Siemens SITRANS P410,SITRANS P DS III Compact Operating Instructions

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1
Compact Operating Instructions
Legal information Warning notice system
DANGER
indicates that death or severe personal injury will result if proper precautions are not taken.
WARNING
indicates that death or severe personal injury may result if proper precautions are not taken.
CAUTION
indicates that minor personal injury can result if proper precautions are not taken.
NOTICE
indicates that property damage can result if proper precautions are not taken.
Qualified Personnel
personnel qualified
Proper use of Siemens products
WARNING
Siemens products may only be used for the applications described in the catalog and in the relevant technical documentation. If products
problems. The permissible ambient conditions must be complied with. The information in the relevant documentation must be observed.
1

Introduction

1.1

Purpose of this documentation

See also
This manual contains notices you have to observe in order to ensure your personal safety, as well as to prevent damage to property. The notices referring to your personal safety are highlighted in the manual by a safety alert symbol, notices referring only to property damage have no safety alert symbol. These notices shown below are graded according to the degree of danger.
If more than one degree of danger is present, the warning notice representing the highest degree of danger will be used. A notice warning of injury to persons with a safety alert symbol may also include a warning relating to property damage.
The product/system described in this documentation may be operated only by the relevant documentation, in particular its warning notices and safety instructions. Qualified personnel are those who, based on their training and experience, are capable of identifying risks and avoiding potential hazards when working with these products/systems.
Note the following:
and components from other manufacturers are used, these must be recommended or approved by Siemens. Proper transport, storage, installation, assembly, commissioning, operation and maintenance are required to ensure that the products operate safely and without any
These instructions are a brief summary of important features, functions and safety information, and contain all information required for safe use of the device. Read the instructions carefully prior to installation and commissioning. In order to use the device correctly, first review its principle of operation.
The instructions are aimed at persons who mechanically assemble the device, connect it electrically, and start it up.
To achieve optimum usage of the device, read the detailed version of the instructions.
for the specific task in accordance with
Instructions and manuals (http://www.siemens.com/processinstrumentation/documentation)
© Siemens AG 2015. All rights reserved A5E03434626-04, 05/2015
3
SITRANS P DS III and SITRANS P410
1.2

History

Edition
Firmware ID (FW) on the nameplate
System integration
Installation path for PDM FW: 11.03.05, FW: 11.03.06
DSIII.2
and SITRANS P DSIII PA 3.01
DSIII.2/P410
3.01
possible for FF
1.3

Scope of the instructions

Order number
SITRANS P DS III/P410 for
7MF403..
Gauge pressure
7MF413..
Gauge pressure, flush mounted diaphragm
7MF423..
Absolute pressure from the gauge pressure series
7MF433..
Absolute pressure from the differential pressure series
7MF443..
Differential pressure and flow rate, PN 32/160 (MAWP 464/2320 psi)
7MF463..
Level
1.4

Purpose

Overview
These instructions describe the pressure transmitters SITRANS P DS III and SITRANS P410. The main difference of the SITRANS P410 is the higher measuring precision compared to the SITRANS P DS III. Refer to the "Technical specifications" section in the operating instructions, since the measuring precision is not described in these compact operating instructions.
The SITRANS P410 can be ordered for specific device variants via the order option C41.
This history establishes the correlation between the current documentation and the valid firmware of the device.
The documentation of this edition applies to the following firmware:
05/2015 HART: FW: 11.03.03, FW: 11.03.04,
PA: FW: 301.01.10 SITRANS P DSIII PA: SITRANS P DSIII
FF: FW: 11.01.02 SITRANS P410 HART: SITRANS P
Table 1-1 "7MF4.3.." stands for:
7MF453.. Differential pressure and flow rate, PN 420 (MAWP 6092 psi)
SIMATIC PDM
8.x
SITRANS P DSIII HART: SITRANS P
SITRANS P410 PA: SITRANS P410 PA
No parameter assignment with PDM
Depending on the variant, the pressure transmitter measures corrosive, non-corrosive and hazardous gases, vapors and liquids.
You can use the pressure transmitter for the following types of measurement:
Gauge pressure
Absolute pressure
Differential pressure
With appropriate parameter settings and the necessary add-on parts (e.g. flow limiters and remote seals), the pressure transmitter can also be used for the following measurements:
Level
Volume
Mass
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1.5

