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Transcript of CEMAT Operator Interfac1
CEMAT Operator
Operator Training
CEMAT Operator Training
CEMAT
1
Contents
1. CEMAT Operator Interface
1.1. General ................................
1.2. Working area design
1.3. Text and color layout
1.4. Block Icons and Bitmaps
2. Design criteria for the
2.1. Block icons for drive functions
2.2. Block icons for control and s
2.3. Block icons for super
2.5. Block icons for controller functions:
3. Color change of Status information in
3.1. Color change of Symbols:
3.2. Call of the Maintenance O
3.3. Call of the Info Over
3.4. Object Browser ................................
3.5. Close all open windo
4. Faceplates ................................
4.1. Detail Information of Displays and operator controls:
4.2. Detail Information “Status information and Link to r
4.9. Faceplates - secondary
4.10. Faceplates - secondary
4.11. Faceplates Details APL
4.12. Faceplates - secondary
4.13. Faceplates - secondary
4.14. Faceplates - secondary
4.15. Faceplates - secondary
4.16. Faceplates - secondary
4.17. Faceplates - secondary
4.18. Faceplates - secondary
5. CEMAT- Trend Groups
5.1. Function description
5.2. Toolbar Curve window
5.3. Additional fast selection
5.4. Quick View ................................
5.5. Quick Trend ................................
Operator Training
Interface ................................................................................................
................................................................................................
ea design ................................................................................................
out ................................................................................................
Bitmaps ................................................................................................
the CEMAT Block Icons ................................................................
e functions ................................................................
Block icons for control and supervision functions: ................................
Block icons for supervision of process signals: ................................................................
Block icons for controller functions: ................................................................
Color change of Status information in Symbols or Faceplates Text fields
mbols: ................................................................................................
Call of the Maintenance Overview ................................................................
erview ................................................................................................
................................................................................................
indows ................................................................................................
................................................................................................
Detail Information of Displays and operator controls: ................................
Status information and Link to related Objects “: .............................
secondary dialog 'Diagnosis' ................................................................
secondary dialog 'Extended Diagn. with Interlock'................................
APL- Interlock' ................................................................
secondary dialog 'Alarm' ................................................................
secondary dialog 'Statistic and Maintenance' ................................
secondary dialog 'Info'................................................................
secondary dialog 'Preset' ................................................................
secondary dialog 'Status' ................................................................
secondary dialog 'Object' ................................................................
secondary dialog 'Help' ................................................................
Groups ................................................................................................
cription ................................................................................................
indow operation ................................................................
selection Buttons ................................................................
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6. CEMAT Message Functionality
A newly arrived message ................................
6.3. Operator Control ................................
6.4. Area selections for the a
6.5. Loop in alarm Call ................................
6.6. CEMAT Message list
6.7. Display of the CEMAT Message List
6.9. Color attributes ................................
7. CEMAT Operation area functions
7.1. Selection of the Areas (28)
7.2. Status line ................................
7.3. Saving filter options (26)
Operator Training
Message Functionality ................................................................
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Area selections for the alarm line ................................................................
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list ................................................................................................
of the CEMAT Message List ................................................................
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CEMAT Operation area functions ................................................................
Selection of the Areas (28) .............................................................................................
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tions (26) ................................................................................................
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1. CEMAT Operator Interface
1.1. General All displays and graphics that show real timegraphic is on a screen. Updates do The system provides an overview of the alarmoperator, no matter which graphic is displayed.
1.2. Working area design
Schematic display of all components complete withrelationship in process control system. We
- Overviews (normally shows the entire group)
- Groups (used for group controlling, sel
- Details (Shows special details of
- Trends (Shows Trend curves)
- Services (Handling of speci
- Pop-up's (Additional information and handling of
Operator Training
Interface
All displays and graphics that show real time data are automatically updated when the display or graphic is on a screen. Updates do not require operator initiation.
he system provides an overview of the alarm status of all areas which can be viewed by an operator, no matter which graphic is displayed.
Schematic display of all components complete with their connection by flow line to reflect the relationship in process control system. We recommend distributing the following pictures:
(normally shows the entire group)
(used for group controlling, selects and more info's than the overviews)
(Shows special details of group, e.g. Hydraulic of a C-Mill)
(Shows Trend curves)
(Handling of special process values, see appendix)
(Additional information and handling of devices)
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when the display or
status of all areas which can be viewed by an
tion by flow line to reflect the recommend distributing the following pictures:
cts and more info's than the overviews)
1.3. Text and color layout For the representation of the plant objeCUSTOMER “Design Criteria” has to The symbols for process pictures must be as clear understandable as possible for the operators. Process mimics, in which the plant parts like belt conveyors, bucket elevators and so on, are presented by means of graphic symbols in a simplified ma 1.4. Block Icons and Bitmaps
A block icon is the representation of the AS moduobject. Via click on the block icon a faceplate will open, which shows detail information and allows additional actions for operator control The block icons must follow the CUSTOMER Design criteria.
In accordance with the representation type
o Status display of the AS module (Symbol)o Plant identification (TagName)o Setpoint, actual value o Annunciation / operating status display
Operator Training
For the representation of the plant objects in the pictures and for the text and layout colors theCUSTOMER “Design Criteria” has to be followed. (See C_Styleguide_e.doc)
The symbols for process pictures must be as clear understandable as possible for the operators. Process ts like belt conveyors, bucket elevators and so on, are presented by means of
c symbols in a simplified manner.
A block icon is the representation of the AS module in the process picture. The block icon is linkedobject. Via click on the block icon a faceplate will open, which shows detail information and allows
tor control
The block icons must follow the CUSTOMER Design criteria.
In accordance with the representation type the block icon can contain the following information:
Status display of the AS module (Symbol) Plant identification (TagName)
Annunciation / operating status display
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he pictures and for the text and layout colors the
The symbols for process pictures must be as clear understandable as possible for the operators. Process ts like belt conveyors, bucket elevators and so on, are presented by means of
re. The block icon is linked to the object. Via click on the block icon a faceplate will open, which shows detail information and allows
ock icon can contain the following information:
2. Design criteria for the CEMAT 2.1. Block icons for drive functions
All drive functions (C_DRV_1D, C_DRV_2D,the Symbol the faceplate will open.
The Operation Status of the drives is indicatedAdditional information such as Tagname, Mode,Info and Analog value can be attached to the block icon. The Tagname will be displayed only on demand.
Blockicon Typ 23 of C_DRV_1D, C_DRV
Operator Training
CEMAT Block Icons
nctions
All drive functions (C_DRV_1D, C_DRV_2D, C_VALVE, C_DAMPER) are represented bythe Symbol the faceplate will open.
The Operation Status of the drives is indicated with different colors according to the definition below:Additional information such as Tagname, Mode, Alarmsymbol, external Warning, Simulation, Maintenance status,
attached to the block icon. The Tagname will be displayed only on demand.
Blockicon Typ 23 of C_DRV_1D, C_DRV_2D, C_VALVE, C_DAMPER
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C_VALVE, C_DAMPER) are represented by a symbol. Via click on
with different colors according to the definition below: Alarmsymbol, external Warning, Simulation, Maintenance status,
attached to the block icon. The Tagname will be displayed only on demand.
White
No fault
Yellow
Warning
Yellow flashing
Non
Red
Fault
Red flashing
Non
Green
Signal status "1" (only for C_ANNUNC)
2.2. Block icons for control and super Control and Supervision functions suchby the following block icons:
In the status indications the following information is
o Operating mode (C_GROUP)o Starting or stopping active (C_GROUP)o Summarizing fault indication (C_GROUP and C_ROUTE)o Summarizing warning indication (C_GROUP and C_ROUo Selections (C_ROUTE and C_SELECT)o Interlocking condition (C_GROUP, C_ROUTE and C_S
2.3. Block icons for supervision of process signals:
Annunciation block and Annunciation_8 block: The annunciations functions like C_ANNUNC andthe Symbol the faceplate will open.
The status of the annunciations is indicated with
Additional information such as Tagname, Mode,icon. The Tagname will be displayed only on
Operator Training
No fault
Warning
Non-acknowledged warning
Fault
Non-acknowledged fault
Signal status "1" (only for C_ANNUNC)
Block icons for control and supervision functions:
Control and Supervision functions such as C_GROUP, C_ROUTE and C_SELECT are represented
following information is given:
Operating mode (C_GROUP) Starting or stopping active (C_GROUP) Summarizing fault indication (C_GROUP and C_ROUTE) Summarizing warning indication (C_GROUP and C_ROUTE) Selections (C_ROUTE and C_SELECT) Interlocking condition (C_GROUP, C_ROUTE and C_SELECT)
ision of process signals:
Annunciation block and Annunciation_8 block:
The annunciations functions like C_ANNUNC and C_ANNUN8 are represented by a symbol. Via click on the Symbol the faceplate will open.
the annunciations is indicated with different colors according to the following definition:
Additional information such as Tagname, Mode, Bad Quality (Driver) and Info can be attached to the block icon. The Tagname will be displayed only on demand.
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as C_GROUP, C_ROUTE and C_SELECT are represented
UN8 are represented by a symbol. Via click on
different colors according to the following definition:
Bad Quality (Driver) and Info can be attached to the block
2.4. Measured value block: The measured value is shown together with the unit.
The following colors are used to indicate the status of the measure:
White/ gray
Measuring Value ok
Yellow
Warning
Red
Fault
Blue
Measuring Value byp
Additional information such as Tagname, Mode,The Tagname will be displayed only on demand.
