4.7 Proportional Integral Derivative Block (PID) ................................................................. 58
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OPTIFLEX 2200 C
1.1 Scope of the document
These instructions are supplementary to the standard product documentation of the device. The
details depicted therein, in particular the safety information are valid and should be adhered to.
The present supplementary instructions provide additional information for the devices when
being operated and connected to a FOUNDATION™ fieldbus network.
INFORMATION!
The present supplementary instructions for the device with a FOUNDATION
plus the software with the DD and CFF files are included in our scope of supply, in addition to
those items delivered for the standard device.
DANGER!
If the device is for use in potentially explosive atmospheres, refer to the supplementary
instructions for ATEX, IECEx or other Ex applications.
1.2 Device description
The TDR level meter is designed to measure the distance, level, mass and volume of liquids,
pastes, slurries, granulates and powders.TDR level meters use a probe to guide a signal to the
surface of the measured product. The device has a large choice of probes. Thus, it can measure
most products in difficult conditions. For more data about the measuring principle, refer to the
handbook.
SAFETY INSTRUCTIONS 1
™
fieldbus interface,
1.3 Electronic revision
"Electronic revision" agrees with NAMUR NE 53. It is a number used to record the revision status
of the hardware and embedded software (firmware) in the device. It gives data on the type of
changes made and the effect that changes have on compatibility. The table that follows records
the changes for devices that have the FOUNDATION™ fieldbus option.
Data about the electronic revision is shown in menu 1.1.5 ELECTRO.REV.
Release dateElectronic revisionChanges and compatibility Documentation
2013-02-111.00.00-AD FF OPTIFLEX 2200 R01
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3
1 SAFETY INSTRUCTIONS
1.4 Software history
"Firmware revision" agrees with NAMUR NE 53. It is a series of numbers used to record the
revision status of embedded software (firmware) in electronic equipment assemblies. It gives
data on the type of changes made and the effect that changes have on compatibility. The table
that follows records the changes for devices that have the FOUNDATION™ fieldbus option.
Data about software revisions is shown in menu 1.1.0 IDENT. For more data refer to the
"Operation" chapter in the handbook. If it is not possible to refer to the device menu, record the
serial number of the device (given on the device nameplate) and speak to the supplier.
OPTIFLEX 2200 C
Release datePrinted circuit assemblyFirmware
revision
2013-09-03Converter1.08.014000342401k-AD FF
Sensor1.21.024000357001u
HMI (LCD display option)1.10.004000487601o
Pactware DTM V1.0.1
Hardware
revision
Changes and
compatibility
Documentati
on
OPTIFLEX
2200 R01
1.5 Nameplate
Figure 1-1: Nameplate for a device with the FOUNDATION™ fieldbus option
1 Input voltage range / Basic current
2 Output or communication protocol option
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TECHNICAL DATA 2
2.1 FOUNDATION™ Fieldbus data
Description
Type2-wire loop-powered level transmitter; Time Domain Reflectometry (TDR)
Physical layerFOUNDATION™ fieldbus protocol that agrees with IEC 61158-2 and FISCO model;
Communication standardH1
ITK version6.1
Link Active SchedulerSupported
Data blocks
Function blocks1 x Resource Block (RB)
Execution timeAnalog Input Block: 30 ms
Minimum cycle time250 ms
galvanically isolated
1 x Level Transducer Block
1 x Display Transducer Block
1 x Diagnose Transducer Block
3 x Analog Input Block (AI)
1 x Proportional Integral Derivate Block (PID)
Proportional Integral Derivate Block: 40 ms
Electrical connections
Device power supplyNot intrinsically safe: 9...32 VDC
Intrinsically safe: 9...24 VDC
Basic current14 mA
Maximum error current20.5 mA (= basic current + error current = 14 mA + 6.5 mA)
Error current FDETypically 6.5 mA (FDE =Fault Disconnection Electronic)
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3 ELECTRICAL CONNECTIONS
3.1 Cable types
Electrical cable specifications agree with International Standard IEC 61158-2. Shielded cables
prevent malfunctions and give protection from electromagnetic interefence. We recommend
that you follow these specifications to get good system performance.
OPTIFLEX 2200 C
Core cross-section0.8 mm² or
Cable typeAAAABBBBCCCCDDDD
Max. length
incl. branch line
AWG 18
twisted pair,
individually
shielded
1900 m / 6200 ft1200 m / 3900 ft400 m / 1300 ft200 m / 650 ft
0.32 mm² or
AWG 22
individual or
multiple twisted
pairs with overall
shield
0.13 mm² or
AWG 26
multiple twisted
pairs, without
shielding
1.25 mm² or
AWG 16
multiple nontwisted cables,
without shielding
In non-hazardous locations, a maximum of 32 field devices can be connected to the network. For
more data, refer to the table that follows.
