GE Cable Box A016 1CG User Manual

g
GE Power Systems  
Custom ABB C3000/C0300 DPA  
Configuration Guide  
Document Number : A016-1CG  
Version : 1.00  
Revision : 2  
Date : 03.09.08  
Classification: General  
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Custom ABB C3000/C0300 DPA  
Configuration Guide  
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Table of Contents  
About this Guide  
Purpose of this Guide.................................................................................................................ix  
Who Should Use this Guide.......................................................................................................ix  
Additional Documentation..........................................................................................................x  
Overview  
Chapter 1: Configuration Tables  
1.1  
Configuration Sequence..................................................................................................2  
Chapter 2: Configuration the Port Configuration Table (A016_COM)  
Chapter 3: Configuring the C3000/C0300 DPA A016_XRF Table  
3.1  
General Information........................................................................................................5  
Chapter 4: Configuring the C3000/C0300 DPA A016_LRU Table  
Chapter 5: Configuring the C3000/C0300 DPA A016_GRP Table  
Chapter 6: Configuring the C3000/C0300 DPA A016SCAN Table  
Chapter 7: Configuring the C3000/C0300 DPA A016_DI Table  
General  
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Chapter 8: Configuring the C3000/C0300 DPA A016_AI Table  
Chapter 9: Configuration the C3000/C0300 DPA A016_ACC Table  
Chapter 10: Configuring the C3000/C0300 DPA A016_TC Table  
Chapter 11: Configuring the C3000/C0300 DPA A016_RL Table  
Chapter 12: Configuring the C3000/C0300 DPA A016_SP Table  
Appendix A: Error Messages  
A.1  
A.2  
Fatal Error Messages.....................................................................................................26  
Warning Messages ........................................................................................................46  
A016-1CG-1.00-2  
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List of Figures  
Figure 1. System Overview...........................................................................................................xii  
General  
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List of Tables  
Table 1 Name and Description of Tables Used..............................................................................1  
Table 2. C3000/C0300 A016_COM Configuration Table..............................................................3  
Table 3. Character Times at the selected Baud Rate.......................................................................4  
Table 4 C3000/C0300 A016_XRF Configuration Table................................................................5  
Table 5 A016_LRU Table Fields....................................................................................................7  
Table 6 A016_GRP Table Fields ...................................................................................................9  
Table 7 A016SCAN Table Fields .................................................................................................12  
Table 8 A016_DI Table Fields......................................................................................................13  
Table 9 A016_AI Table Fields......................................................................................................15  
Table 10 A016_ACC Table Fields................................................................................................17  
Table 11 A016_TC Table Fields...................................................................................................19  
Table 12 A016_RL Table Fields...................................................................................................21  
Table 13 A016_SP Table Fields ...................................................................................................23  
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About this Guide  
Purpose of this Guide  
This document describes all Custom ABB C3000/C0300 Data-Processing Application (DPA)  
configuration parameters. The Custom ABB C3000/C0300 configuration tables are discussed in  
terms of the data, which must be entered in order to create valid parameters for the Custom ABB  
C3000/C0300 DPA.  
Each configurable parameter for the Custom ABB C3000/C0300 is described along with the  
range of valid entries and a typical value where applicable.  
This document describes only the DPA-specific aspects of configuring a GE Power Systems  
device for use with the Custom ABB C3000/C0300 DPA. It does not describe the protocol or  
how to use Config Pro configuration system.  
If the information contained in this document is insufficient for your needs, refer to the section  
called Additional Documentation for a list of supplementary information.  
Who Should Use this Guide  
This guide is for use by persons who create configuration tables to customize the behaviour of  
the A016-1 C3000/C0300 DPA for emulation of the C3000/C0300 protocol in communications  
with master stations.  
General  
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Additional Documentation  
If you require more detail than this document provides, several supporting texts are available.  
These include:  
C3000/C0300 DPA Functional Specification (A016-1FS)  
Config Pro Configuration System User’s Guide (P012-0UG)  
WESDAC Interface Node (WIN+) User’s Guide (B008-1CG).  
Wesmaint II+ Configure Guide (B014-1CG)  
A016-1CG-1.00-2  
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Overview  
The C3000/C0300 DPA may be installed in GE Power Systems products, to provide emulation of  
the C3000/C0300 protocol in communications with an upstream master station. Status, Analog,  
and Accumulator data may be passed to the master; Analog, and Binary controls may be  
performed for the master.  
The C3000/C0300 DPA provides for definition of multiple Logical Remote Units (LRUs) within  
GE Power Systems products, each of which behaves as though it were a physically separate  
devices with its own address for communication with the host station. LRUs may work within  
separate areas within the overall WESDAC system database, or they may overlap and share data  
as required.  
On GE Power Systemsdevices where multiple communications ports are available for use, the  
C3000/C0300 DPA may be configured for multi-porting. Multi-porting allows the C3000/C0300  
DPA to be capable of responding on one or more communication ports to one or more master  
stations. Each communication port has its own defined set of LRUs, with each LRU having the  
same or different configurations. If two LRUs have the same configuration, then the same data is  
sent to both master stations.  
The C3000/C0300 DPA when resident in GE Power Systems along with the WESDAC Interface  
Node (WIN) application provides translation of data between the WIN database and a  
C3000/C0300 speaking host station. The WIN application and its database provide a consistent  
means of transferring data between different DPAs and Data Collection Applications (DCAs)  
within the GE Power Systems systems. For example, a WESDAC DCA may collect data from  
field devices via protocol X and provide the information to WIN. A DPA may then get the data  
from WIN and provide it to a host station via protocol Y (in this case C3000/C0300).  
Conversely C3000/C0300 control requests may be received from a master station and passed to  
WIN for execution. WIN may then pass these to a DCA, which utilize protocol X to have an end  
field device actually perform the physical control operation. The interaction between the  
C3000/C0300 DPA, WIN, and other applications resident within a typical WESDAC system is  
illustrated in the following figure:  
General  
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HOST  
Command  
WIN Response  
WIN Event  
WIN Response  
WIN Event  
Operator  
WESMAINT  
Request  
C3000  
Host  
C3000  
DPA  
DPA  
Response  
Displa  
WESMAINT  
Display  
y
(VT100)  
Data  
WIN  
WIN  
Command  
Command  
WESDAC  
C3000  
DPA Data  
WESDAC  
Tables  
Data  
Update  
WESDAC  
Tables  
Data  
Update  
Interface  
Node  
(WIN)  
DCA  
Command  
DCA  
Command  
Local I/O  
DCA Data  
DCA Data  
DCA  
Event  
DCA  
Event  
Data  
Data  
Data  
Local  
Hardware  
Collection  
Application  
(DCA)  
Request  
Request  
Local I/O  
DCA  
Remote  
Hardware  
DCA  
Response  
DCA  
Response  
Requested  
Data  
Requested  
Data  
Figure 1. System Overview  
A016-1CG-1.00-2  
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Chapter 1: Configuration Tables  
The C3000/C0300 DPA is configured by means of the tables, which contain all of its  
configuration data.  
