IEC 61249-2-45-ed.1.0 img
Active standard | Published: 10/01/2018

IEC 61249-2-45-ed.1.0

Materials for printed boards and other interconnecting structures - Part 2-45: Reinforced base materials clad and unclad - Non-halogenated epoxide non-woven/woven E-glass reinforced laminate sheets of thermal conductivity 1,0 W/(m•K) and defined flammability (vertical burning test), copper-clad for lead-free assembly
(Materiaux pour circuits imprimes et autres structures d´interconnexion - Partie 2-45: Materiaux de base renforces, plaques et non plaques - Feuilles stratifiees renforcees en verre de type E tisse/non tisse epoxyde non halogene, de conductivite thermique 1,0 W/(m•K) et d´inflammabilite definie (essai de combustion verticale), plaquees cuivre pour les assemblages sans plomb)

Available languages: English, English and French

Available design: electronic design (pdf), Print design, CD-ROM

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Detail information

Designation: IEC 61249-2-45-ed.1.0

Publication date: 10/01/2018

Pages: 22

Country: International technical standard

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Anotation

IEC 61249-2-45:2018 gives requirements for properties of non-halogenated epoxide non-woven reinforced core/woven E-glass reinforced surface laminate sheets of thermal conductivity and defined flammability (vertical burning test), copper-clad for lead-free assembly in thicknesses of 0,60 mm up to 1,70 mm. The flammability rating is achieved through the use of non-halogenated fire retardants reacted as part of the epoxide polymeric structure. The glass transition temperature is defined to be 105 °C minimum. Thermal conductivity is defined to be (1,0 ± 0,15) W/(m•K). LIEC 61249-2-45:2018 fournit des exigences concernant les proprietes des feuilles stratifiees de surface renforcee en verre de type E tisse et a cour renforce non tisse epoxyde non halogene, de conductivite thermique et dinflammabilite definie (essai de combustion verticale), plaquees cuivre pour les assemblages sans plomb, depaisseurs comprises entre 0,60 mm et 1,70 mm. Les caracteristiques dinflammabilite sont obtenues en faisant reagir des ignifuges non halogenes qui font partie de la structure polymere epoxyde. La temperature de transition vitreuse est definie comme etant dau moins 105 °C. La conductivite thermique est definie comme etant de (1,0 ± 0,15) W/(m•K).
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