A grounded terminal which, as far as the operator is concerned, is grounded via a
grounding system.
Protective Earth (PE)
A terminal which must be connected to ground prior to establishing any other
connections.
The ground terminals are situated inside and outside the device:
• Inner ground terminal: Connects the protectiv earth to the mains supply.
• Outer ground terminal: Connects the device to the plant grounding system.
Communication symbols
SymbolMeaning
Wireless Local Area Network (WLAN)
Communication via a wireless, local network.
LED
Light emitting diode is off.
LED
Light emitting diode is on.
LED
Light emitting diode is flashing.
Symbols for certain types of information
SymbolMeaning
Permitted
Procedures, processes or actions that are permitted.
Preferred
Procedures, processes or actions that are preferred.
Forbidden
Procedures, processes or actions that are forbidden.
Tip
Indicates additional information.
Reference to documentation.
Reference to page.
Reference to graphic.
Visual inspection.
4Endress+Hauser
Proline Promass E 500
1.
-
.
213
Symbols in graphics
SymbolMeaning
1, 2, 3, ...Item numbers
, 2., 3., …Series of steps
A, B, C, ...Views
A-A, B-B, C-C, ...Sections
Hazardous area
Safe area (non-hazardous area)
Flow direction
Function and system design
Measuring principle
The measuring principle is based on the controlled generation of Coriolis forces. These forces are
always present in a system when both translational and rotational movements are superimposed.
Fc = 2 · ∆m (ν · ω)
Fc = Coriolis force
∆m = moving mass
ω = rotational velocity
ν = radial velocity in rotating or oscillating system
The amplitude of the Coriolis force depends on the moving mass ∆m, its velocity ν in the system and
thus on the mass flow. Instead of a constant rotational velocity ω, the sensor uses oscillation.
In the sensor, two parallel measuring tubes containing flowing fluid oscillate in antiphase, acting like
a tuning fork. The Coriolis forces produced at the measuring tubes cause a phase shift in the tube
oscillations (see illustration):
• At zero flow (when the fluid is at a standstill) the two tubes oscillate in phase (1).
• Mass flow causes deceleration of the oscillation at the inlet of the tubes (2) and acceleration at the
outlet (3).
A0028850
The phase difference (A-B) increases with increasing mass flow. Electrodynamic sensors register the
tube oscillations at the inlet and outlet. System balance is ensured by the antiphase oscillation of the
two measuring tubes. The measuring principle operates independently of temperature, pressure,
viscosity, conductivity and flow profile.
Endress+Hauser5
Proline Promass E 500
Density measurement
The measuring tube is continuously excited at its resonance frequency. A change in the mass and
thus the density of the oscillating system (comprising measuring tube and fluid) results in a
corresponding, automatic adjustment in the oscillation frequency. Resonance frequency is thus a
function of medium density. The microprocessor utilizes this relationship to obtain a density signal.
Volume measurement
Together with the measured mass flow, this is used to calculate the volume flow.
Temperature measurement
The temperature of the measuring tube is determined in order to calculate the compensation factor
due to temperature effects. This signal corresponds to the process temperature and is also available
as an output signal.
6Endress+Hauser
Proline Promass E 500
2
3
1
A
B
1
2
3
Measuring system
The measuring system consists of a transmitter and a sensor. The transmitter and sensor are
mounted in physically separate locations. They are interconnected by connecting cables.
Transmitter
Two versions of the transmitter are available.
Proline 500 – digitalProline 500
For use in applications not required to meet special requirements due to
ambient or operating conditions.
ANon-hazardous area or Zone 2; Class I, Division 2
BNon-hazardous area or Zone 2; Class I, Division 2 or Zone 1; Class I,
Division 1
1Transmitter
2Connecting cable: cable, separate, standard
3Sensor connection housing with integrated ISEM
• Flexible and cost-effective separate installation.
• A standard cable can be used as the connecting cable.
• Electronics in the transmitter housing, ISEM (intelligent sensor
electronics module) in the sensor connection housing
• Signal transmission: digital
Order code for "Integrated ISEM electronics", option A "Sensor"
Connecting cable (can be ordered in various lengths)→ 112
• Length:
– Zone 2; Class I, Division 2: max. 300 m (1000 ft)
– Zone 1; Class I, Division 1: max. 150 m (500 ft)
• Standard cable with common shield (pair-stranded)
1Possibilities for integrating measuring devices into a system
1Control system (e.g. PLC)
2Connecting cable (0/4 to 20 mA HART etc.)
3Fieldbus
4Segment coupler
5Non-hazardous area
6Hazardous area: Zone 2; Class I, Division 2
7Hazardous area: Zone 1; Class I, Division 1
8Endress+Hauser
A0027512
Proline Promass E 500
SafetyIT security
Our warranty is valid only if the device is installed and used as described in the Operating
Instructions. The device is equipped with security mechanisms to protect it against any inadvertent
changes to the settings.
