EP0682352B1 - Energieregler - Google Patents

Energieregler Download PDF

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Publication number
EP0682352B1
EP0682352B1 EP19950303111 EP95303111A EP0682352B1 EP 0682352 B1 EP0682352 B1 EP 0682352B1 EP 19950303111 EP19950303111 EP 19950303111 EP 95303111 A EP95303111 A EP 95303111A EP 0682352 B1 EP0682352 B1 EP 0682352B1
Authority
EP
European Patent Office
Prior art keywords
cam
regulator according
energy regulator
bimetal
compensator
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.)
Expired - Lifetime
Application number
EP19950303111
Other languages
English (en)
French (fr)
Other versions
EP0682352A3 (de
EP0682352A2 (de
Inventor
John Tooke
Nigel Marrison
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.)
Samuel Montagu & Co Ltd (as Security Trustee Of Diamond H Controls Limited)
Original Assignee
Samuel Montagu & Co Ltd (as Security Trustee Of Diamond H Controls Limited)
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 Samuel Montagu & Co Ltd (as Security Trustee Of Diamond H Controls Limited) filed Critical Samuel Montagu & Co Ltd (as Security Trustee Of Diamond H Controls Limited)
Priority to EP01201895A priority Critical patent/EP1143470A1/de
Publication of EP0682352A2 publication Critical patent/EP0682352A2/de
Publication of EP0682352A3 publication Critical patent/EP0682352A3/de
Application granted granted Critical
Publication of EP0682352B1 publication Critical patent/EP0682352B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H37/00Thermally-actuated switches
    • H01H37/02Details
    • H01H37/10Compensation for variation of ambient temperature or pressure
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H89/00Combinations of two or more different basic types of electric switches, relays, selectors and emergency protective devices, not covered by any single one of the other main groups of this subclass
    • H01H89/04Combination of a thermally actuated switch with a manually operated switch