Number of devices on
Electrical cable length on the spur
the bus segment
1 device2 devices3 devices4 devices
25...321m/ 3.3ft1m/ 3.3ft1m/ 3.3ft1m/ 3.3ft
19...2430 m / 100 ft1m/ 3.3ft1m/ 3.3ft1m/ 3.3ft
15...1860 m / 200 ft30 m / 100 ft1m/ 3.3ft1m/ 3.3ft
13...1490 m / 300 ft60 m / 200 ft30 m / 100 ft1m/ 3.3ft
1..12120 m / 400 ft90 m / 300 ft60 m / 200 ft30 m / 100 ft
INFORMATION!
Electrical cable length decreases if the number of devices on the branch line increases.
A terminator must be connected at the two ends of each bus segment.
3.2 Shielding and grounding
• For optimum electromagnetic compatibility of systems it is extremely important that the
system components, and particularly the bus cables connecting the components, are
shielded and that such shields - if possible - form an unbroken cover.
• Hence, it follows that, for use in non-hazardous duty systems, the cable shield should be
grounded as often as possible.
• In Ex systems an adequate equipotential bonding in the hazardous and non-hazardous
location along the entire Fieldbus installation is strongly recommended. Multiple grounding
of the shield is of advantage.
• In explosion-proof systems the shielding must at least be connected at one end of the cable.
• NAMUR NE 21 compliance is given, provided the above recommended cable types are used.
INFORMATION!
The use of twisted and shielded cables is strongly recommended, otherwise EMC protection of
the signal converter cannot be assured.
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ELECTRICAL CONNECTIONS 3
3.3 Electrical connection of FOUNDATION™ fieldbus
INFORMATION!
The FOUNDATION
supply is connected/available. The device terminal is not sensitive to electrical polarity.
The device can only be connected to a spur. Do a check of the device nameplate to make sure
that the device has the FOUNDATION
page 4
.
™
fieldbus interface of the signal converter will operate only if the power
™
fieldbus option. For more data, refer to Nameplate on
Figure 3-1: Electrical installation: terminals
1 Power supply / communication terminal
2 Power supply / communication terminal
3 Grounding terminal
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3 ELECTRICAL CONNECTIONS
3.4 Write/Protect and Simulation functions
The "Write/Protect" function prevents changes to device settings. The "Simulation" function lets
the user test the device and the fieldbus network.
INFORMATION!
The manufacturer sets the "Write/Protect" and the "Simulation" DIP switches to the OFF
position in the factory.
OPTIFLEX 2200 C
Figure 3-2: DIP switches for "Write/Protect" and "Simulation" functions
1 "Write/Protect" DIP switch
OFF: Device settings can be changed
ON: Device settings cannot be changed
2 "Simulation" DIP switch
OFF: "NORMAL" mode
ON: "SIMULATION" mode
3 6 × DIP switches: not used
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Figure 3-3: How to prevent changes to the device settings
1 "Write/Protect" DIP switch: set to the ON position (device settings cannot be changed)
How to prevent changes to the device settings
• Open the terminal compartment cover. For the procedure, refer to "Electrical connections" in
the handbook.
• Use the tip of a pencil or small screwdriver to move the "Write/Protect" DIP switch to the ON
position.
• Close the terminal compartment cover. For the procedure, refer to "Electrical connections" in
the handbook.
iYou cannot use the LCD display or the FOUNDATION™ fieldbus interface to change the
ELECTRICAL CONNECTIONS 3
device settings. If it is necessary to change the device settings, move the "Write/Protect"
DIP switch to the OFF position.
Figure 3-4: How to test the device and the fieldbus network (SIMULATION mode)
1 "Simulation" DIP switch: set to the ON position (SIMULATION mode)
How to test the device and the fieldbus network ("SIMULATION" mode)
• Open the terminal compartment cover. For the procedure, refer to "Electrical connections" in
the handbook.
• Use the tip of a pencil or small screwdriver to move the "Simulation" DIP switch to the ON
position.
• Close the terminal compartment cover. For the procedure, refer to "Electrical connections" in
the handbook.
iIf the DIP switch is set to the ON position, the device is in "SIMULATION" mode. Use the
"SIMULATION" mode to test the device and the fieldbus network. Set the DIP switch back to
the OFF position to operate the device in "NORMAL" mode in the fieldbus network.
