|
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6 S3 o& O T3 Q7 K# @- q2 z
生效
# Q! v& C* }$ h2 k/ U8 ?4 KEN50525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
# K' a4 h- ~4 o: K3 O分类部分 D6 h1 k1 s8 u: R) x+ f; U
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。
4 v9 X" x+ ~$ d2 {
* P9 h% [6 O( M7 L5 g6 [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) & Z9 Z6 y; S [) g7 L6 c5 u
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 ! N) P4 O6 a; t! b! Z9 m
$ Z4 D5 J* _) L- t' fBS 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 , G, H6 q. U! e y- y% U
) Q6 m% ?& Z; j/ A* _# y; j. 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 + s0 S, ?* @& k
! a( U- Z) A) ` ^" }5 K9 S
BS EN 50395-2011 ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES 3 ~/ A+ o* J( L# D, L/ J
( L+ @& J: W. c5 S/ U& f7 C
BS EN 50396-2011 NON ELECTRICAL TEST METHODS FOR LOW VOLTAGE ENERGY CABLES
; C' Z$ x- J/ l---------------------------- / O: y, v2 e/ D
DIN EN 50525-2-11 H03VV(H2)-F - [" h% F8 O. O. Z
Cold impact test at -5 °C
, _ x/ E% M, J; W$ r onew: non-compatibility test
+ [: s# O: t# R' U* x3 |0 S) B: [0 y" o' `! x7 K
DIN EN 50525-2-11 H05VV(H2)-F
& _ w% i$ M: e+ Y% K' c# xCold impact test at -5 °C
2 u/ r9 [6 B+ ?3 Q0 R0 b3 ]5 b4 U6 B0 lnew: H05VVH2-F 2 X 1,5
) }, O2 p' ]$ }& \' a" y$ I1 W9 ?! t$ b2 n1 d
DIN EN 50525-2-11 H03V2V2(H2)-F
& t) k# N5 j& R( bCold impact test at -5 °C & `2 P& X8 i3 X; [0 N% V3 a
new: non-compatibility test
& l1 d* N+ Q! E6 r" D: m2 L5 z# f2 C( A2 H# e8 T1 d
DIN EN 50525-2-11 H05V2V2(H2)-F
, O- k( s6 S/ e$ M4 \Cold impact test at -5 °C % v* @% b p5 k- q) n
new: H05V2V2H2-F 2 X 1,5 : M. G# ^! h+ ?9 T6 A
/ j$ }! m: G% u) A: C4 H KDIN EN 50525-2-11 H05V2V2D3-F
# N3 s1 i7 y' |% BCold impact test at -5 °C 9 Q: o" @2 G2 z1 X% i; E! W
For all types: Voltage test after bending test with 2000 V , U' O! `' A+ l7 y
--------------------------------------------------------------------------------------
5 C. |. w! Y0 J. |1 ^( b# e' nDIN EN 50525-2-12 H03VV(H2)H8-F 7 K, y F# D( v* R- S/ G
Cold impact test at -5 °C ! N' ^$ n8 i& @" S" q
new: non-compatibility test 2 U L/ X2 c U; O, T
New requirements for the marking after coiling 3 Q, p' f, M) v/ n
' j% E4 I; b7 J7 W/ K+ g, @+ p
DIN EN 50525-2-12 H05VV(H2)H8-F , L/ d8 U+ G& k- {+ N0 J" q
Cold impact test at -5 °C
z% R# F6 U% r. z" @! H! qNew requirements for the marking after coiling 8 J" A: q0 E5 Z+ H8 _1 S
( E$ m- f: }7 g( _, ODIN EN 50525-2-21 H05RR-F 3 ~( i S! x+ [/ s9 m+ n
new: cold bending test for the insulation at -35 °C 5 K5 j$ ~. F8 L
o \0 O6 }7 ?1 }5 X r
DIN EN 50525-2-21 H05RN-F
0 T" q3 O P5 m7 [. W1 d1 H. n7 t$ `new: cold bending test for the insulation at -35 °C
5 Y/ d3 v1 n- bnew: H05RN-F 4 x 0,75 and H05RN-F 4 x 1
9 q# n% Y: e6 J* y2 z
# ^! Z) K3 `% p2 rDIN EN 50525-2-21 H07RN-F, H07RN-F vieladrig ! [- U% U' r5 q8 u8 @* \
new: cold bending test for the insulation at -35 °C 6 l) G t4 e3 R; W/ B% R2 x; m5 q
1 l* |0 j4 S1 t7 V4 }3 j
DIN EN 50525-2-21 H07RN8-F 0 [2 g" r0 {! q" d: @- E
new: cold bending test for the insulation at -35 °C
& F% a [' d) B+ f! E R6 d/ q T. c% O6 ~2 z) @
DIN EN 50525-2-21 H05BQ-F 2 S# G' K+ S3 l* [. ?- h# I: i