Definitions

  • the present invention relates to an energy regulator of the kind which incorporates a bimetal element.
  • bimetal strip It has long been common to utilise temperature-dependent deflection of a bimetal strip to fulfil a regulating function in a wide range of equipment, for example in domestic appliances such as cookers.
  • the bimetal strip is heated by a heating element in intimate contact with the active leg of the bimetal element which is contained within the regulator, specifically for that purpose.
  • the deflection is used to actuate a switch mechanism to open and close electrical contacts for the supply of power to the load.
  • the setting at which the bimetal strip actuates the switch mechanism is determined by a rotary cam arrangement.
  • a compensation element to compensate for variation in ambient temperature so that deflection of the bimetal strip is more accurately dependent on the temperature of the heating element which heats the bimetal strip. It is common practice to provide a primary switch for single pole operation and secondary switches for double pole and auxiliary functions operation within the same regulator, for example to isolate the regulator and load from the electrical supply when the regulator is set to the "off" position. Conveniently, this operates in response to a second rotary cam arrangement mounted on the same shaft as the cam which determines the switching effected by the bimetal element.
  • a common form of heating element for such a regulator is a ceramic substrate thick film heater.
  • Current methods of making electrical connection to ceramic substrate heaters have shortcomings in maintaining a reliable electrical connection at high ambient temperatures and heater power levels. Soldered connections are difficult to fuse (e.g. Ag to CuNi) and creep and melt points of HMP solder limit maximum safe operating temperatures. Mechanical rivet/tape compression types are prone to intermittent, i.e. high resistance, connection. Spring wiper connection types suffer from stress relaxation as well as friction and wear. The magnitude and degree of change of force experienced can adversely affect control performance.
  • US 3,238,780 discloses an ambient temperature compensated bimetal element having the features of the preamble of claim 1.
  • a unitary bimetal sheet formed in a V or L configuration with one limb being disposed approximately perpendicularly to a second limb. The limbs are joined at a web portion which is formed into a cylindrical shape to accept a pivot axle.
  • an energy regulator comprising a heating element and a primary limb responsive to the heating element and a compensator limb for compensating for the effects of ambient temperature fluctuation, the primary and compensator limbs being integrally formed from the same piece of bimetal and the bimetal element being mounted on a pivot member characterised in that the pivot member is flexible and in that the heating element is disposed in thermal contact only along a portion of the primary limb so that, upon flexion of the pivot member, the primary and compensator limbs, together with the heating element, pivot as a single rigid assembly.
  • a preferred embodiment of the invention incorporates an edge cam arrangement, by forming/bending the bimetal it can be arranged that the high expansion side of the bimetal is such that full ambient compensation is achievable, the design also makes economical use of an expensive material and simplifies assembly to the frictionless pivot.
  • the design therefore has the advantages of giving optimum compensation, elimination of bimetal constant variation problems and also enabled a low profile design of control to be considered.
  • the primary and compensator limbs are integral, e.g. formed by splitting a bimetal strip lengthways from one end along a part of its length.
  • This bimetal strip can be supported at its unsplit end.
  • the unsplit end of such a split bimetal strip can be supported on the pivot.
  • the energy regulator further comprises a heating element for heating the bimetal element such that deflection of the bimetal element effects a switching action.
  • the input power level of the heating element or heating effect of the heating element at which the bimetal element effects switching being determined by the position of a first cam surface upon which a first cam follower bears, the first cam follower being mechanically linked to said bimetal element, a second cam surface being mechanically integrally linked to said first cam surface and a second cam follower being arranged to bear upon said second cam surface to effect a first independent switching function at one or more predetermined regulator settings, wherein a third cam surface is also provided, mechanically integrally linked to said first and second cam surfaces and upon which a third cam follower bears for effecting a further independent switching function at one or more predetermined regulator settings.
  • the linked first, second and third cams can be in any suitable arrangement, for example linked to a slider control. However, in a preferred embodiment they are in the form of rotary cam elements, most preferably mounted on a common shaft, e.g. integral with each other.
  • the third cam follower is not directly attached to the contact arm which it actuates.
  • a "loose" cam follower is supported on the regulator case by support and guide means.
