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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$ t( r2 w* P& |3 b- y
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EN50525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' w3 y- B' R' q; n! L
分类部分
$ `$ m# g7 `, m+ [. n* r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。 ) ~* q9 @) M7 |& a0 l
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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)
8 Q5 t: |# m- I1 h( |. M F+ XBS 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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* |& k$ z i. ]# j, v/ V3 vBS 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 * p$ ^% j g5 @% T- p5 t
* ?% C2 x) F- Y% MBS 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
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BS EN 50395-2011 ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES ! W# s% W; _3 ^; [6 ?4 h- A0 v
$ P4 X8 C1 ? W3 ^2 fBS EN 50396-2011 NON ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES " i$ g0 q7 K0 ^2 s' I Y
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; S7 F7 w8 ?5 [. h* v% p" cDIN EN 50525-2-11 H03VV(H2)-F
5 j% _/ M# ^5 zCold impact test at -5 °C 6 [) Q I3 f' z# h. H" ]
new: non-compatibility test ; ]: \# R" ?/ K1 M# m/ G
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DIN EN 50525-2-11 H05VV(H2)-F ) \" R! Y' k7 l Y! i! O# K
Cold impact test at -5 °C ' N% M7 k9 ~ o# }
new: H05VVH2-F 2 X 1,5
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2 D5 @' _( _ L- ], F0 {DIN EN 50525-2-11 H03V2V2(H2)-F 1 G9 e. t. U: a/ T; y/ p" G
Cold impact test at -5 °C 0 R3 t% \( P: K- S7 W' k2 H' W
new: non-compatibility test - x3 n7 O6 w# a
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DIN EN 50525-2-11 H05V2V2(H2)-F
& R6 b" D1 G7 V" |! K# | F2 _# jCold impact test at -5 °C
# E c, A. j# O) o3 _: g# Ynew: H05V2V2H2-F 2 X 1,5
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DIN EN 50525-2-11 H05V2V2D3-F ' E5 E) g0 F7 Y7 z6 Y! p2 K
Cold impact test at -5 °C
$ l {( j' b' ?) M, h$ z% ]For all types: Voltage test after bending test with 2000 V
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DIN EN 50525-2-12 H03VV(H2)H8-F " U0 ^% } p; n- Q) ?) v
Cold impact test at -5 °C
% d' d+ F1 N" h$ T! l* r8 F4 Inew: non-compatibility test
4 N' g, |5 r6 t, h) J4 rNew requirements for the marking after coiling . A9 g8 W8 p: x( q- p
& B6 ?) m& F: i$ b5 K; iDIN EN 50525-2-12 H05VV(H2)H8-F
5 F4 u" ?1 J$ t" \Cold impact test at -5 °C & V6 I0 t' G" E( Q' m
New requirements for the marking after coiling ; B% k. I7 k, S2 R% |" K1 w
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DIN EN 50525-2-21 H05RR-F
3 e. U! I7 E9 r" s1 I3 wnew: cold bending test for the insulation at -35 °C ; U; e+ m; N1 E/ L
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DIN EN 50525-2-21 H05RN-F
0 I+ e z- Q3 k. ]new: cold bending test for the insulation at -35 °C % v; _8 _4 J# u2 J5 ?; f7 P
new: H05RN-F 4 x 0,75 and H05RN-F 4 x 1
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* U8 X- s. M! `: `( wDIN EN 50525-2-21 H07RN-F, H07RN-F vieladrig 5 R4 m) M$ t/ `
new: cold bending test for the insulation at -35 °C b l: G* b8 y( p) K
9 c k! W+ K* m9 q* Y- {8 WDIN EN 50525-2-21 H07RN8-F
6 M+ {: X4 G1 ~" [2 X2 vnew: cold bending test for the insulation at -35 °C + |# k* G4 T: W0 c! c7 w
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DIN EN 50525-2-21 H05BQ-F
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' f* Z6 v2 y% |+ E5 q9 d+ u. G8 zDIN EN 50525-2-21 H07BQ-F
' r( R- S! X9 l t2 {( \* Sno changes
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; T/ u7 @0 P! d+ A# ~/ \DIN EN 50525-2-21 H05GG(H2)-F
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3 d% P. c3 Y/ kDIN EN 50525-2-21 H05BB-F 8 @" I# b1 h; R2 z: H
no changes
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% I6 d2 A# [& i0 gDIN EN 50525-2-21 H07BB-F ' q/ C8 A+ Y5 w3 W
no changes
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, C# h, f; m0 @4 W, wDIN ENDIN EN 50525-2-21 H05BN4-F 4 P+ D+ L- q0 A- h: c, `4 B$ ]
no relevant changes _0 ]( X. n' D; i% W _& E3 Q
0 F( v) p [$ `9 [DIN EN 50525-2-21 H07BN4-F, H07BN4-F multi core
9 o; c a+ w: R+ J: v4 o1 bno relevant changes
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% o: P& ~' g: \' Z" @DIN EN 50525-2-22 H03RT-H 9 m+ R# v% o# Y: i, b1 M% Z+ h* t
no changes
4 {1 n& W0 V3 K! C# Z JH05RR-H und H03V4V4-H withdrawn " B; c+ q6 q% [3 b+ j$ x
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' h* }8 A! w! `" B: [* p% Q! ?DIN EN 50525-2-31 H05V-U/-R/-K
* B9 L' T' H9 cnew: Cold impact test at -5 °C
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DIN EN 50525-2-31 H07V-U/-R/-K
( U5 [( {. ]( S9 |2 f- X- KCold impact test at -5 °C (new: -K)
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DIN EN 50525-2-31 H05V2-U/-R/-K
' B: ]& y/ F9 m& w3 g* wnew: Cold impact test at -5 °C
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! i* \$ ?4 z/ @* H2 k% G9 n9 Y+ NDIN EN 50525-2-31 H07V2-U/-R/-K K- N8 E5 f9 b# F! }
Cold impact test at -5 °C (new: -K) 6 k. y) K! Q; r+ o0 w
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$ I( \& l$ F# s( m5 Y: z2 HDIN EN 50525-2-41 H05S-U/-K 2 i' M# \, O7 i, E& [! F
no changes + [( g$ F0 G$ ?( c1 z# y2 O
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DIN EN 50525-2-41 H03S-K
1 Q* s) P# ?* o3 sno changes 2 g+ r+ n) H9 m) x) K( T# G
+ @( @" j+ ~# n% fDIN EN 50525-2-41 H05SJ-U/-K
) \ [5 t% x) sno changes 9 p5 o- f, v9 \0 o a8 `
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DIN ENDIN EN 50525-2-41 H05SS-K
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6 z R' ^0 H3 H8 B+ a- ~DIN EN 50525-2-42 H07G-U/-R/-K
c: }2 L Q# f* _1 E4 R/ R: wCold impact test at -5 °C & I" |* M1 q+ ~2 g
6 c j/ X7 B2 S* A) `# xDIN EN 50525-2-42 H05G-U/-K
6 Q, W7 x4 q1 N! H1 T* T, QCold impact test at -5 °C + V0 U2 D- W1 v
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) n# L9 w: i- S/ A! e" m* A3 eDIN EN 50525-2-51 H05VV5-F `) S7 l0 B# o0 A9 g
The cable shall be marked with the code designation ``H05VV5-F``
* |- I' u" C- |0 d! }- o" p8 p. pCold impact test at -5 °C - U6 c' `6 l% Q1 e* m
v9 n; R- f: k ]3 LDIN EN 50525-2-51 H05VVC4V5-K
1 _6 u6 q$ h+ b6 I0 J GThe cable shall be marked with the code designation ``H05VVC4V5-K``
4 T3 j3 K: V8 ~7 @8 zCold impact test at -5 °C
& t3 W* Z/ N4 X, Kchanged calculation procedure for cables which number of cores does not belong to the preferred , ?- H- n' g& S5 b0 Z1 F, W- e" O! u2 Z
ones ' F/ G" s% `2 r& Z, ?' z) M- y
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DIN EN 50525-2-71 H03VH-Y 0 v9 b1 y! o. w. @. v; H" F# n
new: Cold impact test at -5 °C
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5 ^ t9 R/ H; \- JDIN EN 50525-2-72 H03VH7H-F
0 F; q# e/ r4 K5 F: C0 dCold impact test at -5 °C 2 M. L; [' M2 N/ `" o
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DIN EN 50525-2-81 H01N2-D/E - `, h% t7 W' K' z% F. J( M
extension to 240 mm² , r, M) [% H7 G
DIN EN 50525-2-82 H03RN-F * u; Z3 m4 |% e4 K+ j& y+ L
new: Cold bending test for the insulation at -35 °C
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) k1 O( n* l9 TDIN EN 50525-2-82 H05RN(H2)-F ' z& v& L% ?4 _' F; N& r+ ~
new: Cold bending test for the insulation at -35 °C
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2 g9 h& ^9 q- K" z* CDIN EN 50525-2-83 H05SS-F; H05SST-F * J( r; _9 H3 L9 Z& S. [- B
The insulation shall be a single layer
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DIN EN 50525-2-83 H05SSD3-K; H05SSD3T-K % { k# F4 S: C* ^
The insulation shall be a single layer " @0 W7 j. n. L
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% P7 K" i# m4 U0 I# C3 i( }DIN EN 50525-3-11 H03Z1Z1(H2)-F
) }5 e, r5 M& D( L. W- rCold impact test at -5 °C
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DIN EN 50525-3-11 H05Z1Z1(H2)-F
/ Z5 V, h: H) H8 ~& Q! P3 ^$ {Cold impact test at -5 °C 2 J8 e) S! @; n7 S4 J3 C
Voltage test after bending test with 2000 V
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DIN EN 50525-3-21 H07ZZ-F
& ~( D! k7 j3 ynew temperature for compatibility test: 7 d at 100 ± 2 °C (old: 80 ± 2 °C) ) v" x [1 a6 R) `
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DIN EN 50525-3-31 H07Z1-U/-R
1 R9 c4 ^3 C# a4 cCold impact test at -5 °C
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DIN EN 50525-3-31 H07Z1-K
& x0 c e7 t/ N u6 p BCold impact test at -5 °C 0 X+ l& i2 e0 s: B# g& U
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DIN EN 50525-3-31 H07Z1-U/-R 3 e: \0 q3 g9 f
Cold impact test at -5 ° 5 D7 c7 g/ _1 |
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DIN EN 50525-3-31 H07Z1-K
- ?, x3 W+ x' D0 pCold impact test at -5 °C
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, ?, C' z- }7 K; Y. @DIN EN 50525-3-41 H07Z-U/-R 6 d7 k9 G. N( d1 v$ Q
no changes
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: {6 ?+ b; t8 c9 q, y. H. NDIN EN 50525-3-41 H07Z-K
0 l9 N* @! d6 u, M5 F/ E4 Ino changes
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! s* w5 C: g$ r# _( c6 u% GDIN EN 50525-3-41 H05Z-U ' ?& J. k+ M( ]8 I6 t+ Y
no changes
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6 Q( b% j2 [3 n0 u0 w2 gDIN EN 50525-3-41 H05Z-K * j4 j8 y$ N- D& S) h
no changes ; D5 Z u- O5 F! j
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