Checking the consignment

WARNING
Using a damaged or incomplete device
Do not use damaged or incomplete devices.
Volume of flow
Mass flow rate
The output signal is a load-independent direct current of 4 to 20 mA or a process-based, digital PROFIBUS PA/FOUNDATION™ Fieldbus FF signal.
You can install the "intrinsically-safe" or "explosion-proof" version of the pressure transmitter in hazardous areas. The devices have an EC type examination certificate and comply with the appropriate harmonized European CENELEC directives.
Pressure transmitters with remote seals of various shapes can be provided for special applications. For example, measuring high-viscosity substances is a special application.
Operate the device in accordance with the specifications in section Technical specifications (Page 36).
For additional information, please refer to the operating instructions for the device.
1. Check the packaging and the delivered items for visible damage.
2. Report any claims for damages immediately to the shipping company.
3. Retain damaged parts for clarification.
4. Check the scope of delivery by comparing your order to the shipping documents for correctness and completeness.
Danger of explosion in hazardous areas.
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1.6

Nameplate layout

Layout of nameplate with general information
Order number (machine-readable product code)
Serial number
The nameplate bearing the order number and other important information, such as design details and technical data, is on the side of the enclosure.
Figure 1-1 Example of SITRANS P DS III nameplate
Figure 1-2 Example of SITRANS P410 nameplate
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Layout of nameplate with approval information The nameplate with approval information is on the opposite side. This nameplate shows the hardware and firmware
versions, for example. You must also observe the information in the relevant certificate for a pressure transmitter version for use in hazardous areas.
Figure 1-3 Example for approval plate SITRANS P DS III
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7
class)
Category for operating area
Device protection level
Type of protection
Firmware ID
Group (gas, dust)
Hardware identifier
1.7

Transportation and storage

CAUTION
Insufficient protection during storage
Provide additional packaging as necessary.
1.8

Notes on warranty

Characteristics of the hazardous area
Figure 1-4 Example for approval plate SITRANS P410
To guarantee sufficient protection during transport and storage, observe the following:
Keep the original packaging for subsequent transportation.
Devices/replacement parts should be returned in their original packaging.
If the original packaging is no longer available, ensure that all shipments are properly packaged to provide sufficient
protection during transport. Siemens cannot assume liability for any costs associated with transportation damages.
The packaging only provides limited protection against moisture and infiltration.
Special conditions for storage and transportation of the device are listed in "Technical data" (Page 36).
Maximum surface temperature (temperature
The contents of this manual shall not become part of or modify any prior or existing agreement, commitment or legal relationship. The sales contract contains all obligations on the part of Siemens as well as the complete and solely applicable warranty conditions. Any statements regarding device versions described in the manual do not create new warranties or modify the existing warranty.
The content reflects the technical status at the time of publishing. Siemens reserves the right to make technical changes in the course of further development.
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2

Safety instructions

2.1

Precondition for use

2.1.1
Other certificates
2.1.2
Warning symbols on the device
Symbol
Explanation
2.1.3
Laws and directives
2.1.4
Conformity with European directives
Electromagnetic Compatibility EMC 2004/108/EC
Directive of the European Parliament and of the Council on the approximation of the la Directive 89/336/EEC.
Atmosphère explosible ATEX 94/9/EC
Directive of the European Parliament and the Council on the approximation of the laws of the Member States concerning for use in potentially explosive atmospheres.
Pressure Equipment Directive PED 97/23/EC
Directive of the European Parliament and of the Council on the approximation of the laws of the Member States concerning pressure equipment.
This device left the factory in good working condition. In order to maintain this status and to ensure safe operation of the device, observe these instructions and all the specifications relevant to safety.
Observe the information and symbols on the device. Do not remove any information or symbols from the device. Always keep the information and symbols in a completely legible state.
Figure 2-1 Chinese Manufacturing Certificate
Consult operating instructions
Observe the test certification, provisions and laws applicable in your country during connection, assembly and operation. These include, for example:
National Electrical Code (NEC - NFPA 70) (USA)
Canadian Electrical Code (CEC) (Canada)
Further provisions for hazardous area applications are for example:
IEC 60079-14 (international)
EN 60079-14 (EC)
The CE mark on the device is a sign of conformity with the following European directives:
ws of the Member States relating to electromagnetic compatibility and repealing
The standards applied can be found in the EC declaration of conformity for the device.
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equipment and protective systems intended
9
2.2