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3 ELECTRICAL CONNECTIONS
3.5 Topology of FF networks
An example of mixed topology of FF networks is shown in the following example.
Connection is best made via short branch cables and T connectors. This connection type makes it
possible to connect and disconnect the devices without interrupting the bus or the
communication.
OPTIFLEX 2200 C
1HSE network
2H1 bus
3Intrisically safe, explosive area
B1+B2Bridge = coupling element for H1 bus
and HSE network
D1-D3Device = field devices, own power
supply, for non potentially explosive
areas
D4-D6Intrinsically safe devices, external
power supply, for potentially explosive
areas
I.S.Intrinsically safe barrier
JBJunction box for field devices
PSPower supply
Switch = connection of multiple HSE
sub networks
TTerminator
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OPERATION 4
4.1 Settable functions
• The following table gives only the menus, functions and parameters which are different
between the standard signal converter and the FOUNDATION fieldbus signal converter.
• For the electrical connections and a complete description of all functions, refer to the
handbook.
1.0.0 Information (Info.) menu
No.Displayed textDescription and settings
1.0.0 IDENT.
1.1.5ELECTRO.REV.Electronic revision. This menu item is specific to fieldbus devices and gives
1.2.0 OUTPUT I
1.2.xXXXXXThis sub-menu is not available for FOUNDATION™ fieldbus devices.
hardware version data. The electronic revision agrees with the NAMUR
NE 53 recommendation.
Read only.
2.0.0 Supervisor menu
No.Displayed textDescription and settings
2.1.0 COMMISSION.
2.1.1PARAMETERSThis procedure is not available for FOUNDATION™ fieldbus devices.
2.2.0 TEST
2.2.1SET OUTPUTThis menu item is not available for FOUNDATION™ fieldbus devices.
2.3.0 BASIC PARAM.
2.3.10TAG NAMEThis menu item is not available for FOUNDATION™ fieldbus devices.
If the customer gives a tag name (max. 16 characters), the manufacturer
enters this data in the device software at the factory. The tag name is shown
on the top line of the optional LCD display screen. The tag name is also given
on the device nameplate and on an optional stainless steel plate option
attached to the housing.
An FF TAG is available. The FF TAG has a maximum of 32 characters. The
manufacturer uses 16 characters (this data is also shown in the DeviceID or
in the "S/N" field on the device nameplate). The device supervisor can use a
maximum of 16 characters.
2.4.0 OUTPUT I
2.4.xXXXXXThis sub-menu is not available for FOUNDATION™ fieldbus devices.
2.6.0 COMMUNICAT.
2.6.xXXXXXThis sub-menu is not available for FOUNDATION™ fieldbus devices.
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4 OPERATION
4.2 Description of the FF block system
The Foundation Fieldbus is a Local Area Network (LAN) for connecting field devices like sensors
and actuators. One of the main benefits of Foundation Fieldbus is line saving in comparison to
the traditional 4...20 mA technology.
The different device functions are implemented in a block-based scheme within a user
application. In this block scheme, a distinction is made between the Resource Block, Transducer
Block and Function Block.
OPTIFLEX 2200 C
1 Resource Block (RB)
2 Transducer Block (TB)
3 Function Block (FB)
4 Device FF communication
5 Foundation Fieldbus
4.3 Used abbreviations
AIAnalogue Input BlockBLKBlock mode
PIDProportional Integral Derivate BlockMAN Manual mode
RBResource BlockAuto Automatic mode
TBTransducer BlockOOSOut Of Service mode
RReadODObject Directory
WWriteIVInitial Value
RWRead and WritePVProcess Value (factory settings)
SPSet Point
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4.4 Resource Block (RB)
The following tables list the Resource Block parameters in alphabetical order.
It describes characteristics of the Fieldbus device (e.g. device name, serial number, etc.) and is
not included in the functional tasks of the signal converter for FF.
The following tables contain short parameter description, factory settings (Initial Value (IV)) and
possible settings.
4.4.1 Foundation Fieldbus parameters for Resource Block
Parameter
Parameter
ParameterParameter
DD name
ALERT_KEY
ALERT_KEY
ALERT_KEYALERT_KEY
Alert Key
Alert Key
Alert KeyAlert Key
BLOCK_ERR
BLOCK_ERR
BLOCK_ERRBLOCK_ERR
Block Error
Block Error
Block ErrorBlock Error
MODE_BLK
MODE_BLK
MODE_BLKMODE_BLK
Block Mode
Block Mode
Block ModeBlock Mode
TARGET
Target
ACTUAL
Actual
PERMITTED
Permitted
AccessDescription and settingsInitial Value
RWThe identification number of the plant unit. This information
may be used in the host for sorting alarms, etc.