2.5. Block icons for controller functions:
For the block PIDConL and PIDS
Below the status information it shows the Setpoint, the process value and the Output(Manipulated Value). The Tagname will be displayed only on demand.
Operator Training
The measured value is shown together with the unit.
The following colors are used to indicate the status of the measure:
Measuring Value ok
Warning
Fault
Measuring Value bypassed
Additional information such as Tagname, Mode, Bad Quality (Driver) can be attached to the block icon. The Tagname will be displayed only on demand.
Block icons for controller functions:
StepL the symbol shows the following information:
Below the status information it shows the Setpoint, the process value and the Output(Manipulated Value). The Tagname will be displayed only on demand.
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Bad Quality (Driver) can be attached to the block icon.
following information:
Below the status information it shows the Setpoint, the process value and the Output
3. Color change of Status information in 3.1. Color change of Symbols:
If the Color for the “run” or “fault” Symbols m“*.emf” files. Example: C_DRV_1D
3.2. Call of the Maintenance Ov
Via button "C_BtMaintenanceList" the Maintenance Ov
Please find more Information’s under “Faceplates
Operator Training
Color change of Status information in Symbols or Faceplates Text fields
mbols:
If the Color for the “run” or “fault” Symbols must be changed it is only necessary to rename the exi
verview
Via button "C_BtMaintenanceList" the Maintenance Overview will open:
Please find more Information’s under “Faceplates- secondary dialog Maintenance”
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ields
st be changed it is only necessary to rename the existing
econdary dialog Maintenance”
3.3. Call of the Info Overview Via button "C_BtInfo" a window will open which shows browse back or change to a spreadshe
Adaptations are not required.
Operator Training
Via button "C_BtInfo" a window will open which shows the last entry into the user archive. From there you can r change to a spreadsheet format.
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he last entry into the user archive. From there you can
3.4. Object Browser For each AS a button " ObjectBrowser" can be creaCEMAT Object Browser.
On Top is the selection bar, where it is possibleThe query (1) can be done with the selection of “Manual mode” and/or “OutofService” and/or “Local mode” and/or “Simulation active” following with click on the green accepbe shown. (6-9). Click on one of these TAG’s will open the releated Faceplate. (2) a click on the “Emergency Stop” button shows on (3) a click on the “Power management” button shows only the Objects with a connection at the“PM involved” Input . (4) a click on the “Memo active” button shows onlyInformation Dialog. (5) a click on the “Bypass active” button shows(Interlock or Measure modules).
Operator Training
For each AS a button " ObjectBrowser" can be created. With click on the button the operator will open the
where it is possible to set a query or select direct with a button a search function. can be done with the selection of “Manual mode” and/or “OutofService” and/or “Local mode”
ive” following with click on the green accept button. As result a listClick on one of these TAG’s will open the releated Faceplate.
a click on the “Emergency Stop” button shows only the Objects with active “emergency stop”.
agement” button shows only the Objects with a connection at the
a click on the “Memo active” button shows only the Objects with an stored text in the
a click on the “Bypass active” button shows only the Objects with an activated Bypass
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ed. With click on the button the operator will open the
to set a query or select direct with a button a search function. can be done with the selection of “Manual mode” and/or “OutofService” and/or “Local mode”
t button. As result a list with colored Tags will
y the Objects with active “emergency stop”.
agement” button shows only the Objects with a connection at the
the Objects with an stored text in the
bjects with an activated Bypass
3.5. Close all open windows
Button "C_BtCloseAllFaceplates" closes
Operator Training
Button "C_BtCloseAllFaceplates" closes all the open faceplates at a time.
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4. Faceplates A single mouse-click on the block icon opens information and allows control and monitoring of the associated AS module. The Faceplate is divided in general sections:(1) Displays and operator controlswith Tag/ Comment/ Alarm symbols/ Status and Toolbar (2) Status information and Links to related ObjectsLink function to Group and other connected modulesStatus and Link of Interlocks and Object Symbol status itself (3) direct Object operation in manual ModeManual mode direct commands (4) Emergency stop indication or “Sequence test”The “Software Emergency stop” button or (5) Mode selection and status textOperating mode selection and display of Status text (6) Three Step operator commandsButton for Power management and operation in Manual mode with 3 (7) actual timer name and value active timer name and reverse counted value (8) Analog values if released or connected - the setpoint-, and feedback -value- current or power bar with value - additional Analogvalue is shown.
For detail Information please follow the next pages.
Operator Training
click on the block icon opens the faceplate of the object. The faceplate provides detailed rol and monitoring of the associated AS module.
The Faceplate is divided in general sections: Displays and operator controls
with Tag/ Comment/ Alarm symbols/ Status and Toolbar
ation and Links to related Objects Link function to Group and other connected modules
cks and Object Symbol status itself
anual Mode
indication or “Sequence test” The “Software Emergency stop” button or “Sequence test” is shown if they are on.
Mode selection and status text Operating mode selection and display of Status text
ands ement and operation in Manual mode with 3-Step dialog
active timer name and reverse counted value
value
hown.
For detail Information please follow the next pages.
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the object. The faceplate provides detailed
are on.
4.1. Detail Information of Displays and operator controls:
(1) Tag of the object. (2) Comment of the object. (3) Print Dialog (4) Worst signal status
(5) Maintenance activated
Alarm
(6) Information text available for this Obje (7) Open Diagnosis Dialog (RMK with separate Dialog)
Message Dialog (RMK with separate Dialog)
Level ( see next page)
(10) the message status (Group display): Alarm, Warning, Tolerances, Faults, (11) If there is an alarm in the module, it (12) Empty (13) user right “5” missing (14) Process Feedback Signal in simulation mode (15) Open Standard Dialog (RMK with separate Dialog)
Objectlist Dialog (RMK with separate Dialog)
Dialog (RMK with separate Dialog)
icon)
(19) Fix the Dialog on top
Operator Training
Detail Information of Displays and operator controls:
Information text available for this Object
Open Diagnosis Dialog (RMK with separate Dialog) (8) Open
(RMK with separate Dialog) (9) change Toolbar
roup display):
Faults, Operator prompts
If there is an alarm in the module, it can be acknowledged using this button.
Process Feedback Signal in simulation mode
andard Dialog (RMK with separate Dialog) (16) Open
Objectlist Dialog (RMK with separate Dialog) (17) Open Information
Dialog (RMK with separate Dialog) (18) back to the Flow mimic (block
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Overview of CEMAT Object related To Open “Faceplate” Dialog Open Diagnosis Dialog Open Object browser Dialog Open Status or Message Dialog Open Information Dialog
Open Maintenance Dialog. Open Message Dialog/ Calibration Open Preset Dialog Open Object Help file Open “Faceplate” Dialog Open Diagnosis Dialog Open Curve Dialog Open Message Dialog Open Information Dialog
Empty. Empty Open Preset Dialog Open Object Help file
Operator Training
of CEMAT Object related Toolbars
Open Message Dialog/ Calibration
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4.2. Detail Information “Status information and Link to r
(1) open the Group faceplate of the first group(2) open the Faceplate of connec(3) open the Faceplate of connected SIMOCODE(4) open the Faceplate of connected Subcontrol (5) show from the related Objects
(6) Indication of Power Management Status
(7,18) Essential Start up interlock(D1,D2) status indicEssential operating interlock(D1,D2) status indicinterlock(D1,D2) status indication and link to the connected Object(10,13) Operating interlock(D1,D2) status indic(11,12) Protection interlocks Auto/Manual status indication(15) Process Feedback Signal status indication and link t(17) Object Symbol indication (status color definition see “Block Icon” ) Presentation of Interlock Interfaces:- If the Interface is not connected the Symbol will not be shown.- If it is connected to another Object (Interlock/ “mouse click” onto the Symbol. - Status color definition: green = Signal ok violet = not readygray = Signal = “0” or not used red
Operator Training
Status information and Link to related Objects “:
open the Group faceplate of the first group open the Faceplate of connected “user defined Object” open the Faceplate of connected SIMOCODE open the Faceplate of connected Subcontrol
s
anagement Status
Essential Start up interlock(D1,D2) status indication and link to the connected Object Essential operating interlock(D1,D2) status indication and link to the connected Object
tatus indication and link to the connected Object Operating interlock(D1,D2) status indication and link to the connected ObjectProtection interlocks Auto/Manual status indication
Process Feedback Signal status indication and link to the connected ObjectObject Symbol indication (status color definition see “Block Icon” )
Presentation of Interlock Interfaces: ed the Symbol will not be shown.
