EP2585761B1 - Dampfabgabevorrichtung, dampferzeugungsvorrichtung sowie kombinierte dampferzeugungs- und dampfabgabevorrichtung - Google Patents

Dampfabgabevorrichtung, dampferzeugungsvorrichtung sowie kombinierte dampferzeugungs- und dampfabgabevorrichtung Download PDF

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Publication number
EP2585761B1
EP2585761B1 EP11724238.8A EP11724238A EP2585761B1 EP 2585761 B1 EP2585761 B1 EP 2585761B1 EP 11724238 A EP11724238 A EP 11724238A EP 2585761 B1 EP2585761 B1 EP 2585761B1
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EP
European Patent Office
Prior art keywords
steam
contact elements
supply voltage
voltage contact
steam delivery
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
EP11724238.8A
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German (de)
English (en)
French (fr)
Other versions
EP2585761A2 (de
Inventor
Tobias Dux
Andreas Fritz
Martin Schmidgall
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.)
Alfred Kaercher SE and Co KG
Original Assignee
Alfred Kaercher SE and Co 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.)
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Publication date
Application filed by Alfred Kaercher SE and Co KG filed Critical Alfred Kaercher SE and Co KG
Publication of EP2585761A2 publication Critical patent/EP2585761A2/de
Application granted granted Critical
Publication of EP2585761B1 publication Critical patent/EP2585761B1/de
Active legal-status Critical Current
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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F75/00Hand irons
    • D06F75/08Hand irons internally heated by electricity
    • D06F75/10Hand irons internally heated by electricity with means for supplying steam to the article being ironed
    • D06F75/12Hand irons internally heated by electricity with means for supplying steam to the article being ironed the steam being produced from water supplied to the iron from an external source
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B1/00Methods of steam generation characterised by form of heating method
    • F22B1/28Methods of steam generation characterised by form of heating method in boilers heated electrically
    • F22B1/284Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs

Definitions

  • the invention relates to a steam dispenser with a connection device for releasably connecting the steam dispenser with a steam generating device, wherein the connection device comprises a steam line connection element for connection to a corresponding connection element of the steam generating device, two supply voltage contact elements for connection to corresponding contact elements of the steam generating device, between which contact elements a supply voltage is applied a protective contact element for connection to a corresponding contact element of the steam generating device, which contact element is connected to a protective earth and two low-voltage contact elements for connection to corresponding contact elements of the steam generating device, between which contact elements a safety extra-low voltage is applied.
  • the connection device comprises a steam line connection element for connection to a corresponding connection element of the steam generating device, two supply voltage contact elements for connection to corresponding contact elements of the steam generating device, between which contact elements a supply voltage is applied a protective contact element for connection to a corresponding contact element of the steam generating device, which contact element is connected to a protective earth and two low-voltage contact elements for
  • the invention relates to a steam generating device.
  • the invention relates to a combined steam generation and steam delivery device.
  • a steam dispenser of the type mentioned is as part of a combined steam generating and vapor dispensing device in the EP 0 809 728 B1 described and designed as a steam ironing device.
  • the steam ironing device can be detachably connected by means of the connection device to a connection device of the steam generating device that corresponds to this.
  • the steam generating device provides water vapor to the steam ironing device via the steam line connection element can be supplied, and it comprises an electrical device for providing a supply voltage and a safety extra-low voltage.
  • the supply voltage for example a mains voltage, in particular 230 V or 110 V, can be tapped by means of the supply voltage contact elements.
  • connection device as well as the connecting device of the steam generating device corresponding to it each comprise a protective contact element via which the discharge current can be dissipated to the protective earth. Nevertheless, it is conceivable that the discharge current flows through the low-voltage contact elements to the steam delivery device or the steam generating device, there causes damage and endangers a user.
  • the US Pat. No. 7,051,462 B1 describes a combined steam generation and vapor dispensing apparatus.
  • a first steam dispenser in the form of an iron can be connected and a second steam dispenser in the form of a steam cleaner.
  • When connecting the respective steam dispenser couple the corresponding Steam line connection elements and supply voltage contact elements for forming a steam line or the electrical connection with each other.
  • Low voltage contact elements are in the steam generating and vapor dispensing device of US Pat. No. 7,051,462 B1 not described.
  • the WO 00/06945 A1 also describes a combined steam generating and steaming apparatus, to the steam generating device optionally one of three steam dispensers can be connected (iron, steam cleaner and humidifier).
  • the respective connection means comprise a steam line connection element and electrical contact elements on both sides of the steam line connection element. From the steam generating device can be determined which steam dispenser is connected so that the amount of steam provided can be adjusted automatically.
  • the object of the present invention is to provide a steam dispenser of the type mentioned above, in which a risk of damage to the steam dispenser and the steam generating device is reduced by electrical discharge and an associated endangerment of a user.
  • the probability can be increased significantly that an electrical discharge as a result of a current bridge, which may arise in particular due to the electrical contact elements surrounding water vapor, actually as desired between the supply voltage contact elements and the protective contact element.
  • a discharge between the supply voltage contact elements and the low voltage contact elements takes place only with much less probability.
  • This has the advantage that the discharge current can be dissipated via the protective earth and not via the low-voltage contact elements. This reduces the risk of damage to the steam generating device and the steam dispenser. As a result, a risk to the user can be reduced.
  • the supply voltage contact elements have identical distances from the protective contact element. Discharging between each of the supply voltage contact elements and the protective contact element can thereby take place with the same probability. This is important, for example, if a mains voltage is applied to the supply voltage contact elements - ie these are N conductors and L conductors - and their polarity is reversed by virtue of the fact that a mains plug of the steam generating apparatus can be connected to the energy supply network in two opposite ways ,
  • the distance of the supply voltage contact elements from each other is equal to the distance between each supply voltage contact element from the protective contact element, the supply voltage contact elements and the protective contact element thus form vertices of an equilateral triangle. This makes it possible to achieve a possible compact design of the connection device discharge between the supply voltage contact elements and the protective contact element and at the same time avoid as possible discharge between the supply voltage contact elements.
  • the spacing of one or both low-voltage contact elements from the protective contact element is greater than the distance of the supply voltage contact elements from the protective contact element.
  • the supply voltage contact elements preferably have a greater distance from the steam line connection element than the low-voltage contact elements and the protective contact element. As a result, the supply voltage contact elements are arranged as far as possible from the steam line connection element. As a result, the likelihood of escaping steam spreading to the supply voltage contact elements and causing a discharge is reduced.