Setting:
1...255
RThis parameter reflects the error status associated with the
hardware or software components associated with a block. It
is a bit string, so that multiple errors may be shown.
Setting:
• Other: Non-specific error active
• Block Configuration: Error detected in block configuration
• Link Configuration: Error detected in link configuration
• Simulation Active: Simulation enabled in this block
• Local Override: Output tracking of faultstate active
The block alarm is used for all configuration, hardware,
connection failure or system problems in the block. The cause
of the alert is entered in the subcode field. The first alert to
become active will set the "Active" status in the "Status"
attribute. As soon as the "Unreported" status is cleared by the
alert reporting task, another block alert may be reported
without clearing the "Active" status, if the subcode has
changed.
Auto
0 (=uninitialized)
0
Uninitialized
-
-
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Parameter
Parameter
ParameterParameter
DD name
OPERATION 4
AccessDescription and settingsInitial Value
UNACKNOWLEDGED
Unacknowledged
ALARM_STATE
Alarm State
TIME_STAMP
Time Stamp
SUB_CODE
Subcode
VALUE
Value
CLR_FSTATE
CLR_FSTATE
CLR_FSTATECLR_FSTATE
Clear Fault State
Clear Fault State
Clear Fault StateClear Fault State
CONFIRM_TIME
CONFIRM_TIME
CONFIRM_TIMECONFIRM_TIME
Confirm Time
Confirm Time
Confirm TimeConfirm Time
CYCLE_SEL
CYCLE_SEL
CYCLE_SELCYCLE_SEL
Cycle Selection
Cycle Selection
Cycle SelectionCycle Selection
CYCLE_TYPE
CYCLE_TYPE
CYCLE_TYPECYCLE_TYPE
Cycle Type
Cycle Type
Cycle TypeCycle Type
DD_RESOURCE
DD_RESOURCE
DD_RESOURCEDD_RESOURCE
DD Resource
DD Resource
DD ResourceDD Resource
DD_REV
DD_REV
DD_REVDD_REV
DD Revision
DD Revision
DD RevisionDD Revision
RWA discrete enumeration which is set to "Unacknowledged"
when an alarm occurs, and set to "Acknowledged" by a write
from a human interface device or other entity which can
acknowledge that the alarm/event has been noticed.
RA discrete enumeration which gives an indication of whether
the alert is active and whether it has been reported.
Setting:
Uninitialized / Clear - reported / Clear - not reported / Active reported / Active - not reported
RThe time when evaluation of the block was started and a
change in alarm/event state was detected that is unreported.
The time stamp value will be maintained constant until alert
confirmation has been received - even if another change of
state occurs.
Setting:
MM / DD / YY (Month / Day / Year)
HH:MM:SS (Hour:Minute:Second)
RAn enumeration specifying the cause of the alert to be
reported.
Setting:
Other / Block Configuration / Link Configuration / Simulation
Active / Local Override / Device Fault State / Device
Maintenance / Input Failure / Output Failure / Memory
Failure / Lost Static Data / Lost NV Data / Readback Check /
Maintenance Needed / Power Up / Out Of Service
RThe value of the associated parameter at the time the alert
was detected.
Setting:
0...255
R/WWriting a "Clear" to this parameter will clear the device fault
state if the field condition, if any, has cleared.
Setting:
Uninitialized / Off / Clear
RWThe minimum time between retries of alert reports.640000
Setting:
0...4294967295 in [1/32 ms]
RWUsed to select the block execution method for this resource.Uninitialized
Setting:
Scheduled / Block execution
RIdentifies the block execution methods available for this
resource.
Setting:
Scheduled / Block execution
RString identifying the tag of the resource which contains the
Device Description for this resource.
Setting:
≤ 32 digits
RRevision of the DD associated with the resource - used by an
interface device to locate the DD file for the resource.
Setting:
Dependent on device version.
Uninitialized
Uninitialized
Uninitialized
Other
0
Off
Scheduled
Block execution
blanks
Dependent on
device version.