The purpose of each configuration table is described in the following table:  
Table Name  
A016_COM  
Description  
This table contains parameters related to communication ports. One record is entered for each port the  
application uses.  
A016_XRF  
This table contains the cross-reference parameters between A016_LRU records and LRU addresses. One  
record is entered for each LRU to be addressed.  
A016_LRU  
A016_GRP  
This table contains parameters related to LRUs. One record is entered for each LRU in the system.  
This table contains parameters related to groups of points in LRUs. One record is entered for each data  
group on an LRU.  
A016SCAN  
This table contains parameters related to scan sections within groups. One record is entered for each scan  
section in a group.  
A016_DI  
A016_AI  
A016_ACC  
This table contains parameters to customize the use of status input points in the system. One record is  
entered for each status input point used.  
This table contains parameters to customize the use of analog input points in the system. One record is  
entered for each analog input point used.  
This table contains parameters to customize the use of accumulator input points in the system. One record  
is entered for each accumulator input point used.  
A016_TC  
A016_RL  
A016_SP  
This table contains parameters to customize the control out put points used for Trip or Close requests.  
One record is entered for each Trip/Close point used.  
This table contains parameters to customize the control out put points used for Raise or Lower requests.  
One record is entered for each Raise/Lower pair used.  
This table contains parameters to customize the analog and binary control output points used for  
Setpoint requests. One record is entered for each setpoint used.  
Table 1 Name and Description of Tables Used  
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1.1 Configuration Sequence  
The following is a list of the steps required to configure the A016-1 C3000/C0300 DPA:  
1. Edit the C3000/C0300 DPA configuration. Prepare it according to the guidelines in this  
document and the specific use for which the C3000/C0300 DPA is required.  
2. Edit the configuration for the other applications that will run on the product. Prepare them  
according to their own configuration guides.  
3. Generate the configuration and download it to the product using a Config Pro Configuration  
System. The list of applications to be compiled must include the C3000/C0300 DPA,  
application A016-1.  
4. Restart the system. If the C3000/C0300 DPA encounters an error during its initialization, it  
will log a message to the WESMAINT Error Log and then, depending on the severity of the  
error, terminate or continue with its run-time function.  
5. Check for error messages. Log into the WESMAINT maintenance interface, select the  
System Functions item from the Main menu, and then select the Error Log item from the  
System Functions menu. If any error messages are displayed, correct the problem as  
described in Appendix A: Error Messages and repeat steps 3 through 5. When the  
C3000/C0300 DPA has successfully validated all the configuration parameters, configuration  
is complete.  
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Chapter 2: Configuration the Port  
Configuration Table (A016_COM)  
The A016_COM table provides information for communication ports, which are used by the  
C3000/C0300 DPA. It contains one record for each communication port configured to customize  
the communications related settings for the C3000/C0300 DPA. The fields contained in the table  
are described in the table below:  
Table 2. C3000/C0300 A016_COM Configuration Table  
Field  
Range  
Description  
Port ID  
COM1 – COM7  
ASCII name which defines the communication port name in the device.  
A016-1 DPA actual baud rate cannot be changed and is set to 9600 baud.  
However, this setting can be used to change the RTS on time (pre  
transmission delay).  
Baud Rate  
110, 300, 600, 1200,  
1800, 2400, 4800,  
7200, 9600  
RTS on time = Pre-TX Char * 8000 / Baud Rate.  
Default setting should be 9600.  
Pre-TX Char  
0 to 500  
The number of Mark characters (8 bits of 1 = 0xFF), which is sent prior to  
each message transmission. Note that the last character send prior to each  
message is 0xFE to provide a start Space for master synchronization.  
Post-TX Char  
TPTM Bias  
0 to 500  
The number of Space characters (8 bits of 0 = Chars 0x00), which is sent  
immediately after each message transmission before dropping the carrier.  
-32767 to 32767  
-32767 to 32767  
The fine tuning (in 0.5 milli-seconds) of the remote turnaround delay time  
that allows time compatibility with different systems.  
TRX Bias  
The fine tuning (in 0.5 milli-seconds) of the remote time at end of received  
message that allows time compatibility with different systems.  
Any valid system  
Digital Output point  
or Undefined (-1).  
Comm Fail Output Point  
The system control DO point number, which is to be latched on when  
communications fail. The control point is in the on state (contact closed)  
when communications have failed, and in the off state (contact open)  
when communications are restored. The high entry limit is confined to the  
highest control point number configured in the system. The feature can be  
disabled by setting this to Undefined (-1).  
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Field  
Range  
10 to 3600  
Description  
Comm Fail Timer  
The amount of time in seconds that the C3000/C0300 DPA waits to  
receive an intelligible message from a master station before declaring  
that communications have failed for the affected communication port.  
This entry is ignored if the Fail Output option is Undefined (-1).  
LRU Offset  
Total LRUs  
Indexes into  
A016_XRF table.  
The one based offset from the first entry in the A016_XRF table, which  
corresponds to this port. The A016_XRF table is described in the next  
chapter.  
1 to 32767  
The number of LRUs communicating on this port. This entry is used in  
conjunction with the XRF Offset entry to determine the exact range of  
records in the A016_XRF table that this communication port is to utilize.  
The high entry limit is confined to the number of records in the  
A016_XRF table. Also the entered value, plus the XRF Offset entry, must  
not exceed the number of records in the A016_XRF table.  
Table 3. Character Times at the selected Baud Rate  
Baud Rate  
One Character Time(ms)  
110  
300  
91  
34  
17  
9
600  
1200  
1800  
2400  
4800  
7200  
9600  
6
5
3
2
2
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Chapter 3: Configuring the C3000/C0300  
DPA A016_XRF Table  
This chapter describes entries the user must provide in the A016_XRF table found in the  
C3000/C0300 DPA configuration.  