  • One piece energy regulator bimetal designs are normally associated with "face" profile type cam arrangements (see PCT Patent Application WO 93/26027) in which the bimetal is stamped from one piece and with adjustment to obtain the correct ratio of length of limbs, optimum compensation can be obtained, irrespective of bimetal constant variation.
  • a preferred form of flexible pivot comprises a spring, preferably of the leaf spring type.
  • Stainless steel is a preferred material for making this spring pivot. This form of pivot can eliminate the need for lubrication, and avoid backlash and friction problems associated with high ambient temperature and thermal ageing of the components.
  • the primary and compensator limbs are approximately at right angles or otherwise in a mutual V configuration.
  • the compensator limb terminates in a cam follower arranged to bear upon a cam surface.
  • the cam follower is integral with and formed of part of an end of the compensator limb.
  • the cam surface is preferably a periphery of a cam element attached to a knob or other device for user control.
  • a calibration feature is provided for determining the particular regulator setting, i.e. percentage output, (for a predetermined cam position) at which the energy regulator turns on or off.
  • This may be constituted by an adjustment screw device protruding through a free end of the primary leg, terminating in an actuating member.
  • an adjustment feature could be provided elsewhere.
  • a screw adjustment with protrusion could be put through a free end of the compensator leg to bear upon the cam surface, i.e. to act as the cam follower.
  • the regulator 1 comprises a base 3 in which the constituent parts of the regulator are housed.
  • the main part of the regulator comprises a primary bimetal leg 5 to which a ceramic substrate thick film heater assembly 11 is secured by means of an eyelet 7 and a surrounding coil spring 9.
  • a compensator bimetal strip 13 extends at approximately right angles to the primary strip 5 and is contiguous therewith.
  • the primary strip and compensator strip constitute separate limbs formed from a single piece of bimetal, joined by a base region 15.
  • the base region 15 is secured to a pivot spring 17 in the form of a leaf spring, so that the primary bimetal strip 5 and the compensator bimetal strips 13 together with the substrate heater 11 pivot together as a single rigid assembly.
  • the pivot spring 17 is fixed to the base 3 by means of a support 19.
  • the primary bimetal strip 5 comprises a root portion 21 in contact with the substrate heater 11 and an oblique portion 23 extending away from the substrate heater and a distal portion 25 spaced apart from the substrate heater.
  • the bimetal leg 5 bears on a deflectable snap action, spring member 27 by means of the calibration screw 33 extending through an end thereof remote from the root portion 21, so that the deflection of the bimetal leg 5 results in the electrical contacts 2, 4 operating (make and break) as a function of the over centre action of the switch mechanism 6.
  • Calibration of the regulator to preset the precise power level (for a given user setting) at which electrical connection between the contacts 2, 4 is made or broken is effected by means of a calibration screw 33.
  • the regulator setting controlled by the user is set by means of a knob (not shown) mounted on a spindle 87 which a cam element 37 is rotatably mounted.
  • the outer circumference of the cam element presents a cam surface 39.
  • the compensator strip Remote from the base region 15, the compensator strip has a bend 41 so that it is angled towards the cam element 37 and terminates in a cam follower 43 which bears against the cam surface 39.
  • the position of the cam surface 39 contacted by the cam follower 43 alters the orientation of the compensator bimetal strip 13 relative to the pivot spring 17 and so also, the orientation of the primary bimetal strip 11 relative to the pivot spring.
  • the position of the calibration screw 33 relative to the switch mechanism 6 is also varied.
  • the calibration screw is used in initial set-up to calibrate the regulator as described above. Then, the user turns the knob to orientate the compensator and primary bimetal strips 13, 5 by means of the cam action. This determines the power level to the substrate heater and to the corresponding load connected across the electrical contacts 2, 4. For a given set cam/spindle position the output power would by cyclic at contacts 2, 4.
  • the two limbs are formed from a single strip split laterally with the unsplit remnant at one end forming the base region 15 which is mounted on the pivot spring.
  • the metal on the top side (facing the cam element 37) of the primary strip 5 is on the reverse side (not facing the cam element) of the compensator strip 13 and vice versa.
  • the resistor track 63 of the ceramic substrate thick film heater is electrically connected to a conductor pad 65.
  • the tape 45 is welded to the conductor pad by ultrasonic welding.
  • the conductor pad is made of a silver/platinum alloy.
  • the ultrasonic energy is applied generally in the direction of the arrow defined by numeral 67. This weld is capable of operating at an ambient temperature in excess of 380°C without oxidation or deterioration with age.
  • the tape 45 is connected to the link clip 53 by means of a U-shaped portion 68 and a clip arrangement 69 which could be strengthened by means of spot welding or ultrasonic welding.
