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本帖最后由 qij1979 于 2018-4-8 15:23 编辑 3 P$ A" x- D/ q' t, r5 i
V4 {% j2 f3 r% B2 M7 o0 Q4 A
5.3.1.2
# w" I: ?' `5 sReplace the first dashed list item with the following new text:( G3 \9 K2 Z. n0 {& y P$ G
– the minimum cross-sectional area may be less than 0,4 mm2 if overheating of the wire * n! E- m/ J5 B2 z/ B+ m1 T
conductor insulation is prevented under normal and short circuit operating conditions in
& ]& d/ k1 c$ T% k3 jaccordance with the tests of 5.4;
' M/ d. v7 @; Z$ yAdd, at the end of 5.3.7, the following new Clause 5.4:
0 g$ L0 v7 P, u" j0 R) a5.4 Test to determine suitability of conductors having a reduced cross-sectional area 2 \4 l2 o) M1 w$ _7 n. E- @
To determine suitability of conductors having a reduced cross-sectional area, connected to/ _6 P, |& B0 D1 `7 [1 N
controlgear that limits the current to 2 A, the following test shall be conducted:
# f6 O$ C* P% e8 O$ i- [9 ^a) disconnect the conductors being evaluated as close as practical to the lights source in the% R7 _2 a z3 \
luminaire and attach a resistive load using minimum 1 mm2 cross section test leads; these
' N' U3 Y* ]( U3 ~) r4 Bleads shall be routed out of the luminaire in a manner that will have the least impact on6 B# I5 A% D5 Q
temperatures within the luminaire;
: K' O+ }0 i9 m/ O/ H" S- p3 mb) adjust the resistive load to measure the maximum output current of the control gear,/ M7 c' a/ Q$ c0 @$ f
maximum measured current shall not exceed 2,5 A;
0 y& O+ z5 X: Q4 q- Wc) with the resistive load set to draw maximum output current, conduct the thermal test in
% |5 j3 P+ Z% s9 ~" r/ i X. taccordance with 12.4. (see Figure 33); ' v+ Y; ^( X7 e9 ^# H8 N5 z
d) the resistive load is then set to 0 Ω (short circuit) and the thermal test repeated in; q! c. D; O0 D8 G4 C! U
accordance with 12.4 (see Figure 33);
6 ~6 m4 E2 R1 w4 u, rIn no case shall the temperature of the luminaire wiring insulation exceed the limits stated in$ G* G; F9 Q: t" B' G7 n" Q: q
Table 12.2 nor shall there be any indication of damage to luminaire wiring. & t) T0 h) e5 ^! ^ T1 I
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