3.1 General Information  
The A016_XRF table provides information to cross-reference between communications ports and  
LRUs, which are used by the C3000/C0300 DPA. It contains one record for each LRU  
configured, and each record provides the station address to be used for the LRU and an offset into  
the A016_LRU table. The fields contained in the table are described in the following table:  
Field  
Range  
Description  
0x01 – 0x0F, -1  
LRU Address  
The hexadecimal address of the LRU associated with the entries of this record.  
This is the address used in protocol messages for this LRU. Entries accepted by  
the C3000/C0300 DPA correspond to the C3000/C0300 protocol valid address  
range. Entering -1 disables the LRU.  
LRU Offset  
Indexes into  
The one based offset from the first entry in the A016_LRU table, which  
A016_LRU table.  
corresponds to this record. The A016_LRU table is described in the next chapter.  
Table 4 C3000/C0300 A016_XRF Configuration Table  
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Chapter 4: Configuring the C3000/C0300  
DPA A016_LRU Table  
This chapter describes entries the user must provide in the A016_LRU table found in the  
C3000/C0300 DPA configuration.  
The A016_LRU table provides information for LRUs, which are used by the C3000/C0300 DPA.  
It contains one record for each LRU configured, for database customization. The fields contained  
in the table are described in the following table:  
Table 5 A016_LRU Table Fields  
Field  
Range  
Description  
Any valid system Digital  
Input point or Undefined  
(-1).  
Local/Remote  
Input  
The system DI point number, which is used to switch the LRU between local  
and remote operation. In local mode, LRU controls are disabled, and in  
remote mode, LRU controls are enabled. The high entry limit is confined to  
the highest status point number configured in the system. Entering Undefined  
(-1) disables the local/remote option and the LRU is always in remote mode  
(controls enabled).  
Local/Remote  
State  
0 to 1  
The state (0 or 1) of the local/remote input which corresponds to the local  
(controls disabled) mode. This entry is ignored if the local/remote option is  
disabled.  
Any valid system Digital  
Output point or  
Undefined (-1).  
Accum. Freeze  
Output  
The system control output point number (zero-based), which is to be pulsed  
on when an accumulator freeze (update) command is received from the  
master station. The high entry limit is confined to the highest control point  
number configured in the system. Entering -1 disables the freeze output  
option.  
Accum Freeze  
Time  
1 to 60000  
1 to 60  
The time duration in milli-seconds that the freeze output relay is pulsed on.  
This entry is ignored if the freeze output option is disabled.  
T/C Select  
Timeout  
The amount of time in seconds that the C3000/C0300 DPA allows execution  
of a trip or close request after enabling a control point selection.  
General  
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Field  
Range  
Description  
The maximum number of SOE events that can be buffered per group of points.  
Number of SOEs 10 to 255 (When SOE  
Methods is set to Time  
Correlated)  
10 to 2000 (When SOE  
Methods is set to Time  
Sync)  
Group Offset  
Group Count  
Indexes into A016_GRP The one based offset from the first entry in the A016_GRP table. The  
table.  
A016_GRP table is described in a later chapter.  
0 to 16  
The number of A016_GRP records which correspond to this LRU. This entry  
is used in conjunction with the LRU Group Offset entry to determine the  
exact range of records in the A016_GRP table that this LRU is to utilize.  
Possible entries accepted by the C3000/C0300 DPA are from 0 to 16, but the  
entered value, plus the LRU Group Offset entry, must not exceed the number  
of records in the A016_GRP table.  
SOE Methods  
Time Correlated or Time This entry sets the SOE reply method when the master station sends a SOE  
Sync  
data request or a Scan Data request.  
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Chapter 5: Configuring the C3000/C0300  
DPA A016_GRP Table  
This chapter describes entries the user must provide in the A016_GRP table found in the  
C3000/C0300 DPA configuration.  
The A016_GRP table provides information for groups of points associated with LRUs, which are  
used by the C3000/C0300 DPA. It contains one record for each group of points configured, for  
database customization. The fields contained in the table are described in the following table:  
Table 6 A016_GRP Table Fields  
Field  
Range  
Description  
Group Number  
Scan Offset  
0 to 15  
The group number of the group of points referenced by this record.  
Indexes into A016SCAN  
table.  
The one based offset from the first entry in the A016SCAN table. The  
A016SCAN table is described in a later chapter.  
0 to 32  
Scan Count  
The number of A016SCAN records which correspond to this group. This  
entry is used in conjunction with the Scan Offset entry to determine the  
exact range of records in the A016SCAN table that this group is to utilize.  
Possible entries accepted by the C3000/C0300 DPA are from 0 to 32, but the  
entered value, plus the Scan Offset entry, must not exceed the number of  
records in the A016SCAN table.  
T/C Offset  
T/C Count  
Indexes into A016_TC table.  
0 to 12  
The one based offset from the first entry in the A016_TC table. The  
A016_TC table is described in a later chapter.  
The number of A016_TC records which correspond to this group. This entry  
is used in conjunction with the T/C Offset entry to determine the exact  
range of records in the A016_TC table that this group is to utilize.  
Possible entries accepted by the C3000/C0300 DPA are from 0 to 12, but the  
entered value, plus the T/C Offset entry, must not exceed the number of  
records in the A016_TC table.  
R/L Offset  
Indexes into A016_RL table.  
The one based offset from the first entry in the A016_RL table. The  
A016_RL table is described in a later chapter.  
General  
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Field  
Range  
Description  
R/L Count  
0 to 3  
The one based offset from the first entry in the A016_RL table. The  
A016_RL table is described in a later chapter.  
Set Point Offset  
Set Point Count  
Indexes into A016_SP table.  
0 to 2  
The one based offset from the first entry in the A016_RL table. The  
A016_RL table is described in a later chapter.  
The number of A016_SP records which correspond to this group. This  
entry is used in conjunction with the SP Offset entry to determine the exact  
range of records in the A016_SP table that this group is to utilize. Possible  
entries accepted by the C3000/C0300 DPA are from 0 to 2, but the entered  
value, plus the SP Offset entry, must not exceed the number of records in  
the A016_SP table.  
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Chapter 6: Configuring the C3000/C0300  
DPA A016SCAN Table  
This chapter describes entries the user must provide in the A016SCAN table found in the  
C3000/C0300 DPA configuration.  
