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| PDSH 858
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' I9 Q/ j A# |, x+ e L- K/ m | Material with equivalent characteristics
$ E3 q2 p7 W- x. U' q' e! U0 F | 4.11.4, W; i6 E" u8 k% d' l4 w
| 60598-1(ed.3);am1 & 60598-1(ed.4);am1 & 60598-1(ed.5) & 60598-1(ed.6);am1 & 60598-1(ed.7)
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Standard(s):
. M9 v& f/ Q0 b/ t: X1 S) aIEC 60598-1 All editions
8 u* N& l8 d+ l% Q" kSubclause(s): 4.11.4' R3 i- y/ B9 c0 c1 [! u- L+ H; `
No. Year PDSH 0858 20101 V% M; \+ B* b
Category: LITE Developed by: ETF5 OSM/LUM" x% O1 _5 k, M$ |: v7 b
Subject:
7 {) V% o4 n* ~ [Material with equivalent characteristics9 k3 C+ R, D# I. V6 Q, R( H
Key words:
7 C; I' v: c% H; w9 i w! `- Material
# v$ h$ v, u8 P# A6 h. Z; \- Equivalent characteristics
; J( C' J3 T' Q; L- Conductive material+ v: U3 w2 J# F/ i6 ]' S/ n8 [: `
To be approved at the 49th CTL Plenary Meeting, in 20126 I% |. ?- p9 R+ z: v
Question:
+ W. z7 Z7 [" LWhat is meant by “the material having at least equivalent characteristics”?$ T+ K2 e$ `8 k
Decision:- S" _) Q4 G' ?6 p6 S# {' V7 A* I
In principle, any conductive material can be used (aluminium, steel, bronze) provided that the cross5 Y) P1 p) G- W9 i1 q3 w
sectional area is sufficient. End material must have appropriates surface finishing for corrosion resistance.
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