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电线标准 EN50525是欧洲电线标准,目前最新版为EN50525-2011, 将代替使用多年的欧洲协调标准HD 21(PVC)和HD 22(橡套线)两个标准
/ f1 v2 k' q. ~* f% T9 F生效
; k+ r. F7 T M3 e- fEN50525标准2014年1月份开始生效。目前很多取得欧洲国家认证的电线厂家在着手准备和进行证书换版。 日期
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) u4 r# H- w0 K9 T4 d常见的EN50525标准有德国的DIN EN 50525-1(VDE 0285-525),英国的BS EN 50525,都等同于EN50525。
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BS EN 50525-1:2011 ELECTRIC CABLES - LOW VOLTAGE ENERGY CABLES OF RATED VOLTAGES UP TO AND INCLUDING 450/750 V (U0/U) PART 1: GENERAL REQUIREMENTS(DIN EN 50525-1:2011/ VDE 0285-525-1) $ Z% i, i H! O. v
BS EN 50525-2-31-2011 ELECTRIC CABLES - LOW VOLTAGE ENERGY CABLES OF RATED VOLTAGES UP TO AND INCLUDING 450/750 V (U0/U) PART 2-31: CABLES FOR GENERAL APPLICATIONS - SINGLE CORE NON-SHEATHED CABLES WITH THERMOPLASTIC PVC INSULATION
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BS EN 50525-2-72-2011 ELECTRIC CABLES - LOW VOLTAGE ENERGY CABLES OF RATED VOLTAGES UP TO AND INCLUDING 450/750 V (U0/U) PART 2-72: CABLES FOR GENERAL APPLICATIONS - FLAT DIVISIBLE CABLES (CORDS) WITH THERMOPLASTIC PVC INSULATION
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: h) l! s) P/ U) HBS EN 50525-2-11-2011 ELECTRIC CABLES - LOW VOLTAGE ENERGY CABLES OF RATED VOLTAGES UP TO AND INCLUDING 450/750 V (U0/U) PART 2-11: CABLES FOR GENERAL APPLICATIONS - FLEXIBLE CABLES WITH THERMOPLASTIC PVC INSULATION + u6 R' n* h n! z; T
+ W+ X/ x u8 v4 ^/ \ rBS EN 50395-2011 ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES
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2 q9 F* k3 a% s. w$ d Z* ABS EN 50396-2011 NON ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES
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. S% |# B: A( W/ o% F" ZDIN EN 50525-2-11 H03VV(H2)-F
5 _8 A e. j$ [4 M5 kCold impact test at -5 °C 2 l- e$ N) ?" D6 T7 j" l# p; W G
new: non-compatibility test
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DIN EN 50525-2-11 H05VV(H2)-F ( ~8 U7 z4 d8 A: M* O- z
Cold impact test at -5 °C
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DIN EN 50525-2-11 H03V2V2(H2)-F / I: |* T, G+ N9 l( V
Cold impact test at -5 °C # ^$ F2 `% z9 V; d0 c
new: non-compatibility test
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9 W. n% m" q, T) ^# gDIN EN 50525-2-11 H05V2V2(H2)-F " m3 _/ Q5 Q4 F7 A2 F! U
Cold impact test at -5 °C : V! F& I1 V4 Y: M
new: H05V2V2H2-F 2 X 1,5 - p, p, h8 l8 z4 X9 ]
/ \: e( F6 `8 K' Q0 `DIN EN 50525-2-11 H05V2V2D3-F 7 U8 s& Z0 V- t# K2 ~7 ^
Cold impact test at -5 °C + V" \* U& d, n4 @' e
For all types: Voltage test after bending test with 2000 V ( p9 [2 L) J' [, ~' Q, v9 K
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DIN EN 50525-2-12 H03VV(H2)H8-F / z8 V: A3 m9 D, P% x7 i
Cold impact test at -5 °C
- P+ Y6 v! f dnew: non-compatibility test
1 }; c+ D9 v( P- S: k3 A+ G2 eNew requirements for the marking after coiling
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, ]8 g4 X6 M% Y$ b3 g% o% b3 \DIN EN 50525-2-12 H05VV(H2)H8-F # \* }& o* z, l" W3 H' B+ d
Cold impact test at -5 °C + l( B# Z5 l0 P
New requirements for the marking after coiling
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+ l/ J! R; J. i- KDIN EN 50525-2-21 H05RR-F ; U2 G3 M n1 g1 k