If it is connected to another Object (Interlock/ Drive…), a Jump to this Object is possible with
= not ready d red = faulty
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tion and link to the connected Object (8,16) tion and link to the connected Object (9,14) Start up
ected Object
o the connected Object
ive…), a Jump to this Object is possible with
Process Feedback shows only the
status “off” = grey or “on” = green “Startup-” or “essential startup Interlock”
• is the Symbol is “green” the Signal has “1” status
• is the Symbol is “violet” the d
• is the Symbol is “gray” the dri
Operator Training
Process Feedback shows only the
” = green
” or “essential startup Interlock”
is the Symbol is “green” the Signal has “1” status
is the Symbol is “violet” the drive is stopped and the Signal has “0” status
is the Symbol is “gray” the drive is running and the Signal has “0” status
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ive is stopped and the Signal has “0” status
“Operation-” or “essential Operation Interlock”- is the Symbol is “green” the Signal- is the Symbol is “violet” the Signalinterlocked “Protection Interlock general”
- is the Symbol is “green” the Signal has “1” status, all ok - is the Symbol is “red” the Signal “Protection Interlock automatic and manual”- is the Symbol is “green” the Signal has “1” status- is the Symbol is “red” the Signal has “0” status
Example for Object Status Symbol:Depending of Object Status the corrcolor definition you will find on chapter “Block Icon
Drive faulty Drive stopped
Operator Training
” or “essential Operation Interlock” is the Symbol is “green” the Signal has “1” status, object is not interlocked
is the Symbol is “violet” the Signal has “0” status, the drive is stopped and
he Signal has “1” status, all ok is the Symbol is “red” the Signal has “0” status, object is stopped and faulty
automatic and manual” is the Symbol is “green” the Signal has “1” status is the Symbol is “red” the Signal has “0” status
Example for Object Status Symbol: Depending of Object Status the corresponding colored Symbol is shown. The status
ition you will find on chapter “Block Icon”.
stopped in sporadic mode Drive in Out of Service
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has “0” status, the drive is stopped and
he Signal has “1” status, all ok
hown. The status
Drive in Out of Service
4.3. Direct Object operation in manual
If in the OS Permission Word the Bit “one opeButtons are shown. With one of the selected “Manual” modes and dependCommand Buttons are ready to be operated. (black colored Text) For example:
Drive “On” is relea
Drive “Off” is locked
With “Mouse click” on the Button,At the same time a “Operator Message” withModule Interface is generated in the message System.
Operator Training
irect Object operation in manual Mode
If in the OS Permission Word the Bit “one operation button” is released the direct Command
With one of the selected “Manual” modes and depending “OS Permission Log Bit’s” the directCommand Buttons are ready to be operated. (black colored Text) For example:
Drive “On” is released Drive start to Direction 1 or Direction 2 is released
With “Mouse click” on the Button, a Command is send to the Object. At the same time a “Operator Message” with combined Text from the ToolTippText and variable text of PLC
le Interface is generated in the message System.
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he direct Command
ng “OS Permission Log Bit’s” the direct
irection 1 or Direction 2 is released
“Off” is locked
combined Text from the ToolTippText and variable text of PLC
4.4. Emergency stop indication With “right mouse click” (2) on the Drive Symbol the 3 step operation dialogis shown. A mouse click on the “Emergency button”“Emergency Stop” will be active. A running object will be stopped and interlocked to start again. The symbol changed to“stopped without permission to start” and shows the red “E”
If the “fix it” button (7) was pressed, the dialog will be still open after pressing the “ok” button
With the “Cancel” button (5) the dialog will be closed.
Inside the Faceplate an additional button “Emergency off”“stopped without permission to start” An Click on the “Emergency off” button will open the 3 step operation dialog with indication of “Emergency stop active” With pressing the “reset Emerg.” Button following by the click on the “Ok” button the Emergency stop will be reseted. If the “fix it” button (4) was pressed, the dialog will be still open after pressing the “ok” button.(5)
With the “Cancel” button (6) the dialog will be closed.
Operator Training
n or “Sequence test”
on the Drive Symbol the 3 step operation dialog (1)
A mouse click on the “Emergency button” (4) will release the “OK” button (6) and with click on them the
A running object will be stopped and interlocked to start again. The symbol changed to“stopped without permission to start” and shows the red “E” (3)
essed, the dialog will be still open after pressing the “ok” button
the dialog will be closed.
Inside the Faceplate an additional button “Emergency off” (1) is shown together with the Textto start” (7).
An Click on the “Emergency off” button will open the 3 step operation dialog with indication of “Emergency stop active” (2)
With pressing the “reset Emerg.” Button (3) following by the click on the “Ok” button the
was pressed, the dialog will be still open after pressing the
the dialog will be
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and with click on them the
A running object will be stopped and interlocked to start again. The symbol changed to
essed, the dialog will be still open after pressing the “ok” button.(6)
is shown together with the Text
PLC Sequence test If the PLC “Sequence test” is switched on in “Syindication symbols. (1) Analog values or “Object linked”(2) Process Feedback Signal is in Simulation(3) The Object itself is in Test mode.Contactor Output’s are blocked)
Operator Training
If the PLC “Sequence test” is switched on in “SysPLC01”, the Faceplate shows these states with different
Analog values or “Object linked” Modules are in “Simulation mode”. Process Feedback Signal is in Simulation The Object itself is in Test mode. (feedback signal is generated inside the module and
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aceplate shows these states with different
e the module and
4.5. Mode selection and Object You can change the operating mode and other paracorresponding operator control permission (in the engineering system.(see ch
(1) The mouse cursor changes when you p
pointer now looks as follows:
When you click on the button with the mousefield for changing the operating mode, for example.
(2) Field for changing the operating mode, operating state etc. This example describes changing the operating mode.
If the indicators for the operating state is currently located in this field and you have configured text for specific instances, this text is also shown. (3) The text on this button is gray. You cannot This operator control permission for thissystem (ES). or The operating mode is already selected at this time. or
Due to the technology, you cannot switch foperating mode.
Operator Training
Object status
You can change the operating mode and other parameters if needed in faceplates if you have the corresponding operator control permission (OS_Perm). This operator control permission can be configured
hapter “Operator authorization”)
The mouse cursor changes when you place it over the following button: The mouse
When you click on the button with the mouse pointer, the bottom of the faceplate expands. You now see the field for changing the operating mode, for example.
Field for changing the operating mode, operating state etc. This example describes changing the
or the operating state is currently located in this field and you have configured text for , this text is also shown.
The text on this button is gray. You cannot select this operating mode due to the following reasons:
control permission for this operating mode cannot be configured in the engineering
The operating mode is already selected at this time. or
Due to the technology, you cannot switch from the operating mode currently set and the desired
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ers if needed in faceplates if you have the permission can be configured
ace it over the following button: The mouse
pointer, the bottom of the faceplate expands. You now see the
Field for changing the operating mode, operating state etc. This example describes changing the
or the operating state is currently located in this field and you have configured text for
select this operating mode due to the following reasons:
operating mode cannot be configured in the engineering
om the operating mode currently set and the desired
(4) The text on this button is black or white. You can switch to this operating mode.
Operator Training
The text on this button is black or white. You can switch to this operating mode.
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The text on this button is black or white. You can switch to this operating mode.
How to change the operating mode:
Click one of the selectable buttons in the operating mode field. Confirm your
selection by clicking "OK". The mode change becomes activated and the
If you do not want to apply your selection, click "Cancel". After clicking the "OK" or "Cancel" button, the
(5) Multiple operations If the operating window is not to close aft"attached". The following button is located be
Operating window is closed after the value is appl
Operating window remains open after the value is applied
Setting the multiple step operation You can use the internal @APLCommandExecutExplorer to specify if command, mode Follow the steps outlined below: Double-click on the internal @APLCommandExecutionS Change the start value to 2 or 3 in the Limits/Reporting Start value = 2: It is no longer necessary to con"OK"; commands or values are applied immediately. Start value = 3: Each Command or value change incontrol) needs to be confirmed with "OK". Operation Messages At the same time an “Operator Message” withSystem.
Operator Training
ode:
Click one of the selectable buttons in the operating mode field. Confirm your
e becomes activated and the new mode is shown in the top line.
If you do not want to apply your selection, click "Cancel".
After clicking the "OK" or "Cancel" button, the faceplate is reduced again to its original form.
the operating window is not to close after the confirmation of a command, it can be"attached". The following button is located below the operating window for this purpose:
Operating window is closed after the value is applied
w remains open after the value is applied
ultiple step operation
You can use the internal @APLCommandExecutionSteps tag in the Tag Management of the WinCC mode change or values are to be changed in two
click on the internal @APLCommandExecutionSteps tag
Change the start value to 2 or 3 in the Limits/Reporting tab.
Start value = 2: It is no longer necessary to confirm the selected button or value in the faceplate by clicking "OK"; commands or values are applied immediately.
Start value = 3: Each Command or value change in the faceplate (with the exception of control) needs to be confirmed with "OK".
At the same time an “Operator Message” with the button Text is generated in the message
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faceplate is reduced again to its original form.
r the confirmation of a command, it can be erating window for this purpose:
tag in the Tag Management of the WinCC o or three steps.
irm the selected button or value in the faceplate by clicking
the faceplate (with the exception of those for direct
the button Text is generated in the message
Status Text displays: Below the mode line a short status text is disobject types: Status Text line of C_DRV_1D
Status Text line of C_VALVE
4.6. Three Step operator commands
If in the OS Permission Word the bits “Poadditional buttons “Power management” and “Command” are s
If the Permission is granted, the “
button “Power management”:
Operator Training
Below the mode line a short status text is displayed. These texts vary and different for the different
Status Text line of C_DRV_1D Status Text line of C_DRV_2D
Status Text line of C_VALVE Status Text line of C_DAMPER
operator commands
If in the OS Permission Word the bits “Power management” and “3 Step operation possible” are released the management” and “Command” are shown.
If the Permission is granted, the “Command execution Dialogs” can be opened: First Click on
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. These texts vary and different for the different
Status Text line of C_DAMPER
er management” and “3 Step operation possible” are released the
ution Dialogs” can be opened: First Click on
With a second click on the button “PM rel.on/off” andthird click on “Ok” it is possible to setInterface. (PMblock) At the same time an “Operator Message” withSystem.
Operator Training
ith a second click on the button “PM rel.on/off” and is possible to set or reset the release of “Power management Control” via Module
At the same time an “Operator Message” with the button Text is generated in the message
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anagement Control” via Module
the button Text is generated in the message
First Click on button Commands
With a second click on the button “On” and a third click on “Ok” it is possible to startmode”. Or, if it is possible, with a second click on the buttonDrive in “Manual mode”. At the same time an “Operator Message” withSystem.