The A016SCAN table provides information for scan sections of groups associated with LRUs,  
which are used by the C3000/C0300 DPA. It contains one record for each scan section  
configured, for database customization. The fields contained in the table are described in the  
following table:  
General  
Full  
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Field  
Range  
Description  
Used to select the different types of data that can be returned in a scan selection. The  
first selection of all scan groups must be defined as Echo Master.  
Spare replies to the master station as all zeros.  
Section  
Type  
Echo Master  
CONITEL Poll Word  
SOE Poll Word  
Terminal Status Word  
Spare  
MCD Status Data  
Non-MCD status Data  
Analog Data  
Accumulator Data  
Entry is either ignored,  
or entry is a valid  
System point, depending  
on the Section Type.  
Table  
Offset  
Echo Master: Section offset entry is ignored.  
CONITEL Poll Word:  
SOE Poll Word:  
Terminal Status Word:  
Spare:  
Section offset entry is ignored.  
Section offset entry is ignored.  
Section offset entry is ignored.  
Section offset entry is ignored.  
MCD Status Data:  
The Section Offset entry defines the zero based offset  
from the first entry in the A016_DI table. The A016_DI  
table is described in a later chapter.  
Non-MCD status Data:  
Analog Data:  
The Section Offset entry defines the zero based offset  
from the first entry in the A016_DI table. The A016_DI  
table is described in a later chapter.  
The Section Offset entry defines the zero based offset  
from the first entry in the A016_AI table. The A016_AI  
table is described in a later chapter.  
Accumulator Data:  
The Section Offset entry defines the zero based offset  
from the first entry in the A016_ACC table. The  
A016_ACC table is described in a later chapter.  
Table 7 A016SCAN Table Fields  
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Chapter 7: Configuring the C3000/C0300  
DPA A016_DI Table  
This chapter describes entries the user must provide in the A016_DI table found in the  
C3000/C0300 DPA configuration.  
The A016_DI table provides information for system status input points, which are used by the  
C3000/C0300 DPA. The table contains one record for each system status input point to  
customize the usage of the point. The fields contained in the table are described in the following  
table:  
Field  
DI Point  
Range  
Description  
Any valid system Digital  
The system status input point number, which is used as one of the sources  
Input point or Undefined (-1). for a scan section. The high entry limit is confined to the highest system  
status input point configured in the system. Entering Undefined (-1)  
causes the LRU to always return a constant value for this point as it is not  
mapped to a real system status input point.  
Yes or No  
Invert  
Indicates if the System Status point value should be inverted by the DPA.  
Yes or No  
SOE Enable  
Indicates if the System Status point should be logged in the SOE buffer  
(SOE enabled) or not (SOE disabled).  
Table 8 A016_DI Table Fields  
General  
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Chapter 8: Configuring the C3000/C0300  
DPA A016_AI Table  
This chapter describes entries the user must provide in the A016_AI table found in the  
C3000/C0300 DPA configuration.  
The A016_AI table provides information for system analog input points, which are used by the  
C3000/C0300 DPA. It contains one record for each system analog input point to customize the  
usage of the point. The fields contained in the table are described in the following table:  
Table 9 A016_AI Table Fields  
Field  
Range  
Description  
Any valid system Analog  
The system analog input point number, which is used as the source for a  
Analog Input  
Point  
Input point or Undefined (- scan section. The high entry limit is confined to the highest system analog  
1).  
input point configured in the system. Entering -1 causes the LRU to always  
return a zero value for this point, as it is not mapped to a real system analog  
input point.  
Bipolar 2’s complement  
Bipolar sign/magnitude  
Unipolar  
The conversion mode specific to the system analog input point associated  
with this record entry. It can be one of three modes, as follows:  
Conversion  
Mode  
Bipolar 2's complement (11 bits + sign)  
Bipolar sign/magnitude (11 bits + sign)  
Unipolar (12 bits, no sign)  
0 to 5000  
The range used in converting the value of the system analog input point  
associated with this record entry to a C3000/C0300 protocol value via the  
formula:  
Range  
C3000/C0300 value = (AI value * range / divisor) + offset  
The typical entry is 2047, the full scale of the C3000/C0300 protocol for a  
Bipolar analog value.  
General  
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Field  
Range  
1 to 35000  
Description  
The divisor used in converting the value of the system analog input point  
associated with this record entry to a C3000/C0300 protocol value via the  
formula:  
Divisor  
C3000/C0300 value = (AI value * range / divisor) + offset  
The typical entry is 32767, the full-scale value of WIN database.  
The offset used in converting the value of the system analog input point  
associated with this record entry to a C3000/C0300 protocol value via the  
formula:  
Offset  
-5000 to 5000  
C3000/C0300 value = (AI value * range / divisor) + offset  
The typical entry is 00 for no offset.  
Dead Band  
1 to 5000  
0 to 5000  
If the C3000/C0300 protocol value of the system analog input point  
associated with this record entry changes by more than the dead band limit  
between master scans, the appropriate bit in the CONITEL polling word is  
set.  
Alarm Limit  
If the C3000/C0300 protocol value of the system analog input point  
associated with this record entry exceeds the range of the alarm limit; the  
appropriate bit in the CONITEL polling word is set.  
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Chapter 9: Configuration the  
C3000/C0300 DPA A016_ACC Table  
This chapter describes entries the user must provide in the A016_ACC table found in the  
C3000/C0300 DPA configuration.  
The A016_ACC table provides information for system accumulator input points, which are used  
by the C3000/C0300 DPA. The table contains one record for each system accumulator input  
point to customize the usage of the point. The fields contained in the table are described in the  
following table:  
Field  
Range  
Description  
Any valid system  
Accumulator Input point  
or Undefined (-1).  
The system accumulator input point number, which is used as the source for a  
scan section. The high entry limit is confined to the highest system accumulator  
input point configured in the system. Entering -1 causes the LRU to always  
return a zero value for this point as it is not mapped to a real system  
accumulator input point.  
ACC Point  
12 bit Accumulator  
Upper 12 bits  
Lower 12 bits  
Type  
Sets the accumulator to indicate that this record entry is either the top (Upper  
12 bits) or bottom part (Lower 12 bits) of a 24 bit accumulator. Setting to 12  
bit Accumulator indicates that the whole accumulator is only 12 bits long.  