  • the protective contact element between the supply voltage contact elements and the low-voltage contact elements is arranged. This makes it possible that discharges can be dissipated from the supply voltage contact elements as well as from the low-voltage contact elements with a very high probability via the protective contact element to the protective earth.
  • connection device comprises a first connection region in which the vapor line connection element is arranged, a second connection region in which the electrical contact elements of the connection device are arranged, and at least one separation element separating the first connection region from the second connection region.
  • the separating element By means of the separating element, the propagation of vapor from the first connection region into the second connection region can be inhibited. This reduces the risk that forms a discharge between the electrical contact elements of the connection device.
  • the at least one separating element is a separating wall, at least partially surrounding the electrical contact elements, between the first connection region and the second connection region, in order to achieve, in a structurally simple manner, the most effective possible partitioning of the connection regions from one another.
  • the partition surrounds the electrical contact elements completely to ensure a particularly effective foreclosure of the terminal areas from each other.
  • the connection device preferably comprises at least one alignment member for interacting with an alignment member of the steam generating device which is designed to correspond to it.
  • this can ensure that the steam delivery device is correctly connected to the steam generating device, that is to say with the formation of the steam line and with the correct assignment of the electrical contact elements corresponding to one another.
  • the provision of the at least one alignment member allows, so to speak, a "coding" of the connection device. It can thus be ensured that the steam dispenser can only be connected to a steam generating apparatus compatible with it, which comprises the corresponding aligning member and is suitable for providing the electrical voltages or powers required for operating the steam dispenser.
  • the at least one alignment member is for example a projection or a receptacle for a projection, in particular a rib or a groove.
  • the at least one alignment member is included in or disposed on the above-mentioned separator to achieve a simple construction of the connector.
  • connection device comprises an outer housing which accommodates the steam line connection element and an inner housing receiving the electrical contact elements of the connection device.
  • the outer housing for example in the form of two half-shells, may form a plug or a socket for connection to a socket corresponding thereto or a plug of the steam generating device corresponding thereto.
  • the contact elements are in turn received by a housed in the outer housing inner housing, which also forms a plug or a socket for insertion into a correspondingly formed socket or a corresponding thereto formed plug of the steam generating device.
  • This "plug-in-plug" design allows, as mentioned, a complete and structurally simple construction of the connection device.
  • the inner housing preferably forms the abovementioned at least one separating element, which more preferably comprises the likewise mentioned at least one aligning member.
  • the supply voltage contact elements In the case of the vapor delivery device according to the invention, provision can be made for the supply voltage contact elements to be short-circuited with one another so that only one electric circuit is closed by connecting the vapor delivery device to the steam generation device.
  • the supply voltage contact elements may have the same electrical potential, i. There is no tension between them.
  • the steam delivery device to be supplied with electrical energy via the supply voltage contact elements in order to supply an electrical consumer included in it.
  • the steam dispenser comprises an electrical load connected between the supply voltage contact elements, with which the electrical energy supplied to the steam dispenser can be converted into another form of energy.
  • the electrical load is, for example, a heater for emitting heat energy.
  • the last-described preferred embodiment of the steam dispenser may be a steam ironing apparatus having an electrical load in the form of a heater for heating the soleplate.
  • the low-voltage contact elements may also be short-circuited in the steam delivery device, so that the low-voltage contact elements have the same electrical potential and by connecting the steam discharge device to the steam generating device, for example, a circuit supplying the amount of steam is closed.
  • the steam dispenser comprises a switched between the low-voltage contact elements switching element for shorting the low-voltage contact elements together.
  • the switching element such as a button
  • the short circuit between the low-voltage contact elements can be selectively brought about and prevented again. This may serve, for example, to selectively open and close a valve disposed in the steam generating device to open or close the steam line.
  • the steam delivery device comprises an adjustment element connected between the low-voltage contact elements for changing a voltage difference present between the low-voltage contact elements.
  • the adjusting element for example a potentiometer
  • the user can demand electric Consuming energy by adjusting the voltage difference between the low voltage contact elements.
  • the change in the voltage difference may be used in the steam generating device, for example, to adjust the amount of steam provided.
  • the invention also relates to a steam generating device.
  • a steam generating device solves a connection device for detachably connecting with one of the above-mentioned steam discharge devices, an electric heater for evaporating water, and an electric device for supplying a supply voltage and a safety extra-low voltage to the steam discharge device, wherein the connecting device of the steam generating device Steam line connection element for dispensing evaporated water, two supply voltage contact elements between which the supply voltage is applied, connected to a protective earth protective contact element and two low-voltage contact elements between which the safety extra-low voltage applied, wherein the distance of the supply voltage contact elements from the protective contact element is smaller than the distance the supply voltage contact elements of the low voltage contact elements.
