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本帖最后由 qij1979 于 2018-4-8 15:23 编辑 m ^) L; _6 e# i; S: P
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5.3.1.2 ; h+ c* z: D/ S8 q) x3 I* ~: q
Replace the first dashed list item with the following new text:+ }: R; j9 f5 x+ g* A2 [/ j
– the minimum cross-sectional area may be less than 0,4 mm2 if overheating of the wire
' B# x# S/ K% [conductor insulation is prevented under normal and short circuit operating conditions in& P" c7 z9 S* A$ d8 T: ^
accordance with the tests of 5.4;
( [( l+ c( o J1 v$ y5 O; v8 H; n. EAdd, at the end of 5.3.7, the following new Clause 5.4: 4 Z3 k$ @! L! \/ R
5.4 Test to determine suitability of conductors having a reduced cross-sectional area
$ w& P3 p" [0 yTo determine suitability of conductors having a reduced cross-sectional area, connected to
3 }6 M) b' w7 x9 K5 b, U8 Bcontrolgear that limits the current to 2 A, the following test shall be conducted:
4 J [7 d0 c7 w5 A, Fa) disconnect the conductors being evaluated as close as practical to the lights source in the4 ~6 I. g8 A' U+ d$ p% n8 v2 L- |8 z9 {
luminaire and attach a resistive load using minimum 1 mm2 cross section test leads; these
" l8 F& J' p% S' E2 K# _$ Eleads shall be routed out of the luminaire in a manner that will have the least impact on
* M+ _( [+ G# H. `temperatures within the luminaire;
' q ~: y$ P9 Z( _b) adjust the resistive load to measure the maximum output current of the control gear,
' w1 e+ `( \" fmaximum measured current shall not exceed 2,5 A; / @3 e7 l# E; ~5 ~. J+ _
c) with the resistive load set to draw maximum output current, conduct the thermal test in& u7 S8 P/ ~& I( s
accordance with 12.4. (see Figure 33); 1 s: W! `. V$ A' d; e8 g# W
d) the resistive load is then set to 0 Ω (short circuit) and the thermal test repeated in* s7 M, h+ m6 G' a; G
accordance with 12.4 (see Figure 33); 2 M$ ]) W4 ]% d r6 ~% i
In no case shall the temperature of the luminaire wiring insulation exceed the limits stated in
6 ?. Y6 S- o5 [( S4 FTable 12.2 nor shall there be any indication of damage to luminaire wiring. 5 b$ n- C Z$ g
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