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2.1 General
39
7UT613/63x Manual
C53000-G1176-C160-2
Restricted Earth
Fault Protection
The
Restricted earth fault protection
(address
113
REF PROT.
) com-
pares the sum of the phase currents flowing into the three-phase protected object
together with the current flowing into the earthed starpoint. Further information is given
in section 2.3.
Note that this is not applicable to the protected object busbar (address
105
PROT.
OBJECT
=
1ph Busbar
and address
105
PROT. OBJECT
=
3ph Busbar
).
Restricted Earth
Fault Protection 2
Likewise, address
114
REF PROT. 2
is valid for the second possible restricted earth
fault protection
Dynamic Pickup
Switching for Over-
current Protection
The dynamic parameter switching (address
117
COLDLOAD PICKUP
) permits tempo-
rary switching to alternative pickup values in case of overcurrent protection function
for phase currents, zero sequence currents and earth currents. Further information is
given in section 2.6.
Overcurrent Pro-
tection for Phase
Currents
To select the characteristic group according to which the phase overcurrent time pro-
tection is to operate use address
120
DMT/IDMT Phase
. This protection is not
applicable for single-phase busbar protection (address
105
PROT. OBJECT
=
1ph
Busbar
). If it is only used as definite time overcurrent protection (O/C), set
Definite
Time
. In addition to the definite time overcurrent protection an inverse time overcur-
rent protection may be configured, if required. The latter operates according to an IEC-
characteristic (
TOC IEC
), to an ANSI-characteristic (
TOC ANSI
) or to a user-defined
characteristic. In the latter case, the trip time characteristic (
User Defined PU
) or
both the trip time characteristic and the reset time characteristic (
User def. Reset
)
are configured. For the characteristics please refer to Technical Data.
Overcurrent Pro-
tection for Phase
Currents 2 and 3
In the case of 7UT613/63x it is possible to use two additional phase overcurrent pro-
tection functions. One overcurrent protection can thus be implemented independently
on various sides of the main protection object or three-phase measuring locations. In
the case of
DMT/IDMT Phase2
a selection can be made under the address
130
from
the same options as for the first overcurrent protection. The same applies under
address
132
for
DMT/IDMT Phase3
. The selected options can be equal to or different
for all of the three overcurrent protection functions.
Overcurrent Pro-
tection for Zero Se-
quence Currents
The type of characteristics used for the zero sequence (residual) overcurrent time pro-
tection can be set in address
122
DMT/IDMT 3I0
. The same options are available as
for the phase overcurrent protection. However, for zero sequence current time over-
current protection the settings may be different to the settings selected for phase time
overcurrent protection. This protection function always acquires the residual current
3
I
0 of the supervised side. This current is calculated from the sum of the correspond-
ing phase currents. This measuring location may be different from that of the phase
overcurrent protection. Note that the zero sequence overcurrent protection is not pos-
sible on single-phase protected objects (address
105
PROT. OBJECT
=
1 phase
transf.
or
1ph Busbar
).
Overcurrent Pro-
tection for Zero Se-
quence Currents 2
and 3
At 7UT613/63x it is possible to use two additional zero sequence overcurrent protec-
tion functions. Zero sequence current can thus be detected independently on various
three-phase measuring locations. For
DMT/IDMT 3I0 2
under address
134
the
same options can be selected again independently. The same applies under address
136
for
DMT/IDMT 3I0 3
. The selected options can be equal to or different from the
three overcurrent protection functions.
Содержание SIPROTEC 7UT613 series
Страница 16: ...Contents 16 7UT613 63x Manual C53000 G1176 C160 2 Literature 631 Glossary 623 Index 633 ...
Страница 30: ...1 Introduction 30 7UT613 63x Manual C53000 G1176 C160 2 ...
Страница 506: ...A Appendix 506 7UT613 63x Manual C53000 G1176 C160 2 7UT633 D E ...
Страница 508: ...A Appendix 508 7UT613 63x Manual C53000 G1176 C160 2 7UT633 P Q ...
Страница 510: ...A Appendix 510 7UT613 63x Manual C53000 G1176 C160 2 7UT635 D E ...
Страница 512: ...A Appendix 512 7UT613 63x Manual C53000 G1176 C160 2 7UT635 P Q ...
Страница 515: ...A 2 Terminal Assignments 515 7UT613 63x Manual C53000 G1176 C160 2 7UT633 B ...
Страница 516: ...A Appendix 516 7UT613 63x Manual C53000 G1176 C160 2 7UT633 B Figure A 7 General diagram 7UT633 panel surface mounting ...
Страница 517: ...A 2 Terminal Assignments 517 7UT613 63x Manual C53000 G1176 C160 2 7UT633 N ...
Страница 518: ...A Appendix 518 7UT613 63x Manual C53000 G1176 C160 2 7UT633 N Figure A 8 General diagram 7UT633 panel surface mounting ...
Страница 519: ...A 2 Terminal Assignments 519 7UT613 63x Manual C53000 G1176 C160 2 7UT635 B ...
Страница 520: ...A Appendix 520 7UT613 63x Manual C53000 G1176 C160 2 7UT635 B Figure A 9 General diagram 7UT635 panel surface mounting ...
Страница 521: ...A 2 Terminal Assignments 521 7UT613 63x Manual C53000 G1176 C160 2 7UT635 N ...
Страница 522: ...A Appendix 522 7UT613 63x Manual C53000 G1176 C160 2 7UT635 N Figure A 10 General diagram 7UT635 panel surface mounting ...
Страница 622: ...A Appendix 622 7UT613 63x Manual C53000 G1176 C160 2 ...
Страница 632: ...Literature 632 7UT613 63x Manual C53000 G1176 C160 2 ...