IT security measures, which provide additional protection for the device and associated data transfer,
must be implemented by the operators themselves in line with their security standards.
Device-specific IT security
The device offers a range of specific functions to support protective measures on the operator's side.
These functions can be configured by the user and guarantee greater in-operation safety if used
correctly. An overview of the most important functions is provided in the following section.
Function/interfaceFactory settingRecommendation
Write protection via hardware write
protection switch → 9
Access code
(also applies for Web server login or
FieldCare connection) → 9
WLAN
(order option in display module)
WLAN security modeEnabled (WPA2-
WLAN passphrase
(password) → 10
WLAN modeAccess PointOn an individual basis following risk
Web server→ 10Enabled.On an individual basis following risk
CDI-RJ45 service interface → 10–On an individual basis following risk
Not enabled.On an individual basis following risk
assessment.
Not enabled
(0000).
Enabled.On an individual basis following risk
PSK)
Serial numberAssign a customized access code during
Assign a customized access code during
commissioning.
assessment.
Do not change.
commissioning.
assessment.
assessment.
assessment.
Protecting access via hardware write protection
Write access to the device parameters via the local display, Web browser or operating tool (e.g.
FieldCare, DeviceCare) can be disabled via a write protection switch (DIP switch on the
motherboard). When hardware write protection is enabled, only read access to the parameters is
possible.
Hardware write protection is disabled when the device is delivered.
Protecting access via a password
Different passwords are available to protect write access to the device parameters or access to the
device via the WLAN interface.
• User-specific access code
Protect write access to the device parameters via the local display, Web browser or operating tool
(e.g. FieldCare, DeviceCare). Access authorization is clearly regulated through the use of a userspecific access code.
• WLAN passphrase
The network key protects a connection between an operating unit (e.g. notebook or tablet) and the
device via the WLAN interface which can be ordered as an option.
• Infrastructure mode
When the device is operated in infrastructure mode, the WLAN passphrase corresponds to the
WLAN passphrase configured on the operator side.
User-specific access code
Write access to the device parameters via the local display, Web browser or operating tool (e.g.
FieldCare, DeviceCare) can be protected by the modifiable, user-specific access code.
Endress+Hauser9
Proline Promass E 500
WLAN passphrase: Operation as WLAN access point
A connection between an operating unit (e.g. notebook or tablet) and the device via the WLAN
interface, which can be ordered as an optional extra, is protected by the network key. The WLAN
authentication of the network key complies with the IEEE 802.11 standard.
When the device is delivered, the network key is pre-defined depending on the device. It can be
changed via the WLAN settings submenu in the WLAN passphrase parameter.
Infrastructure mode
A connection between the device and WLAN access point is protected by means of an SSID and
passphrase on the system side. Please contact the relevant system administrator for access.
General notes on the use of passwords
• The access code and network key supplied with the device should be changed during
commissioning.
• Follow the general rules for generating a secure password when defining and managing the access
code or network key.
• The user is responsible for the management and careful handling of the access code and network
key.
Access via Web server
The device can be operated and configured via a Web browser with the integrated Web server. The
connection is via the service interface (CDI-RJ45) or the WLAN interface. For device versions with
the EtherNet/IP and PROFINET communication protocols, the connection can also be established via
the terminal connection for signal transmission with EtherNet/IP or PROFINET (RJ45 connector).
The Web server is enabled when the device is delivered. The Web server can be disabled if necessary
(e.g. after commissioning) via the Web server functionality parameter.
The device and status information can be hidden on the login page. This prevents unauthorized
access to the information.
For detailed information on device parameters, see:
The "Description of Device Parameters" document → 115
Access via OPC-UA
The "OPC UA Server" application package is available in the device version with the HART
communication protocol → 111.
The device can communicate with OPC UA clients using the "OPC UA Server" application package.
The OPC UA server integrated in the device can be accessed via the WLAN access point using the
WLAN interface - which can be ordered as an optional extra - or the service interface (CDI- RJ45) via
Ethernet network. Access rights and authorization as per separate configuration.
The following Security Modes are supported as per the OPC UA Specification (IEC 62541):
• None
• Basic128Rsa15 – signed
• Basic128Rsa15 – signed and encrypted
Access via service interface (CDI-RJ45)
The device can be connected to a network via the service interface (CDI-RJ45). Device-specific
functions guarantee the secure operation of the device in a network.
The use of relevant industrial standards and guidelines that have been defined by national and
international safety committees, such as IEC/ISA62443 or the IEEE, is recommended. This includes
organizational security measures such as the assignment of access authorization as well as technical
measures such as network segmentation.
The device can be integrated in a ring topology. The device is integrated via the terminal
connection for signal transmission (output 1) and the connection to the service interface (CDIRJ45) → 98.
