5-312
G60 Generator Protection System
GE Multilin
5.9 TRANSDUCER INPUTS AND OUTPUTS
5 SETTINGS
5
•
RTD INPUT H1 TYPE
: This setting specifies the RTD type. Four different RTD types are available: 100
Ω
Nickel, 10
Ω
Copper, 100
Ω
Platinum, and 120
Ω
Nickel. Refer the table below for reference temperature values for each type.
•
RTD INPUT H1 APPLICATION
: This setting allows each individual RTD to be assigned to a group application. This is
useful for applications that require group measurement for voting. A value of “None” specifies that the RTD will operate
individually and not part of any RTD group. All RTDs programmed to “Stator” are used for RTD biasing of the G60 ther-
mal model. Common groups are provided for rotating machines applications such as ambient, bearing, group 1, or
group 2. If the
RTD INPUT H1 TRIP VOTING
setting value is “Group”, then it is allowed to issue a trip if
N
– 1 RTDs from the
same group also pick up, where
N
is the number of enabled RTDs from the group.
•
RTD INPUT H1 ALARM TEMPERATURE
: This setting specifies the temperature pickup level for the alarm stage.
•
RTD INPUT H1 ALARM PKP DELAY
: This setting specifies time delay for the alarm stage until the output can be
asserted.
•
RTD INPUT H1 TRIP TEMPERATURE
: This setting specifies the temperature pickup level for the trip stage.
•
RTD INPUT H1 TRIP PKP DELAY
: This setting specifies time delay for the trip stage until the output can be asserted.
Table 5–36: RTD TEMPERATURE VS. RESISTANCE
TEMPERATURE
RESISTANCE (IN OHMS)
°C
°F
100 OHM PT
(DIN 43760)
120 OHM NI
100 OHM NI
10 OHM CU
–50
–58
80.31
86.17
71.81
7.10
–40
–40
84.27
92.76
77.30
7.49
–30
–22
88.22
99.41
82.84
7.88
–20
–4
92.16
106.15
88.45
8.26
–10
14
96.09
113.00
94.17
8.65
0
32
100.00
120.00
100.00
9.04
10
50
103.90
127.17
105.97
9.42
20
68
107.79
134.52
112.10
9.81
30
86
111.67
142.06
118.38
10.19
40
104
115.54
149.79
124.82
10.58
50
122
119.39
157.74
131.45
10.97
60
140
123.24
165.90
138.25
11.35
70
158
127.07
174.25
145.20
11.74
80
176
130.89
182.84
152.37
12.12
90
194
134.70
191.64
159.70
12.51
100
212
138.50
200.64
167.20
12.90
110
230
142.29
209.85
174.87
13.28
120
248
146.06
219.29
182.75
13.67
130
266
149.82
228.96
190.80
14.06
140
284
153.58
238.85
199.04
14.44
150
302
157.32
248.95
207.45
14.83
160
320
161.04
259.30
216.08
15.22
170
338
164.76
269.91
224.92
15.61
180
356
168.47
280.77
233.97
16.00
190
374
172.46
291.96
243.30
16.39
200
392
175.84
303.46
252.88
16.78
210
410
179.51
315.31
262.76
17.17
220
428
183.17
327.54
272.94
17.56
230
446
186.82
340.14
283.45
17.95
240
464
190.45
353.14
294.28
18.34
250
482
194.08
366.53
305.44
18.73
Summary of Contents for Multilin g60
Page 10: ...x G60 Generator Protection System GE Multilin TABLE OF CONTENTS INDEX ...
Page 32: ...1 22 G60 Generator Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Page 160: ...4 30 G60 Generator Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Page 486: ...5 326 G60 Generator Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Page 518: ...6 32 G60 Generator Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Page 532: ...7 14 G60 Generator Protection System GE Multilin 7 2 TARGETS 7 COMMANDS AND TARGETS 7 ...
Page 748: ...D 10 G60 Generator Protection System GE Multilin D 1 IEC 60870 5 104 APPENDIX D D ...
Page 760: ...E 12 G60 Generator Protection System GE Multilin E 2 DNP POINT LISTS APPENDIX E E ...