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4 OPERATION
Parameter
Parameter
ParameterParameter
DD name
DEV_REV
DEV_REV
DEV_REVDEV_REV
Device Revision
Device Revision
Device RevisionDevice Revision
DEV_TYPE
DEV_TYPE
DEV_TYPEDEV_TYPE
Device Type
Device Type
Device TypeDevice Type
FAULT_STATE
FAULT_STATE
FAULT_STATEFAULT_STATE
Fault State
Fault State
Fault StateFault State
FEATURES
FEATURES
FEATURESFEATURES
Features
Features
FeaturesFeatures
FEATURES_SEL
FEATURES_SEL
FEATURES_SELFEATURES_SEL
Features Selection
Features Selection
Features SelectionFeatures Selection
FREE_SPACE
FREE_SPACE
FREE_SPACEFREE_SPACE
Free Space
Free Space
Free SpaceFree Space
FREE_TIME
FREE_TIME
FREE_TIMEFREE_TIME
Free Time
Free Time
Free TimeFree Time
GRANT_DENY
GRANT_DENY
GRANT_DENYGRANT_DENY
Grant Deny
Grant Deny
Grant DenyGrant Deny
GRANT
Grant
DENY
Deny
HARD_TYPES
HARD_TYPES
HARD_TYPESHARD_TYPES
Hardware Types
Hardware Types
Hardware TypesHardware Types
OPTIFLEX 2200 C
AccessDescription and settingsInitial Value
RManufacturer revision number associated with the resource -
used by an interface device to locate the DD file for the
resource.
Setting:
Dependent on device version.
RManufacturer's model number associated with the resource -
used by interface devices to locate the DD file for the
resource.
Setting:
OPTIFLEX2200
RCondition set by loss of communication to an output block,
failure promoted to an output block or a physical contact.
When fault state condition is set, then output function blocks
will perform their "FSTATE" actions.
Setting:
Uninitialized / Clear / Active
RUsed to shows supported resource block options.Reports
Setting:
Reports / Faultstate / Soft W Lock / MVC Report Distribution
supported / MVC Publishing/Subcribing supported / Multi-bit
Alarm (Bit-Alarm) Support
R/WUsed to select resource block options.Reports
Setting:
Reports / Faultstate / Soft W Lock / MVC Report Distribution
supported / MVC Publishing/Subscribing supported / Multi-bit
Alarm (Bit-Alarm) Support
RPercent of the memory available for further configuration.
Zero in a preconfigured device.
Setting:
0.0…100.0
RPercent of the block processing time that is free to process
additional blocks.
Setting:
0.0…100.0
R/WOptions for controlling access of host computers and local
control panels to operating, tuning and alarm parameters of
the block.
RWDepending on the philosophy of the plant, the operator or a
higher level device (HLD) or a local operator's panel (LOP) in
the case of "Local", may turn on an item of the "Grant"
attribute - Program, Tune, Alarm or Local.
Setting:
Program / Tune / Alarm / Local / Operate
RWThe Denied attribute is limited for use by a monitoring
application in an interface device and may not be changed by
an operator.
Setting:
Program denied / Tune denied / Alarm denied / Local denied /
Operate denied
RThe types of hardware available as channel numbers.Scalar input
Dependent on
device version.
OPTIFLEX2200
Clear
Soft W Lock
MVC Report
Distribution
supported
MVC
Publishing/Subcrib
ing supported
Multi-bit Alarm
(Bit-Alarm)
Support
Soft W Lock
0.0
0.0
-
Uninitialized
Uninitialized
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Parameter
Parameter
ParameterParameter
DD name
ITK_VER
ITK_VER
ITK_VERITK_VER
ITK Version
ITK Version
ITK VersionITK Version
(Interoperatibility Test
Kit)
LIM_NOTIFY
LIM_NOTIFY
LIM_NOTIFYLIM_NOTIFY
Limit Notify
Limit Notify
Limit NotifyLimit Notify
MANUFAC_ID
MANUFAC_ID
MANUFAC_IDMANUFAC_ID
Manufacturer ID
Manufacturer ID
Manufacturer IDManufacturer ID
MAX_NOTIFY
MAX_NOTIFY
MAX_NOTIFYMAX_NOTIFY
Maximum Notify
Maximum Notify
Maximum NotifyMaximum Notify
MEMORY_SIZE
MEMORY_SIZE
MEMORY_SIZEMEMORY_SIZE
Memory Size
Memory Size
Memory SizeMemory Size
MIN_CYCLE_T
MIN_CYCLE_T
MIN_CYCLE_TMIN_CYCLE_T
Minimium Cycle Time
Minimium Cycle Time
Minimium Cycle TimeMinimium Cycle Time
NV_CYCLE_T
NV_CYCLE_T
NV_CYCLE_TNV_CYCLE_T
Nonvolatile Cycle
Nonvolatile Cycle
Nonvolatile Cycle Nonvolatile Cycle
Time
Time
TimeTime
RESTART
RESTART
RESTARTRESTART
Restart
Restart
RestartRestart
RS_STATE
RS_STATE
RS_STATERS_STATE
Resource State
Resource State
Resource StateResource State
SET_FSTATE
SET_FSTATE
SET_FSTATESET_FSTATE
Set Fault State
Set Fault State
Set Fault StateSet Fault State
SHED_RCAS
SHED_RCAS
SHED_RCASSHED_RCAS
Shed Remote Cascade
Shed Remote Cascade
Shed Remote CascadeShed Remote Cascade
SHED_ROUT
SHED_ROUT
SHED_ROUTSHED_ROUT
Shed Remote Out
Shed Remote Out
Shed Remote OutShed Remote Out
TEST_RW
TEST_RW
TEST_RWTEST_RW
Test R Write
Test R Write
Test R WriteTest R Write
UPDATE_EVT
UPDATE_EVT
UPDATE_EVTUPDATE_EVT
Update Event
Update Event
Update EventUpdate Event
OPERATION 4
AccessDescription and settingsInitial Value
RMajor revision number of the interoperability test case used to
register this device.