Improper device modifications

WARNING
Improper device modifications
cancels the manufacturer's warranty and the product approvals.
2.3

Requirements for special applications

Note Operation under special ambient conditions We highly recommend that you contact your Siemens representative or our application department before you operate the
device under research and development purposes.
2.4

Use in hazardous areas

Qualified personnel for hazardous area applications
WARNING
Unsuitable device for the hazardous area
Only use equipment that is approved for use in the intended hazardous area and labelled accordingly.
See also
WARNING
Loss of safety of device with type of protection "Intrinsic safety Ex i"
Observe the specifications for the electrical data on the certificate and/or in Chapter "Technical data (Page 36)".
Danger to personnel, system and environment can result from modifications to the device, particularly in hazardous areas.
Only carry out modifications that are described in the instructions for the device. Failure to observe this requirement
Due to the large number of possible applications, each detail of the described device versions for each possible scenario during commissioning, operation, maintenance or operation in systems cannot be considered in the instructions. If you need additional information not covered by these instructions, contact your local Siemens office or company representative.
special ambient conditions as can be encountered in nuclear power plants or when the device is used for
Persons who install, connect, commission, operate, and service the device in a hazardous area must have the following specific qualifications:
They are authorized, trained or instructed in operating and maintaining devices and systems according to the safety regulations for electrical circuits, high pressures, aggressive, and hazardous media.
They are authorized, trained, or instructed in carrying out work on electrical circuits for hazardous systems.
They are trained or instructed in maintenance and use of appropriate safety equipment according to the pertinent safety
regulations.
Danger of explosion.
Technical specifications (Page 36)
If the device has already been operated in non-intrinsically safe circuits or the electrical specifications have not been observed, the safety of the device is no longer ensured for use in hazardous areas. There is a danger of explosion.
Connect the device with type of protection "Intrinsic safety" solely to an intrinsically safe circuit.
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WARNING
Use of incorrect device parts in potentially explosive environments
Do not swap device parts unless the manufacturer specifically ensures compatibility of these parts.
WARNING
Risk of explosion due to electrostatic charge
3

