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, ?! |( d( k# {- u& H' s$ D | Batteries
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, E5 X6 u$ A6 ^; M2 h3 ^ | 61010-1(ed.1);am1;am2
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Standard:. s* A& r9 `% K) r+ V; b2 `7 y
IEC 61010-1:1990 +A1:1992 + A2. x2 D( S! L r9 Y* O0 s
:1995
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13.2.2' Q7 `1 j, V( \' m. G) W
Sheet n. 356( {. l7 N( w$ A! U& \; |8 b+ U
Page 1(1)
0 O. A4 l% \: a! n: DSubject:
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/ c# K1 u; ?3 @1 M5 Q8 bKey words:: @1 Z+ g8 Z+ g+ u! b
- Explosion
( F9 R# w5 s# M7 A# X- Fire hazard7 `: Q Q O6 `% s& W/ {
- Charge state
0 R$ q3 k" J& a0 z8 mDecision taken by
, I4 o+ p# w _0 x/ T% h; AETF3 and confirmed
. h9 x+ c: q% n a& _by CTL at its 38th* |) Y) M8 c) ?, [ ^
meeting, in Toronto. z( b$ M) k5 o
Question:' q. d/ l) h7 c- H8 Y9 ]
The state of charge of the battery will affect the result obtained. How do laboratories
3 B1 E- s- I; T/ X9 v- ~' qdetermine the initial charge condition?% x t. W! A: e- N% `3 }
Decision:. a# Q0 Q4 f; D6 a, p6 u
It was agreed that the battery data should be assessed to establish the worst case condition
4 C5 d+ Z& I( S4 j; E/ band that the battery should be arranged to be in that condition.
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