  • auxiliary switch elements denoted generally by reference numeral 71.
  • These switch elements 71 comprises pair of switches 73 and 75.
  • the first of these switches 73 has a fixed contact 77 and a moving contact 79.
  • the moving contact 79 is mounted on a spring mounting 81. Part of this moving contact 79 is shaped to act as a cam follower 83.
  • the cam follower 83 bears upon a second cam surface 85 behind the primary cam surface 39, relative to the plane of the paper.
  • the second cam surface 85 rotates in accordance with rotation of the primary cam surface 39 in response to rotation of a common shaft 87.
  • the second cam surface is configured to open and close the contacts 77, 79 of the first switch 73, at one or more positions of rotation of the shaft 87. As shown in Figure 1, the contacts 77 and 79 are in the open position.
  • a third cam surface 89 which also rotates in accordance with rotation of the common shaft 87.
  • a third cam follower 91 bears upon the third cam surface 89. Further details of the cam follower can be seen from Figures 4, 5 and 6.
  • the third cam follower 91 is elongate in one dimension and has a first curved end surface 93 which rides over the third cam surface 89. It also has a second curved end surface 95, remote from said first end surface 93, which acts upon a movable arm 97 of the third switch 75.
  • the third switch comprises a movable arm and is fixed to a terminal support 96. As shown in Figure 1, the contacts 98, 99 of the third switch 75 are shown in the open position.
  • the third cam surface is configured to open and close the contacts 98, 99 of the third switch 75 through the agency of the third cam follower 91. It will be appreciated that the opening and closing of the second and third switches 73, 75 is independent of each other and also independent of the opening and closing of the contacts 2, 4 in response to the operation of the bimetal strip 5 and the action of the primary cam surface 39.
  • the third cam follower 91 is not attached to the movable signal arm 97 on which it acts but is "loose” within the assembly. It is however, constrained by side supports (not shown) in the top and bottom of the regulator casing. Thus, the cam follower is slidable in the left-right direction as shown in Figure 1.
  • the third cam follower has an upper stepped profile 101 and a lower stepped profile 103 which is configured to locate within upper, lower and side supports.
  • Figures 7 - 9 shows typical circuit diagrams and a regulator scale for using an energy regulator according to the present invention in a domestic appliance such as an electric cooker, adapted for the UK market.
  • reference numeral 5 denotes the bimetal element and numeral 11 denotes the ceramic substrate thick film heater.
  • numerals 2 and 4 respectively indicate the switch contacts which are opened or closed in accordance with deflection of this bimetal element.
  • numeral 110 denotes a load, in this case an electrical heating ring of the cooker, and numeral 113 denotes the main electricity supply.
  • the main supply 113, the load 110 and the regulator switch contacts are all in series. No other switching is effected.
  • the arrangement shown in Figure 8 is the same as that of Figure 7, except that a further switch element 115 comprising a pair of contacts 117, 119 is provided.
  • This further switch element 115 is connected in series between the main supply 113 and a signal lamp 121.
  • the contacts 117, 119 open and close in response to a relevant secondary cam acting upon actuator arm 123 connected to the movable contact 4 of the pair. This can be arranged, for example to switch the signal lamp on as soon as the regulator knob (attached to the respective cams mounted on a common shaft) is moved from the off position.
  • a typical scale could comprise a (vertical) off position 125, low power being arranged to energise the load at (say) 75° movement clockwise, full power being achieved at 285° in the clockwise direction.
  • Figures 10 to 12 show circuit diagram and scale arrangements of a regulator according to the present invention, suitable for use in a domestic appliance intended for the continental European market.
  • Figure 12 shows the scale of the regulator. Immediately rotating the spindle of the control from the vertical 'OFF' position 125, causes the contacts 117, 119 to close. Further rotation will close contacts 27 and 31 and energise the bimetal heater circuit in accordance with operation of an appropriate cam. Then, at 51.5° clockwise, the main cam pre-sets the bimetal assembly to power the load at the "low" level in accordance with opening and closing of the contacts 27, 31. Full power is achieved at the 308.5° clockwise position.
  • FIG. 11 The arrangement of Figure 11 is the same as that of Figure 10 except that a further switch element is provided. Thus, the arrangement is that shown in Figure 1 and the same reference numerals are used for the switch contacts as in the latter drawing.
  • the switch contacts 77, 79 are connected in the same way as contacts 117, 119 in the arrangement of Figure 10 and therefore operate in the same way.
  • the other pair of contacts 75 are in series between the mains supply 113 and a signal lamp 121 which can be switched independently of the isolation contacts 77, 79 and the contacts 27, 31 operated by the bimetal element 5.
  • the cam follower 91 operates movable contact arm 97 and operates third switch 75 in accordance with its own cam arranged on the common shaft.

Landscapes

  • Thermally Actuated Switches (AREA)
  • Control Of Resistance Heating (AREA)

Claims (18)

  1. Energieregler, der ein Heizelement (11) und ein Bimetallelement (5) aufweist , ein Primärglied, das auf das Heizelement (11) anspricht und ein Ausgleichsglied (13) zum Ausgleich der Auswirkungen von Schwankungen in der Umgebungstemperatur, wobei der Primär- und der Ausgleichskörper integral vom selben Bimetallstück geformt sind und das Bimetallelement (5) auf einem Drehelement (17) angeordnet ist, dadurch gekennzeichnet, dass das Drehelement (17) flexibel ist und das Heizelement (11) nur entlang einem Teil des Primärkörpers im Wärmekontakt steht, so dass sich beim Biegen des Drehelements (17), die Primär- und Ausgleichskörper zusammen mit dem Heizelement (11) als ein einziger fester Aufbau drehen.
  2. Energieregler gemäss Anspruch 1, dadurch gekennzeichnet, dass das genannte flexible Drehelement (17) als Blattfeder ausgebildet ist, die mit einem Basisbereich (15) des Bimetallelements (5) verbunden ist.
  3. Energieregler gemäss Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Primär- und Ausgleichskörper (13) hergestellt werden indem ein Bimetallstreifen in Längsrichtung von einem Ende entlang eines Teils der Gesamtlänge gespalten wird.
  4. Energieregler gemäss Anspruch 3, dadurch gekennzeichnet, dass der Bimetallstreifen auf dem flexiblen Drehelement (17) an dessen ungespaltenen Basisbereich (15) gestützt wird.
  5. Energieregler gemäss jedem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die Primär- und Ausgleichskörper (13) nahezu rechtwinklig oder gemeinsam V-förmig ausgebildet sind.
  6. Energieregler gemäss jedem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass der Ausgleichskörper (13) in einem Nockenstössel (43) endet, der auf einer Nockenoberfläche (39) aufliegt.
  7. Energieregler gemäss Anspruch 6, dadurch gekennzeichnet, dass der Nockenstössel (43) ein integraler Bestandteil und aus einem Teil eines Endes des Ausgleichskörpers (13) gebildet ist.
  8. Energieregler gemäss Anspruch 6 oder 7, dadurch gekennzeichnet, dass die Nockenoberfläche (39) aus einer Peripherie eines Nockenelements (37) gebildet wird, dass an einem Anwender-Bedienungsknopf oder einer entsprechenden Vorrichtung befestigt ist.
  9. Energieregler gemäss jedem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass durch das Durchbiegen des Primärkörpers als Reaktion auf das Heizelement (11) entweder eine elektrische Verbindung hergestellt oder unterbrochen wird.
  10. Energieregler gemäss jedem der vorstehenden Ansprüche, wobei das Heizelement (11) das Bimetallelement (5) so erwärmt, dass das Durchbiegen des Bimetallelements einen Schaltvorgang bewirkt, dadurch gekennzeichnet, dass der Leistungspegel des Heizelements (11) an dem das Bimetallelement (5) den Schaltvorgang bewirkt von der Anordnung einer ersten Nockenoberfläche abhängt auf dem ein erster Nockenstössel (43) aufliegt, der mechanisch mit dem genannten Bimetallelement (5) verbunden ist und einer zweiten Nockenoberfläche (85), die mechanisch mit der ersten Nockenoberfläche (39) verbunden ist und einem zweiten Nockenstössel (83), der auf der genannten zweiten Nockenoberfläche (85) aufliegt, um eine erste unabhängige Schaltfunktion bei einer oder mehreren vorbestimmten Reglereinstellungen zu bewirken und wobei zudem eine dritte Nockenoberfläche (89) geboten wird, die mechanisch mit der ersten und zweiten Nockenoberfläche (39, 85) verbunden ist und auf der ein dritter Nockenstössel (91) aufliegt und somit eine weitere unabhängige Schaltfunktion an einer oder mehreren vorbestimmten Reglereinstellungen bewirkt.
  11. Energieregler gemäss Anspruch 10, dadurch gekennzeichnet, dass die genannte erste, zweite und dritte Nockenoberfläche (39, 85, 89) jeweils auf den ersten, zweiten und dritten drehenden Nockenelementen (37) ausgebildet sind.
  12. Energieregler gemäss Anspruch 11, dadurch gekennzeichnet, dass das erste, zweite und dritte drehende Nockenelement (37) an einer gemeinsamen Welle (87) befestigt sind.
  13. Energieregler gemäss Anspruch 11 oder 12, dadurch gekennzeichnet, dass das erste, zweite und dritte drehende Nockenelement (37) integral miteinander ausgebildet sind.
  14. Energieregler gemäss Anspruch 10 bis 13, der ein Schaltelement aufweist, das durch den genannten dritten Nockenstössel (91)ausgelöst wird, dadurch gekennzeichnet, dass das genannte Schaltelement nicht am genannten dritten Nockenstössel (91) befestigt ist.
  15. Energieregler gemäss Anspruch 10 bis 14, dadurch gekennzeichnet, dass dieser eine Haltevorrichtung (105) aufweist, in der der genannte dritte Nockenstössel (91) ruht.
  16. Energieregler gemäss Anspruch 15, dadurch gekennzeichnet, dass der Regler ein Gehäuse (3) aufweist und die genannte Haltevorrichtung (105) Teil des Gehäuses darstellt.
  17. Energieregler gemäss jedem der vorstehenden Ansprüche mit einem Heizelement (11) in Form eines Keramiksubstratdickfilm-Heizelements.
  18. Energieregler gemäss Anspruch 17, dadurch gekennzeichnet, dass das genannte Keramiksubstratdickfilm-Heizelement eine Widerstandsspur (63) aufweist, die in elektrischem Kontakt mit einer Leiterplatte (65) steht und einer elektrischen Leitung (45) die den elektrischen Kontakt zur genannten Leiterplatte (65) herstellt, wobei die Leitung mit Ultraschall mit der Leiterplatte verschweisst ist.
EP19950303111 1994-05-12 1995-05-09 Energieregler Expired - Lifetime EP0682352B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP01201895A EP1143470A1 (de) 1994-05-12 1995-05-09 Energieregler mit Nockenoberflächen

