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| Batteries7 @) ^ A. u5 i" N5 w; j( f
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| 61010-1(ed.1);am1;am2, H8 ]* U9 A" x/ q) p
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( V- i( J( G+ W2 J) w, TStandard: i. y" m/ S6 N( t9 ?
IEC 61010-1:1990 +A1:1992 + A2
. {" Z& p {- F L* |; I# p:1995
5 r1 x U5 a/ I# USub clause:
" y8 D9 A- s. |" p+ `% P13.2.2
, z' }% |# ~/ hSheet n. 356
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Subject:
3 x/ T* A& |% e0 n; a% |Batteries
7 b* } p+ S W4 X& Y* g5 u: x0 ZKey words:
3 D/ `2 R0 V+ D- Explosion: x6 G* x1 s9 V7 Z: f* x) ]) |1 J
- Fire hazard
4 A# y& l+ {6 Q- Charge state, D; z. K! ?7 |7 L
Decision taken by
: e5 }2 M% H) @ETF3 and confirmed; g. u/ y4 M- F! r5 X# I
by CTL at its 38th
, Q- J% E6 |. H' l/ p5 ~meeting, in Toronto5 ^. k: b0 `1 J" L) a
Question:
6 B* G { s$ lThe state of charge of the battery will affect the result obtained. How do laboratories L7 f8 D0 d# ]4 y+ N
determine the initial charge condition?0 Q) T/ s( j b$ q
Decision:( i$ E) i3 m+ R: Q
It was agreed that the battery data should be assessed to establish the worst case condition$ L0 W& C$ ^0 z) |
and that the battery should be arranged to be in that condition.; T: d& K2 |; }
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