prevention or reduction of scaling on a heater element of a water heater
WO2012011026A2 (en) 2010-07-22 2012-01-26 Koninklijke Philips Electronics N.V. Prevention or reduction of scaling on a heater element of a water heater
WO2012011051A1 (en) 2010-07-22 2012-01-26 Koninklijke Philips Electronics N.V. Prevention or reduction of scaling on a heater element of a water heater
US9986600B2 (en) 2010-07-22 2018-05-29 Koninklijke Philips N.V Prevention or reduction of scaling on a heater element of a water heater
US12128020B2 (en) 2016-04-19 2024-10-29 Axcess Global Sciences, Llc Administration of R-beta-hydroxybutyrate and related compounds in humans
US12251362B2 (en) 2016-04-19 2025-03-18 Axcess Global Sciences, Llc Administration of R-beta-hydroxybutyrate and related compounds in humans
US12090129B2 (en) 2017-11-22 2024-09-17 Axcess Global Sciences, Llc Non-racemic beta-hydroxybutyrate compounds and compositions enriched with the R-enantiomer and methods of use
US12167993B2 (en) 2019-06-21 2024-12-17 Axcess Global Sciences, Llc Non-vasoconstricting energy-promoting compositions containing ketone bodies
IT202000017107A1 (en) * 2020-07-14 2022-01-14 G B Progetti S R L METHOD OF CONTROL AND DEVICE FOR DELIVERY OF A HOT FLUID.
WO2022013705A1 (en) * 2020-07-14 2022-01-20 G.B. Progetti S.R.L. Control method and device for dispending a hot fluid
US12186297B2 (en) 2020-08-26 2025-01-07 Axcess Global Sciences, Llc Compositions and methods for increasing lean-to-fat mass ratio
US12144814B2 (en) 2023-03-10 2024-11-19 Axcess Global Sciences, Llc Compositions containing paraxanthine and beta-hydroxybutyrate or precursor for increasing neurological and physiological performance

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DE50005327D1 (en) 2004-03-25
EP1112711B1 (en) 2004-02-18
ES2215539T3 (en) 2004-10-16
EP1112711A1 (en) 2001-07-04
US6393967B2 (en) 2002-05-28

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