Yes or No  
Freeze Enable  
No indicates that master requests for accumulator freeze does not cause  
transfer of running count buffer to frozen count buffer, Yes otherwise.  
Yes or No  
Freeze-reset  
Enabled  
No indicates that master requests for accumulator freeze with reset does not  
cause zeroing of the running count buffer, Yes otherwise.  
Transition, Pulse  
Counting  
Method  
Pulse indicates that pulse counting method is used in providing values to the  
master station. Transition indicates that transition counting method is used in  
providing values to the master station. Note that two transitions (changes of  
state) of the accumulator input point is counted as a pulse.  
Frozen buffer, Running  
buffer  
Counter Source  
Indicates if the running or frozen buffer is used in providing values to the  
master station.  
Table 10 A016_ACC Table Fields  
General  
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Chapter 10: Configuring the  
C3000/C0300 DPA A016_TC Table  
This chapter describes entries the user must provide in the A016_TC table found in the  
C3000/C0300 DPA configuration.  
The A016_TC table provides information for Trip/Close control output points, which are used by  
the C3000/C0300 DPA. The table contains one record for each Trip/Close control output point to  
customize the usage of the point. The fields contained in the table are described in the following  
table:  
Field  
Range  
Description  
Any valid system  
The system control output point number, which is used as the destination for a LRU  
DO Point  
Digital Output point or Trip/Close control point. The high entry limit is confined to the highest system control  
Undefined (-1).  
output point configured in the system. Entering Undefined (-1) disables Tripping or  
Closing of the protocol point corresponding to this record.  
1 to 60000  
Trip  
Duration  
The amount of time in milli-seconds that the control output contact is to operate for  
when a Trip is requested for the protocol point corresponding to this record.  
1 to 60000  
Close  
Duration  
The amount of time in milli-seconds that the control output contact is to operate for  
when a Close is requested for the protocol point corresponding to this record.  
T/C  
Operation  
Mode  
The Trip/Close (T/C) mode of operation uses the Master Trip and Close relays in  
conjunction with operation of the output relay. The configured Trip and Close  
durations are used. The control board hardware must be configured to correspond to  
this mode of operation.  
Latch  
Pulse  
The Latch mode of operation latches the output relay on or off. A Trip command from  
the master latches the point off and a Close command from the master will latch the  
point on. The configured Trip and Close durations are not used. The control board  
hardware must be configured to correspond to this mode of operation.  
The Pulse mode of operation does not use the Master Trip and Close relays in  
conjunction with operation of the output relay. The configured Trip and Close durations  
are used. The control board hardware must be configured to correspond to this mode of  
operation.  
Table 11 A016_TC Table Fields  
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Chapter 11: Configuring the  
C3000/C0300 DPA A016_RL Table  
This chapter describes entries the user must provide in the A016_RL table found in the  
C3000/C0300 DPA configuration.  
The A016_RL table provides information for Raise/Lower control output points, which are used  
by the C3000/C0300 DPA. The table contains one record for each Raise/Lower control output  
point to customize the usage of the point. The fields contained in the table are described in the  
following table:  
Table 12 A016_RL Table Fields  
Field  
Range  
Description  
Any valid system Digital  
The system control output point number, which is used as the  
Raise DO Point  
Output point or Undefined (-1). destination for a Raise DO control point. The high entry limit is confined  
to the highest system control output point configured in the system.  
Entering Undefined (-1) disables Raising of the protocol point.  
0 to 30000  
Raise Base  
Duration  
This is the base duration, in milliseconds, used to operate for when a  
Raise is requested for the protocol point corresponding to this record,  
via the formula:  
pulse duration = (inc. duration * mult.) + base duration  
where the inc. duration is also configurable and the mult. factor is  
specified in the master Raise/Lower request.  
1 to 30000  
Raise Inc.  
Duration  
This is the incremental duration, in milli-seconds, used to specify how  
long the control output contact is to operate for when a Raise is  
requested for the protocol point corresponding to this record, via the  
formula:  
pulse duration = (inc. duration * mult.) + base duration  
where the base duration is also configurable and the mult. factor is  
specified in the master Raise/Lower request.  
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Field  
Range  
Description  
The system control output point number which is used as the destination  
Any valid system Digital  
Lower DO Point  
Output point or Undefined (-1). for a LRU Lower control point. The high entry limit is confined to the  
highest system control output point configured in the system. Entering  
Undefined (-1) disables Lowering of the protocol point corresponding  
to this record.  
0 to 30000  
Lower Base  
Duration  
This is the base duration, in milli-seconds, used to specify how long the  
control output contact is to operate for when a Lower is requested for  
the protocol point corresponding to this record, via the formula:  
pulse duration = (inc. duration * mult.) + base duration  
where the inc. duration is also configurable and the mult. factor is  
specified in the master Raise/Lower request.  
1 to 30000  
Lower Inc.  
Duration  
This is the incremental duration, in milli-seconds, used to specify how  
long the control output contact is to operate for when a Lower is  
requested for the protocol point corresponding to this record, via the  
formula:  
pulse duration = (inc. duration * mult.) + base duration  
where the base duration is also configurable and the mult. factor is  
specified in the master Raise/Lower request.  
NOTE:  
The Raise/Lower command operates in the Pulse mode. The same relay number  
may be entered for both the Raise point and the Lower point if desired, but  
normally two different point relays are used. The C3000/C0300 DPA ensures that  
the Raise point relay is off before operating the Lower point relay, and vice versa.  
The WESDAC control board hardware must be configured to correspond to this  
mode of operation.  
A016-1CG-1.00-2  
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Chapter 12: Configuring the  
C3000/C0300 DPA A016_SP Table  
This chapter describes entries the user must provide in the A016_SP table found in the  
C3000/C0300 DPA configuration.  
The A016_SP table provides information for setpoints, which are used by the C3000/C0300  
DPA. The table contains one record for each setpoint to customize the usage of the point. The  
fields contained in the table are described in the following table:  
Table 13 A016_SP Table Fields  
Field  
Range  
Description  
If System point is set to Analog Output this field is the system analog  
output point number (zero-based), which is used as the destination for a  
LRU Setpoint. The high entry limit is confined to the highest system  
analog output point configured in the system.  
System point  
If System point set to Analog  
Output:  
Any valid system Analog  
Output point or Undefined (-1).  