Installing/mounting

3.1

Basic safety instructions

WARNING
Wetted parts unsuitable for the process media
information in "Technical data" (Page 36).
WARNING
Incorrect material for the diaphragm in Zone 0
section "Technical specifications (Page 36)".
WARNING
Unsuitable connecting parts
Ensure that connecting parts (such as flange gaskets and bolts) are suitable for connection and process media.
Note Material compatibility Siemens can provide you with support concerning selection of sensor components wetted by process media. However, you
are responsible for the selection of components. Siemens accepts no liability for faults or failures resulting from incompatible materials.
Devices and their associated device parts are either approved for different types of protection or they do not have explosion protection. There is a danger of explosion if device parts (such as covers) are used for devices with explosion protection that are not expressly suited for this type of protection. If you do not adhere to these guidelines, the test certificates and the manufacturer warranty will become null and void.
Use only device parts that have been approved for the respective type of protection in the potentially explosive environment. Covers that are not suited for the "explosion-proof" type of protection are identified as such by a notice label attached to the inside of the cover with "Not Ex d Not SIL".
To prevent the build-up of an electrostatic charge in a hazardous area, the key cover must be closed during operation and the screws tightened.
The key cover may be opened temporarily at any time for the purposes of operating the pressure transmitter, even during plant operation; the screws should then be tightened again.
Danger of injury or damage to device. Hot, toxic and corrosive media could be released if the process medium is unsuitable for the wetted parts.
Ensure that the material of the device parts wetted by the process medium is suitable for the medium. Refer to the
Danger of explosion in the hazardous area. If operated with intrinsically safe supply devices of category "ib" or devices of the flameproof enclosure version "Ex d" and simultaneous use in Zone 0, pressure transmitter explosion protection depends on the tightness of the diaphragm.
Ensure that the material used for the diaphragm is suitable for the process medium. Refer to the information in the
Danger of injury or poisoning. In case of improper mounting hot, toxic and corrosive process media could be released at the connections.
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WARNING
Exceeded maximum permissible operating pressure
maximum permissible operating pressure depends on the device version. The device can be damaged if the operating
information on the nameplate and/or in "Technical specifications (Page 36)".
WARNING
Exceeded maximum ambient or process media temperature
Refer to the information in Chapter "Technical specifications (Page 36)".
WARNING
Open cable inlet or incorrect cable gland
type of protection.
WARNING
Incorrect conduit system
regulations and the requirements stated in the relevant approvals.
See also
WARNING
Incorrect mounting at Zone 0
Observe the standard IEC/EN 60079-14.
Danger of injury or poisoning. The
pressure is exceeded. Hot, toxic and corrosive process media could be released.
Make sure that the device is suitable for the maximum permissible operating pressure of your system. Refer to the
Danger of explosion in hazardous areas. Device damage.
Make sure that the maximum permissible ambient and process media temperatures of the device are not exceeded.
Danger of explosion in hazardous areas.
Close the cable inlets for the electrical connections. Only use cable glands or plugs which are approved for the relevant
Danger of explosion in hazardous areas as result of open cable inlet or incorrect conduit system.
In the case of a conduit system, mount a spark barrier at a defined distance from the device input. Observe national
Technical specifications (Page 36)
Danger of explosion in hazardous areas.
Ensure sufficient tightness at the process connection.
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WARNING
Danger with "flameproof enclosure" protection
Ensure that there is a space of at least 40 mm between the flameproof joint and the fixed parts.
Flameproof joint
WARNING
Loss of explosion protection
Close the device as described in Chapter "Connecting the device (Page 22)".
CAUTION
Hot surfaces resulting from hot process media
Refer to the information in Chapter "Technical specifications (Page 36)".
CAUTION
External stresses and loads
Prevent severe external stresses and loads from acting on the device.
3.1.1
Installation location requirements
WARNING
Insufficient air supply
specifications (Page 36)".
Danger of explosion in hazardous areas. An explosion may be caused by hot gas escaping from the flameproof enclosure if there is too little space between it and the fixed parts.
Danger of explosion in hazardous areas if the device is open or not properly closed.
Danger of burns resulting from surface temperatures above 70 °C (155 °F).
Take appropriate protective measures, for example contact protection.
Make sure that protective measures do not cause the maximum permissible ambient temperature to be exceeded.
Damage to device by severe external stresses and loads (e.g. thermal expansion or pipe tension). Process media can be released.
The device may overheat if there is an insufficient supply of air.
Install the device so that there is sufficient air supply in the room.
Observe the maximum permissible ambient temperature. Refer to the information in the section "Technical
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CAUTION
Aggressive atmospheres
Ensure that the device is suitable for the application.
NOTICE
Direct sunlight
3.1.2
Proper mounting
3.1.2.1
Incorrect mounting
NOTICE
Incorrect mounting
torque requirements.
CAUTION
Loss of degree of protection Damage to device if the enclosure is open or not properly closed. The degree of protection specified on the nameplate or in
Make sure that the device is securely closed.
See also
3.2

Disassembly

WARNING
Incorrect disassembly
Secure the remaining connections so that no damage can result if the process is started unintentionally.
Damage to device through penetration of aggressive vapors.
Increased measuring errors.
Protect the device from direct sunlight. Make sure that the maximum ambient temperature is not exceeded. Refer to the information in the section Technical
specifications (Page 36).
The device can be damaged, destroyed, or its functionality impaired through improper mounting.
Before installing ensure there is no visible damage to the device.
Make sure that process connectors are clean, and suitable gaskets and glands are used.
Mount the device using suitable tools. Refer to the information in Technical specifications (Page 36) for installation
Chapter "Technical specifications (Page 36)" is no longer guaranteed.
Connecting the device (Page 22)
The following dangers may result through incorrect disassembly:
- Injury through electric shock
- Danger through emerging media when connected to the process
- Danger of explosion in hazardous area In order to disassemble correctly, observe the following:
Before starting work, make sure that you have switched off all physical variables such as pressure, temperature, electricity etc. or that they have a harmless value.
If the device contains dangerous media, it must be emptied prior to disassembly. Make sure that no environmentally hazardous media are released.
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3.3

Installation (except level)

3.3.1
Instructions for installation (except level)
Requirements
Note Compare the des Please also refer to the information on the remote seal if this is fitted.
Note Protect the pressure transmitter from:
Direct sunlight
Installation configuration
Installation configuration for gases
Installation configuration for vapor and liquid
3.3.2
Installation (except level)
Note Damage to measuring cell When installing the process connection of the pressure transmitter, do not rotate the housing. Rotating the housing may
damage the measuring cell. To avoid damage to the device, tighten the threaded nuts of the me
Procedure
See also
Direct thermal radiation Rapid temperature fluctuations Severe soiling Mechanical damage
The installation location is to be as follows:
Easily accessible
As close as possible to the measuring point
Vibration-free
Within the permitted ambient temperature values
ired operating data with the data on the nameplate.
The pressure transmitter may in principle be configured above or below the pressure tapping point. The recommended configuration depends on the aggregate state of the medium.
Install the pressure transmitter above the pressure tapping point.
Lay the pressure tubing with a constant gradient to the pressure tapping point, so that any condensation produced can drain in the main line and thereby avoid corruption of the measured values.
Install the pressure transmitter below the pressure tapping point.
Lay the pressure tubing with a constant gradient to the pressure tapping point so that any gas pockets can escape in the main line.
asuring cell using a wrench.
Attach the pressure transmitter to the process connection with an appropriate tool.
Introduction to commissioning (Page 25)
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3.3.3
Fastening
Fastening without the mounting bracket
Fastening with the mounting bracket
You can fasten the pressure transmitter directly to the process connection.
You can fasten the mounting bracket as follows:
On a wall or a mounting frame using two screws
On a vertical or horizontal mounting tube (Ø 50 to 60 mm) using a tube bracket
Fasten the pressure transmitter mounting bracket using the two screws provided.
Figure 3-1 Fastening the pressure transmitter on the mounting bracket
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Figure 3-2 An example of fastening the pressure transmitter on the mounting bracket in the case of differential pressure
and horizontal differential pressure lines
Figure 3-3 An example of fastening on the mounting bracket in the case of differential pressure and vertical differential
pressure lines
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3.4

"Level" installation

3.4.1
Instructions for level installation
Requirements
Note Compare the desired operating data with the Please also refer to the information on the remote seal if this is fitted.
Note Protect the pressure transmitter from:
Direct sunlight
Note Select the height of the mounting flange such that the pressure transmitter is always mounted below the lowest fill height to
be measured.
3.4.2
Installation for level
Note Seals are required for the installation. The seals must be compatible with the medium to be measured. Seals are not included in the deli
Procedure
3.4.3
Connection of the negative pressure line
Assembly on an open container
Direct thermal radiation Rapid temperature fluctuations Severe soiling Mechanical damage
data on the nameplate.
The installation location is to be as follows:
Easily accessible
The measuring point must be as close as possible
Vibration-free
Within the permitted ambient temperature values
very.
To install the pressure transmitter for level, proceed as follows:
1. Attach the seal to the container's mating flange. Ensure that the seal is centrically positioned and that it does not restrict the movement of the flange's seal diaphragm in
any way as otherwise the tightness of the process connection is not guaranteed.
2. Screw on the pressure transmitter's flange.
3. Observe the installation position.
A line is not required when taking measurements in an open container since the negative chamber is connected with the atmosphere.
Ensure that no dirt enters the open connection ports, for example by using connection screws with a 7MF4997-1CP bleed valve.
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Measurement assembly on an open container
Formula: Start of scale value: p Full
hU
Lower filling level
ΔpMA
Start of scale value
hO
Upper filling level
ΔpME
Full-scale value
p
Pressure
ρ
Density of the measured medium in the container
g
Acceleration due to gravity
Assembly on a closed container
Measurement assembly on a closed container (no or little condensate
Formula: Start Full
hU
Lower filling level
ΔpMA
Start of scale value
hO
Upper filling level
ΔpME
Full-scale value
p
Pressure
ρ
Density of the measured medium in the container
g
Acceleration due to gravity
= ρ · g · hU
MA
-scale value: p
= ρ · g · hO
ME
When taking measurements in a closed container without or with little condensate formation, the negative pressure line is not filled. Lay the line in such a way that pockets of condensate do not form. Install a condensation container if required.
-of-scale value: ΔpMA = ρ · g · hU
-scale value: ΔpME = ρ · g · hO
separation)
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Measurement assembly on a closed container (strong condensate formation)
Formula: Start
Δp
Full
Δp
hU
Lower filling level
ΔpMA
Start of scale value
hO
Upper filling level
ΔpME
Full-scale value
hV
Gland distance
ρ
Density of the measured medium in the container
p Pressure
ρ
Density of fluid in the negative pressure line corresponds to the prevailing temperature there
g
Acceleration due to gravity
4

Connecting

4.1

Basic safety instructions

WARNING
Unsuitable cables and/or cable glands
After installation check that the cables are seated firmly.
WARNING
Hazardous contact voltage in versions with 4-conductor extension
Observe the instructions in the 4-conductor extension operating manual for the electrical connection.
When taking measurements in a closed container with strong condensate formation, you must fill the negative pressure line (mostly with the condensate of the measured medium) and install a condensate pot. You can cut off the device using the dual pneumatic block 7MF9001-2.
-of-scale value: = g · (hU · ρ- hV · ρ')
MA
-scale value: = g · (hO · ρ- hV · ρ')
MA
The process connection on the negative side is a female thread 1/4-18 NPT or an oval flange. Lay the line for the negative pressure using a seamless steel tube 12 mm x 1.5 mm.
Danger of explosion in hazardous areas.
Only use suitable cables and cable glands complying with the requirements specified in Chapter "Technical data (Page 36)".
Tighten the cable glands in accordance with the torques specified in Chapter "Technical data (Page 36)".
When replacing cable glands use only cable glands of the same type.
'
Danger of electrocution in case of incorrect connection.
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See also
WARNING
Improper power supply
be found in the certificates, in Chapter "Technical specifications (Page 36)" or on the nameplate.
WARNING
Unsafe extra-low voltage
Connect the device to an extra-low voltage with safe isolation (SELV).
WARNING
Lack of equipotential bonding
Exception
WARNING
Unprotected cable ends
Protect unused cable ends in accordance with IEC/EN 60079-14.
WARNING
Improper laying of shielded cables
If grounding is required at both ends, use an equipotential bonding conductor.
WARNING
Connecting device in energized state
Exceptions
Exceptions for type of protection "Non-sparking nA" (Zone 2) are regulated in the relevant certificate
Technical specifications (Page 36)
Danger of explosion in hazardous areas as result of incorrect power supply, e.g. using direct current instead of alternating current.
Connect the device in accordance with the specified power supply and signal circuits. The relevant specifications can
Danger of explosion in hazardous areas due to voltage flashover.
Danger of explosion through compensating currents or ignition currents through lack of equipotential bonding.
Ensure that the device is potentially equalized.
: It may be permissible to omit connection of the equipotential bonding for devices with type of protection
"Intrinsic safety Ex i".
Danger of explosion through unprotected cable ends in hazardous areas.
Danger of explosion through compensating currents between hazardous area and the non-hazardous area.
Only ground shielded cables that run into the hazardous area at one end.
Danger of explosion in hazardous areas.
Connect devices in hazardous areas only in a de-energized state.
:
Circuits of limited energy may also be connected in the energized state in hazardous areas.
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WARNING
Incorrect selection of type of protection
unrecognizable on the nameplate.
NOTICE
Ambient temperature too high
20 °C (36 °F) higher.
NOTICE
Incorrect measured values with incorrect grounding
If necessary, ground the device using the "-" connection.
Note Electromagnetic compatibility (EMC) You can use this device in industrial environments, households and small businesses. For metal housings there is an incr
protection can be increased by grounding the housing, see Chapter "
Note Improvement of interference immunity
Refer to HART communication information in Chapter "Technical specifications (Page 36)".
4.2