10Endress+Hauser
Proline Promass E 500
Input
Measured variableDirect measured variables
• Mass flow
• Density
• Temperature
Calculated measured variables
• Volume flow
• Corrected volume flow
• Reference density
Measuring rangeMeasuring ranges for liquids
DNMeasuring range full scale values
min(F)
to
[mm][in][kg/h][lb/min]
8³⁄₈0 to 20000 to 73.50
15½0 to 65000 to 238.9
2510 to 180000 to 661.5
401½0 to 450000 to 1654
5020 to 700000 to 2573
8030 to 1800000 to 6615
Measuring range for gases
The full scale value depends on the density and the sound velocity of the gas used and can be
calculated with the formula below:
= minimum (
max(G)
max(G)
max(F)
<
ρ
max(G)
G
max(F)
xConstant dependent on nominal diameter
c
G
d
i
· ρG : x ; ρG · cG · π/2 · (di)2 · 3600)
max(F)
Maximum full scale value for gas [kg/h]
Maximum full scale value for liquid [kg/h]
can never be greater than
max(G)
Gas density in [kg/m³] at operating conditions
Sound velocity (gas) [m/s]
Measuring tube internal diameter [m]
max(F)
max(F)
DNx
[mm][in][kg/m3]
8³⁄₈85
15½110
251125
401½125
502125
803155
To calculate the measuring range, use the Applicator sizing tool → 114
Endress+Hauser11
Calculation example for gas
• Sensor: Promass E, DN 50
• Gas: Air with a density of 60.3 kg/m³ (at 20 °C and 50 bar)
Flow rates above the preset full scale value do not override the electronics unit, with the result that
the totalizer values are registered correctly.
Input signalInput and output versions
→ 14
External measured values
To increase the accuracy of certain measured variables or to calculate the corrected volume flow for
gases, the automation system can continuously write different measured values to the measuring
device:
• Operating pressure to increase accuracy (Endress+Hauser recommends the use of a pressure
measuring device for absolute pressure, e.g. Cerabar M or Cerabar S)
• Medium temperature to increase accuracy (e.g. iTEMP)
• Reference density for calculating the corrected volume flow for gases
Various pressure transmitters and temperature measuring devices can be ordered from Endress
+Hauser: see "Accessories" section → 114
It is recommended to read in external measured values to calculate the corrected volume flow.
HART protocol
The measured values are written from the automation system to the measuring device via the HART
protocol. The pressure transmitter must support the following protocol-specific functions:
• HART protocol
• Burst mode
Current input
The measured values are written from the automation system to the measuring device via the
current input → 12.
Digital communication
The measured values can be written from the automation system to the measuring via:
• FOUNDATION Fieldbus
• PROFIBUS DP
• PROFIBUS PA
• Modbus RS485
• EtherNet/IP
• PROFINET
Current input 0/4 to 20 mA
Current input0/4 to 20 mA (active/passive)
Current span• 4 to 20 mA (active)
• 0/4 to 20 mA (passive)
Resolution1 µA
Voltage dropTypically: 0.6 to 2 V for 3.6 to 22 mA (passive)
Maximum input voltage≤ 30 V (passive)
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Proline Promass E 500
Open-circuit voltage≤ 28.8 V (active)
Possible input variables• Pressure
• Temperature
• Density
Status input
Maximum input values• DC –3 to 30 V
• If status input is active (ON): Ri >3 kΩ
Response timeAdjustable: 5 to 200 ms
Input signal level• Low signal: DC –3 to +5 V
• High signal: DC 12 to 30 V
Assignable functions• Off
• Reset the individual totalizers separately
• Reset all totalizers
• Flow override
Endress+Hauser13
Output
Proline Promass E 500
Output and input variants
Depending on the option selected for output/input 1, different options are available for the other
outputs and inputs. Only one option can be selected for each output/input 1 to 4. The table must be
read vertically (↓).
Example: If the option BA "4–20 mA HART" was selected for output/input 1, one of the options A, B,
D, E, F, H, I or J is available for output 2, and one of the options A, B, D, E, F, H, I or J is available for
output 3 and 4.
Order code for "Output; input 1" (020) →Possible options
Current output 4 to 20 mA HARTBA
Current output 4 to 20 mA HART Ex i↓CA
FOUNDATION Fieldbus↓SA
FOUNDATION Fieldbus Ex i↓TA
PROFIBUS DP↓LA
PROFIBUS PA↓GA
PROFIBUS PA Ex i↓HA
Modbus RS485↓MA
EtherNet/IP 2-port switch integrated↓NA
PROFINET 2-port switch integrated↓RA
Order code for "Output; input 2" (021) →↓↓↓↓↓↓↓↓↓↓
Not assignedAAAAAAAAAA
Current output 0/4 to 20 mABBBBBBB
Current output 0/4 to 20 mA (Ex i)CCC
User configurable input/output
Pulse/frequency/switch outputEEEEEEE
Double pulse output
Pulse/frequency/switch output (Ex i)GGG
Relay outputHHHHHHH
Current input 0/4 to 20 mAIIIIIII
Status inputJJJJJJJ
Order code for "Output; input 3" (022), "Output; input 4" (023)
Not assignedAAAAAAAAAA
Current output 0/4 to 20 mABBBBB
Current output 0/4 to 20 mA (Ex i)C
User configurable input/outputDDDDD
Pulse/frequency/switch outputEEEEE
Double pulse output (slave)
Pulse/frequency/switch output (Ex i)G
Relay outputHHHHH
Current input 0/4 to 20 mAIIIII
Status inputJJJJJ
2)
1)
3)
→↓↓↓↓↓↓↓↓↓↓
4)
DDDDDDD
FF
FF
1)A specific input or output can be assigned to a user configurable input/output → 18.