new: cold bending test for the insulation at -35 °C
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6 ~. F( m+ V9 }# pDIN EN 50525-2-21 H05RN-F
" l1 k9 x! C* s$ p; y3 T1 T Fnew: cold bending test for the insulation at -35 °C & ] P/ m8 ^) \7 M
new: H05RN-F 4 x 0,75 and H05RN-F 4 x 1
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DIN EN 50525-2-21 H07RN-F, H07RN-F vieladrig
% L% M0 h) _6 P6 \new: cold bending test for the insulation at -35 °C
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DIN EN 50525-2-21 H07RN8-F
9 p1 l J" A! ]3 E) X' r3 ~2 inew: cold bending test for the insulation at -35 °C
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* d9 ~4 V: [. E, B4 B$ NDIN EN 50525-2-21 H05BQ-F
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- v4 l' R/ H* k. b3 ]0 fDIN EN 50525-2-21 H07BQ-F
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: l) b! R; g$ l# O; A2 I Z5 s3 K6 `DIN EN 50525-2-21 H05GG(H2)-F
& M1 k& K3 F- \3 X1 Uno changes
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DIN EN 50525-2-21 H05BB-F 4 _& h, v0 W- c+ z n7 s" T: j
no changes , r/ r' X: [( ~3 I, T3 r6 N" g" X
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DIN EN 50525-2-21 H07BB-F
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DIN ENDIN EN 50525-2-21 H05BN4-F 5 G* h; @3 g5 y
no relevant changes
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, R9 [' V2 \+ c j# r3 \8 V- |2 ?DIN EN 50525-2-21 H07BN4-F, H07BN4-F multi core
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DIN EN 50525-2-22 H03RT-H
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; D* y% M& M, N6 T) z! MH05RR-H und H03V4V4-H withdrawn
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DIN EN 50525-2-31 H05V-U/-R/-K
$ |$ K& ?+ M B! x1 [, N, r' g4 v$ bnew: Cold impact test at -5 °C
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DIN EN 50525-2-31 H07V-U/-R/-K 1 F$ c0 b* ^- f6 I" }; g5 ^
Cold impact test at -5 °C (new: -K) 1 `( h6 B) H6 i {7 J; S3 V
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DIN EN 50525-2-31 H05V2-U/-R/-K # b5 a g0 z- d* O. t9 I
new: Cold impact test at -5 °C
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$ I+ e. f7 \& y. W: m# t8 [1 FDIN EN 50525-2-31 H07V2-U/-R/-K
) o9 }7 E8 L5 ACold impact test at -5 °C (new: -K)
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DIN EN 50525-2-41 H05S-U/-K
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DIN EN 50525-2-41 H03S-K 8 N: P. N) h. ?+ Q) ?% \
no changes ) X5 s/ {8 F3 ^2 x0 h. H
0 j' F* F" _( A8 N$ e% LDIN EN 50525-2-41 H05SJ-U/-K 7 V5 }2 h# L% G3 t% _- }+ f
no changes
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& l" K3 q9 `0 {3 g, d7 X, }DIN ENDIN EN 50525-2-41 H05SS-K & W% q d" Y: J7 _1 P! _
no changes
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DIN EN 50525-2-42 H07G-U/-R/-K
" T" k+ x6 }2 v& i* qCold impact test at -5 °C
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7 l" u/ C; K! r; }) KDIN EN 50525-2-42 H05G-U/-K ; I- O% a6 x+ y8 ?: ^( N
Cold impact test at -5 °C
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DIN EN 50525-2-51 H05VV5-F / y' i) q5 Z/ b/ }* P; W/ |
The cable shall be marked with the code designation ``H05VV5-F`` ) g" l2 ]0 k9 S, T+ ~2 x' W
Cold impact test at -5 °C # ]: P- s. g) j" y4 G