  • the supply voltage contact elements of the steam generating device advantageously have identical distances from the protective contact element of the steam generating device.
  • the distance of the supply voltage contact elements from each other is preferably the same size as the distance between each supply voltage contact element from the protective contact element.
  • the supply voltage contact elements have a greater distance from the steam line connection element than the low-voltage contact elements and the protective contact element of the steam generating device.
  • the protective contact element between the supply voltage contact elements and the low-voltage contact elements is arranged.
  • connection device of the steam generating device likewise preferably comprises a first connection region, in which the vapor line connection element is arranged, a second connection region, in which the electrical contact elements of the connection device are arranged, and at least one separation element separating the first connection region from the second connection region.
  • the at least one separating element is expediently a separating wall, at least partially surrounding the electrical contact elements, between the first and the second connecting region, and particularly preferably the dividing wall completely surrounds the electrical contact elements.
  • connection device of the steam generating device may have at least one alignment member for cooperating with a correspondingly formed alignment member of the vapor dispensing device, which for example, is arranged on at least one separating element or is covered by this.
  • connection device of the steam generating device may also comprise an outer housing, which accommodates the steam line connection element and an inner housing receiving the electrical contact elements of the connection device.
  • a steam generating apparatus of the above-mentioned type, together with at least one steam discharge apparatus of the aforementioned type, can form a combined steam generating and steam discharge apparatus according to the invention, which also solves the object stated at the outset.
  • FIG. 1 shows a preferred embodiment of a combined steam generation and steam dispensing apparatus 1 according to the invention.
  • the apparatus 1 comprises a preferred embodiment of a steam generating apparatus according to the invention, hereinafter referred to as steam generator 10.
  • the housing 12 is a known per se and not shown in the drawing electric heater housed for heating water in a likewise known per se and also not shown in the drawing water tank or in a Heater.
  • the water can be vaporized by heating and optionally delivered via a port 14 of the device 1 to one of two steam dispensers 16 and 18 of the device 1.
  • the steam dispenser 16 is a preferred embodiment of a steam dispenser according to the invention as part of the apparatus 1, in the form of a steam ironing apparatus, hereinafter referred to as iron 20.
  • the iron 20 comprises a connection line 22, at the end of which a connection device 24 in the form of a plug 26 is arranged.
  • the steam dispenser 18 is provided for floor cleaning floor nozzle 32 with a connecting line 34, at the end of a connection device 36 is arranged in the form of a plug 38.
  • the plug 38 is with the socket 30 also releasably connectable, for releasably connecting the floor nozzle 32 to the steam generator 10th
  • the steam generator 10 comprises an in FIG. 2B only schematically illustrated electrical device 40, whose internal structure is present only so far as important, as the electrical device 40 includes four electrical poles 42, 44, 46 and 48 and a grounding pole 50, which is not shown in the drawing, a power plug of the steam generator 10 is in electrical connection with a protective earth 52.
  • the structure of the electrical device 40 in detail, which may also include the above-mentioned heater for evaporating water, may, for example, the EP 0 809 728 B1 be removed. In the present case, it is sufficient for the understanding of the invention to know that between the poles 42 and 44, an electrical supply voltage for the steam dispenser 16 is applied.
  • the height of the supply voltage is determined inter alia by the structure of the electrical device 40, and it may, as in the from EP 0 809 728 B1 known steam generator, in particular to act a mains voltage, for example with a height of 230 V or 110 V.
  • the poles 42 and 44 are electrically connected to electrical contacts F and G of the socket 30, which supply voltage contact elements F and G of the steam generator 10 form.
  • the earthing pole 50 is electrically connected to a contact D of the socket 30, which forms a protective contact element D of the steam generator.
  • poles 46 and 48 are also a voltage, namely a safety extra-low voltage with a height of some 10 V.
  • the safety extra-low voltage is generated for example by transformation of the voltage applied to the poles 42 and 44 supply voltage, this is in the EP 0 809 728 B1 described.
  • the poles 46 and 48 are electrically connected to contacts A and C of the socket 30, which form low-voltage contact elements A and C of the steam generator 10.
  • the socket 30 still comprises contacts B, E and H, which, however, are not occupied.
  • the contacts A to H are female contact elements in the form of sockets. Of course, it would also be possible that it is male contact elements in the form of plugs.
  • the socket 30 also includes a steam line connection element 54, hereinafter referred to as steam nipple 56, which, however, only in FIG. 2A but not in FIG. 2B is shown.
  • a steam line connection element 54 hereinafter referred to as steam nipple 56
  • steam nipple 56 steam provided by the steam generator 10 can be delivered to the steam dispensers 16 and 18. In the case of the iron 20, this takes place in that a steam line connection element 54 'in the form of a further steam nipple 56' of the plug 26 can be connected to the steam nipple 56. Steam from the steam generator 10 can then be supplied to the actual iron 20 through the steam nipples 56 and 56 'and the connecting line 42.
  • the plug 26 of the iron 20 also includes a plurality of electrical contacts A 'to H', which are in the present case designed as a male, pin-shaped contacts.
  • the contacts A 'and C' may interact with the contacts A and C of the socket 30, the contact D 'with the contact D of the socket 30, and the contacts F' and G 'with the contacts F and G of the socket 30.
  • the contacts B ', E' and H ' are not occupied in the connector 26.
  • the contacts F 'and G' connectable to the contacts F and G, form supply voltage contact elements of the plug 26. They are connected to each other on the side of the iron 20 with the interposition of an electric heater 58, and between them is also between the contacts F and G applied supply voltage, which is applied to the electric heater 58.
  • the heater 58 allows the need-based heating of a sole plate 62 of the iron 20, wherein the heating power is adjustable by means of an adjusting element 60.
  • the contact D ' forms a protective contact element D' of the iron 20, and it is connected via the contact D with the protective earth 52. This is in FIG. 3B symbol UNT.
  • the contacts A 'and C' form low-voltage contact elements A 'and C' of the plug 26, between which the same low voltage is applied as between the contacts A and C of the socket 30. Further, the contacts A 'and C' in the iron 20 are electrically connected to each other connected, wherein in the connection still a switching element 64 is connected in the form of a push button 66. When the push button 66 is actuated by the user, the contacts A 'and C' are shorted so that a valve connected to the poles 46 and 48, and in particular a solenoid valve (not shown) of the electrical device 40 releases a steam line in the steam generator 10, so that water vapor through the connecting line 22 to the iron 20 can flow. The intensity of the steam flow can be adjusted by means of an adjusting element 67 on the steam generator.
  • the socket 30 and the plug 26 in a compact design each comprise an outer housing 68 or 68 'of half-shells 70 and 72 or 70' and 72 '.
  • the outer housing 68 and 68 ' take on the one hand, the steam nipple 56 and 56' and to the other inner housing 74 or 74 '.
  • the inner housing 74 is an electrical socket 76 which receives the contacts A to H of the socket 30 and, in a corresponding manner, the inner housing 74 'is a plug 78 grasping the contacts A' to H 'of the plug 26.
  • the contacts F and G or F 'and G' to each of which the supply voltage applied, of the occupied contacts of the socket 30 and the plug 26, the largest distance from the steam nipples 56 and 56 'on.
  • the contacts D and D 'connected to the protective earth are between the supply voltage contact elements F and G and F' and G 'and the low-voltage contact elements A and C and A' and C '.
  • the distance between the supply voltage contact elements F and G and F 'and G' of the protective contact elements D and D ' is smaller than their distance from the low-voltage contact elements A and C or A' and C '.
  • the contacts D, F and G on the one hand and D ', F' and G 'on the other hand form vertices of an equilateral triangle.
  • the above-described spatial arrangement of the contacts A to H and A 'to H' has the following advantage under safety considerations: Because the protective contacts D and D 'connected between the supply voltage F and G or F' and G ' On the one hand and with the low voltage occupied contacts A and C or A 'and C' are arranged on the other hand, a possible electrical discharge, starting from the supply voltage occupied contacts F and G or F 'and G' with very high probability in a desirable manner be discharged via the contacts D and D 'to the protective earth 52. Accordingly, a discharge originating from the contacts A and C or A 'and C' may be in desirably be discharged with very high probability via the contacts D and D 'to the protective earth 52.
  • the contacts A to H and A 'to H' are protected by dividing elements 80 and 80 'from water vapor.
  • the separating elements 80 and 80 ' are formed by outer walls 82 and 82' of the bush 76 and of the plug 78, respectively.
  • the walls 82 and 82 ' are self-contained and surround the contacts A to H or A 'to H' in the circumferential direction of a connecting direction of the iron 20 to the steam generator 10 completely.
  • Such separation inhibits the entry of water vapor into the areas lying between the contacts A to H or A 'to H' and thereby reduces the risk of a possible electrical discharge.
  • the walls 82, 82 'further comprise alignment members 88 and 88', in the form of a rib 90 and a groove-shaped recess 92.
  • the rib 90 and the recess 92, when connecting the plug 26 to the socket 30 for their mutual alignment interact.
  • a "coding" of the socket 30 and the plug 26 allows.
  • the plug 26 can be connected to the socket 30, because the rib 90 and the recess 92 can be joined together due to their spatial arrangement.
  • the rib 90 is disposed elsewhere on the wall 82. This prevents that the iron 20 can be connected to the plug 26 to such a steam generator, because the wall 82 'in the required position does not include a groove-shaped recess.
  • Such coding is desirable to ensure that the iron 20 can only be connected to steam generators 10 which can provide the electrical power required for normal operation of the iron 20, especially, of course, those whose contacts A to H correspond to the contacts A '. to H 'of the iron 20 are occupied.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Textile Engineering (AREA)
  • Irons (AREA)
  • Electrolytic Production Of Non-Metals, Compounds, Apparatuses Therefor (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Devices For Medical Bathing And Washing (AREA)
EP11724238.8A 2010-06-28 2011-06-09 Dampfabgabevorrichtung, dampferzeugungsvorrichtung sowie kombinierte dampferzeugungs- und dampfabgabevorrichtung Active EP2585761B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE201020009975 DE202010009975U1 (de) 2010-06-28 2010-06-28 Dampfabgabevorrichtung, Dampferzeugungsvorrichtung sowie kombinierte Dampferzeugungs- und Dampfabgabevorrichtung
PCT/EP2011/059642 WO2012000768A2 (de) 2010-06-28 2011-06-09 Dampfabgabevorrichtung, dampferzeugungsvorrichtung sowie kombinierte dampferzeugungs- und dampfabgabevorrichtung