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB9409489A GB9409489D0 (en) 1994-05-12 1994-05-12 Energy regulator
GB9409489 1994-05-12

Related Child Applications (1)

Application Number Title Priority Date Filing Date
EP01201895.8 Division-Into 2001-05-18

Publications (3)

Publication Number Publication Date
EP0682352A2 EP0682352A2 (de) 1995-11-15
EP0682352A3 EP0682352A3 (de) 1996-12-27
EP0682352B1 true EP0682352B1 (de) 2002-09-11

Family

ID=10755006

Family Applications (2)

Application Number Title Priority Date Filing Date
EP19950303111 Expired - Lifetime EP0682352B1 (de) 1994-05-12 1995-05-09 Energieregler
EP01201895A Withdrawn EP1143470A1 (de) 1994-05-12 1995-05-09 Energieregler mit Nockenoberflächen

Family Applications After (1)

Application Number Title Priority Date Filing Date
EP01201895A Withdrawn EP1143470A1 (de) 1994-05-12 1995-05-09 Energieregler mit Nockenoberflächen

Country Status (3)

Country Link
EP (2) EP0682352B1 (de)
DE (1) DE69528106T2 (de)
GB (1) GB9409489D0 (de)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2315160A (en) * 1996-07-08 1998-01-21 Diamond H Controls Ltd Energy regulator
DE19736308A1 (de) * 1997-08-21 1999-02-25 Ego Elektro Geraetebau Gmbh Leistungssteuergerät
CN1134868C (zh) * 1999-07-26 2004-01-14 阿尔卑斯电气株式会社 开关装置
SI20537A (sl) * 2000-03-23 2001-10-31 Metalflex Električni stikalni sklop za varnostno pripravo v stroju
GB2391725A (en) * 2002-04-17 2004-02-11 Diamond H Controls Ltd Control device with thermal sensor
ITTO20120291A1 (it) * 2012-04-03 2013-10-04 Illinois Tool Works Dispositivo di bloccaggio porta con interruttore di rilevamento porta integrato
DE102021202314A1 (de) 2021-03-10 2022-09-15 E.G.O. Elektro-Gerätebau GmbH Leistungssteuergerät und Anordnung eines solchen Leistungssteuergeräts mit einer elektrischen Heizeinrichtung

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB864828A (en) * 1958-06-30 1961-04-06 Specialpapper Ab An improved device for regulating the average effect of electric heating apparatus
US3178539A (en) * 1963-02-11 1965-04-13 Robertshaw Controls Co Thermostat with cam-actuated auxiliary switch
US3238780A (en) * 1963-02-20 1966-03-08 Robertshaw Controls Co Ambient compensated bimetal elements
USRE31597E (en) * 1976-06-09 1984-06-05 E.G.O. Regeltechnik Gmbh Electric power controllers
CH671649A5 (de) * 1986-01-31 1989-09-15 Kienzler Ag G
AU4342993A (en) * 1992-06-08 1994-01-04 Strix Limited Energy regulators

Also Published As

Publication number Publication date
EP0682352A3 (de) 1996-12-27
DE69528106T2 (de) 2003-06-05
DE69528106D1 (de) 2002-10-17
GB9409489D0 (en) 1994-06-29
EP1143470A1 (de) 2001-10-10
EP0682352A2 (de) 1995-11-15

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