A-164
float contract_baro; /* Average Contract Day baro pressure */
float avg_base_density; /* Average Day base density */
float avg_line_density; /* Average Day flowing density */
float avg_dayrec_tfrq; /* Average Day turbine frequency */
}
DAYRECORD;
3.
LCP Integral – this is the square root of the static pressure * differential pressure / flowing
temperature. For Selectable Units this field is always calculated as:
static
pressure: bar
diff
pressure:
mbar
temperature:
deg
Kelvin
4.
The units for this group are dependent on the value of the heating select bit accessed via
register app.6.5. For a “0” the group is HV Volume, for “1” the group is HV Mass.
5.
If the transducer is a gage transducer and gage logging is selected then the value logged here
will be the log period average pressure – log period average barometric pressure. The units will
be those defined in the absolute pressure group.
Tube Event Registers
ARRAY DESCRIPTION USAGE
252
Event Log Record
See note 1)
Tube Event Registers Usage Notes:
1.
Tube Event Log Record definition –
typedef struct
{
unsigned long date;
/* Julian Date/Time */
unsigned char flags;
/* Event Flags */
unsigned int sn;
/* Sequence Number */
unsigned int code;
/* Event Code */
unsigned char oldval[4]; /* Previous Value */
unsigned char newval[4];
/* Current Value */
unsigned char vcode;
/* Verification Code */
}
EVTRECORD;
Enron AGA3 Selectable Units Tube Registers (Rev AA)
The following default MRM files are built using File Utilities – Modbus Slave Register Editor
and are loaded during the save and restore operation for Enron SU Xseries units.
Reference Configuration File:
XRC – 2101662.
EnronEvt: SU3EnEvt, Type = 6 (mbEvent), Reg = 32, APP.109.0
Event acknowledge is a set boolean to Reg = 32, APP.109.0
EnronDay: SU3EnDay, Type = 5 (mbDayLogRec), Reg = 701, APP.107.0
EnronHr:
SU3EnHr, Type = 5 (mbDayLogRec), Reg = 702, APP.108.0
SU3E1028 – (1001-1028)
SU3E3068 – (3001-3068)
Summary of Contents for XRC6490
Page 1: ...2100802 001 AB TOTALFLOW XSeries Remote Controller User s Manual ...
Page 6: ...iv B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 10: ...viii B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 19: ...1 5 Standard Enclosure Cont RC 6790 X Figure 1 2 Model XRC6790 Continued on Next Page ...
Page 41: ...1 27 Totalflow Input Output Modules Cont Figure 1 16 XRC6990 Inside View ...
Page 42: ...1 28 B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 64: ...2 22 B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 86: ...4 12 Replacing XRC 195 Board Cont Figure 4 5 XRC Board Connections ...
Page 88: ...4 14 B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 112: ...5 24 12V Communication Supply Voltage Test Cont Figure 5 9 XRC 195 Communication Wiring ...
Page 292: ...A 176 B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 340: ...B 48 B B Bl lla a an n nk k k P P Pa a ag g ge e e ...
Page 342: ...C 2 B B Bl lla a an n nk k k P P Pa a ag g ge e e ...