If System point set to Digital  
Output:  
If options set to Digital Output this field is the point number of the first of  
twelve contiguous system control output points, which are used as the  
destination for a LRU Setpoint. The high entry limit is confined to 11 less  
than the highest system control output point configured in the system.  
Any valid system Digital Output  
point or Undefined (-1).  
If System point set to Analog  
Output:  
AO: 2’s complement  
AO: sign/magnitude  
AO: unipolar  
Options  
Specifies the setpoint output to either Analog Output or Digital Output’s  
output in either 2’s complement, sign magnitude, or unipolar format.  
If System point set to Digital  
Output:  
DO: 2’s comp. D20 Latch  
DO: sign/mag D20 Latch  
DO: unipolar D20 Latch  
DO: 2’s comp. Ext Latch  
DO: sign/mag. Ext Latch  
DO: unipolar Ext Latch  
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Field  
Range  
Description  
0 to 35000  
This field is used in conjunction with the Options entry. If the Options  
entry is set to Digital Output, this field is ignored, else this field is the  
range used in converting a C3000/C0300 protocol value to the value of  
the system analog output point associated with this record entry, via the  
formula:  
Range  
Analog Output value = (C3000/C0300 value * range / divisor) + offset  
The typical entry is 32767, the full scale value of WIN database.  
1 to 5000  
This field is used in conjunction with the Options entry. If the Options  
entry is set to DO, this field is ignored, else this field is the divisor used  
in converting a C3000/C0300 protocol value to the value of the system  
analog output point associated with this record entry, via the formula:  
Divisor  
Analog Output value = (C3000/C0300 value * range / divisor) + offset  
The typical entry is 2047, the full scale of the C3000/C0300 protocol for  
a Bipolar analog output.  
-30000 to 30000  
This field is used in conjunction with the Options entry. If the Options  
entry is set to AO, this field is the offset used in converting a  
C3000/C0300 protocol value to the value of the system analog output  
point associated with this record entry, via the formula:  
Offset  
Analog Output value = (C3000/C0300 value * range / divisor) + offset  
If the Options entry is set to DO, this field is the offset used in  
converting a C3000/C0300 protocol value to the value of the 12  
contiguous system control output points associated with this record  
entry, via the formula:  
Digital Output value = C3000/C0300 value + offset  
The typical entry is 0 for no offset.  
1 to 1000  
1 to 1000  
DO Operate  
Time  
If the options for the setpoint record are configured to perform a digital  
output setpoint via external latching relays, this field is used as the  
control pulse operation time in milliseconds for latching or de-latching  
the relays.  
If the options for the setpoint record are configured to perform a digital  
output setpoint via external latching relays, this field is used as the  
delay time in milliseconds between issuing a de-latch output and a  
subsequent latch output to the relays.  
DO Delay Time  
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Appendix A: Error Messages  
The C3000/C0300 DPA logs messages to the WESMAINT II Error Log display when run time  
errors occur. The messages are divided into two categories, the first being fatal error messages  
and the second being warning messages.  
Fatal errors messages are logged when the application is unable to recover from an error  
condition and must suspend operation. Warning messages are logged when an error is not severe  
enough to require that the program suspend operation, but functionality of the application may be  
compromised.  
When any of the messages listed in this appendix are logged to the Error Log display, they are  
prefixed with the C3000/C0300 DPA identifier "A016" or "A016-<y>-<zz> where <y> identifies  
a C3000/C0300 DPA sub-process and <zz> identifies a specific instance of the sub-process.  
The symbol <xx> shown in some of the error messages listed in this appendix represents a  
variable value. When the error is logged, the <xx> symbol is replaced by an alphanumeric value  
specific to the occurrence of the error.  
Many fatal errors may be remedied by the user as noted in the description of each error. Upon  
occasion however, it may be necessary to contact the GE Power Systems Customer Service  
Department in regard to a logged error. In this case the exact text of the message should be  
reported in order to assure correct diagnosis of the problem.  
General  
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A.1 Fatal Error Messages  
ERR 1000: TERMINATING, PRIMARY CONFIG NOT FOUND  
Why:  
The application cannot find its primary configuration information table A016_COM.  
Remedy:  
Review the section in this document about configuring the A016_COM table and verify the  
table has been correctly defined and loaded into memory. NOTE: The A016_COM table  
may be deleted from memory in order to intentionally disable the application.  
ERR 1001: NO A016_COM RECORDS FOUND  
Why:  
The application found an A016_COM configuration table in memory, but the table  
contained no records.  
Remedy:  
Ensure that at least one record has been defined and loaded into memory for the A016_COM  
table.  
ERR 1002: NO A016_XRF RECORDS FOUND  
Why:  
The application could not find any A016_XRF configuration table records in memory.  
Remedy:  
Ensure that at least one record has been defined and loaded into memory for the A016_XRF  
table.  
ERR 1003: NO A016_LRU RECORDS FOUND  
Why:  
The application could not find any A016_LRU configuration table records in memory.  
Remedy:  
Ensure that at least one record has been defined and loaded into memory for the A016_LRU  
table.  
A016-1CG-1.00-2  
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ERR 1004: NO A016_GRP RECORDS FOUND  
Why:  
The application could not find any A016_GRP configuration table records in memory.  
Remedy:  
Ensure that at least one record has been defined and loaded into memory for the A016_GRP  
table.  
ERR 1100: WIN OPEN FAIL, ERR = <xx>  
Why:  
The application cannot attach to WIN. Remedy:  
Contact the Customer Service Department and report this error.  
ERR 1101: CAN'T SPAWN PROCESS  
Why:  
The application cannot spawn a required communication port task or LRU task.  
Remedy:  
Contact the Customer Service Department and report this error.  
ERR 1102: CREATE EXCHANGE FAIL, ERR = <xx>  
Why:  
The application cannot create a required internal message exchange.  
Remedy:  
Contact the Customer Service Department and report this error.  
ERR 1103: CANNOT ALLOCATE RAM  
Why:  
The application cannot allocate required RAM memory.  
Remedy:  
Increase the amount of RAM available in the system or reduce the RAM requirements of  
the configured applications. If neither of these remedies is sufficient, contact the  
Customer Service Department and report the error.  
General  
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ERR 1104: Error creating message exchange  
Why:  
The application was not able to create a message exchange process.  
Remedy:  
Contact the Customer Service Department and report the error.  
ERR 1105: ERROR ATTACHING TO SEMAPHORE  
Why:  
The application was not able attach a semaphore to a LRU.  