2)If double pulse output (F) is selected for output/input 2 (021), only the double pulse output (F) option is available for selection for output/input 3
(022).
3)The order code for "Output; input 4" (023) is only available for the Proline 500 – digital transmitter.
4)The double pulse output (F) option is not available for input/output 4.
14Endress+Hauser
Proline Promass E 500
Output signalHART current output
Current output4 to 20 mA HART
Current spanCan be set to: 4 to 20 mA (active/passive)
Open-circuit voltageDC 28.8 V (active)
Maximum input voltageDC 30 V (passive)
Load250 to 700 Ω
Resolution0.38 µA
DampingConfigurable: 0.07 to 999 s
Assignable measured
variables
Ex-i, passive
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
• Electronic temperature
• Oscillation frequency 0
• Oscillation damping 0
• Signal asymmetry
• Exciter current 0
The range of options increases if the measuring device has one or more
application packages.
PROFIBUS PA
PROFIBUS PAIn accordance with EN 50170 Volume 2, IEC 61158-2 (MBP), galvanically
isolated
Data transmission31.25 kbit/s
Current consumption10 mA
16 mA
Permitted supply voltage9 to 32 V
Bus connectionWith integrated reverse polarity protection
PROFIBUS DP
Signal encodingNRZ code
Data transfer9.6 kBaud…12 MBaud
EtherNet/IP
StandardsIn accordance with IEEE 802.3
PROFINET
StandardsIn accordance with IEEE 802.3
FOUNDATION Fieldbus
FOUNDATION FieldbusH1, IEC 61158-2, galvanically isolated
Data transfer31.25 kbit/s
Endress+Hauser15
Current consumption10 mA
Permitted supply voltage9 to 32 V
Bus connectionWith integrated reverse polarity protection
Modbus RS485
Physical interfaceRS485 in accordance with EIA/TIA-485 standard
Terminating resistorIntegrated, can be activated via DIP switches
Current output 0/4 to 20 mA
Current output0/4 to 20 mA
Maximum output values22.5 mA
Current spanCan be set to:
• 4 to 20 mA (active)
• 0/4 to 20 mA (passive)
Ex-i, passive
Proline Promass E 500
Open-circuit voltageDC 28.8 V (active)
Maximum input voltageDC 30 V (passive)
Load0 to 700 Ω
Resolution0.38 µA
DampingAdjustable: 0.07 to 999 s
Assignable measured
variables
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
• Electronic temperature
• Oscillation frequency 0
• Oscillation damping 0
• Signal asymmetry
• Exciter current 0
The range of options increases if the measuring device has one or more
application packages.
Pulse/frequency/switch output
FunctionCan be set to pulse, frequency or switch output
VersionOpen collector
Can be set to:
• Active
• Passive
Ex-i, passive
Maximum input valuesDC 30 V, 250 mA (passive)
Open-circuit voltageDC 28.8 V (active)
Voltage dropFor 22.5 mA: ≤ DC 2 V
Pulse output
Maximum input valuesDC 30 V, 250 mA (passive)
Maximum output current22.5 mA (active)
16Endress+Hauser
Proline Promass E 500
Open-circuit voltageDC 28.8 V (active)
Pulse widthAdjustable: 0.05 to 2000 ms
Maximum pulse rate10000 Impulse/s
Pulse valueAdjustable
Assignable measured
variables
Frequency output
Maximum input valuesDC 30 V, 250 mA (passive)
Maximum output current22.5 mA (active)
Open-circuit voltageDC 28.8 V (active)
Output frequencyAdjustable: end value frequency 2 to 10000 Hz (f
DampingAdjustable: 0 to 999 s
Pulse/pause ratio1:1
Assignable measured
variables
Switch output
Maximum input valuesDC 30 V, 250 mA (passive)
Open-circuit voltageDC 28.8 V (active)
Switching behaviorBinary, conductive or non-conductive
Switching delayAdjustable: 0 to 100 s
Number of switching
cycles
Assignable functions• Off
• Mass flow
• Volume flow
• Corrected volume flow
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
• Electronic temperature
• Oscillation frequency 0
• Oscillation damping 0
• Signal asymmetry
• Exciter current 0
The range of options increases if the measuring device has one or more
application packages.
Unlimited
• On
• Diagnostic behavior
• Limit value
– Mass flow
– Volume flow
– Corrected volume flow
– Density
– Reference density
– Temperature
– Totalizer 1-3
• Flow direction monitoring
• Status
– Partially filled pipe detection
– Low flow
The range of options increases if the measuring device has one or more
application packages.
= 12500 Hz)
max
Endress+Hauser17
Double pulse output
FunctionDouble pulse
VersionOpen collector
Can be set to:
• Active
• Passive
Maximum input valuesDC 30 V, 250 mA (passive)
Open-circuit voltageDC 28.8 V (active)
Voltage dropFor 22.5 mA: ≤ DC 2 V
Output frequencyAdjustable: 0 to 1000 Hz
DampingAdjustable: 0 to 999 s
Pulse/pause ratio1:1
Assignable measured
variables
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
The range of options increases if the measuring device has one or more
application packages.
Proline Promass E 500
Relay output
FunctionSwitch output
VersionRelay output, galvanically isolated
Switching behaviorCan be set to:
• NO (normally open), factory setting
• NC (normally closed)
Maximum switching
capacity (passive)
Assignable functions• Off
• DC 30 V, 0.1 A
• AC 30 V, 0.5 A
• On
• Diagnostic behavior
• Limit value
– Mass flow
– Volume flow
– Corrected volume flow
– Density
– Reference density
– Temperature
– Totalizer 1-3
• Flow direction monitoring
• Status
– Partially filled pipe detection
– Low flow
The range of options increases if the measuring device has one or more
application packages.
User configurable input/output
One specific input or output is assigned to a user-configurable input/output (configurable I/O)
during device commissioning.
The following inputs and outputs are available for assignment:
• Choice of current output: 4 to 20 mA (active), 0/4 to 20 mA (passive)
• Pulse/frequency/switch output
• Choice of current input: 4 to 20 mA (active), 0/4 to 20 mA (passive)
• Status input
18Endress+Hauser
Proline Promass E 500
The technical values correspond to those of the inputs and outputs described in this section.
Signal on alarm
Depending on the interface, failure information is displayed as follows:
HART current output
Device diagnosticsDevice condition can be read out via HART Command 48
PROFIBUS PA
Status and alarm
messages
Error current FDE (Fault
Disconnection Electronic)
Diagnostics in accordance with PROFIBUS PA Profile 3.02
0 mA
PROFIBUS DP
Status and alarm
messages
Diagnostics in accordance with PROFIBUS PA Profile 3.02
EtherNet/IP
Device diagnosticsDevice condition can be read out in Input Assembly
PROFINET
Device diagnosticsAccording to "Application Layer protocol for decentralized periphery", Version 2.3
FOUNDATION Fieldbus
Status and alarm
messages
Error current FDE (Fault
Disconnection Electronic)
Diagnostics in accordance with FF-891
0 mA
Modbus RS485
Failure modeChoose from:
• NaN value instead of current value
• Last valid value
Current output 0/4 to 20 mA
4 to 20 mA
Failure modeChoose from:
• 4 to 20 mA in accordance with NAMUR recommendation NE 43
• 4 to 20 mA in accordance with US
• Min. value: 3.59 mA
• Max. value: 22.5 mA
• Freely definable value between: 3.59 to 22.5 mA
• Actual value
• Last valid value
Endress+Hauser19
0 to 20 mA
Failure modeChoose from:
• Maximum alarm: 22 mA
• Freely definable value between: 0 to 20.5 mA
Pulse/frequency/switch output
Pulse output
Failure modeChoose from:
• Actual value
• No pulses
Frequency output
Failure modeChoose from:
• Actual value
• 0 Hz
• Defined value (f
Switch output
Failure modeChoose from:
• Current status
• Open
• Closed
2 to 12500 Hz)
max
Proline Promass E 500
Relay output
Failure modeChoose from:
• Current status
• Open
• Closed
Local display
Plain text displayWith information on cause and remedial measures
BacklightRed backlighting indicates a device error.