R/WMaximum number of unconfirmed alert notify messages
allowed.
Setting:
0...255
RManufacturer identification number - used by an interface
device to locate the DD file for the resource.
Setting:
KROHNE
RMaximum number of unconfirmed alert notify messages
possible.
Setting:
0...255
RAvailable configuration memory in the empty resource. To be
checked before attempting a download.
RTime duration of the shortest cycle interval of which the
resource is capable (in [1/32 ms]).
RInterval between writing copies of NV parameters to non-
volatile memory. Zero means never (in [1/32 ms]).
RWAllows a manual restart to be initiated. Several degrees of
restart are possible. They are 1: Run, 2: Restart resource,
3: Restart with defaults and 4: Restart processor.
Setting:
Uninitialized / Run / Resource / Defaults / Processor
RState of the function block application state machine.Standby
RWAllows the fault state condition to be manually initiated by
selecting "SET".
Setting:
Unintialized / OFF / SET
R/WTime duration at which to give up on computer writes to
function block RCAS locations.
Setting:
0...4294967295 in [1/32 ms]
RWTime duration at which to give up on computer writes to
function block ROUT locations.
Setting:
0...4294967295 in [1/32 ms]
Read/write test parameter - used only for conformance
testing.
Note: Subelements "1..15" have no function!
This alert is generated by any change to the static data.-
6.1
20
KROHNE
20
0
6400
256000
Run
OFF
640000
640000
-
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4 OPERATION
Parameter
Parameter
ParameterParameter
DD name
OPTIFLEX 2200 C
AccessDescription and settingsInitial Value
UNACKNOWLEDGED
Unacknowledged
UPDATE_STATE
Update State
TIME_STAMP
Time Stamp
STATIC_REVISION
Static Revision
RELATIVE_INDEX
Relative Index
WRITE_ALM
WRITE_ALM
WRITE_ALMWRITE_ALM
Write Alarm
Write Alarm
Write AlarmWrite Alarm
UNACKNOWLEDGED
Unacknowledged
ALARM_STATE
Alarm State
TIME_STAMP
Time Stamp
RWA discrete enumeration which is set to "Unacknowledged"
when an update occurs, and set to "Acknowledged" by a write
from a human interface device or other entity which can
acknowledge that the alarm/event has been noticed.
RA discrete enumeration which gives an indication of whether
the alert has been reported.
Setting:
Uninitialized / Reported / Not reported
RThe time when evaluation of the block was started and a
change in alarm/event state was detected that is unreported.
The time stamp value will be maintained constant until alert
confirmation has been received - even if another change of
state occurs.
Setting:
MM / DD / YY (Month / Day / Year)
HH:MM:SS (Hour:Minute:Second)
RThe static revision of the block whose static parameter was
changed and is being reported. It is possible for the present
value of static revision to be greater than this because static
can be changed at any time.
Setting:
0…65535
RThe OD index of the static parameter whose change caused
this alert, minus the FB starting index. If the update event was
caused by a write to multiple parameters at the same time,
then this attribute will be zero.
Setting:
0…65535
This alert is generated if the write lock parameter is cleared.-
RWA discrete enumeration which is set to "Unacknowledged"
when an alarm occurs, and set to "Acknowledged" by a write
from a human interface device or other entity which can
acknowledge that the alarm/event has been noticed.
RA discrete enumeration which gives an indication of whether
the alert is active and whether it has been reported.
Setting:
Uninitialized / Clear - reported / Clear - not reported / Active reported / Active - not reported
RThe time when evaluation of the block was started and a
change in alarm/event state was detected that is unreported.