Remedy:  
Contact the Customer Service Department and report the error.  
ERR 1106: ERROR ATTACHING TO SEMAPHORE  
Why:  
The application was not able attach a semaphore to the port data structure.  
Remedy:  
Contact the Customer Service Department and report the error.  
ERR 1200: PORT TASK, CAN'T OPEN PORT <xx> Why:  
The task for the indicated port can't open the port. Remedy:  
Ensure that the displayed text string represents a valid port for the GE Power Systems  
product being utilized, and that no other application is configured to use the same port. If  
the text string is valid and no other application is configured to use the port, contact the  
Customer Service Department and report the error.  
ERR 1201: PORT TASK, CAN'T INIT PORT <xx>  
Why:  
The task for the indicated port cannot initialize the communication settings or  
communication timing for the port after it had been opened successfully.  
Remedy:  
Contact the Customer Service Department and report this error.  
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ERR 1300: LRU TASK WIN OPEN ERR = <xx>  
Why:  
A LRU task cannot attach to WIN. Remedy:  
Contact the Customer Service Department and report this error.  
ERR 1301: LRU TASK REPORT ENABLE FAIL  
Why:  
A LRU task cannot enable reporting of binary input events from the WIN subsystem.  
Remedy:  
Contact the Customer Service Department and report this error.  
ERR 1400: SETPOINT TASK WIN OPEN ERR = <xx>  
Why:  
The setpoint task cannot attach to WIN. Remedy:  
Contact the Customer Service Department and report this error.  
ERR 2000: INVALID BAUD RATE, REC <xx>  
Why:  
The Baud Rate entry for the indicated A016_COM record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2001: INVALID PRE TX MARK, REC <xx>  
Why:  
The Pre-TX Mark Chars entry for the indicated A016_COM record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
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ERR 2002: INVALID POST TX SPACE, REC <xx>  
Why:  
The Post-TX Space Chars entry for the indicated A016_COM record number is not within  
the valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2003: INVALID COMM FAIL POINT, REC <xx>  
Why:  
The Fail Output entry for the indicated A016_COM record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2004: INVALID COMM FAIL TIME, REC <xx>  
Why:  
The Fail Time entry for the indicated A016_COM record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2005: INVALID XRF OFFSET, REC <xx>  
Why:  
The XRF Offset entry for the indicated A016_COM record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
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ERR 2006: INVALID LRU COUNT, REC <xx>  
Why:  
The LRU Count entry for the indicated A016_COM record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2007: INVALID OFFSET/COUNT, REC <xx>  
Why:  
The XRF Offset and LRU Count entries for the indicated A016_COM record number, in  
combination, are not within the valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
ERR 2008: DUPLICATE LRU ADDRESS, REC <xx>  
Why:  
The LRU address for the indicated A016_XRF record number is the same as another one for  
the same communications port. LRU addresses must be unique for all LRUs associated with  
a communications port.  
Remedy:  
Modify and download the configuration with correct entries in the specified configuration  
record.  
ERR 2100: INVALID ADDRESS, REC <xx>  
Why:  
The LRU Address entry for the indicated A016_XRF record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
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ERR 2101: INVALID OFFSET, REC <xx>  
Why:  
The LRU Offset entry for the indicated A016_XRF record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2200: INVALID LOCAL/REMOTE POINT, REC <xx>  
Why:  
The Local/Remote entry for the indicated A016_LRU record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2201: INVALID LOCAL STATE, REC <xx>  
Why:  
The Local State entry for the indicated A016_LRU record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2202: INVALID FREEZE POINT, REC <xx>  
Why:  
The Freeze Output entry for the indicated A016_LRU record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
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ERR 2203: INVALID FREEZE DURATION, REC <xx>  
Why:  
The Freeze Duration entry for the indicated A016_LRU record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2204: INVALID T/C TIMEOUT, REC <xx>  
Why:  
The T/C Timeout entry for the indicated A016_LRU record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2206: INVALID GROUP OFFSET, REC <xx>  
Why:  
The LRU Group Offset entry for the indicated A016_LRU record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2207: INVALID GROUP COUNT, REC <xx>  
Why:  
The LRU Group Count entry for the indicated A016_LRU record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
33  
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ERR 2208: INVALID GROUP OFFSET/COUNT, REC <xx>  
Why:  
The LRU Group Offset and LRU Group Count entries for the indicated A016_LRU record  
number, in combination, are not within the valid entry range described earlier in this  
document.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
ERR 2300: INVALID GROUP NUMBER, REC <xx>  
Why:  
The Group No entry for the indicated A016_GRP record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2301: INVALID SCAN COUNT, REC <xx>  
Why:  
The Scan Count entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
Full  
34  
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ERR 2302: INVALID SCAN OFFSET, REC <xx>  
Why:  
The Scan Offset entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2303: INVALID SCAN OFFSET/COUNT, REC <xx>  
Why:  
The Scan Offset and Scan Count entries for the indicated A016_GRP record number, in  
combination, are not within the valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
ERR 2304: INVALID T/C COUNT, REC <xx>  
Why:  
The T/C Count entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2305: INVALID T/C OFFSET, REC <xx>  
Why:  
The T/C Offset entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
35  
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ERR 2306: INVALID T/C OFFSET/COUNT, REC <xx>  
Why:  
The T/C Offset and T/C Count entries for the indicated A016_GRP record number, in  
combination, are not within the valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
ERR 2307: INVALID R/L COUNT, REC <xx>  
Why:  
The R/L Count entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2308: INVALID R/L OFFSET, REC <xx>  
Why:  
The R/L Offset entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2309: INVALID R/L OFFSET/COUNT, REC <xx>  
Why:  
The R/L Offset and R/L Count entries for the indicated A016_GRP record number, in  
combination, are not within the valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
Full  
36  
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ERR 2310: INVALID S/P COUNT, REC <xx>  
Why:  
The SP Count entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2311: INVALID S/P OFFSET, REC <xx>  
Why:  
The SP Offset entry for the indicated A016_GRP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2312: INVALID S/P OFFSET/COUNT, REC <xx>  
Why:  
The SP Offset and SP Count entries for the indicated A016_GRP record number, in  
combination, are not within the valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
ERR 2313: SECTION 1 NOT MASTER ECHO, REC <xx>  
Why:  
The first A016SCAN section mapped in the indicated A016_GRP record number is not  
defined as a master echo type.  
