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| DSH 395
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| Separation of TNV-3 and SELV circuitry
) x: A% G! h0 B3 M | 2.3.2
3 C. o& f2 M+ v | 60950(ed.3)" ^. s* f, y9 ^% s$ v
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Standard(s):! N3 w$ L2 o- p' h0 g- R
IEC 60950 (1999) 3rd Ed.: L- T8 ?5 F+ @3 U
Sub clause(s):
& o3 F, B( h' \1 T9 r4 C2.3.2
: b8 S& v y3 {# qSheet No.5 M. v" } d$ D/ v( p
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Subject:
, [& D/ A1 ^, A2 y' B: ~9 TSeparation of TNV –3 and SELV& d* Q. o! S' I3 S% k0 U; I
circuitry
1 X/ \# q9 x2 ]Key words:
- e5 {, d# v' z5 j% u- Separation of TNV-3 circuit
, n% c& j5 ^; e- q7 N$ L3 j; @and SELV circuit' e ^, c% d' f
Decision taken at the 39th
& [* ~4 p. r' E; W& t3 w# C8 ?6 pmeeting 2002
% X( a* R3 ^$ x! B& C8 SQuestion:
0 B8 Q7 k$ G' W8 W) l/ ]+ l1. Is it permitted to demonstrate that a TNV -3 circuit is adequately separated from a SELV circuit by
1 m+ {2 Z! O0 I$ gmeans of single fault testing, in the situation where the spacings do not meet the requirements for basic
2 p7 y) i+ h; q9 rinsulation? (The dielectric strength test is still required under Subclause 6.2.1.)
' j1 P8 R" X- A( R2. If so, is it required under the compliance paragraph to short circuit the insulation between the TNVcircuit0 S1 r6 A! W, X% l8 N. ^# t7 n
and the SELV circuit at all points which do not meet the criteria for basic insulation, before$ p* j% j8 p0 L7 a4 R! @
carrying out the tests?
1 e. g5 [; P* u, |& r7 A* G3. If short circuiting the insulation before carrying out fault tests results in the equipment passing the tests,/ }! t/ z8 U* I5 A5 O0 @
whereas carrying out the fault tests without short circuiting the insulation would result in the equipment) i/ z5 y# W0 p* R8 P
failing the test, should the insulation be short circuited?
+ B0 _- G( C& ^Rationale:; o3 p8 i9 Q7 V1 k0 A$ {; \
1. Paragraph 1 of Sub-clause 2.3.2 requires that separation between a TNV-3 and a SELV circuit be such- s" }! Z0 F5 C! v4 J! z S
that in the event of a single fault, the SELV circuit remains below TNV-3 limits. Paragraph 2 of Subclause- l8 p% h* D/ E+ F* E
2.3.2 states that basic insulation will achieve this, but other solutions are not excluded.
: b0 A1 W( ?5 W! J) |Equipment is not required to meet either Paragraph 2 or 3. It can meet the single fault conditions stated
: P: Z" ^0 G. j M, d M/ G; pin Paragraph one and in the compliance paragraph.
9 }% y; k" P7 J2 S! y! U2. According to the compliance paragraph, before carrying out the single fault tests, insulation which does
! \7 P @* K2 c. s. L8 U0 fnot meet the requirements for basic insulation is short circuited. Presumably this does not mean that9 O/ f5 L0 I3 W* }0 y! W& |- [
short circuits are to be applied between all tracks and components in the entire TNV-3 and SELV
4 O) n/ R# f% d$ F) Dcircuitry which do not meet basic insulation, but that the insulation at the point where the TNV-3 circuit
+ u8 N' K$ f7 dmeets the SELV circuit is short-circuited.2 X) p7 L9 p& a1 n" @& S
3. It is possible to envisage a situation where short circuiting the insulation between TNV-3 and SELV! y. j2 y4 e1 H+ `! F, r9 d
could cause the TNV-3 voltages to be lowered. Fault tests under this condition would not represent the2 K3 b- ?1 K, V& V; Q m* B" Z
worst case possible fault condition
- ^8 Y" h0 P! BDecision:
+ @8 i! M* |6 n6 D$ t$ Q$ E1. It is permitted to demonstrate compliance with Subclause 2.3.2 by means of single fault testing.
; x1 K8 ^9 [+ O0 s/ m* ]. aThe limits in 2.3.1.b) shall not be exceeded in normal or single fault conditions.$ o; U8 ^# J; u5 w
2. Before carrying out single fault testing of components and insulation, insulation between TNV-3 and
& [6 [- p6 ?& jSELV circuits not meeting the requirements of Basic insulation should be short circuited if this results in$ r$ z6 K) `! S( [
a worst case voltage measurement at accessible parts of SELV and TNV-1 circuits, and at accessible
0 n8 g& y& S; F Rconductive parts during subsequent fault testing.4 g6 o- U1 b7 @) K& G$ _2 Y
3. If the single fault test would be more severe if carried out without short circuiting the insulation, the test
; v9 {" U! m6 k3 J+ X* i# W' D$ [should be done without short circuiting the insulation.
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