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GE Multilin
M60 Motor Protection System
5-151
5 SETTINGS
5.6 GROUPED ELEMENTS
5
–
TCU
end
= TCU value dictated by the hot/cold curve ratio when the motor is running. This value is 0 when the motor
is stopped).
–
t
= time in minutes.
–
= cool time constant (running or stopped per current motor status and corresponding
COOL TIME CONSTANT RUN-
NING
and
COOL TIME CONSTANT STOPPED
settings).
–
I
eq
= equivalent motor heating current
–
overload_pickup = overload pickup setpoint as a multiple of FLA
–
hot / cold = hot/cold curve ratio
Figure 5–59: THERMAL MODEL COOLING
•
HOT/COLD SAFE STALL RATIO:
The motor manufacturer will sometimes provide thermal limit information for a hot/
cold motor. The algorithm will use this data if this setting is programmed. The value entered for this setting dictates the
level at which thermal capacity used will settle for current that is below the motor service factor times FLA. When the
motor is running at a level that is below this limit thermal capacity used will rise or fall to a value based on
I
equivalent
(average three phase RMS and the selected setting. Thermal capacity used will either rise at the fixed rate of 5% per
minute or fall as dictated by the running cool time constant.
(EQ 5.16)
808705A2.CDR
0
25
50
75
100
0
30
60
90
120
150
180
Time in Minutes
T
h
er
m
a
l
C
ap
a
c
it
y
U
s
e
d
Cool Time Constant= 15 min
TCused_start= 85%
Hot/Cold Ratio= 80%
Ieq/Overload Pickup= 100%
0
25
50
75
100
0
30
6
0
90
120
150
180
Time in Minutes
T
h
e
rm
al
C
a
p
a
ci
ty
U
s
ed
Cool Time Constant= 15 min
TCused_start= 85%
Hot/Cold Ratio= 80%
Ieq/Overload Pickup= 80%
0
25
50
75
100
0
30
6
0
90
120
150
180
Time in Minutes
T
h
e
rm
al
C
a
p
a
ci
ty
U
s
ed
Cool Time Constant= 30 min
TCused_start= 85%
Hot/Cold Ratio= 80%
Motor Stopped after running Rated Load
TCused_end= 0%
0
25
50
75
100
0
30
6
0
90
120
150
180
Time in Minutes
T
h
e
rm
al
C
a
p
a
ci
ty
U
s
ed
Cool Time Constant= 30 min
TCused_start= 100%
Hot/Cold Ratio= 80%
Motor Overload
TCused_end= 0%
MOTOR TRIPPED
100% LOAD
MOTOR STOPPED
80% LOAD
TCU
end
I
eq
1
hot
cold
-----------
–
100%
=
Содержание M60 UR Series
Страница 10: ...x M60 Motor Protection System GE Multilin TABLE OF CONTENTS ...
Страница 98: ...3 40 M60 Motor Protection System GE Multilin 3 3 DIRECT INPUT OUTPUT COMMUNICATIONS 3 HARDWARE 3 ...
Страница 128: ...4 30 M60 Motor Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 238: ...5 110 M60 Motor Protection System GE Multilin 5 4 SYSTEM SETUP 5 SETTINGS 5 Figure 5 29 DISCONNECT SWITCH SCHEME LOGIC ...
Страница 410: ...5 282 M60 Motor Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 413: ...GE Multilin M60 Motor Protection System 6 3 6 ACTUAL VALUES 6 1 OVERVIEW 6 FIRMWARE REVISIONS See page 6 29 ...
Страница 440: ...6 30 M60 Motor Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Страница 452: ...7 12 M60 Motor Protection System GE Multilin 7 2 TARGETS 7 COMMANDS AND TARGETS 7 ...
Страница 462: ...9 8 M60 Motor Protection System GE Multilin 9 2 BATTERIES 9 MAINTENANCE 9 ...
Страница 474: ...A 12 M60 Motor Protection System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Страница 584: ...B 110 M60 Motor Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Страница 614: ...C 30 M60 Motor Protection System GE Multilin C 7 LOGICAL NODES APPENDIX C C ...
Страница 630: ...E 10 M60 Motor Protection System GE Multilin E 1 IEC 60870 5 104 PROTOCOL APPENDIX E E ...
Страница 642: ...F 12 M60 Motor Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...
Страница 644: ...G 2 M60 Motor Protection System GE Multilin G 1 RADIUS SERVER CONFIGURATION APPENDIX G G ...
Страница 652: ...H 8 M60 Motor Protection System GE Multilin H 3 WARRANTY APPENDIX H H ...
Страница 662: ...x M60 Motor Protection System GE Multilin INDEX ...