The time stamp value will be maintained constant until alert
confirmation has been received - even if another change of
state occurs.
Setting:
MM / DD / YY (Month / Day / Year)
HH:MM:SS (Hour:Minute:Second)
Uninitialized
Uninitialized
Uninitialized
0
0
Uninitialized
Uninitialized
Uninitialized
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OPTIFLEX 2200 C
Parameter
Parameter
ParameterParameter
DD name
OPERATION 4
AccessDescription and settingsInitial Value
SUB_CODE
Subcode
VALUE
Discrete Value
WRITE_LOCK
WRITE_LOCK
WRITE_LOCKWRITE_LOCK
Write Lock
Write Lock
Write LockWrite Lock
WRITE_PRI
WRITE_PRI
WRITE_PRIWRITE_PRI
Write Priority
Write Priority
Write PriorityWrite Priority
RAn enumeration specifying the cause of the alert to be
reported.
Setting:
Other / Block Configuration / Link Configuration / Simulation
Active / Local Override / Device Fault State / Device
Maintenance / Input Failure / Output Failure / Memory
Failure / Lost Static Data / Lost NV Data / Readback Check /
Maintenance Needed / Power Up / Out Of Service
RThe value of the associated parameter at the time the alert
was detected.
Setting:
Discrete State 0...16
RWIf set, no writes from anywhere are allowed, except to clear
WRITE_LOCK. Block inputs will continue to be updated.
Setting:
Uninitialized / Not locked / Locked
RPriority of the alarm generated by clearing the write lock.0
Setting:
0...15
Other
State 0
Not locked
4.4.2 Manufacturer-specific parameters of the signal converter for Resource Block
Parameter
Parameter
ParameterParameter
DD name
DEV_DESCRIPTION
DEV_DESCRIPTION
DEV_DESCRIPTIONDEV_DESCRIPTION
Device Description
Device Description
Device DescriptionDevice Description
ELECTRONIC_REV
electronic revision
FW_CONV_VER
FW sensor
FW_SENSOR_VER
FW sensor
FW_HMI_VER
FW HMI
PRODUCTION_DATE
Production date
FF_BOARD _INFO
FF_BOARD _INFO
FF_BOARD _INFOFF_BOARD _INFO
FF Circuit Board Info
FF Circuit Board Info
FF Circuit Board InfoFF Circuit Board Info
IDENT_NUMBER
identnumber
SOFTWARE_VER
FF software version
Access Description and settingsInitial Value
Describes some characteristics of the device-
RElectronic Revision of the deviceCurrent
electronic
revision
RFirmware version of the converterCurrent
firmware
version of the
converter
RSensor versionCurrent
sensor
version
RVersion of the human-machine-interface firmware partCurrent
version of HMI
RProduction dateCurrent date
of production
FF board information
RIdent numberCurrent ident
number
RFF software versionCurrent
version
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19
4 OPERATION
Parameter
Parameter
ParameterParameter
DD name
FD_CHECK_ACTIVE
FD_CHECK_ACTIVE
FD_CHECK_ACTIVEFD_CHECK_ACTIVE
Check Active
Check Active
Check ActiveCheck Active
FD_CHECK_ALM
FD_CHECK_ALM
FD_CHECK_ALMFD_CHECK_ALM
Check Alarm
Check Alarm
Check AlarmCheck Alarm
UNACKNOWLEDGED
Unacknowledged
ALARM_STATE
Alarm State
TIME_STAMP
Time Stamp
OPTIFLEX 2200 C
Access Description and settingsInitial Value
RThis parameter reflects the error conditions that are being detected
as active as selected for this category. It is a bit string, so that
multiple conditions may be shown.
Setting:
• (00) Check Function
• (01) Cond01
• (02) Cond02
• (03) Cond03
• (04) Cond04
• (05) Cond05
• (06) Snapshot invalid
• (07) Audio Signal Offset outside Range
• (08) Reference Position outside Range
• (09) Pulse Flange Lost
• (10) No Probe detected
• (11) Reference Lost Error
• (12) Oscillator Frequency failure
• (13) Temperature Above +75°C
• (14) Temperature Below -35°C
• (15) Overfill Warning
• (16) Level Lost warning
• (17) Temperature out of range (warning)
• (18) Local operation
• (19) Overfill Error
• (20) Level lost error
• (21) Temperature out of range Error
• (22) Converter Voltage Error
• (23) Converter ROM Error
• (24) Converter RAM Error
• (25) Converter EEPROM Error
• (26) Sensor not compatible
• (27) Internal Communication Error
• (28) Sensor Voltage Error
• (29) Sensor ROM Error
• (30) Sensor RAM Error
• (31) Sensor EEPROM Error
This parameter is used primarily to broadcast a change in the
associated active conditions, which are not masked, for this alarm
category to a Host System.