Remedy:  
Modify and re-download the configuration with correct entries in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
37  
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ERR 2314: INVALID SOE GROUP METHOD REC <xx>  
Why:  
The A016_GRP table has an invalid SOE group method. This may be caused by the  
corruption of the configuration table.  
Remedy:  
Rebuild and re-download the configuration. If the problem persists contact customer service.  
ERR 2400: INVALID SECTION TYPE, REC <xx>  
Why:  
The Section Type entry for the indicated A016SCAN record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2401: INVALID TABLE OFFSET, REC <xx>  
Why:  
The Section Offset entry for the indicated A016SCAN record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2500: INVALID POINT, REC <xx>  
Why:  
The DI Point Number entry for the indicated A016_DI record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
Full  
38  
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ERR 2501: INVALID OPTIONS, REC <xx>  
Why:  
The DI Point Options entry for the indicated A016_DI record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified  
configuration record.  
ERR 2600: INVALID POINT, REC <xx>  
Why:  
The AI Point Number entry for the indicated A016_AI record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2601: INVALID MODE, REC <xx>  
Why:  
The Conversion Mode entry for the indicated A016_AI record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2602: INVALID RANGE, REC <xx>  
Why:  
The Range entry for the indicated A016_AI record number is not within the valid entry range  
described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
39  
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ERR 2603: INVALID DIVISOR, REC <xx>  
Why:  
The Divisor entry for the indicated A016_AI record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2604: INVALID OFFSET, REC <xx>  
Why:  
The Offset entry for the indicated A016_AI record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2605: INVALID DEADBAND, REC <xx>  
Why:  
The Dead Band entry for the indicated A016_AI record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2606: INVALID LIMIT, REC <xx>  
Why:  
The Alarm Limit entry for the indicated A016_AI record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
Full  
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ERR 2700: INVALID POINT, REC <xx>  
Why:  
The AC Point Number entry for the indicated A016_ACC record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2701: INVALID OPTIONS, REC <xx>  
Why:  
The AC Point Options entry for the indicated A016_ACC record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2800: INVALID POINT NUMBER, REC <xx>  
Why:  
The T/C Point Number entry for the indicated A016_TC record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
41  
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ERR 2801: INVALID TRIP DURATION, REC <xx>  
Why:  
The Trip Duration entry for the indicated A016_TC record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2802: INVALID CLOSE DURATION, REC <xx>  
Why:  
The Close Duration entry for the indicated A016_TC record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2803: INVALID OPERATION MODE, REC <xx>  
Why:  
The Operation Mode entry for the indicated A016_TC record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2900: INVALID RAISE POINT, REC <xx>  
Why:  
The Raise Point Number entry for the indicated A016_RL record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
Full  
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ERR 2901: INVALID RAISE BASE DURATION, REC <xx>  
Why:  
The Raise Base Duration entry for the indicated A016_RL record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2902: INVALID RAISE INC DURATION, REC <xx>  
Why:  
The Raise Inc. Duration entry for the indicated A016_RL record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2903: INVALID LOWER POINT, REC <xx>  
Why:  
The Lower Point Number entry for the indicated A016_RL record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 2904: INVALID LOWER BASE DURATION, REC <xx>  
Why:  
The Lower Base Duration entry for the indicated A016_RL record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
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ERR 2905: INVALID LOWER INC DURATION, REC <xx>  
Why:  
The Lower Inc. Duration entry for the indicated A016_RL record number is not within the  
valid entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 3000: INVALID POINT NUMBER, REC <xx>  
Why:  
The Setpoint Number entry for the indicated A016_SP record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 3001: INVALID OPTIONS, REC <xx>  
Why:  
The Setpoint Options entry for the indicated A016_SP record number is not within the valid  
entry range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 3002: INVALID RANGE, REC <xx>  
Why:  
The Range entry for the indicated A016_SP record number is not within the valid entry range  
described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
A016-1CG-1.00-2  
General  
Full  
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ERR 3003: INVALID DIVISOR, REC <xx>  
Why:  
The Divisor entry for the indicated A016_SP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 3004: INVALID OFFSET, REC <xx>  
Why:  
The Offset entry for the indicated A016_SP record number is not within the valid entry range  
described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 3005: INVALID OPERATE TIME, REC <xx>  
Why:  
The Operate Time entry for the indicated A016_SP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
ERR 3006: INVALID DELAY TIME, REC <xx>  
Why:  
The Delay Time entry for the indicated A016_SP record number is not within the valid entry  
range described earlier in this document.  
Remedy:  
Modify and re-download the configuration with a correct entry in the specified configuration  
record.  
General  
Full  
A016-1CG-1.00-2  
45  
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A.2 Warning Messages  
The following warning messages are caused by errors within WIN, pSOS, or other function  
calls within the application. If you encounter one of these messages, note the exact text of the  
displayed message and contact the GE Power Systems Customer Service Department to report the  
problem.  
WARNING, WIN DPA CLOSE FAILED, STATUS = <xx>  
WARNING, DPA READY COMMAND FAILED  
WARNING, CAN'T ENABLE RX ON PORT <xx>, ERR = <xx>  
WARNING, SIO_CN_RX_HIT ERR = <xx>  
WARNING, CAN'T DISABLE RX ON PORT <xx>, ERR = <xx>  
WARNING, RUN TIME ERROR, PORT <xx> TX WRITE ERR = <xx>  
WARNING, RUN TIME ERROR, PORT <xx>, CAN'T CHANGE RTS OFF DELAY  
WARNING, RUN TIME ERROR, SEND_X, ERR = <xx>  
WARNING, RUN TIME ERROR, WIN WRITE, ERR = <xx>  
WARNING, RUN TIME ERROR, RX'D NACK FOR CONTROL REQUEST  
WARNING, RUN TIME ERROR, RX'D NACK FOR ACCUM REQUEST  
WARNING, RUN TIME ERROR, SIGNAL_V, ERR = <xx>  
WARNING, RUN TIME ERROR, CANNOT ALLOCATE RAM  
WARNING, RUN TIME ERROR, SET TX DELAY, ERR = <xx>  
WARNING, RUN TIME ERROR, GET RX TIME, ERR = <xx>  
WARNING, UNABLE TO RESET SYSTEM  
A016-1CG-1.00-2  
General  
Full  
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