4.7. Actual timer name and value
If the Object is “started up” or “moving”Operation Mode) are started.
For example: available timer for: Drive
Damper
Operator Training
ith a second click on the button “On” and a third click on “Ok” it is possible to start
ith a second click on the button “Off” and a third click on “Ok” it
At the same time an “Operator Message” with the button Text is generated in the message
and value
If the Object is “started up” or “moving” several timers (depending on the time settings and
For example: available timer for: Drive
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ith a second click on the button “On” and a third click on “Ok” it is possible to start the Drive in “Manual
“Off” and a third click on “Ok” it is possible to stop the
the button Text is generated in the message
several timers (depending on the time settings and
4.8. Analog value handling Example: C_DRV_1D
Setpoint functions: (1-4) With the enable Interface signal on the ASfor (2)external Setpoint, the display of thewith the associated units. The Setpoint can either be entered via Input fieconnected and enabled the button “E” isshown. If also the Setpoint tracking is on, the external Setpoint value is shown in the „actual Setpoint“ field. Without Setpoint tracking the OS Setpoint will be shown and the external Setpoint is only in the DiagnosisDialog visible. Without external Setpo“SP_HiLim”.(see diagnosis dialog). There is no further evaluation in the drivewritten to the output SP_Out . With click on the “Process value”value will be open. Current or Power functions: (7+5If a measure block for the motor current existsenabled, the (5) percentage value of the motor currentcase of a measuring value the upperthe bar of the drive faceplate 0-130% are displa Analog Process Value: (6) If one ore more measuring values atemperatures, bearing temperatures, powill be shown as follows: TAG and Value, Comment as Tooltip, Unit, upper and lower LiWith click on the Value the Faceplate of C_MEASUR or C_ANA_SEL can direct
Operator Training
With the enable Interface signal on the AS module the Setpoint input function is activated(visible).The button )external Setpoint, the display of the (3)actual Setpoint (input field) , and the
The Setpoint can either be entered via Input field ore as an external Setpoint. If the external Setpoint is connected and enabled the button “E” is blue and with click on it, the Faceplate of the external Object will be
point tracking is on, the external Setpoint value is shown in the „actual Setpoint“ field. Setpoint tracking the OS Setpoint will be shown and the external Setpoint is only in the Diagnosis
Dialog visible. Without external Setpoint the Setpoint Input is checked for Low limit HiLim”.(see diagnosis dialog). There is no further evaluation in the drive block, the Setpoint is directly
written to the output SP_Out . With click on the “Process value” field the Faceplate of the connected Analog
5) If a measure block for the motor current exists or a SIMOCODE is used and the function is
percentage value of the motor current (or power) can be displayed as value and case of a measuring value the upper limit 1 of the measure corresponds to 100% value of motor current. In
130% are displayed.
If one ore more measuring values are used as additional process signals of the drive (e. g. winding temperatures, bearing temperatures, power, current, etc.), these measures can be linked to the drive and
TAG and Value, Comment as Tooltip, Unit, upper and lower Limits . With click on the Value the Faceplate of C_MEASUR or C_ANA_SEL can directly be opened.
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module the Setpoint input function is activated(visible).The button actual Setpoint (input field) , and the (4) Process value is shown
d ore as an external Setpoint. If the external Setpoint is aceplate of the external Object will be
point tracking is on, the external Setpoint value is shown in the „actual Setpoint“ field. Setpoint tracking the OS Setpoint will be shown and the external Setpoint is only in the Diagnosis
int the Setpoint Input is checked for Low limit “SP_LoLim” and High limit block, the Setpoint is directly
the Faceplate of the connected Analog
or a SIMOCODE is used and the function is displayed as value and (7)bar. In
limit 1 of the measure corresponds to 100% value of motor current. In
additional process signals of the drive (e. g. winding er, current, etc.), these measures can be linked to the drive and
y be opened.
Example: C_DAMPER Analog view with C_DAMPER in “control” The Damper Faceplate shows always the scale begin (1), scale end (3) and set point limit (2) values. The “Set point Output value” is shown with a bar (5) and value Analog Process Value: (6/8) If one ore more measuring values are used as additional process signals ofbe linked to the drive and will be shTAG and Value, Comment as Tooltip, Unit, upper and lower Limits .With click on the Value the Faceplate of C_MEASUR or C_ANA_SEL can direc
Analog view with C_DAMPER in “inching” If the C_Damper operates in “inching mode”
(6) Process value with bar and value in %.(7) Inching “up” button (9) Inching “down” button Left mouse click on the button will modify the Set point in short steps. Right mouse click on the button will modify the Set point in 10 times short steps. The step value is depending from “Actuator run t
Operator Training
Analog view with C_DAMPER in “control” mode (7)
The Damper Faceplate shows always the and set
values. The “Set point Output and value (4)
values are used as additional process signals of the damper (e. g. power, current, etc.), these measures can ive and will be shown as follows:
TAG and Value, Comment as Tooltip, Unit, upper and lower Limits . With click on the Value the Faceplate of C_MEASUR or C_ANA_SEL can directly be opened.
Analog view with C_DAMPER in “inching” mode
operates in “inching mode” (10) then additional information’s are shown.
Process value with bar and value in %.
Left mouse click on the button will modify the
ick on the button will modify the Set point in 10 times short steps.
The step value is depending from “Actuator run time”, “minimum pulse length” and cycle time.
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the damper (e. g. power, current, etc.), these measures can
ly be opened.
then additional information’s are shown.
me”, “minimum pulse length” and cycle time.
Analog view with C_DAMPER in “Positioner”
Positioning Setpoint functions: (1With the enable Interface signals on the AS module the “Positioner mode”Setpoint input function is activated(visible)(Idisplay of the Setpoint Operational field) and the (9) Process value is shown with the associated units.The Setpoint can either be entered via Input field orInput is checked for (3) Low limit “SP_LoLim” andIf the external Setpoint is connected and enabled Faceplate of the external Object willvalue is shown in the „actual Setpoint“ field and the field is blocked. Without Setpoint tracking the OS Setpoint will be shown and the external Setpoint is only in the Diagnosis Dialog visible. The Setpdirectly written to the (8) output SP_Out and with an Object connection on that Output it is possibthe Value with the button “SP” (7)Analog value will be open.
Analog Process Value: (10) If one ore more measuring values are used ascurrent, etc.), these measures can be liComment as Tooltip, Unit, upper and lower Limits .With click on the Value the Faceplate of C_MEASUR or C_ANA_SEL can dir
Operator Training
Analog view with C_DAMPER in “Positioner” mode
(1-9+11+12) With the enable Interface signals on the AS module the “Positioner mode” (12) indication is shown and the
vated(visible)(InchEn+PosMoEn).The button for (1)external Setpoint, the he Setpoint Operational Scale for low (2) and high (6) together with the
Process value is shown with the associated units. The Setpoint can either be entered via Input field or as an external Setpoint. As internal Setpoint the Setpoint
Low limit “SP_LoLim” and (5) High limit “SP_HiLim”.(see diagnosis dialog).If the external Setpoint is connected and enabled the button “E” is blue and with click on it, theFaceplate of the external Object will be shown. If also the Setpoint tracking (11) is on, the external Setpoint
Setpoint“ field and the field is blocked. Without Setpoint tracking the OS n and the external Setpoint is only in the Diagnosis Dialog visible. The Setp
output SP_Out and with an Object connection on that Output it is possib(7). With click on the “Process value” field (9) the Faceplate of the connected
If one ore more measuring values are used as additional process signals of the damper (e. g. power, current, etc.), these measures can be linked to the drive and will be shown as follows: TAG and Value,
it, upper and lower Limits . With click on the Value the Faceplate of C_MEASUR or C_ANA_SEL can directly be opened.
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indication is shown and the )external Setpoint, the
together with the (4)actual Setpoint (input
as an external Setpoint. As internal Setpoint the Setpoint High limit “SP_HiLim”.(see diagnosis dialog).
he button “E” is blue and with click on it, the is on, the external Setpoint
Setpoint“ field and the field is blocked. Without Setpoint tracking the OS n and the external Setpoint is only in the Diagnosis Dialog visible. The Setpoint is
output SP_Out and with an Object connection on that Output it is possible to follow the Faceplate of the connected
additional process signals of the damper (e. g. power, ked to the drive and will be shown as follows: TAG and Value,
ctly be opened.
4.9. Faceplates - secondary dialog The diagnostic dialog is available for all object types. The diagnostic dialog shows status andthe user has the permission for this action, the diagnostic dialog also allows the modification of the process parameters.
Example for a C_DRV_1D diagnosis display
The diagnostic dialog has the following structure:
(1) Displays and operator controls
with Tag/ Comment/ Alarm symbols/ Status and Toolbar
(2) Interface word display This displays the interface status ofsignal states are indicated using colored b Signal state: "0" = gray
"1" = green
Operator Training
dialog 'Diagnosis'
The diagnostic dialog is available for all object types.
The diagnostic dialog shows status and parameter values in the automation system for the current module. If this action, the diagnostic dialog also allows the modification of the process
Example for a C_DRV_1D diagnosis display
dialog has the following structure:
Displays and operator controls
with Tag/ Comment/ Alarm symbols/ Status and Toolbar
This displays the interface status of the AS module assigned to the picture module. (indicated using colored boxes.
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values in the automation system for the current module. If this action, the diagnostic dialog also allows the modification of the process
the AS module assigned to the picture module. (5) The Input
(4) To indicate the default signal states, these int
(3) If a blue dot is visible before the input sRefer to 'Extended Diagnosis with Interlock Module' (6) Signal Status of interlock Signals
(7) Process parameter operator control (8) Display of the actual process values. If the rmodified by click on the value itself.