Publications (2)

Publication Number Publication Date
EP2585761A2 EP2585761A2 (de) 2013-05-01
EP2585761B1 true EP2585761B1 (de) 2014-04-16

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EP11724238.8A Active EP2585761B1 (de) 2010-06-28 2011-06-09 Dampfabgabevorrichtung, dampferzeugungsvorrichtung sowie kombinierte dampferzeugungs- und dampfabgabevorrichtung

Country Status (5)

Country Link
EP (1) EP2585761B1 (ja)
JP (1) JP5792810B2 (ja)
CN (1) CN102959329B (ja)
DE (1) DE202010009975U1 (ja)
WO (1) WO2012000768A2 (ja)

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ITGE20130099A1 (it) * 2013-10-08 2015-04-09 Le Ariete "sistema stirante con ferro da stiro e corpo macchina separabili"
FR3141051A1 (fr) * 2022-10-20 2024-04-26 Seb S.A. Ensemble pour un accessoire de diffusion de vapeur
FR3141195A1 (fr) * 2022-10-20 2024-04-26 Seb S.A. Base de diffusion de vapeur pour un appareil électroménager
FR3141190A1 (fr) * 2022-10-20 2024-04-26 Seb S.A. Appareil électroménager

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2541843Y2 (ja) * 1991-08-05 1997-07-23 日本航空電子工業株式会社 給電コンタクト付きプリント基板用多心同軸コネクタ
JP3006189B2 (ja) * 1991-08-20 2000-02-07 松下電器産業株式会社 アイロン装置
JP2903895B2 (ja) * 1992-09-18 1999-06-14 松下電器産業株式会社 アイロン装置
DE19505342C1 (de) 1995-02-17 1996-04-18 Kaercher Gmbh & Co Alfred Kombiniertes Dampfreinigungs- und Dampfbügelgerät
SG55210A1 (en) * 1996-07-01 2005-01-28 Koninkl Philips Electronics Nv Ironing machines comprising an iron and a stand
JP3033626U (ja) * 1996-07-16 1997-01-28 株式会社家庭洗濯専門学院 アイロン器具
WO2000006945A1 (en) * 1998-07-29 2000-02-10 Marcello Ferrante Process for the automatic variation of the working pressure in machines for steam generation
GB2387771A (en) * 2002-04-26 2003-10-29 Samson Tsen Steam cleaning device
US7051462B1 (en) * 2005-07-08 2006-05-30 Euro-Pro Operating, Llc Combined steam cleaner and steam iron apparatus and circuit
CN2837349Y (zh) * 2005-09-07 2006-11-15 广州市立本电器有限公司 节能工业专用整烫装置
EP1905887A1 (en) * 2006-09-26 2008-04-02 TI. EMME. TI S.r.l. Multifunctional steam unit

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DE202010009975U1 (de) 2010-10-21
JP2013530761A (ja) 2013-08-01
JP5792810B2 (ja) 2015-10-14
WO2012000768A3 (de) 2012-05-03
WO2012000768A2 (de) 2012-01-05
EP2585761A2 (de) 2013-05-01
CN102959329A (zh) 2013-03-06
CN102959329B (zh) 2014-12-17

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