Connecting the device

Opening the device
Connecting the device
Danger of explosion in areas subject to explosion hazard. This device is approved for several types of protection.
1. Decide in favor of one type of protection.
2. Connect the device in accordance with the selected type of protection.
3. In order to avoid incorrect use at a later point, make the types of protection that are not used permanently
Damage to cable sheath.
At an ambient temperature ≥ 60 °C (140 °F), use heat-resistant cables suitable for an ambient temperature at least
The device must not be grounded via the "+" connection. It may otherwise malfunction and be permanently damaged.
eased electromagnetic compatibility compared to high-frequency radiation. This
Technical specifications (Page 36)".
Lay signal cables separate from cables with voltages > 60 V. Use cables with twisted wires. Keep device and cables in distance to strong electromagnetic fields. Use shielded cables to guarantee the full specification according to HART.
1. Use a 3 mm Allen key to loosen the cover (if present).
2. Unscrew the cover of the electrical cable compartment. An identification text "FIELD TERMINALS" is provided at the side of the housing.
1. Lead the connecting cable through the cable gland ③.
2. Connect the device to the plant with the protective conductor connection
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⑦.
HART
PROFIBUS PA / Foundation™ Fieldbus FF
Feed separator with integrated load
Safety catch
Auxiliary power
Protective conductor connection/ equipotential bonding terminal
Cable entry for auxiliary power/analog output
Process connection
Connecting terminals
Ground terminal
Test connector for direct current measuring device or connection for external display (not available with PROFIBUS PA and Foundation™ Fieldbus FF)
PROFIBUS PA / Foundation™ Fieldbus FF
3. Connect the wires to the connecting terminals "+" and "-".
Ensure the correct polarity! If necessary, ground the device using the "-" connection by connecting the "-" connection to the ground terminal ⑨.
4. If necessary, connect the shield to the screw of the ground terminal
protective conductor connection.
. This is electrically connected with the external
Electrical connection, power supply
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Closing the device
Key cover
Blanking plug
Cable gland
Safety catch (front)
Safety catch (back)
Cover (front), optionally with inspection window
Cover (rear) for electrical terminal compartment
Safety catch for stainless steel enclosure
5

Commissioning

5.1

Basic safety instructions

DANGER
Toxic gases and liquids
Before venting ensure that there are no toxic gases or liquids in the device, or take the appropriate safety measures.
WARNING
Improper commissioning in hazardous areas
Before commissioning take the effect on other devices in the system into account.
1. Screw the covers ④⑦ back on as far as they will go.
2. Secure each cover with the cover catch
3. Close the key cover
4. Tighten the screws in the key cover.
5. Check the tightness of the blanking plugs
①.
③⑥.
and cable gland in accordance with the degree of protection.
Figure 4-1 View of the pressure transmitter: Left: Back right: Front view
Danger of poisoning when venting the device: if toxic process media are measured, toxic gases and liquids can be released.
Device failure or danger of explosion in hazardous areas.
Do not commission the device until it has been mounted completely and connected in accordance with the information in Chapter "Technical specifications (Page 36)".
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WARNING
Opening device in energized state
Exception
Note Hot surfaces Hot process medium and high ambient temperatures lead to hot surfaces which can cause burns.
Take corresponding protective measures, for example wear protective gloves.
5.2