(9) Module outputs The (11) output signals, important for diagnostic eva(10) status. The running Signal output
(13) Parameter field This displays the hardware signal states of the object.
(14) Alarm
Colored squares indicate Alarm or Warning. Signal status
"0" = gray (no Alarm) "1" = red (Alarm)/
(15) Eng.- ErrorNo. If there is something wrong with the presettingmissing, then a “Engineering Error Nu
(16) Signal Status Under “Signal Status” is shown: - status of Interface Input “ driver signal(s) bad quality- status of Interface Input “ driver signal(s) simulation- worst signal status of interlock structure inputs
(17) Enabled Under 'Enabled' it can be seen which functionsdisabled only by the program; other Operator System.
Operator Training
To indicate the default signal states, these interfaces are listed in "green" with a "dark gray background".
If a blue dot is visible before the input signal, an Interlock-Faceplate can be called for this signal.Refer to 'Extended Diagnosis with Interlock Module'
Signal Status of interlock Signals
eter operator control
Display of the actual process values. If the respective authorization is available the process values can be modified by click on the value itself.
output signals, important for diagnostic evaluation, are displayed together with theirstatus. The running Signal output shows the worst Signal Status (12) of all inputs.
signal states of the object.
Colored squares indicate Alarm or Warning. Signal status
"1" = red (Alarm)/ yellow (Warning)
If there is something wrong with the presetting of feature word or the connection tomissing, then a “Engineering Error Number” will be shown and the Object is forced to “Out of Service” mode.
nput “ driver signal(s) bad quality nput “ driver signal(s) simulation
interlock structure inputs
which functions are enabled. Some functions can be enabled/disabled only by the program; other functions can be enabled/ disabled via
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rfaces are listed in "green" with a "dark gray background".
Faceplate can be called for this signal. Æ
e authorization is available the process values can be
uation, are displayed together with their of all inputs.
of feature word or the connection to the Group module is ” will be shown and the Object is forced to “Out of Service” mode.
ed. Some functions can be enabled/
4.10. Faceplates - secondary Interlock modules can be linked to theinterlocks in order to give more detailed information about If an interlock module is present, the cdialog. A click on the interface name opens thelinked to the same interface flag.) and one
The CEMAT Interlock dialog displays only asubsequent interconnection.
• The input text describes the error (max. 16 characters).
• In an error situation, the input text is displayed with a red background.
Operator Training
secondary dialog 'Extended Diagn. with Interlock'
Interlock modules can be linked to the (2) interface flags, such as process interlocks or protection detailed information about the signal status.
If an interlock module is present, the corresponding interface is marked with a (1)
A click on the interface name opens the (3) CEMAT-Interlock dialog (Up to three interlock blocks can be linked to the same interface flag.) and one (4) APL Interlock if it is connected.
The CEMAT Interlock dialog displays only a (5) textual description of the inputs, its logical state and the
The input text describes the error (max. 16 characters).
In an error situation, the input text is displayed with a red background.
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such as process interlocks or protection
(1) blue dot in the diagnostic
Interlock dialog (Up to three interlock blocks can be
inputs, its logical state and the (6)
4.11. Faceplates Details APL
( 1) Call of the upstream block and Signal ( 2) Signal TAG ( 3) input Signal Status ( 4) additional Signal text or Value state ( 5) Operation for bypass setting ( 6) Interlock Status ( 7) effective Input Value ( 8) First Signal with influence to the Output signal ( 9) Call up the previous Object (10) worst Signal Status (11) Effective Input value = bypassed (12) open “Reset” Operation area
bypass settings (14) execution of “Reset”
Operation
(15) Reset First Signal with influence (16) Cancel and Close “Reset operation”
Operator Training
APL- Interlock'
Call of the upstream block and Signal-Comment as Tooltip
additional Signal text or Value state
influence to the Output signal
Effective Input value = bypassed
open “Reset” Operation area (13) Reset of all
execution of “Reset”
al with influence
Cancel and Close “Reset operation”
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4.12. Faceplates - secondary The alarm dialog is available for all objectsspecific object.
(1) Displays and operator controls
with Tag/ Comment/ Alarm symbols/ Status and Toolbar The Message list will be open by click on the button “Message”
(2) Operation list
The upper list shows all operator input messages withDate, Time, Tagname and Operation information. The “Operation”
includes :
“User name”, who has done the modification “Modification
description “new value” new value or new Status “0” or “1” “old value” old v
old Status “0” or “1”
Inside the (3) operation- and (8) process list it is possib Depending on (6) selection button it is also possible toSL01 With button (7) reset the standard selection will be shown and wi (8) Process alarm list The list shows all process alarms (errors and warnings) Date, Time, Tagname, Event and Fault Class.
Operator Training
secondary dialog 'Alarm'
The alarm dialog is available for all objects which create messages and it shows all messages for the
Displays and operator controls
ith Tag/ Comment/ Alarm symbols/ Status and Toolbar
The Message list will be open by click on the button “Message”
ator input messages with Date, Time, Tagname and Operation information. The “Operation”
ho has done the modification “Modification”, value or operation
ue or new Status “0” or “1” “old value” old value or
process list it is possible to scroll up and down or change the archives.
selection button it is also possible to show additional Signal faults as RL2 or
reset the standard selection will be shown and with button (5) the two lists will be up
The list shows all process alarms (errors and warnings) Date, Time, Tagname, Event and Fault Class.
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35
d it shows all messages for the
lue or
le to scroll up and down or change the archives.
gnal faults as RL2 or
the two lists will be updated.
4.13. Faceplates - secondary The Maintenance dialog is available for the Maintenance Information (Maintenance settings, Status and Device Information and can be opened from the “Displays and operator controls” area with click on button “Maint” In Section Statistic Values the fo
• Operating Hours (16)
• Number of Starting Dir. 1 and 2
• Fault duration time (18)
• Number of Stops with faults
The following Maintenance Information
• Maintenance interval (fixed,
• Actual Maintenance values (expired t
• Status (Run, Alarm, Auto Request)
• Maintenance Job (Operator Reque
• The Device Information (Type of equC_DRV_1D maintenance display
Operator Training
secondary dialog 'Statistic and Maintenance'
The Maintenance dialog is available for all drives, dampers and valves. It shows the (Maintenance settings, Status and Device Information and can be opened
d operator controls” area with click on button “Maint” (4).
the following information is displayed:
Number of Starting Dir. 1 and 2 (17)
Number of Stops with faults (19)
Maintenance Information can be displayed:
Maintenance interval (fixed, operation hour, no. of Starts) (10+11)
Actual Maintenance values (expired time, remaining time, auto request time)
Status (Run, Alarm, Auto Request) (3)
Maintenance Job (Operator Request, In Progress, Completed) (14)
The Device Information (Type of equipment and last Maintenance starting time) C_DRV_1D maintenance display
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alves. It shows the Statistic Values and (Maintenance settings, Status and Device Information and can be opened
me, remaining time, auto request time) (8,2,1)
t Maintenance starting time) (5) Example for a
Function description Statistic Values: For C_DRV_1D, C_DRV_2D and C_VALVE the operadirection) are displayed. For C_DAMPER the number of starts
For all drive functions the fault duration time and
button (21) all counters under Statistic values are reset and the date and time ofthis action will be shown under (20)
Function description Maintenance: 1. Under "Maintenance Interval" the maintenance cycleoptions (11) has to be selected: - Fixed Interval: Maintenance request after a
- As Per Operating Hours: Maintenance requesetting)
- As Per No. Of Starts: Maintenance request - An Auto Request Value must be e 2. The "Start" button (12) enables the Maintenance function. TheAfter this, the Maintenance interval can not be modified any more. 3. The "Stop/Reset" button (13)Maintenance are reset. The Maintenance interval can now be modified. 4. After the Maintenance function is enabled the actual expired maintenance timetime (2) to maintenance are displayed.5. If the Auto Request Value is exceeded theRequest" is set.(3) The information is also available as module output and can be connected to an annunciation block in order to create a warning me6. If the Interval Value is exceeded the bar The information is also available as a module output and can be connected to an annunciation block in order to create a fault message. 7. With "Auto Request" the Operator Actions are enabledThe Maintenance person has to select "in PDialog (This Information will be saved in the user Archive with a time stamp). 8. After the Maintenance work is done the Maithe new maintenance cycle. (The The Dialog “Maintenance Info Overview”
Operator Training
Function description Statistic Values:
For C_DRV_1D, C_DRV_2D and C_VALVE the operating hours and the number of starts (in each
of starts in each direction is displayed.
For all drive functions the fault duration time and the number of stops with fault is displayed. With "Reset"
all counters under Statistic values are reset and the date and time of (20) "Last Reset Time".
Function description Maintenance:
Under "Maintenance Interval" the maintenance cycle (10) has to be entered and one of the following
Fixed Interval: Maintenance request after a number of hours As Per Operating Hours: Maintenance request after the drive was running a number of hours (default
As Per No. Of Starts: Maintenance request after the drive has been started a number of timeAn Auto Request Value must be entered in order to indicate that the maintenance cycle is nearly complete.
enables the Maintenance function. The (3) status shows "Run".After this, the Maintenance interval can not be modified any more.
(13) disables the Maintenance function and all timers and counters for Maintenance are reset. The Maintenance interval can now be modified.
After the Maintenance function is enabled the actual expired maintenance timeto maintenance are displayed.