Status signal as per NAMUR recommendation NE 107
Interface/protocol
• Via digital communication:
– HART protocol
– FOUNDATION Fieldbus
– PROFIBUS PA
– PROFIBUS DP
– Modbus RS485
– EtherNet/IP
– PROFINET
• Via service interface
– CDI-RJ45 service interface
– WLAN interface
Plain text displayWith information on cause and remedial measures
Additional information on remote operation → 94
20Endress+Hauser
Proline Promass E 500
Web server
Plain text displayWith information on cause and remedial measures
Light emitting diodes (LED)
Status informationStatus indicated by various light emitting diodes
Ex connection dataSafety-related values
The following information is displayed depending on the device version:
• Supply voltage active
• Data transmission active
• Device alarm/error has occurred
• EtherNet/IP network available
• EtherNet/IP connection established
• PROFINET network available
• PROFINET connection established
• PROFINET blinking feature
Order code for
Output typeSafety-related values
"Output; input 1"
Option BACurrent output
4 to 20 mA HART
UN = 30 V
UM = 250 V
Option GAPROFIBUS PAUN = 30 V
UM = 250 V
Option LAPROFIBUS DPUN = 30 V
UM = 250 V
Option MAModbus RS485UN = 30 V
UM = 250 V
Option SAFOUNDATION FieldbusUN = 30 V
UM = 250 V
Option NAEtherNet/IPUN = 30 V
UM = 250 V
Option RAPROFINETUN = 30 V
UM = 250 V
Order code for
"Output; input 2";
"Output; input 3"
Output typeSafety-related values
Output; input 2Output; input 3Output; input
"Output; input 4"
24 (+)25 (–)22 (+)23 (–)20 (+)21 (–)
Option BCurrent output
4 to 20 mA
Option DUser configurable input/
output
Option EPulse/frequency/switch
output
Option FDouble pulse outputUN = 30 V
UN = 30 V
UM = 250 V
UN = 30 V
UM = 250 V
UN = 30 V
UM = 250 V
DC
DC
DC
DC
UM = 250 V
Option HRelay outputUN = 30 V
DC
IN =100 mADC/500 mA
UM = 250 V
"Output; input 1"
26 (+)27 (–)
DC
AC
DC
AC
DC
AC
DC
AC
DC
AC
DC
AC
DC
AC
AC
AC
AC
AC
AC
AC
1)
4
Endress+Hauser21
Proline Promass E 500
Order code for
"Output; input 2";
"Output; input 3"
Output typeSafety-related values
Output; input 2Output; input 3Output; input
"Output; input 4"
24 (+)25 (–)22 (+)23 (–)20 (+)21 (–)
Option ICurrent input
4 to 20 mA
Option JStatus inputUN = 30 V
UN = 30 V
UM = 250 V
UM = 250 V
DC
AC
DC
AC
1)The order code "Output; input 4" is only available for the Proline 500 – digital transmitter.
Intrinsically safe values
Order code for
"Output; input 1"
Option CACurrent output
Option HAPROFIBUS PA Ex iEx ia
Option TAFOUNDATION Fieldbus
Output typeIntrinsically safe values
"Output; input 1"
26 (+)27 (–)
Ui = 30 V
4 to 20 mA HART Ex i
li = 100 mA
Pi = 1.25 W
Li = 0
Ci = 0
Ex i
1)
Ui = 30 V
li = 570 mA
Pi = 8.5 W
Li = 10 µH
Ci = 5 nF
1)
Ex ia
Ui = 30 V
li = 570 mA
Pi = 8.5 W
Li = 10 µH
Ci = 5 nF
2)
Ex ic
Ui = 32 V
li = 570 mA
Pi = 8.5 W
Li = 10 µH
Ci = 5 nF
2)
Ex ic
Ui = 32 V
li = 570 mA
Pi = 8.5 W
Li = 10 µH
Ci = 5 nF
1)
4
Low flow cut off
Galvanic isolation
1)Only available for the Zone 1; Class I, Division 1 version
2)Only available for the Zone 2; Class I, Division 2 version and only for the Proline 500 – digital transmitter
Order code for
"Output; input 2";
"Output; input 3"
"Output; input 4"
Option CCurrent output
Output typeIntrinsically safe values or NIFW values
Output; input 2Output; input 3 Output; input 4
24 (+)25 (–)22 (+)23 (–)20 (+)21 (–)
Ui = 30 V
4 to 20 mA Ex i
li = 100 mA
Pi = 1.25 W
Li = 0
Ci = 0
Option GPulse/frequency/switch
output Ex i
Ui = 30 V
li = 100 mA
Pi = 1.25 W
Li = 0
Ci = 0
1)The order code "Output; input 4" is only available for the Proline 500 – digital transmitter.
The switch points for low flow cut off are user-selectable.
The outputs are galvanically isolated from one another and from earth (PE).
1)
22Endress+Hauser
Proline Promass E 500
Protocol-specific dataHART
Manufacturer ID0x11
Device type ID0x3B
HART protocol revision7
Device description files
(DTM, DD)
HART loadMin. 250 Ω
System integrationInformation on system integration: Operating Instructions → 115.
PROFIBUS PA
Manufacturer ID0x11
Ident number0x156D
Profile version3.02
Device description files (GSD,
DTM, DD)
Supported functions• Identification & Maintenance
Configuration of the device
address
Compatibility with
earlier model
System integrationInformation regarding system integration: Operating Instructions → 115.
Information and files under:
www.endress.com
• Measured variables via HART protocol
• Burst Mode functionality
Information and files under:
• www.endress.com
• www.profibus.org
Simplest device identification on the part of the control system and
nameplate
• PROFIBUS upload/download
Reading and writing parameters is up to ten times faster with PROFIBUS
upload/download
• Condensed status
Simplest and self-explanatory diagnostic information by categorizing
diagnostic messages that occur
• DIP switches on the I/O electronics module
• Local display
• Via operating tools (e.g. FieldCare)
If the device is replaced, the measuring device Promass 500 supports the
compatibility of the cyclic data with previous models. It is not necessary to
adjust the engineering parameters of the PROFIBUS network with the
Promass 500 GSD file.
