8-84
745 Transformer Management Relay
GE Power Management
8.3 MODBUS MEMORY MAP
8 COMMUNICATIONS
8
F53
16 bits
UNSIGNED VALUE,
3 DECIMAL PLACES
Example: 1.234 stored as 1234
F54
16 bits
FORCE LED STATE
xxxx xxxx 1111 1111
LED On/Off State (0 = Off, 1 = On)
xxxx xxxx xxxx xxx1
LED #1 (Top)
xxxx xxxx xxxx xx1x
LED #2
xxxx xxxx xxxx x1xx
LED #3
xxxx xxxx xxxx 1xxx
LED #4
xxxx xxxx xxx1 xxxx
LED #5
xxxx xxxx xx1x xxxx
LED #6
xxxx xxxx x1xx xxxx
LED #7
xxxx xxxx 1xxx xxxx
LED #8 (Bottom)
F55
16 bits
FRONT PANEL KEY
0000 0000 0000 0000 0 = '0'
0000 0000 0000 0001 1 = '1'
0000 0000 0000 0010 2 = '2'
0000 0000 0000 0011 3 = '3'
0000 0000 0000 0100 4 = '4'
0000 0000 0000 0101 5 = '5'
0000 0000 0000 0110 6 = '6'
0000 0000 0000 0111 7 = '7'
0000 0000 0000 1000 8 = '8'
0000 0000 0000 1001 9 = '9'
0000 0000 0000 1010 10 = '.'
0000 0000 0000 1011 11 = 'Value Up'
0000 0000 0000 1100 12 = 'Value Down'
0000 0000 0000 1101 13 = 'Message Up'
0000 0000 0000 1110 14 = 'Message Down'
0000 0000 0000 1111 15 = 'Next'
0000 0000 0001 0000 16 = 'Enter'
0000 0000 0001 0001 17 = 'Escape'
0000 0000 0001 0010 18 = 'Setpoints'
0000 0000 0001 0011 19 = 'Actual'
0000 0000 0001 0100 20 = 'Reset'
0000 0000 0001 0101 21 = 'Help'
F56
16 bits
INPUT ASSERT FLAGS
xxxx xxxx xxxx xxx1
Input 1
(0 = Not Asserted, 1 = Asserted)
xxxx xxxx xxxx xx1x
Input 2
(0 = Not Asserted, 1 = Asserted)
Table 8–7: 745 DATA FORMATS (Sheet 21 of 35)
FORMAT
CODE
APPLICABLE BITS
DEFINITION
xxxx xxxx xxxx x1xx
Input 3
(0 = Not Asserted, 1 = Asserted)
xxxx xxxx xxxx 1xxx
Input 4
(0 = Not Asserted, 1 = Asserted)
xxxx xxxx xxx1 xxxx
Input 5
(0 = Not Asserted, 1 = Asserted)
xxxx xxxx xx1x xxxx
Input 6
(0 = Not Asserted, 1 = Asserted)
xxxx xxxx x1xx xxxx
Input 7
(0 = Not Asserted, 1 = Asserted)
xxxx xxxx 1xxx xxxx
Input 8
(0 = Not Asserted, 1 = Asserted)
xxxx xxx1 xxxx xxxx
Input 9
(0 = Not Asserted, 1 = Asserted)
xxxx xx1x xxxx xxxx
Input 10
(0 = Not Asserted, 1 = Asserted)
xxxx x1xx xxxx xxxx
Input 11
(0 = Not Asserted, 1 = Asserted)
xxxx 1xxx xxxx xxxx
Input 12
(0 = Not Asserted, 1 = Asserted)
xxx1 xxxx xxxx xxxx
Input 13
(0 = Not Asserted, 1 = Asserted)
xx1x xxxx xxxx xxxx
Input 14
(0 = Not Asserted, 1 = Asserted)
x1xx xxxx xxxx xxxx
Input 15 (0 = Not Asserted, 1 =
Asserted)
1xxx xxxx xxxx xxxx
Input 16 (0 = Not Asserted, 1 =
Asserted)
F57
16 bits
OUTPUT RELAY OPERATE FLAGS
xxxx xxxx xxxx xxx1
Output Relay 1
(0 = Not Operated, 1 = Operated)
xxxx xxxx xxxx xx1x
Output Relay 2
(0 = Not Operated, 1 = Operated)
xxxx xxxx xxxx x1xx
Output Relay 3
(0 = Not Operated, 1 = Operated)
xxxx xxxx xxxx 1xxx
Output Relay 4
(0 = Not Operated, 1 = Operated)
xxxx xxxx xxx1 xxxx
Output Relay 5
(0 = Not Operated, 1 = Operated)
xxxx xxxx xx1x xxxx
Output Relay 6
(0 = Not Operated, 1 = Operated)
xxxx xxxx x1xx xxxx
Output Relay 7
(0 = Not Operated, 1 = Operated)
xxxx xxxx 1xxx xxxx
Output Relay 8
(0 = Not Operated, 1 = Operated)
xxxx xxx1 xxxx xxxx
Self-Test Relay
(0 = Not Operated, 1 = Operated)
F58
16 bits
DEMAND METER TYPE
Table 8–7: 745 DATA FORMATS (Sheet 22 of 35)
FORMAT
CODE
APPLICABLE BITS
DEFINITION
Summary of Contents for 745 TRANSFORMER MANAGEMENT RELAY
Page 30: ...2 8 745 Transformer Management Relay GE Power Management 2 3 SECURITY 2 GETTING STARTED 2 ...
Page 210: ...7 36 745 Transformer Management Relay GE Power Management 7 2 BLOCK DIAGRAMS 7 SCHEME LOGIC 7 ...
Page 322: ...9 12 745 Transformer Management Relay GE Power Management 9 3 USING 745PC 9 745 PC SOFTWARE 9 ...
Page 396: ...A 4 745 Transformer Management Relay GE Power Management A 1 FIGURES AND TABLES APPENDIXA A ...
Page 400: ...C 2 745 Transformer Management Relay GE Power Management C 1 WARRANTY INFORMATION APPENDIXC C ...
Page 406: ...vi 745 Transformer Management Relay GE Power Management ...
Page 407: ...GE Power Management 745 Transformer Management Relay NOTES ...