|
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
; B$ d5 |$ O" `生效
# P7 a) Q# Q3 E R* E) [4 c# lEN50525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
" l4 b$ q' f! B( P& ]1 R, D; v! v分类部分
) E; K% b: q( @; j8 A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。 : c7 ?" d6 B4 ]6 B: n
- Z" D% |) n9 T, G
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) 7 t$ E5 Q; U0 P* C
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
% {4 @3 p4 O: w# \/ W6 ^9 L
+ r! S( Z; O3 u) iBS 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 # r3 e. @, P1 Q0 [% n5 M( {% q
! g( p# n% n" Q. E0 w
BS 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
1 P( W' E9 w9 n% r3 t2 z' t! K3 Q, l% ^1 T5 Z
BS EN 50395-2011 ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES
- n5 Q7 I& J: l7 {3 B# c( j' W0 w- g9 Y# F! k1 V
BS EN 50396-2011 NON ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES
, V: d: K0 u, C5 p---------------------------- $ D! ]3 o% P* k9 r1 J# ^& u. G7 `" l
DIN EN 50525-2-11 H03VV(H2)-F
) J% F* C" Q1 }, pCold impact test at -5 °C 7 O) y# c" M' J1 d0 J7 L7 ]3 m
new: non-compatibility test
! a5 B" g. h& C% T5 z( \2 n& V; L: W! Q- _4 z7 R2 \1 A4 U0 j
DIN EN 50525-2-11 H05VV(H2)-F ; T8 \ m7 x3 U- w
Cold impact test at -5 °C 7 p4 C4 c) K2 _! r6 t
new: H05VVH2-F 2 X 1,5 1 ~# [/ v+ N$ @
* Y I+ F2 k- \* h w1 G& X7 r: x
DIN EN 50525-2-11 H03V2V2(H2)-F - v- h9 z, j2 q J: h$ x" n8 m0 n
Cold impact test at -5 °C
- E6 S/ h7 t# ^ a6 i/ M" Inew: non-compatibility test
$ o* c8 H5 _+ ~; [ ^1 F2 c. b% I$ S, A4 a" `+ v
DIN EN 50525-2-11 H05V2V2(H2)-F 6 K5 p/ n. ?6 }6 s o$ C6 s, F
Cold impact test at -5 °C 5 {8 t% E1 p: f. b7 M, e5 k
new: H05V2V2H2-F 2 X 1,5 & c6 o# W9 r* D! O* g* K. L
+ h9 A# e5 A# A1 @
DIN EN 50525-2-11 H05V2V2D3-F
. y# O8 y; f: X" v: }) i9 S9 h4 c% [Cold impact test at -5 °C % E# W. }' n \3 i1 F* B& P( H7 Z! y1 K
For all types: Voltage test after bending test with 2000 V 7 a5 a0 C) y; M0 P- `& s7 m
--------------------------------------------------------------------------------------
8 w* f8 w F% \6 KDIN EN 50525-2-12 H03VV(H2)H8-F
- \6 i8 x i3 N. z- \Cold impact test at -5 °C 8 W% O1 j2 U$ S0 T
new: non-compatibility test 4 {2 W( l/ T! V x4 F% Y& G! ~
New requirements for the marking after coiling " s" x6 H/ H1 S# m g" ~/ M5 a& A
+ R4 p, I% b2 A! ^DIN EN 50525-2-12 H05VV(H2)H8-F
% S. ]% G. y1 T* }Cold impact test at -5 °C
2 d* y5 O& W; |% z4 Z) s& E$ e, uNew requirements for the marking after coiling 4 v$ l I0 D/ C* `( `
) j2 O6 G8 t, \& xDIN EN 50525-2-21 H05RR-F & Q3 f6 r7 z* H' ?) S
new: cold bending test for the insulation at -35 °C
8 m" |. Z- Z, i/ Z; l8 K" z# ?3 [3 ^* ^* I
DIN EN 50525-2-21 H05RN-F 9 \7 x, E+ M5 L. o; @
new: cold bending test for the insulation at -35 °C # }) d! F# O3 I) I0 V3 s/ c
new: H05RN-F 4 x 0,75 and H05RN-F 4 x 1
5 ~! X4 L9 _% v: G. M" K4 [, G& ?' F; b
DIN EN 50525-2-21 H07RN-F, H07RN-F vieladrig 0 Y9 J. D9 V" U, B8 I8 N/ w
new: cold bending test for the insulation at -35 °C 5 V5 P2 {$ X6 ?* c' R/ J8 s
& g) S. C: C, z1 R3 ~2 nDIN EN 50525-2-21 H07RN8-F - j" a+ J" c# ~/ M* r) t" m* O
new: cold bending test for the insulation at -35 °C
9 E$ W7 l1 T) n# c4 A! d; y% y0 G1 n; a% I# ?: A9 ~$ T/ Q4 \
DIN EN 50525-2-21 H05BQ-F
3 ?9 `: o. ^* T9 v* F R" Cno changes
# U. N9 n" ^2 v% w
1 d6 i# V; Q' R7 |+ [0 vDIN EN 50525-2-21 H07BQ-F + L. y' K+ E. Q4 H
no changes ; d1 Q0 ]+ t* E" s& S% Q
# _6 |' C% J9 ^DIN EN 50525-2-21 H05GG(H2)-F
: d, E! N8 W; f1 k: ~no changes
* I; a0 A; z2 W" ?9 K
5 C. [9 O. W- u8 e; V) o/ NDIN EN 50525-2-21 H05BB-F
- a2 D2 e h* u, Y5 ano changes
. w9 C8 N6 j( V$ K- y* h! I8 Y
; o* W! j7 y! p3 U4 V2 Z# ZDIN EN 50525-2-21 H07BB-F
9 m! Z1 ]+ b4 E7 {! n* P" t% ano changes
6 z$ N- E$ }& A2 z; C3 x/ @7 L6 [: E/ v7 U) _5 Y0 v$ L1 G
DIN ENDIN EN 50525-2-21 H05BN4-F * U7 O& @- |" n: @- l, y* s0 Q" @
no relevant changes
$ `; J( P3 M3 C3 c8 w& T
! B% O# q# o5 R9 {* H- bDIN EN 50525-2-21 H07BN4-F, H07BN4-F multi core
3 v* s' c, o% D: Q6 q/ {6 Nno relevant changes , z$ N) S- m" M1 l
--------------------------------------------------------------------------------------
1 K7 I. u. k |! z- |% yDIN EN 50525-2-22 H03RT-H
: ]) i! P) @0 r0 |7 Ano changes . H6 F6 N( W$ i( e
H05RR-H und H03V4V4-H withdrawn
5 `4 C) K+ i* c& X--------------------------------------------------------------------------------------
& u: R ~, I E3 I1 K; s$ GDIN EN 50525-2-31 H05V-U/-R/-K $ n8 B5 z6 h9 F6 _
new: Cold impact test at -5 °C
2 l1 x1 o: O% d1 t# w O- g5 D) Q! Z; e {
DIN EN 50525-2-31 H07V-U/-R/-K
- a) D. r$ D) cCold impact test at -5 °C (new: -K) . x$ y. K3 t% u; K G$ F* O
& A, M+ l- P M0 Y. T+ t3 [DIN EN 50525-2-31 H05V2-U/-R/-K ! b" R3 h1 T- ?( j" ?% ?
new: Cold impact test at -5 °C / X7 Q! y7 e: w- E: k
2 f! U( D ?2 w( j- ~DIN EN 50525-2-31 H07V2-U/-R/-K
1 z/ E9 O/ J; h" o7 ]+ xCold impact test at -5 °C (new: -K)
: P" P! \% \: y--------------------------------------------------------------------------------------
# g2 ]! \: F9 o% }0 ?6 ZDIN EN 50525-2-41 H05S-U/-K b! f" Z, ^; v2 H4 N
no changes ], {1 c5 e- I B5 Q
2 { M5 l/ ]" X S# U+ |9 iDIN EN 50525-2-41 H03S-K ! c9 Q5 ^: E5 `% `' b+ X) G+ d
no changes + j6 E6 i6 I3 y/ i! L7 n
; B1 t- k& H" D
DIN EN 50525-2-41 H05SJ-U/-K : J: M$ u4 D F/ g; k
no changes $ \+ K* o4 z* l" h% I/ x& o* _
( P A) T1 Y2 ?9 ]% R
DIN ENDIN EN 50525-2-41 H05SS-K
$ x% g5 B2 U+ ~3 Ano changes
1 \/ T8 c7 M; r/ A' V& H: P-------------------------------------------------------------------------------------- . R/ o( S2 D3 ~& H
DIN EN 50525-2-42 H07G-U/-R/-K * Z4 h: z C$ f M+ M+ C6 L
Cold impact test at -5 °C
# f5 Y: R( W' Y/ T" N1 u1 h; C
) _% c# r+ x* M# h% L0 G5 D! eDIN EN 50525-2-42 H05G-U/-K
+ q Y6 d7 h0 A0 Q" q" {& ~9 HCold impact test at -5 °C
; y- Q; d# z" k4 S( _/ @$ `; n; N--------------------------------------------------------------------------------------
+ E" n' U q# H- v" p/ eDIN EN 50525-2-51 H05VV5-F
0 S, E; ~* d. `, RThe cable shall be marked with the code designation ``H05VV5-F``
' e2 u6 n: L3 Z: cCold impact test at -5 °C
/ B1 A* e! l+ g W* o, f4 W5 t- a! `( L6 l
DIN EN 50525-2-51 H05VVC4V5-K . y, P; A. ?& p2 s/ O0 }) N- @5 p
The cable shall be marked with the code designation ``H05VVC4V5-K``
3 H/ [0 @* l2 z/ p) sCold impact test at -5 °C ( S2 Z5 @1 Z# \6 e
changed calculation procedure for cables which number of cores does not belong to the preferred ) Q$ Z' ` z0 h% D
ones
# D+ j3 U& i/ G--------------------------------------------------------------------------------------
8 w; i$ N y- o4 A$ gDIN EN 50525-2-71 H03VH-Y 9 P9 V" O# X7 |! Y5 K. z
new: Cold impact test at -5 °C % {4 o4 D: ]8 W* E6 H
--------------------------------------------------------------------------------------
2 ?" }0 }3 u9 o7 z2 YDIN EN 50525-2-72 H03VH7H-F
7 j7 N# D, n, o* w# t J) w nCold impact test at -5 °C * @/ N% q9 B3 E
-------------------------------------------------------------------------------------- 1 R: g% E2 C- j) P, o) a
DIN EN 50525-2-81 H01N2-D/E
0 h, c7 s3 s( }* ~+ Qextension to 240 mm²
0 W% C% T& a9 x- LDIN EN 50525-2-82 H03RN-F
' c' o) p, F) z+ g* U, @# d" Onew: Cold bending test for the insulation at -35 °C # F3 _* K3 q9 \# @1 \7 ^
5 x8 h9 T5 ~9 wDIN EN 50525-2-82 H05RN(H2)-F ) n7 y2 Q, e' _1 |1 z4 Z) V' s4 ]4 \4 ]
new: Cold bending test for the insulation at -35 °C + m N4 _8 Z" E1 g. X$ ]- ~! S
--------------------------------------------------------------------------------------
; [8 B2 U) ~6 e" t( e* P$ BDIN EN 50525-2-83 H05SS-F; H05SST-F + a! }: {- T- E
The insulation shall be a single layer
3 ~; C0 D' g# k9 i/ ]" H- b8 `5 p( z) E% j& ]: ]1 g5 @1 d
DIN EN 50525-2-83 H05SSD3-K; H05SSD3T-K
. w- E9 Z( Y2 _* }1 FThe insulation shall be a single layer ) j' Y6 q$ X1 {& d! \& Q, h2 V
-------------------------------------------------------------------------------------- / v3 j& i: Z( D
DIN EN 50525-3-11 H03Z1Z1(H2)-F % H6 j. K4 A) q$ ~( [. L8 q
Cold impact test at -5 °C . V& ^0 i- m2 @9 o6 y
5 s& O! g& \! r* c4 c" l- {
DIN EN 50525-3-11 H05Z1Z1(H2)-F
: a# E+ h8 Z7 wCold impact test at -5 °C
8 ?- q: d$ A2 a, cVoltage test after bending test with 2000 V ) E1 w- C& ^# C# U4 n
-------------------------------------------------------------------------------------- $ e" P3 ^. C6 Y- U' L0 v) @/ M
DIN EN 50525-3-21 H07ZZ-F 9 |; M/ C2 r2 q) ?# {9 u$ r
new temperature for compatibility test: 7 d at 100 ± 2 °C (old: 80 ± 2 °C) 5 p7 i5 N" t5 @# T ]4 B
--------------------------------------------------------------------------------------
: P1 p3 n# _4 F& zDIN EN 50525-3-31 H07Z1-U/-R
; n. |" l, F; n) }' dCold impact test at -5 °C 5 o6 @# C% r. ]) D
7 u! l# a+ ^7 k" w, y
DIN EN 50525-3-31 H07Z1-K
' F3 D2 r @& ^5 {* ~* F+ B1 g0 sCold impact test at -5 °C
3 L; W, P) q1 t- @. J/ N0 P9 d7 V
( q' k5 n( R2 y# p/ e+ q! ~DIN EN 50525-3-31 H07Z1-U/-R
. F( U+ m' {$ z! d: @& S! ZCold impact test at -5 °
& d w# e) Y l4 R2 ~! }
$ n# J* m* k! IDIN EN 50525-3-31 H07Z1-K
5 Y- v4 C8 q2 hCold impact test at -5 °C ^' Y$ {& O# N1 h
--------------------------------------------------------------------------------------
8 q: L: E7 h# j0 B: L$ _0 b- kDIN EN 50525-3-41 H07Z-U/-R
) e1 s/ K& F. |3 I, vno changes
( f0 U6 u" J3 Y7 Q. s: w3 T8 U1 U( M/ p7 w* B
DIN EN 50525-3-41 H07Z-K ! _ ^$ F/ S5 q/ @4 y" c! x$ O
no changes
6 @6 J+ ~, ?/ ]+ b }3 M5 {# x' V0 D0 z
DIN EN 50525-3-41 H05Z-U , b( \8 \% N& A* G
no changes
' M( a7 x) B+ P+ x8 Q* A7 n$ y7 s7 r1 f1 ?1 R
DIN EN 50525-3-41 H05Z-K : r$ D6 P7 s- S; B! p4 h
no changes
" v3 d' B. y) W2 K3 l
4 `( T# I& P" c0 G
+ o; a/ I0 b2 W. z0 ~( B |
评分
-
查看全部评分
|