Earlier models:
• Promass 80 PROFIBUS PA
– ID No.: 1528 (hex)
– Extended GSD file: EH3x1528.gsd
– Standard GSD file: EH3_1528.gsd
• Promass 83 PROFIBUS PA
– ID No.: 152A (hex)
– Extended GSD file: EH3x152A.gsd
– Standard GSD file: EH3_152A.gsd
Description of the function scope of compatibility:
Operating Instructions → 115.
• Cyclic data transmission
• Block model
• Description of the modules
PROFIBUS DP
Manufacturer ID0x11
Ident number0x156F
Endress+Hauser23
Proline Promass E 500
Profile version3.02
Device description files (GSD,
DTM, DD)
Supported functions• Identification & Maintenance
Configuration of the device
address
System integrationInformation regarding system integration: Operating Instructions → 115.
Information and files under:
• www.endress.com
On the product page for the device: Documents/Software → Device drivers
• www.profibus.org
Simplest device identification on the part of the control system and
nameplate
• PROFIBUS upload/download
Reading and writing parameters is up to ten times faster with PROFIBUS
upload/download
• Condensed status
Simplest and self-explanatory diagnostic information by categorizing
diagnostic messages that occur
• DIP switches on the I/O electronics module
• Via operating tools (e.g. FieldCare)
• Cyclic data transmission
• Block model
• Description of the modules
EtherNet/IP
Protocol• The CIP Networks Library Volume 1: Common Industrial Protocol
• The CIP Networks Library Volume 2: EtherNet/IP Adaptation of CIP
Communication type• 10Base-T
• 100Base-TX
Device profileGeneric device (product type: 0x2B)
Manufacturer ID0x11
Device type ID0x103B
Baud ratesAutomatic ¹⁰⁄₁₀₀ Mbit with half-duplex and full-duplex detection
PolarityAuto-polarity for automatic correction of crossed TxD and RxD pairs
Supported CIP connectionsMax. 3 connections
Explicit connectionsMax. 6 connections
I/O connectionsMax. 6 connections (scanner)
Configuration options for
measuring device
Configuration of the EtherNet
interface
Configuration of the device
address
Device Level Ring (DLR)Yes
System integrationInformation regarding system integration: Operating Instructions
• DIP switches on the electronics module for IP addressing
• Manufacturer-specific software (FieldCare)
• Add-on Profile Level 3 for Rockwell Automation control systems
• Web browser
• Electronic Data Sheet (EDS) integrated in the measuring device
• Speed: 10 MBit, 100 MBit, auto (factory setting)
• Duplex: half-duplex, full-duplex, auto (factory setting)
• DIP switches on the electronics module for IP addressing (last octet)
• DHCP
• Manufacturer-specific software (FieldCare)
• Add-on Profile Level 3 for Rockwell Automation control systems
• Web browser
• EtherNet/IP tools, e.g. RSLinx (Rockwell Automation)
→ 115.
• Cyclic data transmission
• Block model
• Input and output groups
24Endress+Hauser
Proline Promass E 500
PROFINET
Protocol"Application layer protocol for decentral device periphery and distributed
automation", version 2.3
Communication type100 MBit/s
Conformity classConformance Class B
Netload ClassNetload Class II
Baud ratesAutomatic 100 Mbit/s with full-duplex detection
Cycle timesFrom 8 ms
PolarityAuto-polarity for automatic correction of crossed TxD and RxD pairs
Response times• Direct data access: typically 25 to 50 ms
• Auto-scan buffer (data range): typically 3 to 5 ms
Device typeSlave
Slave address range1 to 247
Broadcast address range0
26Endress+Hauser
Proline Promass E 500
Function codes• 03: Read holding register
• 04: Read input register
• 06: Write single registers
• 08: Diagnostics
• 16: Write multiple registers
• 23: Read/write multiple registers
Broadcast messagesSupported by the following function codes:
• 06: Write single registers
• 16: Write multiple registers
• 23: Read/write multiple registers
Supported baud rate• 1200 BAUD
• 2400 BAUD
• 4800 BAUD
• 9600 BAUD
• 19200 BAUD
• 38400 BAUD
• 57600 BAUD
• 115200 BAUD
Data transfer mode• ASCII
• RTU
Data accessEach device parameter can be accessed via Modbus RS485.
For Modbus register information
Compatibility with
earlier model
System integrationInformation on system integration: Operating Instructions → 115.
If the device is replaced, the measuring device Promass 500 supports the
compatibility of the Modbus registers for the process variables and the
diagnostic information with the previous model Promass 83. It is not
necessary to change the engineering parameters in the automation system.
Description of the function scope of compatibility:
The terminal assignment depends on the specific device version ordered → 14.
Input/output
2
Input/output
3
Input/output
4
PROFINET
Supply voltageInput/output
1
1 (+)2 (–)PROFINET
(RJ45 connector)
Input/output
2
24 (+)25 (–)22 (+)23 (–)20 (+)21 (–)
The terminal assignment depends on the specific device version
Input/output
3
ordered → 14.
Input/output
4
Device plugs available
EtherNet/IP
Supply voltageInput/output
1
1 (+)2 (–)EtherNet/IP
(RJ45 connector)
Input/output
2
24 (+)25 (–)22 (+)23 (–)20 (+)21 (–)
The terminal assignment depends on the specific device version
Input/output
3
ordered → 14.
Input/output
4
Transmitter and sensor connection housing: connecting cable
The sensor and transmitter, which are mounted in separate locations, are interconnected by a
connecting cable. The cable is connected via the sensor connection housing and the transmitter
housing.
Terminal assignment and connection of the connecting cable:
• Proline 500 – digital→ 32
• Proline 500 → 32
Device plugs may not be used in hazardous areas!
Device plugs for fieldbus systems:
Order code for "Input; output 1"
• Option SA "FOUNDATION Fieldbus" → 29
• Option GA "PROFIBUS PA" → 29
• Option RA "PROFINET" → 29
• Option NA "EtherNet/IP" → 29
Device plug for connecting to the service interface:
Order code for "Accessory mounted"
option NB, adapter RJ45 M12 (service interface) → 30
28Endress+Hauser
Proline Promass E 500
1
2
4
3
Order code for "Input; output 1", option SA "FOUNDATION Fieldbus"
Order code forCable entry/connection → 33
"Electrical connection"23
M, 3, 4, 57/8" connector–
Order code for "Input; output 1", option GA "PROFIBUS PA"
Order code forCable entry/connection → 33
"Electrical connection"23
L, N, P, UConnector M12 × 1–
Order code for "Input; output 1", option RA "PROFINET"
Order code forCable entry/connection → 33
"Electrical connection"23
L, N, P, UConnector M12 × 1–
1) 2)
1) 2)
1) 2)
R
, S
, T
, V
1) 2)
Connector M12 × 1Connector M12 × 1
1)Cannot be combined with an external WLAN antenna (order code for "Enclosed accessories", option P8) of
an RJ45 M12 adapter for the service interface (order code for "Accessories mounted", option NB) or of the
remote display and operating module DKX001.
2)Suitable for integrating the device in a ring topology.
Order code for "Input; output 1", option NA "EtherNet/IP"
Order code forCable entry/connection → 33
"Electrical connection"23
L, N, P, UConnector M12 × 1–
1) 2)
1) 2)
1) 2)
R
, S
, T
, V
1) 2)
Connector M12 × 1Connector M12 × 1
1)Cannot be combined with an external WLAN antenna (order code for "Enclosed accessories", option P8) of
an RJ45 M12 adapter for the service interface (order code for "Accessories mounted", option NB) or of the
remote display and operating module DKX001
2)Suitable for integrating the device in a ring topology.
Order code for "Accessory mounted", option NB "Adapter RJ45 M12 (service interface)"
Order codeCable entry/coupling → 33
"Accessory mounted"Cable entry
2
NBPlug M12 × 1–
Cable entry
3
Pin assignment, device plugFOUNDATION Fieldbus
PinAssignmentCodingPlug/socket
1+Signal +APlug
2-Signal –
3Grounding
4Not assigned
Endress+Hauser29
PROFIBUS PA
1
2
4
3
3
2
4
3
2
4
3
2
4
PROFINET
Proline Promass E 500
PinAssignmentCodingPlug/socket
1+PROFIBUS PA +APlug
2Grounding
3-PROFIBUS PA –
4Not assigned
PinAssignment
1+TD +
2+RD +
3-TD –
4-RD –
A0032047
CodingPlug/socket
DSocket
Recommended plug:
• Binder, series 763, part no. 99 3729 810 04
• Phoenix, part no. 1543223 SACC-M12MSD-4Q
• When using the device in a hazardous location, use a suitably certified plug.
EtherNet/IP
PinAssignment
1+Tx
2+Rx
3-Tx
4-Rx
A0032047
Recommended plug:
• Binder, series 763, part no. 99 3729 810 04
• Phoenix, part no. 1543223 SACC-M12MSD-4Q
• When using the device in a hazardous location, use a suitably certified plug.
CodingPlug/socket
DSocket
Service interface
Order code for "Accessories mounted", option NB: Adapter RJ45 M12 (service interface)
PinAssignment
1+Tx
2+Rx
3-Tx
4-Rx
A0032047
Recommended plug:
30Endress+Hauser
• Binder, series 763, part no. 99 3729 810 04
• Phoenix, part no. 1543223 SACC-M12MSD-4Q
• When using the device in a hazardous location, use a suitably certified plug.
CodingPlug/socket
DSocket
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