Introduction to commissioning

Danger of explosion in areas subject to explosion hazard.
Only open the device in a de-energized state.
Check prior to commissioning that the cover, cover locks, and cable inlets are assembled in accordance with the
directives.
: Devices having the type of protection "Intrinsic safety Ex i" may also be opened in energized state in hazardous
areas.
Following commissioning, the pressure transmitter is immediately ready for use.
To obtain stable measured values, the pressure transmitter needs to be allowed to warm up for around 5 minutes after the power supply is switched on. When it starts up, the pressure transmitter goes through an initialization routine (display at the end: "Init done"). If the pressure transmitter does not complete the initialization routine, check the auxiliary power.
The operating data must correspond to the values specified on the nameplate. If you switch on the auxiliary power, the pressure transmitter is in operation.
The following commissioning cases are typical examples. Configurations different from those listed here may be meaningful depending on the system configuration.
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5.3

Gauge pressure, absolute pressure from the differential pressure series and absolute pressure from the gauge pressure series

5.3.1
Commissioning for gases
Usual arrangement
Special arrangement
Measuring gases above the pressure tapping point
Measuring gases below the pressure tapping point
Pressure transmitter
Pressure line
Shut
Shut
Shut
Shut
Shut
Condensate vessel (optional)
Drain valve
Requirement
Procedure
All valves are closed.
To commission the pressure transmitter for gases, proceed as follows:
-off valve
-off valve to process
-off valve for test connection or for bleed screw
-off valve
-off valve (optional)
1. Open the shut-off valve for the test connection ④.
2. Via the test connection of the shut-off valve pressure transmitter
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①.
, apply the pressure corresponding to the start of scale value to the
5.3.2
Commissioning with steam or liquid
Pressure transmitter
Shut-off valve
Shut-off valve to process
Shut-off valve for test connection or for bleed screw
Pressure line
Shut-off valve
Blow-out valve
Compensation vessel (steam only)
Requirement
Procedure
3. Check the start of scale value.
4. If the start of scale value differs from the value desired, correct it.
5. Close the shut-off valve for the test connection ④.
6. Open the shut-off valve
7. Open the shut-off valve for the process
at the pressure tapping point.
③.
Figure 5-1 Measuring steam
All valves are closed.
To commission the pressure transmitter for steam or liquid, proceed as follows:
1. Open the shut-off valve for the test connection .
2. Via the test connection of the shut-off valve
pressure transmitter
3. Check the start of scale value.
4. If the start of scale value differs from the value desired, correct it.
5. Close the shut-off valve for the test connection
6. Open the shut-off valve
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①.
at the pressure tapping point.
, apply the pressure corresponding to the start of scale value to the
④.
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5.4

Differential pressure and flow rate

5.4.1
Safety notes for commissioning with differential pressure and flow rate
WARNING
Incorrect or improper operation
are not sufficiently tight, and/or if the valves are operated incorrectly or improperly, it could
Measure
Ensure that the valves are operated correctly and properly.
5.4.2
Commissioning in gaseous environments
Usual arrangement
Special arrangement
Pressure transmitter
Shut
Stabilizing valve
Drain valves
③, ④
Differential pressure valves
Condensate vessels (optional)
Differential pressure lines
Differential pressure transducer
Pressure transmitter above transducer
Pressure transmitter below differential pressure transducer
7. Open the shut-off valve for the process ③.
If the lock screws are missing or lead to serious physical injuries or considerable damage to property.
Make sure the locking screw and/or the vent valve are screwed in and tightened.
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the differential pressure
-off valves
the
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