If the Auto Request Value is exceeded the bar shows yellow color and status bit "Auto
The information is also available as module output and can be connected to an annunciation create a warning message.
If the Interval Value is exceeded the bar shows red color and status bit "Alarm" is set.The information is also available as a module output and can be connected to an annunciation block in order to create a fault message.
With "Auto Request" the Operator Actions are enabled.(14) The Maintenance person has to select "in Progress" and to enter his comments into the Device Information Dialog (This Information will be saved in the user Archive with a time stamp).
ter the Maintenance work is done the Maintenance person has to select "completed"the new maintenance cycle. (The time of completion is saved in the user archive).
The Dialog “Maintenance Info Overview” (15) shows all active Objects with the status.(see next page)
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urs and the number of starts (in each
the number of stops with fault is displayed. With "Reset"
has to be entered and one of the following
t after the drive was running a number of hours (default
fter the drive has been started a number of times. to indicate that the maintenance cycle is nearly complete.
status shows "Run".
disables the Maintenance function and all timers and counters for
After the Maintenance function is enabled the actual expired maintenance time (8) and the remaining
bar shows yellow color and status bit "Auto
The information is also available as module output and can be connected to an annunciation
hows red color and status bit "Alarm" is set. The information is also available as a module output and can be connected to an annunciation
ogress" and to enter his comments into the Device Information
tenance person has to select "completed" in order to start time of completion is saved in the user archive).
the status.(see next page)
The "Device Overview" button (6) can be entered. Closing the window the informat Caution: In the Maintenance Dialog the Device "Refresh Display" in order to display the actualized data.
The Device Information is part of the userfile.
The CEMAT Maintenance List showInterval value > 0) and its Maintenance status. The list can be opened using the button "Maintenance Info Overview" in the Maintenance faceplate or via a separate button from any process pic
The filter function can be used to search for list. Scroll bar can be used to scroll fore and back.
Operator Training
(6) opens the following Dialog where the Device Informationcan be entered. Closing the window the information is stored in the User Archive C_Info.
In the Maintenance Dialog the Device information is not automatically refreshed. You have to press der to display the actualized data.
The Device Information is part of the user Archive C_Info and can also be imported via CSV
shows all drives which are enabled for MaintenanceInterval value > 0) and its Maintenance status.
The list can be opened using the button "Maintenance Info Overview" in the Maintenance faceplate or via a separate button from any process picture.
The filter function can be used to search for specific objects. Use "Refresh" button on order to update the
Scroll bar can be used to scroll fore and back. You will always see the 20 objects before ore behind.
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38
ice Information on is stored in the User Archive C_Info.
ation is not automatically refreshed. You have to press
Archive C_Info and can also be imported via CSV
s all drives which are enabled for Maintenance (each object with
The list can be opened using the button "Maintenance Info Overview" in the Maintenance faceplate or
resh" button on order to update the
You will always see the 20 objects before ore behind.
4.14. Faceplates - secondary The information dialog is available for all object types and it is Header lines: (1) The header lines display the general location desilocation of the object within the plant structur Registers: They contain standard information about
- Input/output descriptions - MCC descriptions - AS hardware and software modules
- Service inputs for Loop in Alarm, etc User notes: (8) The user is also given Message output: (7) The object
I/O Info (6+9) Input and Output information with absolute and symbolic address, DP Bus/ Address and Slo(13) Call the drawing from I/O Panel
Save (10) save the changes Print (11) a preview dialog with all Information’s of this Object will be shown. Multimedia (12) call up of external documents, v Sample display (including I/O Info):
The Text files for I/O Info can be created with an Excel Macro based on the data from the HWand the Process object view. Refer to chapter 09_Enginee
Operator Training
secondary dialog 'Info'
The information dialog is available for all object types and it is organized as follows:
The header lines display the general location designations and the installation t within the plant structure.
They contain standard information about Input/output descriptions (2) MCC descriptions (3) AS hardware and software modules (4)
Service inputs for Loop in Alarm, etc.(5)
The user is also given the capability to store his own information text.
The object-related messages are output in a message window.
Input and Output information with absolute and symbolic address, DP Bus/ Address and SloCall the drawing from I/O Panel
save the changes
a preview dialog with all Information’s of this Object will be shown.
call up of external documents, video, drawings
Sample display (including I/O Info):
The Text files for I/O Info can be created with an Excel Macro based on the data from the HW. Refer to chapter 09_Engineering_Tools.
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organized as follows:
nations and the installation
to store his own information text.
related messages are output in a message window.
Input and Output information with absolute and symbolic address, DP Bus/ Address and Slot.
a preview dialog with all Information’s of this Object will be shown.
The Text files for I/O Info can be created with an Excel Macro based on the data from the HW- Configuration
Sample display (Print preview)
From there the print out (1) to the standard printer is possible.
Operator Training
to the standard printer is possible.
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Sample display (with operator notes):
(9) Input field for Object information from Operator An overview of Object- Notes can be called as (5) Service information with settings for the multimedia buttons.The multimedia files can be stored on
Operator Training
Sample display (with operator notes):
Input field for Object information from Operator
Notes can be called as separate list.
Service information with settings for the multimedia buttons. The multimedia files can be stored on a local station or on the Server
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Sample display (with messages): (3) MCC Data with information about the location and Fuse and Bimetal setting (9) The chronological messages of the Object (11) Open file with MCC information (only .jpg)
Operator Training
Sample display (with messages):
tion about the location and Fuse and Bimetal setting
The chronological messages of the Object will be shown together. (alarm and operation)
Open file with MCC information (only .jpg)
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will be shown together. (alarm and operation)
Additional User Documents can be linked tois optional and must be configured accordingly):
In the Folders Input/Output, MCC Data and AS Hardware and Software a button will open respective drawings:
Folder 'Input/output' Assignment of the input/output
Folder 'MCC data' Assignment of the MCC cabinet (cabinet assignment)
Folder 'AS hardware' Construction of the cabinet in
belongs to (ca
For this function, the File names of the
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Additional User Documents can be linked to each Object via Information Dialog. (The function is optional and must be configured accordingly):
In the Folders Input/Output, MCC Data and AS Hardware and Software a button will open respective
Assignment of the input/output cards (cabinet assignment)
Assignment of the MCC cabinet (cabinet assignment)
Construction of the cabinet in which the AS is installed
belongs to (cabinet assignment).
For this function, the File names of the documents must coincide with the object name.
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formation Dialog. (The function
In the Folders Input/Output, MCC Data and AS Hardware and Software a button will open respective
assignment)
ich the AS is installed which this object
documents must coincide with the object name.
The additional Buttons at the bottom of the iOperating procedure, a Function schematic or a MCC Data. Sound Sound replay
Video guide Video description for trouble
Operation procedures Descriptions howas doc, pdf, xls
General function desc.
Loop diagrams Process engineeringdrawing Electrical schematic Electrical schematic Dradrawing MCC data MCC cabinet dra
as CAD drawing For this function, the file names must be entered under 'Service'.
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The additional Buttons at the bottom of the information dialog can be used to open a Sound file, a Video, a description, a Loop diagram, an Electrical
Sound replay (USER)
Video description for trouble-shooting (USER)
Descriptions how to operate (USER) xls
Descriptions of general functions for this objectas doc, pdf, xls
Process engineering- and Software interlock as CAD
Electrical schematic Drawings as CAD
MCC cabinet drawings, settings
must be entered under 'Service'.
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formation dialog can be used to open a Sound file, a Video, a
general functions for this object (USER)
Example for a Video:
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4.15. Faceplates - secondary The preset dialog is available for all object types. It shows the settings of the startup characteristics for “Feature wordWord” (3). In the last column the result status ofLogic Bit’s(4) are used for operation release of all dialog obje
Example for a C_DRV_1D Preset display
The preset dialog has the following structure:
(1) Displays and operator controls
with Tag/ Comment/ Alarm symbols/ Status and Toolbar
Feature Word (2), OS Permission Word This displays the startup characteristics of the AS module and the 32 Bit’s are related on theObject Typ. Signal state: "0" = gray
"1" = green
With the button “OpStations” (5) the APL Standard view can be opened. It is only shown if theFeature Word Bit 24 has “1” signal and the Module is connected.
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secondary dialog 'Preset'
The preset dialog is available for all object types.
It shows the settings of the startup characteristics for “Feature word”(2) and “OS Permission
In the last column the result status of OS Permission and PLC Logic is shown. That OS Permission are used for operation release of all dialog objects.
Example for a C_DRV_1D Preset display
The preset dialog has the following structure:
Displays and operator controls
g/ Comment/ Alarm symbols/ Status and Toolbar
ission Word (3) and OS Permission Logic Word (4)
This displays the startup characteristics of the AS module and the 32 Bit’s are related on the
the APL Standard view can be opened. It is only shown if theFeature Word Bit 24 has “1” signal and the Module is connected.
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and “OS Permission
mission and PLC Logic is shown. That OS Permission
This displays the startup characteristics of the AS module and the 32 Bit’s are related on the
the APL Standard view can be opened. It is only shown if the
4.16. Faceplates - secondary The status call function is available for groups and routes: The status call of the group can be used in orderconditions of the drives, measuring values and process sig The status call of the or route can conditions of the drives, measuring v If the group has routes, the status call ofelements of the not selected route will not be displayed.
The information will not be taken from the mes
can be opened from the “Displays and opbutton “Status”.
The following will be indicated in the table (from the left to the righ (2) Index, (3) Tag of PLC, (4) Tag of the faulty object, The actualization button,(6) number of messagesthe bottom side.