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DIN EN 50525-2-51 H05VVC4V5-K 9 y: a$ g2 W! S; b
The cable shall be marked with the code designation ``H05VVC4V5-K``
5 b3 E7 m' D' OCold impact test at -5 °C * Y0 x3 V3 j& I5 B9 h, s
changed calculation procedure for cables which number of cores does not belong to the preferred + f( r f' L( w2 Z2 Z; ~
ones
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4 ?, G1 U' E) @DIN EN 50525-2-71 H03VH-Y . D7 q0 W' ^1 o5 z
new: Cold impact test at -5 °C 8 v7 r. e9 s! P) u5 Q
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DIN EN 50525-2-72 H03VH7H-F
& U: n0 e! y9 Z+ w) l ]0 _Cold impact test at -5 °C : o, @0 V% n! P
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DIN EN 50525-2-81 H01N2-D/E 0 s* M; a& C- k" \% M7 `
extension to 240 mm²
$ Q* V; |3 @0 o6 g/ LDIN EN 50525-2-82 H03RN-F
! J- Q g N' l$ g2 X- U8 g' l( Enew: Cold bending test for the insulation at -35 °C
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9 M. Q9 M( S4 j) m \ D9 Y, ?DIN EN 50525-2-82 H05RN(H2)-F 1 C0 `' o) h' p( a5 _2 y
new: Cold bending test for the insulation at -35 °C 0 B _) i8 e7 c3 a+ @% [
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2 q6 x! \2 ]9 p, k% n) B. T! ODIN EN 50525-2-83 H05SS-F; H05SST-F
! a5 t/ Q9 U: [8 eThe insulation shall be a single layer
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m# k7 }+ W* p& `9 O& Y% l2 _. R+ ADIN EN 50525-2-83 H05SSD3-K; H05SSD3T-K
$ _% e# |1 i! p9 I" ~3 \* g' ZThe insulation shall be a single layer , ]; ?* {; e) e& l
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DIN EN 50525-3-11 H03Z1Z1(H2)-F ; m0 [+ s% R! s- ?! v7 L( Y
Cold impact test at -5 °C
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DIN EN 50525-3-11 H05Z1Z1(H2)-F 9 f3 K+ G, G' U/ A' T. [( Z
Cold impact test at -5 °C
3 F+ v) W5 n% H$ W8 M0 r; P$ dVoltage test after bending test with 2000 V ' t) k f) o" t% F3 A
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1 N- ]$ G. z0 v0 dDIN EN 50525-3-21 H07ZZ-F 1 B( [4 o6 ]; D9 |$ P
new temperature for compatibility test: 7 d at 100 ± 2 °C (old: 80 ± 2 °C) ' H6 p% {8 R6 x2 s
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5 g1 ?9 {, g, j9 m7 P& \5 ~& zDIN EN 50525-3-31 H07Z1-U/-R * Z3 G4 C& o* A3 d( g
Cold impact test at -5 °C
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DIN EN 50525-3-31 H07Z1-K ) k8 _" W8 H- H$ V* B
Cold impact test at -5 °C
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DIN EN 50525-3-31 H07Z1-U/-R ) B- D5 z; V- |. }, T1 f/ q
Cold impact test at -5 °
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( W6 w" a4 T4 i, a+ M6 NDIN EN 50525-3-31 H07Z1-K
. D( }. _4 o. P) Q0 L6 |7 H1 R6 VCold impact test at -5 °C ) r6 Q% u- ^$ W1 ^' J
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. h1 J J) K! h& ]" k5 r+ [DIN EN 50525-3-41 H07Z-U/-R \ C' E( L8 O. r) W1 i0 e/ \
no changes
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0 N3 P' W- h, u! z& C# s( X7 vDIN EN 50525-3-41 H07Z-K 2 z# {" R" h) E2 r. @
no changes 6 I, O% w' R0 ]; u
1 ?+ ^0 W8 P3 C$ h- ]! |. C3 ^" qDIN EN 50525-3-41 H05Z-U 7 L* U) ^8 j5 X$ M. S b
no changes " y6 X" g9 _3 b
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DIN EN 50525-3-41 H05Z-K
1 v5 w7 g6 f6 O) Rno changes
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