6F2S1915 (0.46)
GRZ200 (Soft 031 & 032)
- 179 -
in section (v).
(iii)
Operate time of IDMT
The dependent time in the IDMT is defined by Equation (2.6-4). (ref IEC 60255-151):
𝑡(𝐼) = 𝑇𝑀𝑆 × {[
k
(I I
s
⁄ )
α
− 1
] + c}
(2.6-4)
where:
t = operating time for constant current I (seconds),
I = energizing current (amperes),
Is = earth fault current setting (amperes),
TMS = time multiplier setting,
k, α, c = constants defining curve.
The nine pre-programmed standard characteristic curve are defined in Table 2.6-2. In
addition, one original (user-programmable) curve can be applied. One curve can be chosen for
each EF stage. Figure 2.6-3 illustrates these characteristic curves. For example, the user
should set one for the scheme switches [
EF1-Timer
]. (That is, “
IEC-NI
” is for IEC Normal
Inverse, “
IEC-VI
” for IEC Very Inverse, “
IEC-EI
” for IEC Extremely Inverse, “
UK-LTI
” for UK
Long Time Inverse, “
IEEE-MI
“ for IEEE Moderately Inverse, “
IEEE-VI
” for IEEE Very Inverse,
“
IEEE-EI
” for IEEE Extremely Inverse, “
US-CO2
” for US CO2 short time inverse, “
US-CO8
” for
US CO8 inverse, and “
Original
” for user-programmable characteristic.)
In the IDMT operation, the user can also program the characteristic using time-
multiplier-setting (TMS) for the required operate time. For example, the IEC characteristic is
selected, the user can set the TMS value using the setting [
EF1-TMS-IEC
] (incidentally, the
default value of the TMS is 1.00). The other TMSs are also available by the [
EF1-TMS-UK
],
[
EF1-TMS-IEEE
], [
EF1-TMS-US
] and [
EF1-TMS-ORG
].
Table 2.6-2 Constants for IDMT
Curve type
(IEC 60255-151)
Curve Description
k
α
c
A
IEC Normal Inverse (IEC-NI)
0.14
0.02
0
B
IEC Very Inverse (IEC-VI)
13.5
1
0
C
IEC Extremely Inverse (IEC-EI)
80
2
0
-
UK Long Time Inverse (UK-LTI)
120
1
0
D
IEEE Moderately Inverse (IEEE-MI)
0.0515
0.02
0.114
E
IEEE Very Inverse (IEEE-VI)
19.61
2
0.491
F
IEEE Extremely Inverse (IEEE-EI)
28.2
2
0.1217
-
US CO8 inverse (US-CO8)
5.95
2
0.18
-
US CO2 short time inverse (US-CO2) 0.02394
0.02
0.01694
Содержание GR 200 Series
Страница 1047: ...6F2S1915 0 46 GRZ200 Soft 031 032 1026 Figure 8 3 4 Screen shot from GR TIEMS ...
Страница 1354: ...6F2S1915 0 46 GRZ200 Soft 031 032 1333 Appendix 1 Signal list for common function ...
Страница 1369: ...6F2S1915 0 46 GRZ200 Soft 031 032 1348 Unit mm Panel cut out for 1 2 case size Figure 2 2 3 Panel cutout figure 1 2 size case ...
Страница 1410: ...6F2S1915 0 46 GRZ200 Soft 031 032 1389 This page is intentionally blank ...
Страница 1480: ...6F2S1915 0 46 GRZ200 Soft 031 032 1459 Appendix 6 Ordering ...
Страница 1497: ...6F2S1915 0 46 GRZ200 Soft 031 032 1476 Appendix 7 Technical data ...
Страница 1518: ...6F2S1915 0 46 GRZ200 Soft 031 032 1497 Appendix 8 Manufacture setting ...
Страница 1520: ...6F2S1915 0 46 GRZ200 Soft 031 032 1499 Appendix 9 Matrix between VCT terminals and relay applications ...
Страница 1523: ...6F2S1915 0 46 GRZ200 Soft 031 032 1502 Appendix 10 CT requirement ...
Страница 1531: ...6F2S1915 0 46 GRZ200 Soft 031 032 1510 Appendix 12 Engineering exercise ...
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