no changes : [! v% E0 J7 R
# Z7 l }0 C4 Z$ `
DIN EN 50525-2-21 H07BQ-F
3 X. J( b* H5 M- S9 Gno changes 1 u- L) I8 g" P8 A: S( Z: P5 l
% \9 X+ d. ]5 f4 s
DIN EN 50525-2-21 H05GG(H2)-F
: M% f* ^; j" ano changes ; z% b# h W- R6 Z9 r
, [2 l5 g! R* q) U4 Q7 {8 e; [5 C
DIN EN 50525-2-21 H05BB-F
8 O3 |& H& M9 h" e8 h3 L/ lno changes . Q/ w( [, `( Y
' _9 p5 l" i4 r% [' ] Y+ ZDIN EN 50525-2-21 H07BB-F
9 r; f: ^. X7 P$ Zno changes
$ p5 d: C. |; i' L) F2 L+ Z Q! q8 a5 F0 U, A
DIN ENDIN EN 50525-2-21 H05BN4-F - }0 m& n8 D1 B% G% G J2 u% C
no relevant changes
9 |# h; E- G4 W/ s0 n% X& R# j( W8 d: L4 ?2 u( |* j
DIN EN 50525-2-21 H07BN4-F, H07BN4-F multi core 0 }( a# i8 {* V3 ?, R3 F
no relevant changes & p9 u: x. c0 x4 ]
--------------------------------------------------------------------------------------
! ~4 z# ]8 f5 I9 i; dDIN EN 50525-2-22 H03RT-H
5 p, ]. z4 ]( J4 `# Dno changes % d9 d1 H9 ]4 q
H05RR-H und H03V4V4-H withdrawn
0 ^/ A) d2 ?6 L3 B* S8 ]' n" Q-------------------------------------------------------------------------------------- 7 ?) L* A4 a5 K2 d8 M- w
DIN EN 50525-2-31 H05V-U/-R/-K & Q/ T6 m) F. I6 _' E
new: Cold impact test at -5 °C ( o3 o- ~, u+ X. Z) x
) @7 E4 N! J/ N- F, {
DIN EN 50525-2-31 H07V-U/-R/-K
- c; Z8 D3 ]3 e( z2 Y$ m# ^: d) fCold impact test at -5 °C (new: -K)
! ?; n+ n; r& r; o& i7 v: p/ S5 }! B- V% r* x( ^
DIN EN 50525-2-31 H05V2-U/-R/-K
2 u b& b/ V2 s) s4 L! i5 inew: Cold impact test at -5 °C
; C0 `3 ~7 k2 h" i, I/ R' k; R* J }, }
DIN EN 50525-2-31 H07V2-U/-R/-K 0 v5 I/ B: h; M( \# l4 D! J2 P
Cold impact test at -5 °C (new: -K) + _2 c' n3 N# Q1 Q* g) p
--------------------------------------------------------------------------------------
6 T U" h& w) i% ^# e/ TDIN EN 50525-2-41 H05S-U/-K 6 c6 o7 s/ V. L# o+ R
no changes
4 S z: O$ x' _' ~, Q6 k
; |7 L' i m2 ] @% p& sDIN EN 50525-2-41 H03S-K 9 _6 @" q# F9 \( ?8 g
no changes
" _8 A5 ~7 b, `& N2 ^6 ?
6 ?" H+ k9 g; Y6 RDIN EN 50525-2-41 H05SJ-U/-K
* ~# q3 @5 ]$ d; U2 Yno changes
5 m- l' C! G9 L8 Y/ K, e8 Q/ K# u
! R$ e- R* o, m( E' `% ]/ `4 NDIN ENDIN EN 50525-2-41 H05SS-K * k/ k2 [% ~8 V/ J% D. H
no changes
! h, h: L+ \4 { `-------------------------------------------------------------------------------------- . P' \* }& a) R6 z N4 ?" a+ R
DIN EN 50525-2-42 H07G-U/-R/-K 1 G! Q; U6 N* K9 x( F- X; @
Cold impact test at -5 °C
( W, C: y* P9 T9 J
8 U* w* n- u- ODIN EN 50525-2-42 H05G-U/-K
5 F) X1 {* w; g NCold impact test at -5 °C
) D* B; r1 @, N, r: C5 _-------------------------------------------------------------------------------------- . |8 N1 h8 @( i6 b9 o+ `' h5 ~
DIN EN 50525-2-51 H05VV5-F 7 B5 F5 k$ L7 N0 Z! m4 }7 Z- M% y
The cable shall be marked with the code designation ``H05VV5-F``
8 I* E2 M% F- _( L, d2 k, l8 lCold impact test at -5 °C
! f. F$ J- ^$ M& p$ q0 Z8 q# x: f- j+ ]# i! O
DIN EN 50525-2-51 H05VVC4V5-K 9 ^% H- [6 R- `
The cable shall be marked with the code designation ``H05VVC4V5-K`` $ }% Y/ ~( F2 z" K( C+ ]
Cold impact test at -5 °C ) w$ q4 t6 R4 Z. Q0 k7 U! W: ~
changed calculation procedure for cables which number of cores does not belong to the preferred : \- H5 H/ ]; c8 i9 J% j
ones