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secondary dialog 'Status'
ble for groups and routes:
The status call of the group can be used in order to list all existing faults, warnings or interlocking ing values and process signals assigned to this group.
The status call of the or route can be used in order to list all existing faults, warnings or interlocking ng values and process signals assigned to this or route.
If the group has routes, the status call of the group is related to the selected routes of thacted route will not be displayed.
The information will not be taken from the message system, but directly requested from the AS. The Dialog
can be opened from the “Displays and operator controls” (1) area with click on
The following will be indicated in the table (from the left to the right):
Tag of the faulty object, (5) fault text, (6) comment from the module.
number of messages (7)and the WinCC server name
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to list all existing faults, warnings or interlocking als assigned to this group.
ng faults, warnings or interlocking lues and process signals assigned to this or route.
routes of that group. The
requested from the AS. The Dialog
comment from the module.
(8) are indicated at
4.17. Faceplates - secondary The Object or Instance list function The group instance list or Object list shows assigned to the group. The route instance list or Object list shows assigned to the route. The first time you open the group instance list button it is stored into the user ar The Dialog can be opened from the “Displays and op“Object”.
The tree structure shows (from left to right): Group information (2), Node symbol if an route or drive object is includedObjects belong to a Drive, Damper, Valvethe symbol of the object type with the status 'off’, 'on’, 'fault’the PLC Tag (6), the Object Tag Selecting an object with the left mouse key it canas per the interlocking can be indicat A click on the soft key „save“(10) Single click on the soft key (9), reads the objects again fromstructure. A double-click on the line opens the faceplate of Amount of lines (11), WinCC server name
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secondary dialog 'Object'
The Object or Instance list function is available for groups and routes:
The group instance list or Object list shows all drives, measuring values and process signals which are
The route instance list or Object list shows all drives, measuring values and process signals which are
The first time you open the group instance list the information will be read from the AS and with the save rchive. If you open the list again the information is read from the user archive.
The Dialog can be opened from the “Displays and operator controls” (1) area with click on button
The tree structure shows (from left to right):
Node symbol if an route or drive object is included (3) Objects belong to a Drive, Damper, Valve (4) the symbol of the object type with the status 'off’, 'on’, 'fault’ (5)
(7), the comment to the object (8)
Selecting an object with the left mouse key it can be shifted to any position. Thus, the real startas per the interlocking can be indicated.
(10) stores the new tree structure to the user archive.
, reads the objects again from the AS and shows them unsorted in the tree
click on the line opens the faceplate of the corresponding object.
WinCC server name (12) are indicated if the connection is ok
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process signals which are
ll drives, measuring values and process signals which are
rom the AS and with the save chive. If you open the list again the information is read from the user archive.
area with click on button
be shifted to any position. Thus, the real start- up sequence
e new tree structure to the user archive.
the AS and shows them unsorted in the tree
are indicated if the connection is ok
If the mode of an object is not “Automati- bypass/ simulation -> brown - local mode -> light gray- manual mode -> cyan - Out of Service -> dark gray
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If the mode of an object is not “Automatic” it will be shown with a colored line:
> light gray
> dark gray
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4.18. Faceplates - secondary The online help function is available for all object types Example for C_DRV_1D help dialog:
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secondary dialog 'Help'
The online help function is available for all object types
Example for C_DRV_1D help dialog:
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5. CEMAT- Trend Groups CEMAT offers 3 representations of @TRG_Cemat_FS.pdl @TRG_Cemat08.pdl @TRG_Cemat08_FS.pdl Display @TRG_Cemat08.pdll – up to 8 curves with additional functions.
To call Trend Groups:
Use the key trend system.
5.1. Function description On top of the Dialog the 8 curves with information of TAGWith the colored Button (1) at the beginning of each line mouse button click). With right mouse button click, each Value axis If the ruler is switched on(6) the ruler
button (10) the “top area” will be initialized
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CEMAT offers 3 representations of online Trend curves:
at_FS.pdl Default trend control with additional CEMAT fun@TRG_Cemat08.pdl up to 8 curves with additional functions @TRG_Cemat08_FS.pdl up to 8 curves with additional CEMAT functions
up to 8 curves with additional functions.
trend system.
On top of the Dialog the 8 curves with information of TAG (2), actual value (3), unitat the beginning of each line the curve display can be switched off/on (with left
With right mouse button click, each Value axis (11) can be switched off/on
the ruler -value(8), -Time(9) and –archive name(7) will be shown. With the re
the “top area” will be initialized
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rol with additional CEMAT functions
with additional CEMAT functions
, actual value (3), unit (4), comment (5). n be switched off/on (with left
will be shown. With the reset
5.2. Toolbar Curve window operation
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operation
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5.3. Additional fast selection Buttons The trend controls @TRG_CEMAT08_FS.pdl andbuttons:
Function description Day of the week (9):Opening the trend display, the actual day of the week is shown on the right side, the last days of a week on the left side.With click on a “Day button“ the distime range remains. Time Range (11) The default value of time range is 30 min. selectable are 1min. up to 24h.The Time Range can be adjusted only in offline mode. Online (10) Online mode is predefined.Switches back to online mode. Thethat no Time Range is considered. Print With click on the printer symbol the offline view is printed. CEMAT can use the print job C_TrendReport.rpl.
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Buttons
The trend controls @TRG_CEMAT08_FS.pdl and @TRG_ CEMAT_FS.pdl has ad
:Opening the trend display, the actual day of the week is shown on the right side, the last days of a week on the left side. With click on a “Day button“ the display switches over to offline and to this day. The previously adjusted
The default value of time range is 30 min. selectable are 1min. up to 24h.The Time Range can be adjusted only in offline mode.
de is predefined. Switches back to online mode. The previously selected Time Range gets dark gray and in order to showthat no Time Range is considered.
Print With click on the printer symbol the offline view is printed. CEMAT can use the print job
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@TRG_ CEMAT_FS.pdl has additional fast selection
:Opening the trend display, the actual day of the week is shown on the right side, the
ver to offline and to this day. The previously adjusted
The default value of time range is 30 min. selectable are 1min. up to 24h.
previously selected Time Range gets dark gray and in order to show
Print With click on the printer symbol the offline view is printed. CEMAT can use the print job
@TRG_ CEMAT_FS.pdl without Tag and online va
C_Curve_Group1.pdl as full screen Cur
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@TRG_ CEMAT_FS.pdl without Tag and online value informations, but fast select buttons.
e_Group1.pdl as full screen Curve.
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ue informations, but fast select buttons.
5.4. Quick View Right mouse click on the value of block i
5.5. Quick Trend Right mouse click on the unit of the blockopen) and writes the Object TAG , actual value, unit, comment and the archive name into the first line of the list.
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Right mouse click on the value of block icon opens the quick view of the archive value
Right mouse click on the unit of the block icon opens the quick trend management dialog. (in case it was not G , actual value, unit, comment and the archive name into the first line of the
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on opens the quick view of the archive value
icon opens the quick trend management dialog. (in case it was not G , actual value, unit, comment and the archive name into the first line of the
Every new click on the unit of the bl
With an click on the button right (7) a new Trend Dialog with all curves from the archive will be shown. (see below).
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k on the unit of the block icon will add the new TAG to the list.(1-6)
With an click on the button right (7) a new Trend Dialog with all curves from the archive will be shown. (see
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6) (up to 8).
With an click on the button right (7) a new Trend Dialog with all curves from the archive will be shown. (see
In area “Archive Management” (1) sorted by “selected Area” (3, 10). With the With button “Read” (7) an before selected Dataset will be loaded an can shown in theTrenddialog. With button “Delete” (6) an before selected Dataset will be erased from the archive.
All Information is stored in the Us
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(1) it is possible to create a new Dataset (2,9) with Name . With the save (8) button the new Dataset will be stored.
) an before selected Dataset will be loaded an can shown in the
an before selected Dataset will be erased from the archive.
serArchive and available on each Client.
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) with Name (4) and Description (5), button the new Dataset will be stored.
) an before selected Dataset will be loaded an can shown in the
an before selected Dataset will be erased from the archive.
5.6. Open Curve Group on Full The button “C_BtOpenCurveGroup” opens the curve group
This option allows the display of pre which means, when opening the curve group the comp
alarm line, no overview range (picture tr
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Full Screen
The button “C_BtOpenCurveGroup” opens the curve group on full screen (optional).
This option allows the display of pre-configured curve groups in full screen mode,
which means, when opening the curve group the complete screen is used as working area. There is no
range (picture tree) and no button line.
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on full screen (optional).
ete screen is used as working area. There is no
6. CEMAT Message Functionality Two types of messages are stored in
• Messages that are initiated by malfunction inviolated). These messages need the ascreen and need must be acknowledged.archive.
• Messages originated by an operator action (stThese messages don't appear in the message line,
6.1. Message line
The message line displays the non A newly arrived message
• always appears immediately in the message line (the previously displayed message).
