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EP3544372A1 - Laminar heating elements with customized or non-uniform resistance and/or irregular shapes, and processes for manufacture - Google Patents

Laminar heating elements with customized or non-uniform resistance and/or irregular shapes, and processes for manufacture
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Publication number
EP3544372A1
EP3544372A1EP19159558.6AEP19159558AEP3544372A1EP 3544372 A1EP3544372 A1EP 3544372A1EP 19159558 AEP19159558 AEP 19159558AEP 3544372 A1EP3544372 A1EP 3544372A1
Authority
EP
European Patent Office
Prior art keywords
area
heater
perforation
laminar
perforations
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.)
Withdrawn
Application number
EP19159558.6A
Other languages
German (de)
French (fr)
Inventor
Peter Sajic
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.)
Laminaheat Holding Ltd
Original Assignee
Laminaheat Holding Ltd
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
Priority claimed from US15/928,952external-prioritypatent/US10841980B2/en
Application filed by Laminaheat Holding LtdfiledCriticalLaminaheat Holding Ltd
Publication of EP3544372A1publicationCriticalpatent/EP3544372A1/en
Withdrawnlegal-statusCriticalCurrent

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Abstract

Laminar heaters having a laminar heating element with a pair of electrically conductive busbars connected to opposite ends of the heating element and a plurality of areas. The heater has a first electrical resistance in a first area and a second electrical resistance in a second area. At least one of the first area or the second area comprises a plurality of perforations, and the difference between the first electrical resistance and the second electrical resistance arises from a difference in a perforation characteristic of the first area relative to the second area. A plurality of heaters or heating elements may be connected together in a system for heating a surface.

Description

Claims (16)

  1. A laminar heater comprising an electrically conductive laminar heating element comprising a pair of electrically conductive busbars connected to opposite ends of the heating element, the laminar heater having at least a first area with a plurality of perforations, wherein the plurality of perforations are non-round perforations having a length dimension L that is longer than a width dimension W, with a ratio L:W at least greater than 2.
  2. The laminar heater of claim 1, wherein the plurality of perforations comprise slits having a ratio L:W greater than 10.
  3. The laminar heater of claim 1, wherein the ratio L:W is in a range of 10 to 200.
  4. The laminar heater of any of the foregoing claims, wherein the plurality of perforations are disposed in a 45-degree staggered pattern an array of rows having a space between adjacent rows.
  5. The laminar heater of claim 4, wherein the plurality of perforations are disposed with the length dimension disposed perpendicular to a flow path through the heater between the pair of electrically conductive busbars
  6. The laminar heater of any of foregoing claims, wherein the first area has a first plurality of perforations having a first set of perforation characteristics and the second area has a second plurality of perforations having a second set of perforation characteristics, in which the second set of perforation characteristics comprises at least one perforation characteristic that is different from a corresponding perforation characteristic in the first set of perforation characteristics.
  7. The laminar heater of claim 6, wherein each of the first and second pluralities of perforations include the length dimension of the perforations disposed so that electrons in a flow path through the heater between the pair of electrically conductive busbars flow around the length dimension of each perforation in the flow path in order to continue travelling in the flow path, with the first area and the second area having respective first and second calculated resistances that are dependent upon respective first and second calculated path lengths of the electrons in the flow path, wherein the calculated path length in the first area is dependent upon a first set of values and the calculated path length in the second area is dependent upon a second set of corresponding values, wherein at least one of the values in the second set is different than at least one of the corresponding values in the second set.
  8. The laminar heater of claim 8, wherein adjacent perforations in a same row are spaced a distance H on center, and adjacent rows are spaced a distance V on center, wherein the first set of values includes perforation length L1, perforation width W1, perforation row spacing distance V1, and adjacent same-row perforation spacing distance H1, and the second set of values includes perforation length L2, perforation width W2, perforation row spacing distance V2, and adjacent same-row perforation spacing distance H2, wherein at least one of the values L1, W1, V1, and H1 is different than the corresponding value L2, W2, V2, and H2.
  9. The laminar heater of claims 7 or 8, wherein the first resistance is different than the second resistance.
  10. The laminar heater of claim 9, wherein the first area has a first percent open area and the second open area has a second percent open area, and the first percent open area is the same as the second percent open area or sufficiently similar to the second percent open area to provide for heat distribution in both the first open area and the second open area within a predetermined range of uniformity.
  11. The laminar heater of claim 10, wherein the predetermined range of uniformity of heat distribution comprises a range of ± 5-7% temperature variation between the first and second areas.
  12. The laminar heater of any of the foregoing claims, wherein the heating element comprises an electrically-conductive non-woven, non-metallic fiber layer.
  13. The laminar heater of any of the foregoing claims, wherein the first area has a first heat output per unit area and the second area has a second heat output per unit area, and the first heat output and the second heat output are on average, equivalent within a predetermined amount of tolerance, and the busbars have a first average distance from one another in the first area and a second average distance from one another in the second area, wherein the first average distance and the second average distance are different.
  14. The laminar heater of any of the foregoing claims, wherein the heating element has a non-rectangular or non-uniform shape and has uniformity of heat distribution in a predetermined range of temperature variation over an entirety of the non-rectangular or non-uniform shape.
  15. A heating system comprising at least one laminar heater of any of the foregoing claims connected to a controller and disposed on a surface for providing heat to the surface.
  16. A process for manufacture of the laminar heater of claim 9, comprising the steps of:
    customizing the electrical resistance of the first area and the second area by applying a first customized perforation characteristic in the first area and a second customized perforation characteristic in the second area,
    wherein the customizing is performed to give the laminar heater the predetermined range of uniformity in heat distribution in the first area and the second area.
EP19159558.6A2018-03-222019-02-27Laminar heating elements with customized or non-uniform resistance and/or irregular shapes, and processes for manufactureWithdrawnEP3544372A1 (en)

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US15/928,952US10841980B2 (en)2015-10-192018-03-22Laminar heating elements with customized or non-uniform resistance and/or irregular shapes and processes for manufacture

Publications (1)

Publication NumberPublication Date
EP3544372A1true EP3544372A1 (en)2019-09-25

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ID=65628599

Family Applications (1)

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EP19159558.6AWithdrawnEP3544372A1 (en)2018-03-222019-02-27Laminar heating elements with customized or non-uniform resistance and/or irregular shapes, and processes for manufacture

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EP (1)EP3544372A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
WO2021255439A1 (en)*2020-06-162021-12-23Pilkington Group LimitedGlazing for electric heating, method of manufacturing the same and use of the same
DE102021120697A1 (en)2021-08-092023-02-09Giesecke+Devrient Currency Technology Gmbh METHOD OF CONTACTING AN ELECTRICALLY CONDUCTIVE PAPER STRUCTURE, COMPOSITE AND USE

Citations (8)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2971073A (en)*1957-07-081961-02-07Eisler PaulElectric surface heating devices
US3266005A (en)*1964-04-151966-08-09Western Electric CoApertured thin-film circuit components
US20060043240A1 (en)*2004-03-122006-03-02Goodrich CorporationFoil heating element for an electrothermal deicer
US20090184106A1 (en)*2008-01-172009-07-23Kuei-Huang WuFlexible planar heating device
EP3013119A1 (en)*2014-10-242016-04-27Centre National De La Recherche ScientifiqueTransparent heating device with graphene film
WO2016113633A1 (en)2015-01-122016-07-21Laminaheat Holding Ltd.Fabric heating element
WO2017068416A1 (en)*2015-10-192017-04-27Laminaheat Holding Ltd.Laminar heating elements with customized or non-uniform resistance and/or irregular shapes, and processes for manufacture
WO2017216631A2 (en)2016-06-142017-12-21Laminaheat Holding Ltd.Products with embedded carbon veil heating elements

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2971073A (en)*1957-07-081961-02-07Eisler PaulElectric surface heating devices
US3266005A (en)*1964-04-151966-08-09Western Electric CoApertured thin-film circuit components
US20060043240A1 (en)*2004-03-122006-03-02Goodrich CorporationFoil heating element for an electrothermal deicer
US20090184106A1 (en)*2008-01-172009-07-23Kuei-Huang WuFlexible planar heating device
EP3013119A1 (en)*2014-10-242016-04-27Centre National De La Recherche ScientifiqueTransparent heating device with graphene film
WO2016113633A1 (en)2015-01-122016-07-21Laminaheat Holding Ltd.Fabric heating element
WO2017068416A1 (en)*2015-10-192017-04-27Laminaheat Holding Ltd.Laminar heating elements with customized or non-uniform resistance and/or irregular shapes, and processes for manufacture
WO2017216631A2 (en)2016-06-142017-12-21Laminaheat Holding Ltd.Products with embedded carbon veil heating elements

Cited By (3)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
WO2021255439A1 (en)*2020-06-162021-12-23Pilkington Group LimitedGlazing for electric heating, method of manufacturing the same and use of the same
DE102021120697A1 (en)2021-08-092023-02-09Giesecke+Devrient Currency Technology Gmbh METHOD OF CONTACTING AN ELECTRICALLY CONDUCTIVE PAPER STRUCTURE, COMPOSITE AND USE
WO2023016945A1 (en)2021-08-092023-02-16Giesecke+Devrient Currency Technology GmbhMethod for contacting an electrically conductive paper structure, composite body and use

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