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| PDSH 858
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1 q4 H l0 Y: k7 L$ E* t | Material with equivalent characteristics* R8 @+ j, b. Y# z
| 4.11.4+ q2 x6 v) o7 {, k
| 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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, h- a5 z" m# X- q. E! a7 ~Standard(s):% s! W5 A( U4 g6 x
IEC 60598-1 All editions! r6 i% `" W5 r9 m' e% E t! ^
Subclause(s): 4.11.40 P }, p& [7 Y8 C2 S0 a
No. Year PDSH 0858 2010+ L2 M9 I# y& H: B: R; @9 |
Category: LITE Developed by: ETF5 OSM/LUM
/ F2 d- S# x1 ~9 \+ S8 h# uSubject:
1 | |0 \5 g- d3 X, z8 M8 MMaterial with equivalent characteristics
+ L$ O3 s0 v$ K, fKey words:
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- Equivalent characteristics+ g( o$ R+ ?! O# W$ X
- Conductive material
1 k# s8 D8 d4 i# A) qTo be approved at the 49th CTL Plenary Meeting, in 2012
! G/ e* f/ V2 _* v0 ^5 e, ^1 GQuestion:' h% C3 P( ^- [. @: h/ ~
What is meant by “the material having at least equivalent characteristics”?
4 T; W3 l4 i, IDecision:
4 R" u7 b. i/ f/ s' H6 I' VIn principle, any conductive material can be used (aluminium, steel, bronze) provided that the cross
9 Q h, q2 h5 R1 dsectional area is sufficient. End material must have appropriates surface finishing for corrosion resistance./ {/ a; a$ \% I2 x" V
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