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Ceiec Electric Technology
+4
RO
High-order Byte: Minute
UINT16
0 to 59
Low-order Byte: Second
0 to 59
+5
RO
Millisecond
UINT16
0 to 999
Table 5-29 Max-Min-LOG Data Structure
5.11.3 Data Recorder Data Structure
Offset
Property
Description
Format
Note
+0
RO
Parameter 1
INT32
/
+2
RO
Parameter 2
INT32
/
……
RO
……
INT32
/
+2N
RO
Parameter N (N=1 to 16)
INT32
/
+2N+1
RO
High-order Byte: Year
UINT16
0-99 (Year-2000)
Low-order Byte: Month
1 to 12
+2N+2
RO
High-order Byte: Day
UINT16
1 to 31
Low-order Byte: Hour
0 to 23
+2N+3
RO
High-order Byte: Minute
UINT16
0 to 59
Low-order Byte: Second
0 to 59
+2N+4
RO
Millisecond
UINT16
0 to 999
Table 5-30 DR-LOG Data Structure
5.11.4 Energy Log Data Structure
Offset
Property
Description
Format
Note
+0
RO
Parameter 1
INT32
-
+2
RO
Parameter 2
INT32
-
……
RO
……
INT32
-
+2N
RO
Parameter N (N=0 to 5)
INT32
-
+2N+1
RO
High-order Byte: Year
UINT16
0-99 (Year-2000)
Low-order Byte: Month
1 to 12
+2N+2
RO
High-order Byte: Day
UINT16
1 to 31
Low-order Byte: Hour
0 to 23
+2N+3
RO
High-order Byte: Minute
UINT16
0 to 59
Low-order Byte: Second
0 to 59
+2N+4
RO
Millisecond
UINT16
0 to 999
Table 5-31 Energy Log Data Structure
5.11.5 Waveform Recorder Setup Data Structure
The WF data contains the secondary side value. The Voltage data returned is 10 times of the actual
secondary Voltage and the Current data is 1000 times of the actual secondary Current. Therefore,
the primary side Voltage and Current values are calculated using the following formulas:
Primary Voltage Value = Voltage Data × PT Ratio ÷ 10
Primary Current Value = Current Data × CT Ratio ÷ 1000
Offset
Property
Description
Format
Note
+0
RO
Trigger Mode
UINT16
0=Disabled*