RWA discrete enumeration which is set to "Unacknowledged" when an
alarm occurs, and set to "Acknowledged" by a write from a human
interface device or other entity which can acknowledge that the
alarm/event has been noticed.
RA discrete enumeration which gives an indication of whether the
alert is active and whether it has been reported.
Uninitialized / Clear - reported / Clear - not reported / Active reported / Active - not reported
RThe time when evaluation of the block was started and a change in
alarm/event state was detected that is unreported. The time stamp
value will be maintained constant until alert confirmation has been
received – even if another change of state occurs.
Setting:
MM / DD / YY (Month / Day / Year)
HH:MM:SS (Hour:Minute:Second)
Uninitialized
Uninitialized
Uninitialized
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OPTIFLEX 2200 C
Parameter
Parameter
ParameterParameter
DD name
OPERATION 4
Access Description and settingsInitial Value
SUB_CODE
Subcode
VALUE
Value
FD_CHECK_MAP
FD_CHECK_MAP
FD_CHECK_MAPFD_CHECK_MAP
Check Map
Check Map
Check MapCheck Map
RAn enumeration specifying the cause of the alert to be reported.
RThe value of the associated parameter at the time the alert was
detected.
RWThis parameter enables or disables conditions to be detected as
active for this alarm category.
Setting:
• (00) Check Function
• (01) Cond01
• (02) Cond02
• (03) Cond03
• (04) Cond04
• (05) Cond05
• (06) Snapshot invalid
• (07) Audio Signal Offset outside Range
• (08) Reference Position outside Range
• (09) Pulse Flange Lost
• (10) No Probe detected
• (11) Reference Lost Error
• (12) Oscillator Frequency failure
• (13) Temperature Above +75°C
• (14) Temperature Below -35°C
• (15) Overfill Warning
• (16) Level Lost warning
• (17) Temperature out of range (warning)
• (18) Local operation
• (19) Overfill Error
• (20) Level lost error
• (21) Temperature out of range Error
• (22) Converter Voltage Error
• (23) Converter ROM Error
• (24) Converter RAM Error
• (25) Converter EEPROM Error
• (26) Sensor not compatible
• (27) Internal Communication Error
• (28) Sensor Voltage Error
• (29) Sensor ROM Error
• (30) Sensor RAM Error
• (31) Sensor EEPROM Error
Nothing
mapped
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21
4 OPERATION
Parameter
Parameter
ParameterParameter
DD name
FD_CHECK_MASK
FD_CHECK_MASK
FD_CHECK_MASKFD_CHECK_MASK
Check Mask
Check Mask
Check MaskCheck Mask
FD_CHECK_PRI
FD_CHECK_PRI
FD_CHECK_PRIFD_CHECK_PRI
Check Priority
Check Priority
Check PriorityCheck Priority
OPTIFLEX 2200 C
Access Description and settingsInitial Value
RWThis parameter allows the user to suppress any single or multiple
conditions that are active, in this category, from being broadcast to
the host through the alarm parameter.
Setting:
Nothing
masked
• (00) Check Function
• (01) Cond01
• (02) Cond02
• (03) Cond03
• (04) Cond04
• (05) Cond05
• (06) Snapshot invalid disabled
• (07) Audio Signal Offset outside Range disabled
• (08) Reference Position outside Range disabled
• (09) Pulse Flange Lost disabled
• (10) No Probe detected
• (11) Reference Lost Error
• (12) Oscillator Frequency failure disabled
• (13) Temperature Above +75°C disabled
• (14) Temperature Below -35°C disabled
• (15) Overfill Warning disabled
• (16) Level Lost warning disabled
• (17) Temperature out of range (warning) disabled
• (18) Local operation disabled
• (19) Overfill Error disabled
• (20) Level lost error disabled
• (21) Temperature out of range Error disabled
• (22) Converter Voltage Error disabled
• (23) Converter ROM Error disabled
• (24) Converter RAM Error disabled
• (25) Converter EEPROM Error disabled
• (26) Sensor not compatible disabled
• (27) Internal Communication Error disabled
• (28) Sensor Voltage Error disabled
• (29) Sensor ROM Error disabled
• (30) Sensor RAM Error disabled
• (31) Sensor EEPROM Error disabled
RWThis parameter allows the user to specify the priority of this alarm
category.
Setting:
0...15
0
22
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