8 g1 X$ M; q) f0 a( }: K0 {-------------------------------------------------------------------------------------- $ Q( D: E/ x) }
DIN EN 50525-2-71 H03VH-Y 9 ^) b6 O8 N3 s/ ~
new: Cold impact test at -5 °C 4 L: {7 \- k5 }$ _/ P
-------------------------------------------------------------------------------------- ' I& ~$ c" y# D! k( S: P B4 h
DIN EN 50525-2-72 H03VH7H-F
2 C; [! H7 t YCold impact test at -5 °C
4 Z8 Z F |3 I) P+ H( _4 h/ ~0 b--------------------------------------------------------------------------------------
. {7 ~- B* V- Q" JDIN EN 50525-2-81 H01N2-D/E
! w6 U% ^0 }3 z; z: h! cextension to 240 mm² 6 R' ^. o' @2 L
DIN EN 50525-2-82 H03RN-F ; r: F. W& J% x; Y3 Q+ Y" l( M) O# B
new: Cold bending test for the insulation at -35 °C ; D# x+ O5 q5 d+ I. p. y
) F m8 m" y6 G( U$ V, E4 s/ X
DIN EN 50525-2-82 H05RN(H2)-F
/ l& }/ Q$ e2 B. i Z, Qnew: Cold bending test for the insulation at -35 °C
, J! v" m4 z, V$ e4 j--------------------------------------------------------------------------------------
1 E1 c- l* @ t' ]2 W/ Y: F4 BDIN EN 50525-2-83 H05SS-F; H05SST-F - K) V" E( S" m1 J' W6 p
The insulation shall be a single layer
( L" D' `% K( y* ~, d& V: k0 O' B2 }0 z, L3 `% L
DIN EN 50525-2-83 H05SSD3-K; H05SSD3T-K
% E% r* g1 a4 y O/ Y. pThe insulation shall be a single layer
- _0 P6 u3 S+ a--------------------------------------------------------------------------------------
& ? S$ E" J) z; l$ c/ oDIN EN 50525-3-11 H03Z1Z1(H2)-F
! S ^: z& V; R# `: e* p* [Cold impact test at -5 °C " Y6 M5 W( E) X+ n
& A$ s; N7 k, G u6 E8 e$ N8 H, pDIN EN 50525-3-11 H05Z1Z1(H2)-F
+ i" a& M. M* N" \1 O/ KCold impact test at -5 °C
2 F) p# R1 j9 |# t1 t+ W! Z0 N; zVoltage test after bending test with 2000 V
# W0 [& q. ~$ O1 D5 D--------------------------------------------------------------------------------------
3 u& y" K$ R4 ?; \DIN EN 50525-3-21 H07ZZ-F + I) L5 {" g$ h$ H% C$ f
new temperature for compatibility test: 7 d at 100 ± 2 °C (old: 80 ± 2 °C)
- [% x/ S5 e. t. P% d9 l--------------------------------------------------------------------------------------
- Q- s& O( B' Q( f% fDIN EN 50525-3-31 H07Z1-U/-R * s5 N0 d3 a2 W: @/ }* @; A
Cold impact test at -5 °C
/ T) |# r" m* z6 G5 d( c0 u1 g* K) b4 R9 N. _8 h3 {
DIN EN 50525-3-31 H07Z1-K
2 L' H2 [) v4 SCold impact test at -5 °C
4 b* ~1 `. z: ]5 i% h% K: o( Z9 c! g; }
DIN EN 50525-3-31 H07Z1-U/-R
7 I) c! d. a. O! z/ WCold impact test at -5 ° , k+ T% ~5 j9 X( }
* u7 p% }( w2 ZDIN EN 50525-3-31 H07Z1-K
/ V- C. X0 U& J5 w: m+ H9 }: `. E( y. SCold impact test at -5 °C
' C- F3 L1 y7 e5 T* r, T3 n-------------------------------------------------------------------------------------- 8 l( Q( E9 {5 o g7 ?2 K
DIN EN 50525-3-41 H07Z-U/-R
' C# j8 B/ k" A& R! W8 v5 ~4 u3 _no changes 3 [8 g3 M3 n1 L# f" i2 b5 [
5 ` \; z% ?# _- g/ @% }2 lDIN EN 50525-3-41 H07Z-K
# D- d" y3 K, r. O8 x" kno changes ' G( V0 T6 S5 Q5 k1 U% t! V
, B8 y( f2 Z; mDIN EN 50525-3-41 H05Z-U : i Q/ P% `) h/ p! J# x: E
no changes
( x9 i0 J( D+ z; P; F& ]
; f3 o3 z7 ]( J- Z' c) V2 cDIN EN 50525-3-41 H05Z-K
$ Z6 ]3 k" `0 f1 Q: V& e) H% Zno changes 4 v, B; L+ H( e6 U/ K/ x5 R, S
/ J1 J' H& A( U$ N2 l6 Z5 c- Z* a: e' t3 C( Q
|
评分
-
查看全部评分
|