• produces an acoustical signal that continues
A message line can contain the following in
• Incoming date/time of the message
• Plant identifier
• Fault type
• Message text
• Fault class. (P = process, E = electrica
In case of an alarm flooding Cemat analyses andalarm will be recorded and reported in detail,
must be acknowledged individually in the Alarm line
Only activated objects can generate alarms Each fault is classified. Cemat distinguishes beemergency shutdowns. The following events are displayed:
• potentially dangerous process conditions
• setpoint deviations beyond pre
• blocking of a start, stop or chang
• operating interruptions
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Message Functionality
Two types of messages are stored in the message system of Cemat:
Messages that are initiated by malfunction in the process (process specific values are reached or
These messages need the attention of the operator. They appear in the message line on top of the screen and need must be acknowledged. Parallel the messages are entered into the message
Messages originated by an operator action (starting, stopping, modification of a proceThese messages don't appear in the message line, but they are entered into the message archive.
non-acknowledged messages from the selected plant sections.
ars immediately in the message line (even when operations are being performed on the previously displayed message).
produces an acoustical signal that continues until it is reset by clicking an acknowledge ke
A message line can contain the following information (from left to right):
Incoming date/time of the message
Fault class. (P = process, E = electrical, M = mechanical, S = safety (emergency off))
In case of an alarm flooding Cemat analyses and prioritizes all alarms. As a result onlyalarm will be recorded and reported in detail, while all other alarms are suppressed. Each alarm
must be acknowledged individually in the Alarm line
Only activated objects can generate alarms
at distinguishes between electrical, mechanical or process faults or local
The following events are displayed:
potentially dangerous process conditions
setpoint deviations beyond pre-selected values
blocking of a start, stop or changeover operation
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the process (process specific values are reached or
operator. They appear in the message line on top of the Parallel the messages are entered into the message
rting, stopping, modification of a process parameter). but they are entered into the message archive.
messages from the selected plant sections.
ven when operations are being performed on
until it is reset by clicking an acknowledge key.
, M = mechanical, S = safety (emergency off))
s a result only one e all other alarms are suppressed. Each alarm
or process faults or local
6.2. Color attributes The messages are displayed in the following colorsstate:
6.3. Operator Control The three additional keys placed at the right of
- left mouse button
- right m
- left mouse butto
- right m
- left mouse button
- left mouse button
6.4. Area selections for the alarm line The messages are filtered dependentlogged in user.
6.5. Loop in alarm Call
The loop in alarm function opens a predethe alarm. The name of the Alarm Picture can be defined for each object in the Info Dialog in Register"Service". For explanation see EngineeIf no picture name is entered, the system lo'Entry point picture'.
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The messages are displayed in the following colors depending on the message class and
The three additional keys placed at the right of the message line initiate the following functions:
left mouse button (SC)
mouse button (SC)
Invoke alarm picture (Loop in Alarm). This is the process picture in which the faulty object is displayed. open “selection of Plant Zones” dialog
ouse button (SC)
mouse button (SC)
Invoke faceplate dialog for the object. From the faceplate you have the possibility to call the subsequent dialogs Diagnosis Show the CEMAT Version dialog
ouse button (SC) Open the Alarm dialog (list oacknowledged alarms)
ouse button (SC) Acknowledge pending messages until the message line is empty. When a message is acknowledged, the next nonmessages move up and an acknowledge telegram is sent to the automation which the message came.
Area selections for the alarm line
The messages are filtered dependent on the operating authorization "process controlling"
The loop in alarm function opens a predefined process picture in order to display the object which created
The name of the Alarm Picture can be defined for each object in the Info Dialog in Register"Service". For explanation see Engineering Manual, chapter OS Engineering).
ture name is entered, the system looks into the 'Component list Editor' of WinCC and opens the
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depending on the message class and message
e the following functions:
Invoke alarm picture (Loop in Alarm). This is the process picture in which the faulty object is
open “selection of Plant Zones” dialog
Invoke faceplate dialog for the object. From the faceplate you have the possibility to call the
Diagnosis and Info Show the CEMAT Version dialog
Open the Alarm dialog (list of all non-
Acknowledge pending messages until the message line is empty. When a message is acknowledged, the next non-acknowledged messages move up and an acknowledge telegram is sent to the automation unit from
"process controlling" of the actually
s picture in order to display the object which created
The name of the Alarm Picture can be defined for each object in the Info Dialog in Register
ks into the 'Component list Editor' of WinCC and opens the
6.6. CEMAT Message list The key with the "C“ in the general toolbar opens the CEMAT Message list.
If you open the CEMAT message list, If you close the CEMAT message list with the ‘Clprevious process picture is displayed again.
6.7. Display of the CEMAT Message List
The CEMAT message list dialog consists of three areas: 1. Toolbar message window (1) 2. Message list (2) 3. Selection input dialog. (3)
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The key with the "C“ in the general toolbar opens the CEMAT Message list.
If you open the CEMAT message list, the previously defined settings are recovered.
If you close the CEMAT message list with the ‘Close’ Button, the actual settings are saved and the previous process picture is displayed again.
of the CEMAT Message List
ist dialog consists of three areas:
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.
the previously defined settings are recovered.
se’ Button, the actual settings are saved and the
Toolbar message operation (1)
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Toolbar message operation (1)
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6.8. Message list structure
Two types of message lists are available: The CEMAT Alarm list shows all alarmfollows:
Column text Description
Date (4) Incoming date
Time (5) Inc
Prio (6) Priority of message (16 is always on top)
Tag (7) Plant identifier as defined for the Object
Event (8) Depending on the object fault types (e.g. operational)
Tag Comment (9) Message text as defined for the Object
FCL (10) FaultE: electrical, M: mechanical, P:off)
Area (11) AREA Code (Plant Section)
Status (12) C=incoming; QS=acknowledged; G=went out
Comments (13) Message note:Identification that a note exists for this message
Info Text (14) Info TextIdentification that an info t
The CEMAT Operation list shows only the operator
Column text Description
Date Date of the operation
Time Time of the operation
Tag Plant identifier as defined for Object
Operation Operation
Tag Comment Message text as defined for Object
Sort with column selection
DC on one of the column the whole working area will be sorted upward.
Double click on a second column the working area w
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Two types of message lists are available:
shows all alarms, warnings, system messages and operations. The structure is as
Description
Incoming date
coming time
Priority of message (16 is always on top)
Plant identifier as defined for the Object
Depending on the object fault types (e.g. operational)
Message text as defined for the Object
Fault class E: electrical, M: mechanical, P: process, S: safety (emergency off)
AREA Code (Plant Section)
C=incoming; QS=acknowledged; G=went out
Message note: Identification that a note exists for this message
Info Text Identification that an info text exists for this message
shows only the operator messages and has the following structure:
Description
Date of the operation
Time of the operation
Plant identifier as defined for Object
Operation
Message text as defined for Object
DC on one of the column the whole working area will be sorted upward. DC again sorted downward
Double click on a second column the working area will be sorted again. (Col. marked with 2).
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stem messages and operations. The structure is as
Depending on the object fault types (e.g. operational)
process, S: safety (emergency
xt exists for this message
messages and has the following structure:
DC again sorted downward
ll be sorted again. (Col. marked with 2).
6.9. Color attributes Depending on the message class and message state, colors:
Alarm
Message arrived white / red
Message acknowledged
black / pink
Message gone black / light
green
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class and message state, the messages are displayed in the following
Warning Process Operator Input
white / red black / yellow white / red black / cyan
black / pink black / light yellow
white / pink -
black / light black / light black / light -
green green
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he messages are displayed in the following
Operator Input
black / cyan
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7. CEMAT Operation area functions
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CEMAT Operation area functions
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E Electrical
M Mechanical
S Safety (emergency off switch)
P Process-
7.1. Selection of the Areas (28)
If a area selection is stored it will be shown on the right hand site.
7.2. Status line The status line (18) can be seen at the bottom of the CEMAT message system. At the left side the selected message classes aframe. If the date/time filter is activated the right side is empty.
Additional functions when a message line is selected:
• An alarm picture can be opened using button "Loop in Alarm"
• The faceplate of the object can be opened using button "Info"
• The Comments Dialog can be opened and a comment c
• The Info-Text Dialog can be opened
• This message is acknowledged (only in the
7.3. Saving filter options (26) In order to recall specific filter functions at a later time, it is possibpossible in the long term list.
Click on the icon opens the save as dialog:
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al
Mechanical
Safety (emergency off switch)
-conditional
Selection of the Areas (28)
If a area selection is stored it will be shown on the right hand site.
can be seen at the bottom of the CEMAT message system.
At the left side the selected message classes are displayed and at the right side you will find the time is activated the right side is empty.
hen a message line is selected:
An alarm picture can be opened using button "Loop in Alarm".
object can be opened using button "Info".
The Comments Dialog can be opened and a comment can be entered.
Text Dialog can be opened.
This message is acknowledged (only in the current alarm list, multi-line acknowledgements possible).
unctions at a later time, it is possible to save these filters in a file. This is only
opens the save as dialog:
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yed and at the right side you will find the time
line acknowledgements possible).
e to save these filters in a file. This is only
10 files are displayed. You can select only one.
The user can enter notes for the settingsThe file name consists of the actual usercan not be modified.
The actual settings in the CEMAT m
The dialog will be closed without saving in a file.Accept: The actual settings are saved in the selected file.Close: The dialog will be closed and the actual
Click on the icon to open existing selections
Up to 10 files with user defined selection
The dialog is closed without selection of a new file.Open: The dialog will be closed and the selected file is used.
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select only one.
The user can enter notes for the settings in the comment field. (max. 80 Char.). The file name consists of the actual user name and the suffix _msg01.cfg to _msg10.cfg. The file name
The actual settings in the CEMAT message system can be saved in the selected file. Cancel:
The dialog will be closed without saving in a file. The actual settings are saved in the selected file. The dialog will be closed and the actual settings are saved in the selected file.
to open existing selections
Up to 10 files with user defined selection are displayed. You can select only one. Cancel:
The dialog is closed without selection of a new file. The dialog will be closed and the selected file is used.
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name and the suffix _msg01.cfg to _msg10.cfg. The file name
essage system can be saved in the selected file. Cancel:
ed in the selected file.
are displayed. You can select only one. Cancel: