Endress+Hauser F 100 Specifications

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TI01034D/06/EN/07.18 71393072
Products Solutions Services
Technical Information
Proline Promass F 100
Coriolis flowmeter
The flowmeter with premium accuracy, robustness and an ultra-compact transmitter
Application
Measuring principle operates independently of physical fluid properties such as viscosity or density
Device properties
• Mass flow: measured error ±0.05 % (PremiumCal)
• Pressure rating of sensor housing up to 40 bar (580 psi)
• Robust, ultra-compact transmitter housing
• Highest degree of protection: IP69
• Local display available
Your benefits
• Highest process safety – immune to fluctuating and harsh environments
• Fewer process measuring points – multivariable measurement (flow, density, temperature)
• Spacesaving installation – no inlet/outlet run needs
• Spacesaving transmitter – full functionality on smallest footprint
• Timesaving local operation without additional software and hardware – integrated web server
• Integrated verification – Heartbeat Technology
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Table of contents

Proline Promass F 100
About this document ........................ 4
Symbols used ................................ 4
Function and system design ................... 5
Measuring principle ............................ 5
Measuring system ............................. 6
Equipment architecture ......................... 7
Safety ..................................... 7
Input ..................................... 8
Measured variable ............................. 8
Measuring range .............................. 8
Operable flow range ........................... 9
Output ................................... 9
Output signal ................................ 9
Signal on alarm .............................. 11
Ex connection data ........................... 12
Low flow cut off ............................. 13
Protocol-specific data .......................... 13
Power supply ............................. 23
Terminal assignment .......................... 23
Pin assignment, device plug ...................... 30
Supply voltage .............................. 32
Power consumption ........................... 33
Current consumption .......................... 33
Power supply failure .......................... 33
Electrical connection .......................... 34
Potential equalization ......................... 39
Terminals ................................. 39
Cable entries ............................... 39
Cable specification ............................ 39
Performance characteristics .................. 41
reference operating conditions .................... 41
Maximum measured error ....................... 41
Repeatability ............................... 43
Response time .............................. 43
Influence of ambient temperature ................. 43
Influence of medium temperature .................. 43
Influence of medium pressure .................... 44
Design fundamentals .......................... 44
Shock resistance ............................. 49
Shock resistance ............................. 49
Interior cleaning ............................. 49
Electromagnetic compatibility (EMC) ............... 49
Process .................................. 50
Medium temperature range ...................... 50
Density ................................... 50
Pressure-temperature curves ..................... 50
Secondary containment ........................ 55
Rupture disk ................................ 56
Flow limit ................................. 56
Pressure loss ............................... 57
System pressure ............................. 57
Thermal insulation ........................... 57
Heating ................................... 57
Vibrations ................................. 58
Mechanical construction .................... 59
Dimensions in SI units ......................... 59
Dimensions in US units ......................... 78
Weight ................................... 87
Materials .................................. 88
Process connections ........................... 90
Surface roughness ........................... 90
Operability ............................... 90
Operating concept ............................ 90
Local display ................................ 91
Remote operation ............................ 91
Service interface ............................. 93
Certificates and approvals ................... 95
CE mark ................................... 95
C-Tick symbol ............................... 95
Ex approval ................................ 96
Sanitary compatibility ......................... 96
HART certification ............................ 96
Certification PROFIBUS ......................... 96
Certification PROFINET ........................ 97
EtherNet/IP certification ........................ 97
Modbus RS485 certification ..................... 97
Pressure Equipment Directive .................... 97
Other standards and guidelines ................... 97
Installation ............................... 45
Mounting location ............................ 45
Orientation ................................ 46
Inlet and outlet runs .......................... 47
Special mounting instructions .................... 47
Installing the Safety Barrier Promass 100 ............ 48
Ordering information ....................... 98
Application packages ....................... 98
Heartbeat Technology ......................... 98
Concentration ............................... 99
Special density .............................. 99
Environment .............................. 49
Ambient temperature range ..................... 49
Storage temperature .......................... 49
Climate class ............................... 49
Degree of protection .......................... 49
Vibration resistance ........................... 49
Accessories ............................... 99
Device-specific accessories ...................... 99
Communication-specific accessories ................ 99
Service-specific accessories ..................... 100
System components .......................... 101
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Proline Promass F 100
Supplementary documentation .............. 101
Standard documentation ....................... 101
Supplementary device-dependent documentation ...... 102
Registered trademarks ..................... 102
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About this document

A
1.
-
.

Symbols used Electrical symbols

Symbol Meaning
Proline Promass F 100
Direct current
Alternating current
Direct current and alternating current
Ground connection
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.
Symbols for certain types of information
Symbol Meaning
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.
Symbols in graphics
Symbol Meaning
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
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Proline Promass F 100
21 3

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.
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.
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Proline Promass F 100

Measuring system

The device consists of a transmitter and a sensor. If a device with Modbus RS485 intrinsically safe is ordered, the Safety Barrier Promass 100 is part of the scope of supply and must be implemented to operate the device.
The device is available as a compact version: The transmitter and sensor form a mechanical unit.
Transmitter
Promass 100 Device versions and materials:
• Compact, aluminum, coated: Aluminum, AlSi10Mg, coated
• Compact, hygienic, stainless: – Hygienic version, stainless steel 1.4301 (304) – Optional: order code for "Sensor feature", option CC
A0016693
A0016694
A0016695
Hygienic version, for maximum corrosion resistance: stainless steel
1.4404 (316L)
• Ultra-compact, hygienic, stainless: – Hygienic version, stainless steel 1.4301 (304) – Optional: order code for "Sensor feature", option CC
Hygienic version, for maximum corrosion resistance: stainless steel
1.4404 (316L)
Configuration:
• Via operating tools (e.g. FieldCare, DeviceCare)
• Additionally for device version with local display: Via Web browser (e.g. Microsoft Internet Explorer)
• Also for device version with 4-20 mA HART, pulse/frequency/switch output: Via Web browser (e.g. Microsoft Internet Explorer)
• Also for device version with EtherNet/IP output: – Via Web browser (e.g. Microsoft Internet Explorer) – Via Add-on Profile Level 3 for automation system from Rockwell
Automation
– Via Electronic Data Sheet (EDS)
• Also for device version with PROFINET output: – Via Web browser (e.g. Microsoft Internet Explorer) – Via device master file (GSD)
Sensor
PromassF • Excellent performance across a wide range of applications
• Simultaneous measurement of flow, volume flow, density and temperature (multivariable)
• Immune to process influences
• Nominal diameter range: DN 8 to 250 (³⁄₈ to 10")
• Materials:
A0016507
– Sensor: stainless steel, 1.4301/1.4307 (304L); optional 1.4404
(316/316L)
– Measuring tubes: stainless steel, 1.4539 (904L); 1.4404
(316/316L); Alloy C22, 2.4602 (UNS N06022)
– Process connections: stainless steel, 1.4404 (316/316L); 1.4301
(304); Alloy C22, 2.4602 (UNS N06022)
Safety Barrier Promass 100
• Dual-channel safety barrier for installation in non-hazardous locations or zone 2/div. 2: – Channel 1: DC 24 V power supply – Channel 2: Modbus RS485
• In addition to current, voltage and power limitation, it offers galvanic isolation of circuits for explosion protection.
• Easy top-hat rail mounting (DIN 35 mm) for installation in control
A0016763
cabinets
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Proline Promass F 100
2 3
7
8
6
9
10
11
4
1
5

Equipment architecture

A0016779
 1 Possibilities for integrating measuring devices into a system
1 Control system (e.g. PLC) 2 EtherNet/IP 3 PROFIBUS DP 4 PROFINET 5 Modbus RS485 6 4-20 mA HART, pulse/frequency/switch output 7 Safety Barrier Promass 100 8 Modbus RS485 intrinsically safe 9 Non-hazardous area 10 Non-hazardous area and Zone 2/Div. 2 11 Hazardous area and Zone 1/Div. 1

Safety IT security

We only provide a warranty 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 device settings.
IT security measures in line with operators' security standards and designed to provide additional protection for the device and device data transfer must be implemented by the operators themselves.
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Input

Measured variable Direct measured variables

• Mass flow
• Density
• Temperature
Calculated measured variables
• Volume flow
• Corrected volume flow
• Reference density

Measuring range Measuring ranges for liquids

Proline Promass F 100
DN Measuring range full scale values 
min(F)
to 
max(F)
[mm] [in] [kg/h] [lb/min]
8 ³⁄₈ 0 to 2 000 0 to 73.50
15 ½ 0 to 6 500 0 to 238.9
25 1 0 to 18 000 0 to 661.5
40 0 to 45 000 0 to 1 654
50 2 0 to 70 000 0 to 2 573
80 3 0 to 180 000 0 to 6 615
100 4 0 to 350 000 0 to 12 860
150 6 0 to 800 000 0 to 29 400
250 10 0 to 2 200 000 0 to 80 850
Measuring ranges for gases
The full scale values depend on the density of the gas and can be calculated with the formula below: 
= 
max(G)
max(G)
max(F)
< 
max(G)
ρ
G
x Constant dependent on nominal diameter
max(F)
max(F)
· ρG : x
Maximum full scale value for gas [kg/h]
Maximum full scale value for liquid [kg/h]
can never be greater than 
max(G)
max(F)
Gas density in [kg/m³] at operating conditions
DN x
[mm] [in] [kg/m3]
8 ³⁄₈ 60
15 ½ 80
25 1 90
40 90
50 2 90
80 3 110
100 4 130
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Proline Promass F 100
DN x
[mm] [in] [kg/m3]
150 6 200
250 10 200
To calculate the measuring range, use the Applicator sizing tool →  100
Calculation example for gas
• Sensor: Promass F, DN 50
• Gas: Air with a density of 60.3 kg/m³ (at 20 °C and 50 bar)
• Measuring range (liquid): 70 000 kg/h
• x = 90 kg/m³ (for Promass F, DN 50) Maximum possible full scale value:
max(G)
= 
· ρG : x = 70 000 kg/h · 60.3 kg/m³ : 90 kg/m³ = 46 900 kg/h
max(F)
Recommended measuring range
"Flow limit" section →  56

Operable flow range

Over 1000 : 1.
Flow rates above the preset full scale value do not override the electronics unit, with the result that the totalizer values are registered correctly.

Output

Output signal HART current output

Current output 4-20 mA HART (active)
Maximum output values • DC 24 V (no flow)
Load 0 to 700 Ω
Resolution 0.38 µA
Damping Adjustable: 0.07 to 999 s
Assignable measured variables
• 22.5 mA
• 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.
Pulse/frequency/switch output
Function Can be set to pulse, frequency or switch output
Version Passive, open collector
Maximum input values • DC 30 V
• 25 mA
Voltage drop For 25 mA: ≤ DC 2 V
Pulse output
Pulse width Adjustable: 0.05 to 2 000 ms
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Maximum pulse rate 10 000 Impulse/s
Pulse value Adjustable
Assignable measured variables
Frequency output
Output frequency Adjustable: 0 to 10 000 Hz
Damping Adjustable: 0 to 999 s
Pulse/pause ratio 1:1
Assignable measured variables
Switch output
Switching behavior Binary, conductive or non-conductive
Switching delay Adjustable: 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
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 cut off
The range of options increases if the measuring device has one or more
application packages.
Proline Promass F 100
PROFIBUS DP
Signal encoding NRZ code
Data transfer 9.6 kBaud…12 MBaud
Modbus RS485
Physical interface In accordance with EIA/TIA-485-A standard
Terminating resistor • For device version used in non-hazardous areas or Zone 2/Div. 2: integrated
and can be activated via DIP switches on the transmitter electronics module
• For device version used in intrinsically safe areas: integrated and can be activated via DIP switches on the Safety Barrier Promass 100
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Proline Promass F 100
EtherNet/IP
Standards In accordance with IEEE 802.3
PROFINET
Standards In accordance with IEEE 802.3

Signal on alarm

Depending on the interface, failure information is displayed as follows:
Current output 4 to 20 mA
4 to 20 mA
Failure mode Choose 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
Pulse/frequency/switch output
Pulse output
Failure mode Choose from:
• Actual value
• No pulses
Frequency output
Failure mode Choose from:
• Actual value
• 0 Hz
• Defined value: 0 to 12 500 Hz
Switch output
Failure mode Choose from:
• Current status
• Open
• Closed
PROFIBUS DP
Status and alarm messages
Diagnostics in accordance with PROFIBUS PA Profile 3.02
Modbus RS485
Failure mode Choose from:
• NaN value instead of current value
• Last valid value
EtherNet/IP
Device diagnostics Device condition can be read out in Input Assembly
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Proline Promass F 100
PROFINET
Device diagnostics According to "Application Layer protocol for decentralized periphery", Version 2.3
Local display
Plain text display With information on cause and remedial measures
Backlight Red backlighting indicates a device error.
Status signal as per NAMUR recommendation NE 107
Interface/protocol
• Via digital communication: – HART protocol – PROFIBUS DP – Modbus RS485 – EtherNet/IP – PROFINET
• Via service interface CDI-RJ45 service interface

Ex connection data

Plain text display With information on cause and remedial measures
Additional information on remote operation →  91
Web server
Plain text display With information on cause and remedial measures
Light emitting diodes (LED)
Status information Status indicated by various light emitting diodes
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
These values only apply for the following device version: Order code for "Output", option M "Modbus RS485", for use in intrinsically safe areas
Safety Barrier Promass 100
Safety-related values
Terminal numbers
Supply voltage Signal transmission
2 (L-) 1 (L+) 26 (A) 27 (B)
U
nom
U
= AC 260 V
max
= DC 24 V
U
nom
U
= AC 260 V
max
= DC 5 V
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Proline Promass F 100
Intrinsically safe values
Terminal numbers
Supply voltage Signal transmission
20 (L-) 10 (L+) 62 (A) 72 (B)
Uo = 16.24 V
Io = 623 mA
1)
With IIC
For an overview and for information on the interdependencies between the gas group - sensor - nominal
diameter, see the "Safety Instructions" (XA) document for the measuring device
1) The gas group depends on the sensor and nominal diameter ff.
: Lo = 92.8 µH, Co = 0.433 μF, Lo/Ro = 14.6 μH/Ω
With IIB: Lo= 372 µH, Co = 2.57 μF, Lo/Ro = 58.3 μH/Ω
Po = 2.45 W
Transmitter
Intrinsically safe values
• Option BM: ATEX II2G + IECEx Z1 Ex ia, II2D Ex tb
• Option BO: ATEX II1/2G + IECEx Z0/Z1 Ex ia, II2D
• Option BQ: ATEX II1/2G + IECEx Z0/Z1 Ex ia
• Option BU: ATEX II2G + IECEx Z1 Ex ia
• Option C2: CSA C/US IS Cl. I, II, III Div. 1
• Option 85: ATEX II2G + IECEx Z1 Ex ia + CSA C/US IS Cl. I, II, III Div. 1

Low flow cut off

Protocol-specific data HART

The switch points for low flow cut off are user-selectable.
Manufacturer ID 0x11
Device type ID 0x4A
HART protocol revision 7
Device description files (DTM, DD)
HART load Min. 250 Ω
Order code for
"Approval"
For an overview and for information on the interdependencies between the gas group - sensor - nominal diameter, see the "Safety Instructions" (XA) document for the measuring device
Information and files under:
www.endress.com
Supply voltage Signal transmission
20 (L-) 10 (L+) 62 (A) 72 (B)
Terminal numbers
Ui = 16.24 V
Ii = 623 mA Pi = 2.45 W
Li = 0 µH Ci = 6 nF
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Dynamic variables Read out the dynamic variables: HART command 3
The measured variables can be freely assigned to the dynamic variables.
Measured variables for PV (primary dynamic variable)
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
Measured variables for SV, TV, QV (secondary, tertiary and quaternary dynamic variable)
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
• Totalizer 1
• Totalizer 2
• Totalizer 3
The range of options increases if the measuring device has one or more
application packages.
Heartbeat Technology application package
Additional measured variables are available with the Heartbeat Technology application package:
• Carrier pipe temperature
• Oscillation amplitude 0
Device variables Read out the device variables: HART command 9
The device variables are permanently assigned.
A maximum of 8 device variables can be transmitted:
• 0 = mass flow
• 1 = volume flow
• 2 = corrected volume flow
• 3 = density
• 4 = reference density
• 5 = temperature
• 6 = totalizer 1
• 7 = totalizer 2
• 8 = totalizer 3
• 13 = target mass flow
• 14 = carrier mass flow
• 15 = concentration
Proline Promass F 100
PROFIBUS DP
Manufacturer ID 0x11
Ident number 0x1561
Profile version 3.02
Device description files (GSD, DTM, DD)
Information and files under:
www.endress.com On the product page for the device: Documents/Software → Device drivers
www.profibus.org
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Output values
(from measuring device to automation system)
Input values
(from automation system to measuring device)
Supported functions • Identification & Maintenance
Configuration of the device address
Analog input 1 to 8
• Mass flow
• Volume flow
• Corrected volume flow
• Target mass flow
• Carrier mass flow
• Density
• Reference density
• Concentration
• Temperature
• Carrier pipe temperature
• Electronic temperature
• Oscillation frequency
• Oscillation amplitude
• Frequency fluctuation
• Oscillation damping
• Tube damping fluctuation
• Signal asymmetry
• Exciter current
Digital input 1 to 2
• Partially filled pipe detection
• Low flow cut off
Totalizer 1 to 3
• Mass flow
• Volume flow
• Corrected volume flow
Analog output 1 to 3 (fixed assignment)
• Pressure
• Temperature
• Reference density
Digital output 1 to 3 (fixed assignment)
• Digital output 1: switch positive zero return on/off
• Digital output 2: perform zero point adjustment
• Digital output 3: switch switch output on/off
Totalizer 1 to 3
• Totalize
• Reset and hold
• Preset and hold
• Stop
• Operating mode configuration: – Net flow total – Forward flow total – Reverse flow total
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)
Modbus RS485
Protocol Modbus Applications Protocol Specification V1.1
Device type Slave
Slave address range 1 to 247
Broadcast address range 0
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Proline Promass F 100
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 messages Supported by the following function codes:
• 06: Write single registers
• 16: Write multiple registers
• 23: Read/write multiple registers
Supported baud rate • 1 200 BAUD
• 2 400 BAUD
• 4 800 BAUD
• 9 600 BAUD
• 19 200 BAUD
• 38 400 BAUD
• 57 600 BAUD
• 115 200 BAUD
Data transfer mode • ASCII
• RTU
Data access Each device parameter can be accessed via Modbus RS485.
For Modbus register information, see "Description of device parameters"
documentation
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 profile Generic device (product type: 0x2B)
Manufacturer ID 0x49E
Device type ID 0x104A
Baud rates Automatic ¹⁰⁄₁₀₀ Mbit with half-duplex and full-duplex detection
Polarity Auto-polarity for automatic correction of crossed TxD and RxD pairs
Supported CIP connections Max. 3 connections
Explicit connections Max. 6 connections
I/O connections Max. 6 connections (scanner)
Configuration options for measuring device
Configuration of the EtherNet interface
Configuration of the device address
Device Level Ring (DLR) No
• 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)
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Proline Promass F 100
Fix Input
RPI 5 ms to 10 s (factory setting: 20 ms)
Exclusive Owner Multicast Instance Size [byte]
Instance configuration: 0x68 398
O → T configuration: 0x66 64
T → O configuration: 0x64 44
Exclusive Owner Multicast Instance Size [byte]
Instance configuration: 0x69 -
O → T configuration: 0x66 64
T → O configuration: 0x64 44
Input only Multicast Instance Size [byte]
Instance configuration: 0x68 398
O → T configuration: 0xC7 -
T → O configuration: 0x64 44
Input only Multicast Instance Size [byte]
Instance configuration: 0x69 -
O → T configuration: 0xC7 -
T → O configuration: 0x64 44
Input Assembly • Current device diagnostics
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
• Totalizer 1
• Totalizer 2
• Totalizer 3
Configurable Input
RPI 5 ms to 10 s (factory setting: 20 ms)
Exclusive Owner Multicast Instance Size [byte]
Instance configuration: 0x68 398
O → T configuration: 0x66 64
T → O configuration: 0x65 88
Exclusive Owner Multicast Instance Size [byte]
Instance configuration: 0x69 -
O → T configuration: 0x66 64
T → O configuration: 0x65 88
Input only Multicast Instance Size [byte]
Instance configuration: 0x68 398
O → T configuration: 0xC7 -
T → O configuration: 0x65 88
Input only Multicast Instance Size [byte]
Instance configuration: 0x69 -
O → T configuration: 0xC7 -
T → O configuration: 0x65 88
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Configurable Input Assembly • Current device diagnostics
• Mass flow
• Volume flow
• Corrected volume flow
• Density
• Reference density
• Temperature
• Totalizer 1
• Totalizer 2
• Totalizer 3
The range of options increases if the measuring device has one or
more application packages.
Fix Output
Output Assembly • Activation of reset totalizers 1-3
• Activation of pressure compensation
• Activation of reference density compensation
• Activation of temperature compensation
• Reset totalizers 1-3
• External pressure value
• Pressure unit
• External reference density
• Reference density unit
• External temperature
• Temperature unit
Configuration
Configuration Assembly Only the most common configurations are listed below.
• Software write protection
• Mass flow unit
• Mass unit
• Volume flow unit
• Volume unit
• Corrected volume flow unit
• Corrected volume unit
• Density unit
• Reference density unit
• Temperature unit
• Pressure unit
• Length
• Totalizer 1-3: – Assignment – Unit – Operating mode – Failsafe mode
• Alarm delay
PROFINET
Protocol "Application layer protocol for decentral device periphery and distributed
automation", version 2.3
Conformity class B
Communication type 100 MBit/s
Device profile Application interface identifier 0xF600
Generic device
Manufacturer ID 0x11
Device type ID 0x844A
Device description files (GSD, DTM)
Baud rates Automatic 100 Mbit/s with full-duplex detection
Information and files under:
www.endress.com On the product page for the device: Documents/Software → Device drivers
www.profibus.org
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Cycle times From 8 ms
Polarity Auto-polarity for automatic correction of crossed TxD and RxD pairs
Supported connections • 1 x AR (Application Relation)
• 1 x Input CR (Communication Relation)
• 1 x Output CR (Communication Relation)
• 1 x Alarm CR (Communication Relation)
Configuration options for measuring device
Configuration of the device name
Output values
(from measuring device to automation system)
• DIP switches on the electronics module, for device name assignment (last part)
• Manufacturer-specific software (FieldCare, DeviceCare)
• Web browser
• Device master file (GSD), can be read out via the integrated Web server of the measuring device
• DIP switches on the electronics module, for device name assignment (last part)
• DCP protocol
Analog Input module (slot 1 to 14)
• Mass flow
• Volume flow
• Corrected volume flow
• Target mass flow
• Carrier mass flow
• Density
• Reference density
• Concentration
• Temperature
• Carrier pipe temperature
• Electronic temperature
• Oscillation frequency
• Oscillation amplitude
• Frequency fluctuation
• Oscillation damping
• Tube damping fluctuation
• Signal asymmetry
• Exciter current
Discrete Input module (slot 1 to 14)
• Empty pipe detection
• Low flow cut off
Diagnostics Input module (slot 1 to 14)
• Last diagnostics
• Current diagnosis
Totalizer 1 to 3 (slot 15 to 17)
• Mass flow
• Volume flow
• Corrected volume flow
Heartbeat Verification module (fixed assignment)
Verification status (slot 23)
The range of options increases if the measuring device has one or more
application packages.
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Input values
(from automation system to measuring device)
Supported functions • Identification & Maintenance
Analog Output module (fixed assignment)
• External pressure (slot 18)
• External temperature (slot 19)
• External reference density (slot 20)
Discrete Output module (fixed assignment)
• Activate/deactivate positive zero return (slot 21)
• Perform zero point adjustment (slot 22)
Totalizer 1 to 3 (slot 15 to 17)
• Totalize
• Reset and hold
• Preset and hold
• Stop
• Operating mode configuration: – Net flow total – Forward flow total – Reverse flow total
Heartbeat Verification module (fixed assignment)
Start verification (slot 23)
The range of options increases if the measuring device has one or more
application packages.
Simple device identification via: – Control system – Nameplate
• Measured value status The process variables are communicated with a measured value status
• Blinking feature via the local display for simple device identification and assignment
Administration of software options
Input/output value Process variable Category Slot
Output value Mass flow Process variable 1 to 14
Volume flow
Corrected volume flow
Density
Reference density
Temperature
Electronic temperature
Oscillation frequency
Frequency fluctuation
Oscillation damping
Oscillation frequency
Signal asymmetry
Exciter current
Empty pipe detection
Low flow cut off
Current device diagnostics
Previous device diagnostics
Output value Target mass flow Concentration
Carrier mass flow
Concentration
Output value Carrier pipe temperature Heartbeat
1)
2)
1 to 14
1 to 14
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Input/output value Process variable Category Slot
Oscillation damping 1
Oscillation frequency 1
Oscillation amplitude 0
Oscillation amplitude 1
Frequency fluctuation 1
Tube damping fluctuation 1
Exciter current 1
Input value External density Process monitoring 18
External temperature 19
External reference density 20
Flow override 21
Zero point adjustment 22
Status verification Heartbeat Verification
1) Only available with the "Concentration" application package.
2) Only available with the "Heartbeat" application package.
2)
23
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Startup configuration
Proline Promass F 100
Startup configuration (NSU)
If startup configuration is enabled, the configuration of the most important device parameters is taken from the automation system and used.
The following configuration is taken from the automation system:
• Management – Software revision – Write protection
• System units – Mass flow – Mass – Volume flow – Volume – Corrected volume flow – Corrected volume – Density – Reference density – Temperature – Pressure
• Concentration application package – Coefficients A0 to A4 – Coefficients B1 to B3
• Sensor adjustment
• Process parameter – Damping (flow, density, temperature) – Flow override
• Low flow cut off – Assign process variable – Switch-on/switch-off point – Pressure shock suppression
• Empty pipe detection – Assign process variable – Limit values – Response time – Max. damping
• Corrected volume flow calculation – External reference density – Fixed reference density – Reference temperature – Linear expansion coefficient – Square expansion coefficient
• Measuring mode – Medium – Gas type – Reference sound velocity – Temperature coefficient sound velocity
• External compensation – Pressure compensation – Pressure value – External pressure
• Diagnostic settings
• Diagnostic behavior for diverse diagnostic information
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A
B
C
2
2.1 2.2
3
3.1 3.2
1
1.1 1.2 1.3
4
4.2
4.1

Power supply

Terminal assignment Overview: housing version and connection versions

A0016770
A Housing version: compact, aluminum coated B Housing version: compact, hygienic, stainless C Housing version: ultra-compact, hygienic, stainless 1 Connection version: 4-20 mA HART, pulse/frequency/switch output
1.1 Signal transmission: pulse/frequency/switch output
1.2 Signal transmission: 4-20 mA HART
1.3 Supply voltage 2 Connection version: Modbus RS485
2.1 Signal transmission
2.2 Supply voltage 3 Connection versions: EtherNet/IP and PROFINET
3.1 Signal transmission
3.2 Supply voltage 4 Connection version: PROFIBUS DP
4.1 Signal transmission
4.2 Supply voltage
Transmitter
Connection version 4-20 mA HART with pulse/frequency/switch output
Order code for "Output", option B
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L
L
26
27
+
_
24
25
1
2
+
_
+
_
1
2
3
Depending on the housing version, the transmitters can be ordered with terminals or device plugs.
Order code
Connection methods available
"Housing"
Options
Outputs
Terminals Terminals • Option A: coupling M20x1
A, B
Options A, B
Options A, B, C
Device plugs
→  31
Device plugs
→  31
Order code for "Housing":
• Option A: compact, coated aluminum
• Option B: compact, hygienic, stainless
• Option C ultra-compact, hygienic, stainless
Power
"Electrical connection"
supply
• Option B: thread M20x1
• Option C: thread G ½"
• Option D: thread NPT ½"
Terminals • Option L: plug M12x1 + thread NPT ½"
• Option N: plug M12x1 + coupling M20
• Option P: plug M12x1 + thread G ½"
• Option U: plug M12x1 + thread M20
Possible options for order code
Device plugs
Option Q: 2 x plug M12x1
→  31
 2 Terminal assignment 4-20 mA HART with pulse/frequency/switch output
1 Power supply: DC 24 V 2 Output 1: 4-20 mA HART (active) 3 Output 2: pulse/frequency/switch output (passive)
Terminal number
Order code
"Output"
Power supply Output 1 Output 2
2 (L-) 1 (L+) 27 (–) 26 (+) 25 (–) 24 (+)
Option B DC 24 V 4-20 mA HART (active) Pulse/frequency/switch
Order code for "Output": Option B: 4-20 mA HART with pulse/frequency/switch output
A0016888
output (passive)
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Proline Promass F 100
L L
26 27BA
1 2
+ _
1
2
PROFIBUS DP connection version
For use in the non-hazardous area and Zone 2/Div. 2
Order code for "Output", option L
Depending on the housing version, the transmitters can be ordered with terminals or device plugs.
Order code
"Housing"
Options A, B
Options A, B
Options A, B, C
Order code for "Housing":
• Option A: compact, coated aluminum
• Option B: compact, hygienic, stainless
• Option C ultra-compact, hygienic, stainless
Connection methods available
Output
Terminals Terminals • Option A: coupling M20x1
Device plug
connectors
→  31
Device plug
connectors
→  31
Power supply
Terminals • Option L: plug M12x1 + thread NPT ½"
Device plug
connectors
→  31
Possible options for order code
"Electrical connection"
• Option B: thread M20x1
• Option C: thread G ½"
• Option D: thread NPT ½"
• Option N: plug M12x1 + coupling M20
• Option P: plug M12x1 + thread G ½"
• Option U: plug M12x1 + thread M20
Option Q: 2 x plug M12x1
A0022716
 3 PROFIBUS DP terminal assignment
1 Power supply: DC 24 V 2 PROFIBUS DP
Terminal number
Order code
"Output"
Option L DC 24 V B A
Order code for "Output": Option L: PROFIBUS DP, for use in non-hazardous areas and Zone 2/Div. 2
Power supply Output
2 (L-) 1 (L+) 26 (RxD/TxD-P) 27 (RxD/TxD-
N)
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L L
26 27
A
B
1
2
+ _
1
2
Modbus RS485 connection version
For use in the non-hazardous area and Zone 2/Div. 2
Order code for "Output", option M
Depending on the housing version, the transmitters can be ordered with terminals or device plugs.
Order code
"Housing"
Options A, B
Options A, B
Options A, B, C
Order code for "Housing":
• Option A: compact, coated aluminum
• Option B: compact, hygienic, stainless
• Option C: ultra-compact, hygienic, stainless
Connection methods available
Output
Terminals Terminals • Option A: coupling M20x1
Device plugs
→  31
Device plugs
→  31
Power supply
Terminals • Option L: plug M12x1 + thread NPT ½"
Device plugs
→  31
Possible options for order code
"Electrical connection"
• Option B: thread M20x1
• Option C: thread G ½"
• Option D: thread NPT ½"
• Option N: plug M12x1 + coupling M20
• Option P: plug M12x1 + thread G ½"
• Option U: plug M12x1 + thread M20
Option Q: 2 x plug M12x1
A0019528
 4 Modbus RS485 terminal assignment, connection version for use in non-hazardous areas and Zone 2/Div.
2
1 Power supply: DC 24 V 2 Modbus RS485
Terminal number
Order code
"Output"
Option M DC 24 V Modbus RS485
Order code for "Output": Option M: Modbus RS485, for use in non-hazardous areas and Zone 2/Div. 2
Power supply Output
1 (L+) 2 (L-) 26 (B) 27 (A)
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L L
62 72
A
B
10 20
+ _
1
2
Modbus RS485 connection version
For use in the intrinsically safe area. Connection via Safety Barrier Promass 100.
Order code for "Output", option M
Depending on the housing version, the transmitters can be ordered with terminals or device plugs.
Order code
"Housing"
Options
A, B
A, B, C Device plugs
Order code for "Housing":
• Option A: compact, coated aluminum
• Option B: compact, hygienic, stainless
• Option C ultra-compact, hygienic, stainless
 5 Modbus RS485 terminal assignment, connection version for use in intrinsically safe areas (connection via
Safety Barrier Promass 100)
1 Intrinsically safe power supply 2 Modbus RS485
Connection methods available
Output
Terminals Terminals • Option A: coupling M20x1
→  31
Power supply
Possible options for order code
"Electrical connection"
• Option B: thread M20x1
• Option C: thread G ½"
• Option D: thread NPT ½"
Option I: plug M12x1
A0030219
Order code
"Output"
Option M Intrinsically safe supply voltage Modbus RS485 intrinsically safe
Order code for "Output": Option M: Modbus RS485, for use in the intrinsically safe area (connection via Safety Barrier Promass 100)
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10 (L+) 20 (L-) 62 (B) 72 (A)
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Proline Promass F 100
L L
1
2
+ _
1
2
EtherNet/IP connection version
Order code for "Output", option N
Depending on the housing version, the transmitters can be ordered with terminals or device plugs.
Order code
"Housing"
Options A, B
Options A, B, C
Order code for "Housing":
• Option A: compact, coated aluminum
• Option B: compact, hygienic, stainless
• Option C ultra-compact, hygienic, stainless
Connection methods available
Output
Device plug connectors
→  32
Device plug connectors
→  32
Power supply
Terminals • Option L: plug M12x1 + thread NPT ½"
Device plug
connectors
→  32
Possible options for order code
"Electrical connection"
• Option N: plug M12x1 + coupling M20
• Option P: plug M12x1 + thread G ½"
• Option U: plug M12x1 + thread M20
Option Q: 2 x plug M12x1
 6 EtherNet/IP terminal assignment
1 Power supply: DC 24 V 2 EtherNet/IP
Order code
"Output"
Option N DC 24 V EtherNet/IP
Order code for "Output": Option N: EtherNet/IP
A0017054
Terminal number
Power supply Output
2 (L-) 1 (L+) Device plug M12x1
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L L
1
2
+ _
1
2
PROFINET connection version
Order code for "Output", option R
Depending on the housing version, the transmitters can be ordered with terminals or device plugs.
Order code
"Housing"
Options A, B
Options A, B, C
Order code for "Housing":
• Option A: compact, coated aluminum
• Option B: compact, hygienic, stainless
• Option C ultra-compact, hygienic, stainless
Connection methods available
Output
Device plug
connectors
→  30
Device plug
connectors
→  30
Power supply
Terminals • Option L: plug M12x1 + thread NPT ½"
Device plug
connectors
→  30
Possible options for order code
"Electrical connection"
• Option N: plug M12x1 + coupling M20
• Option P: plug M12x1 + thread G ½"
• Option U: plug M12x1 + thread M20
Option Q: 2 x plug M12x1
 7 PROFINET terminal assignment
1 Power supply: DC 24 V 2 PROFINET
Order code
"Output"
Option R DC 24 V PROFINET
Order code for "Output": Option R: PROFINET
A0017054
Terminal number
Power supply Output
2 (L-) 1 (L+) Device plug M12x1
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Safety Barrier Promass 100
A
Safe area
1
L+2L
27
26
B A
Power supply 24V
DC
Modbus
RS485
10207262
L+L B A
Power supply
Modbus
RS485
Hazardous area
Safety Barrier Promass 100
Power
Communication
Lift panel for bus termination
1
2
A
1
2
4
3
5
 8 Safety Barrier Promass 100 with terminals
1 Non-hazardous area, Zone 2, Class I Division 2 2 Intrinsically safe area
Proline Promass F 100
A0030220

Pin assignment, device plug

Order codes for the M12x1 connectors, see the "Order code for electrical connection" column:
• 4-20 mA HART, pulse/frequency/switch output →  23
• PROFIBUS DP→  25
• Modbus RS485 →  26
• EtherNet/IP →  28
• PROFINET→  29
Supply voltage
For all connection versions except MODBUS RS485 intrinsically safe (device side)
Device plug MODBUS RS485 intrinsically safe with supply voltage →  31
Pin Assignment
1 L+ DC 24 V
2 Not assigned
3 Not assigned
4 L- DC 24 V
A0029042
5 Grounding/shielding
Coding Plug/socket
A Plug
The following is recommended as a socket:
• Binder, series 763, part no. 79 3440 35 05
• Alternatively: Phoenix part no. 1669767 SAC-5P-M12MS – With the order code for "Output", option B: 4-20 mA HART, pulse/frequency/switch output – With the order code for "Output", option N: EtherNet/IP
• When using the device in a hazardous location: Use a suitably certified socket.
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3
2
4
1
5
3
2
4
1
5
1
2
4
3
5
4-20 mA HART with pulse/frequency/switch output
Device plug for signal transmission (device side)
Pin Assignment
1 + 4-20 mA HART (active)
2 - 4-20 mA HART (active)
3 + Pulse/frequency/switch output (passive)
4 - Pulse/frequency/switch output (passive)
A0016810
• Recommended plug: Binder, series 763, part no. 79 3439 12 05
• When using the device in a hazardous location, use a suitably certified plug.
5 Grounding/shielding
Coding Plug/socket
A Socket
PROFIBUS DP
For use in the non-hazardous area and Zone 2/Div. 2.
Device plug for signal transmission (device side)
Pin Assignment
1 Not assigned
2 A PROFIBUS DP
3 Not assigned
4 B PROFIBUS DP
A0016811
• Recommended plug: Binder, series 763, part no. 79 4449 20 05
• When using the device in a hazardous location, use a suitably certified plug.
5 Grounding/shielding
Coding Plug/socket
B Socket
MODBUS RS485
Device plug for signal transmission with supply voltage (device side), MODBUS RS485 (intrinsically safe)
Pin Assignment
1 L+ Supply voltage, intrinsically safe
A0029042
2 A
3 B
4 L- Supply voltage, intrinsically safe
5 Grounding/shielding
Coding Plug/socket
A Plug
Modbus RS485 intrinsically safe
• Recommended socket: Binder, series 763, part no. 79 3439 12 05
• When using the device in a hazardous location: Use a suitably certified socket.
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3
2
4
1
5
3
2
4
1
3
2
4
1
Device plug for signal transmission (device side), MODBUS RS485 (not intrinsically safe)
For use in the non-hazardous area and Zone 2/Div. 2.
Pin Assignment
1 Not assigned
2 A Modbus RS485
3 Not assigned
4 B Modbus RS485
A0016811
• Recommended plug: Binder, series 763, part no. 79 4449 20 05
• When using the device in a hazardous location, use a suitably certified plug.
EtherNet/IP
Device plug for signal transmission (device side)
5 Grounding/shielding
Coding Plug/socket
B Socket
Pin Assignment
1 + Tx
2 + Rx
3 - Tx
4 - Rx
A0016812
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.
Coding Plug/socket
D Socket
PROFINET
Device plug for signal transmission (device side)
Pin Assignment
1 + TD +
2 + RD +
3 - TD –
4 - RD –
A0016812
Coding Plug/socket
D Socket
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.

Supply voltage

The power unit must be tested to ensure it meets safety requirements (e.g. PELV, SELV).
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Transmitter
For device version with communication type:
• HART, PROFIBUS DP, EtherNet/IP: DC 20 to 30 V
• Modbus RS485, device version: – For use in the non-hazardous area and Zone 2/Div. 2: DC 20 to 30 V – For use in the intrinsically safe area: power supply via Safety Barrier Promass 100
Promass 100 safety barrier
DC 20 to 30 V
Power consumption Transmitter
Order code for "Output"
Option B: 4-20 mA HART with pulse/frequency/switch output 3.5 W
Option L: PROFIBUS DP 3.5 W
Option M Modbus RS485, for use in non-hazardous areas and Zone 2/ Div. 2
Option M: Modbus RS485, for use in intrinsically safe areas 2.45 W
Option N: EtherNet/IP 3.5 W
Option R: PROFINET 3.5 W
Promass 100 safety barrier
Order code for "Output"
Option M: Modbus RS485, for use in intrinsically safe areas 4.8 W
Current consumption Transmitter
Order code for "Output"
Option B: 4-20mA HART, pul./freq./switch output 145 mA 18 A (< 0.125 ms)
Option L: PROFIBUS DP 145 mA 18 A (< 0.125 ms)
Option M Modbus RS485, for use in non-hazardous areas and Zone 2/Div. 2
Option M: Modbus RS485, for use in intrinsically safe areas
Option N: EtherNet/IP 145 mA 18 A (< 0.125 ms)
Option R: PROFINET 145 mA 18 A (< 0.125 ms)
Maximum

Power consumption

Maximum
Power consumption
Maximum

Current consumption

90 mA 10 A (< 0.8 ms)
145 mA 16 A (< 0.4 ms)
switch-on current
3.5 W
Maximum
Promass 100 safety barrier

Power supply failure

Order code for "Output"
Option M: Modbus RS485, for use in intrinsically safe areas
Maximum
Current consumption
230 mA 10 A (< 0.8 ms)
Depending on the device version, the configuration is retained in the device memoryor in the
Maximum
switch-on current
pluggable data memory (HistoROM DAT).
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Electrical connection Connecting the transmitter

1 2 1 2 3 4
A B C
4
4...20 mA
5
2
1
3
6
A Housing version: compact, aluminum coated B Housing version: compact hygienic, stainless 1 Cable entry or device plug for signal transmission 2 Cable entry or device plug for supply voltage C Housing version: ultra-compact, hygienic, stainless, M12 device plug 3 Device plug for signal transmission 4 Device plug for supply voltage
Proline Promass F 100
A0016924
• Terminal assignment→  23
• Pin assignment, device plug→  30 In the case of device versions with a connector, the transmitter housing does not need to be
opened to connect the signal cable or power supply cable.
Connection examples
Current output 4 to 20 mA HART
A0029055
 9 Connection example for 4 to 20 mA HART current output (active)
1 Automation system with current input (e.g. PLC) 2 Cable shield: the cable shield must be grounded at both ends to comply with EMC requirements; observe cable
specifications →  39 3 Connection for HART operating devices →  91 4 Resistor for HART communication (≥ 250 Ω): observe maximum load 5 Analog display unit: observe maximum load 6 Transmitter
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2
3
4...20 mA
41
5
1
2
3
12345
1
2
3
A0028762
 10 Connection example for 4 to 20 mA HART current output (passive)
1 Automation system with current input (e.g. PLC) 2 Power supply 3 Cable shield: the cable shield must be grounded at both ends to comply with EMC requirements; observe cable
specifications →  39 4 Analog display unit: observe maximum load 5 Transmitter
Pulse/frequency output
 11 Connection example for pulse/frequency output (passive)
1 Automation system with pulse/frequency input (e.g. PLC) 2 Power supply 3 Transmitter: Observe input values →  9
Switch output
 12 Connection example for switch output (passive)
1 Automation system with switch input (e.g. PLC) 2 Power supply 3 Transmitter: Observe input values
A0028761
A0028760
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2
1
A
B
3
4
4
A
B
A
B
2
1
A
B
3
4
4
A
B
A
B
PROFIBUS DP
A0028765
 13 Connection example for PROFIBUS DP, non-hazardous area and Zone 2/Div. 2
1 Control system (e.g. PLC) 2 Cable shield: the cable shield must be grounded at both ends to comply with EMC requirements; observe cable
specifications
3 Transmitter
If baud rates > 1.5 MBaud an EMC cable entry must be used and the cable shield must continue as far as the terminal wherever possible.
Modbus RS485
Modbus RS485, non-hazardous area and Zone 2/Div. 2
A0028765
 14 Connection example for Modbus RS485, non-hazardous area and Zone 2/Div. 2
1 Control system (e.g. PLC) 2 Cable shield: the cable shield must be grounded at both ends to comply with EMC requirements; observe cable
specifications →  39 3 Distribution box 4 Transmitter
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21
A
B
3
A B
L+
L-
L- L+
A B
5 6 7
4
8
A B
L+ L-
1
2
4
3
5
5
Modbus RS485 intrinsically safe
A0028766
 15 Connection example for Modbus RS485 intrinsically safe
1 Control system (e.g. PLC) 2 Cable shield, observe cable specifications 3 Safety Barrier Promass 100 4 Observe cable specifications 5 Non-hazardous area 6 Non-hazardous area and Zone 2/Div. 2 7 Intrinsically safe area 8 Transmitter
EtherNet/IP
 16 Connection example for EtherNet/IP
1 Control system (e.g. PLC) 2 Ethernet switch 3 Observe cable specifications 4 Device plug 5 Transmitter
A0028767
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Page 38
PROFINET
1 2 4
5
5
3
2
4...20 mA
3
41
+
-
5
+
­6
 17 Connection example for PROFINET
1 Control system (e.g. PLC) 2 Ethernet switch 3 Observe cable specifications 4 Device plug 5 Transmitter
HART input
Proline Promass F 100
A0016805
 18 Connection example for HART input (burst mode) via current output (active)
1 Cable shield, observe cable specifications 2 Resistor for HART communication (≥ 250 Ω): observe maximum load 3 Connection for HART operating devices 4 Analog display unit 5 Transmitter 6 Sensor for external measured variable
A0019828
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Proline Promass F 100
3
4...20 mA
4
521
+
-
6
4...20 mA
+
­7
3
4
52
+
-
-
+
A0019830
 19 Connection example for HART input (master mode) via current output (active)
1 Automation system with current input (e.g. PLC).
Prerequisite: automation system with HART version 6, HART commands 113 and 114 can be processed. 2 Cable shield, observe cable specifications 3 Resistor for HART communication (≥ 250 Ω): observe maximum load 4 Connection for HART operating devices 5 Analog display unit 6 Transmitter 7 Sensor for external measured variable

Potential equalization Requirements

No special measures for potential equalization are required.
Please consider the following to ensure correct measurement:
• Same electrical potential for the fluid and sensor
• Company-internal grounding concepts
For devices intended for use in hazardous locations, please observe the guidelines in the Ex documentation (XA).

Terminals

Transmitter
Spring terminals for wire cross-sections0.5 to 2.5 mm2 (20 to 14 AWG)
Promass 100 safety barrier
Plug-in screw terminals for wire cross-sections0.5 to 2.5 mm2 (20 to 14 AWG)

Cable entries

• Cable gland: M20 × 1.5 with cable Ø 6 to 12 mm (0.24 to 0.47 in)
• Thread for cable entry:
– M20 – G ½" – NPT ½"

Cable specification Permitted temperature range

• The installation guidelines that apply in the country of installation must be observed.
• The cables must be suitable for the minimum and maximum temperatures to be expected.
Power supply cable
Standard installation cable is sufficient.
Signal cable
Current output 4 to 20 mA HART
A shielded cable is recommended. Observe grounding concept of the plant.
Pulse/frequency/switch output
Standard installation cable is sufficient.
Endress+Hauser 39
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Proline Promass F 100
PROFIBUS DP
The IEC 61158 standard specifies two types of cable (A and B) for the bus line which can be used for every transmission rate. Cable type A is recommended.
Cable type A
Characteristic impedance 135 to 165 Ω at a measuring frequency of 3 to 20 MHz
Cable capacitance < 30 pF/m
Wire cross-section
Cable type Twisted pairs
Loop resistance ≤110 Ω/km
Signal damping Max. 9 dB over the entire length of the cable cross-section
Shield Copper braided shielding or braided shielding with foil shield. When grounding
Modbus RS485
The EIA/TIA-485 standard specifies two types of cable (A and B) for the bus line which can be used for every transmission rate. Cable type A is recommended.
> 0.34 mm2 (22 AWG)
the cable shield, observe the grounding concept of the plant.
Cable type A
Characteristic impedance 135 to 165 Ω at a measuring frequency of 3 to 20 MHz
Cable capacitance < 30 pF/m
Wire cross-section
Cable type Twisted pairs
Loop resistance ≤110 Ω/km
Signal damping Max. 9 dB over the entire length of the cable cross-section
Shield Copper braided shielding or braided shielding with foil shield. When grounding
> 0.34 mm2 (22 AWG)
the cable shield, observe the grounding concept of the plant.
EtherNet/IP
The standard ANSI/TIA/EIA-568-B.2 Annex specifies CAT 5 as the minimum category for a cable used for EtherNet/IP. CAT 5e and CAT 6 are recommended.
For more information on planning and installing EtherNet/IP networks, please refer to the "Media Planning and Installation Manual. EtherNet/IP" of ODVA Organization
PROFINET
Standard IEC 61156-6 specifies CAT 5 as the minimum category for a cable used for PROFINET. CAT 5e and CAT 6 are recommended.
For more information on planning and installing PROFINET networks, see: "PROFINET Cabling and Interconnection Technology", Guideline for PROFINET
Connecting cable between Safety Barrier Promass 100 and measuring device
Cable type Shielded twisted-pair cable with 2x2 wires. When grounding the cable shield,
observe the grounding concept of the plant.
Maximum cable resistance 2.5 Ω, one side
Comply with the maximum cable resistance specifications to ensure the operational reliability of the measuring device.
40 Endress+Hauser
Page 41
Proline Promass F 100
The maximum cable length for individual wire cross-sections is specified in the table below. Observe the maximum capacitance and inductance per unit length of the cable and connection values for hazardous areas .
Wire cross-section Maximum cable length
[mm2] [AWG] [m] [ft]
0.5 20 70 230
0.75 18 100 328
1.0 17 100 328
1.5 16 200 656
2.5 14 300 984

Performance characteristics

reference operating conditions

Maximum measured error

• Error limits based on ISO 11631
• Water with +15 to +45 °C (+59 to +113 °F) at2 to 6 bar (29 to 87 psi)
• Specifications as per calibration protocol
• Accuracy based on accredited calibration rigs that are traced to ISO 17025.
To obtain measured errors, use the Applicator sizing tool →  100
o.r. = of reading; 1 g/cm³ = 1 kg/l; T = medium temperature
Base accuracy
Design fundamentals →  44
Mass flow and volume flow (liquids)
±0.05 % o.r. (PremiumCal; order code for "Calibration flow", option D, for mass flow) ±0.10 % o.r.
Mass flow (gases)
±0.35 % o.r.
Density (liquids)
Under
reference operating conditions
[g/cm³] [g/cm³] [g/cm³]
±0.0005 ±0.01 ±0.001
Standard density
calibration
1)
Wide-range
Density specification
2) 3)
1) Valid over the entire temperature and density range
2) Valid range for special density calibration: 0 to 2 g/cm³, +5 to +80 °C (+41 to +176 °F)
3) order code for "Application package", option EE "Special density" only in combination with the order code for
"Measuring tube mat., wetted surface", option BB, BF, HA, SA
Temperature
±0.5 °C ± 0.005 · T °C (±0.9 °F ± 0.003 · (T – 32) °F)
Endress+Hauser 41
Page 42
Zero point stability
DN Zero point stability
[mm] [in] [kg/h] [lb/min]
8 ³⁄₈ 0.030 0.001
15 ½ 0.200 0.007
25 1 0.540 0.019
40 2.25 0.083
50 2 3.50 0.129
80 3 9.0 0.330
100 4 14.0 0.514
150 6 32.0 1.17
250 10 88.0 3.23
Flow values
Flow values as turndown parameter depending on nominal diameter.
Proline Promass F 100
SI units
DN 1:1 1:10 1:20 1:50 1:100 1:500
[mm]
8 2 000 200 100 40 20 4
15 6 500 650 325 130 65 13
25 18 000 1 800 900 360 180 36
40 45 000 4 500 2 250 900 450 90
50 70 000 7 000 3 500 1 400 700 140
80 180 000 18 000 9 000 3 600 1 800 360
100 350 000 35 000 17 500 7 000 3 500 700
150 800 000 80 000 40 000 16 000 8 000 1 600
250 2 200 000 220 000 110 000 44 000 22 000 4 400
[kg/h] [kg/h] [kg/h] [kg/h] [kg/h] [kg/h]
US units
DN 1:1 1:10 1:20 1:50 1:100 1:500
[inch] [lb/min] [lb/min] [lb/min] [lb/min] [lb/min] [lb/min]
³⁄₈ 73.50 7.350 3.675 1.470 0.735 0.147
½ 238.9 23.89 11.95 4.778 2.389 0.478
1 661.5 66.15 33.08 13.23 6.615 1.323
1 654 165.4 82.70 33.08 16.54 3.308
2 2 573 257.3 128.7 51.46 25.73 5.146
3 6 615 661.5 330.8 132.3 66.15 13.23
4 12 860 1 286 643.0 257.2 128.6 25.72
6 29 400 2 940 1 470 588 294 58.80
10 80 850 8 085 4 043 1 617 808.5 161.7
42 Endress+Hauser
Page 43
Proline Promass F 100
Accuracy of outputs
The output accuracy must be factored into the measured error if analog outputs are used, but can be ignored for fieldbus outputs (e.g. Modbus RS485, EtherNet/IP).
The outputs have the following base accuracy specifications.
Current output
Accuracy Max. ±5 µA
Pulse/frequency output
o.r. = of reading
Accuracy Max. ±50 ppm o.r. (over the entire ambient temperature range)

Repeatability

Response time

Influence of ambient temperature

o.r. = of reading; 1 g/cm3 = 1 kg/l; T = medium temperature
Base repeatability
Design fundamentals →  44
Mass flow and volume flow (liquids)
±0.025 % o.r. (PremiumCal, for mass flow) ±0.05 % o.r.
Mass flow (gases)
±0.25 % o.r.
Density (liquids)
±0.00025 g/cm
3
Temperature
±0.25 °C ± 0.0025 · T °C (±0.45 °F ± 0.0015 · (T–32) °F)
The response time depends on the configuration (damping).
Current output
o.r. = of reading
Temperature coefficient Max. ±0.005 % o.r./°C
Pulse/frequency output
Temperature coefficient No additional effect. Included in accuracy.

Influence of medium temperature

Mass flow and volume flow
o.f.s. = of full scale value
When there is a difference between the temperature for zero point adjustment and the process temperature, the additional measured error of the sensor is typically ±0.0002 % o.f.s./°C (±0.0001 % o. f.s./°F).
The effect is reduced if zero point adjustment is performed at process temperature.
Density
When there is a difference between the density calibration temperature and the process temperature, the typical measured error of the sensor is ±0.00005 g/cm3 /°C (±0.000025 g/cm3 /°F). Field density calibration is possible.
Endress+Hauser 43
Page 44
Proline Promass F 100
3
[°C]
0- 08 80 160 240
[° ]F
- 05 0
100
200
300
0
2
4
6
8
10
2
1
12
14
16
18
320 400 480 560
Wide-range density specification (special density calibration)
If the process temperature is outside the valid range (→  41) the measured error is ±0.00005 g/cm3 /°C (±0.000025 g/cm3 /°F)

Influence of medium pressure

Design fundamentals

1 Field density calibration, for example at +20 °C (+68 °F) 2 Special density calibration
Temperature
±0.005 · T °C (± 0.005 · (T – 32) °F)
The table below shows the effect on accuracy of mass flow due to a difference between calibration pressure and process pressure.
o.r. = of reading
It is possible to compensate for the effect by:
• Reading in the current pressure measured value via the current input.
• Specifying a fixed value for the pressure in the device parameters. Operating Instructions.
DN [% o.r./bar] [% o.r./psi]
[mm] [in]
8 3/8 no influence
15 ½ no influence
25 1 no influence
40 –0.003 –0.0002
50 2 –0.008 –0.0006
80 3 –0.009 –0.0006
100 4 –0.007 –0.0005
150 6 –0.009 –0.0006
250 10 –0.009 –0.0006
o.r. = of reading, o.f.s. = of full scale value
BaseAccu = base accuracy in % o.r., BaseRepeat = base repeatability in % o.r.
MeasValue = measured value; ZeroPoint = zero point stability
A0034654
44 Endress+Hauser
Page 45
Proline Promass F 100
ZeroPoint BaseAccu
100
³
± BaseAccu
ZeroPoint BaseAccu
100
<
ZeroPoint
MeasValue
100
±
½ ZeroPoint
BaseRepeat
100
³
½ ZeroPoint
BaseRepeat
100
<
ZeroPoint
MeasValue
100
½ ±
E [%]
0 10 20 30 40 50 60
0
0.5
1.0
1.5
2.0
2.5
70 80 90 100
Q [%]
Calculation of the maximum measured error as a function of the flow rate
Flow rate Maximum measured error in % o.r.
A0021332
A0021333
Calculation of the maximum repeatability as a function of the flow rate
Flow rate Maximum repeatability in % o.r.
A0021335
A0021336
Example for maximum measured error
A0021339
A0021334
A0021340
A0021337

Mounting location

Endress+Hauser 45
A0028808
E Maximum measured error in % o.r. (example with PremiumCal) Q Flow rate in % of maximum full scale value

Installation

No special measures such as supports etc. are necessary. External forces are absorbed by the construction of the device.
A0028772
To prevent measuring errors arising from accumulation of gas bubbles in the measuring tube, avoid the following mounting locations in the pipe:
• Highest point of a pipeline.
• Directly upstream of a free pipe outlet in a down pipe.
Page 46
Proline Promass F 100
1
2
3
4
5
Installation in down pipes
However, the following installation suggestion allows for installation in an open vertical pipeline. Pipe restrictions or the use of an orifice with a smaller cross-section than the nominal diameter prevent the sensor running empty while measurement is in progress.
 20 Installation in a down pipe (e.g. for batching applications)
1 Supply tank 2 Sensor 3 Orifice plate, pipe restriction 4 Valve 5 Batching tank
A0028773

Orientation

DN Ø orifice plate, pipe restriction
[mm] [in] [mm] [in]
8 ³⁄₈ 6 0.24
15 ½ 10 0.40
25 1 14 0.55
40 22 0.87
50 2 28 1.10
80 3 50 1.97
100 4 65 2.60
150 6 90 3.54
250 10 150 5.91
The direction of the arrow on the sensor nameplate helps you to install the sensor according to the flow direction (direction of medium flow through the piping).
Orientation Recommendation
A Vertical orientation
B Horizontal orientation, transmitter at
top
A0015591
Exceptions:
→  21,  47
A0015589
46 Endress+Hauser
1)
Page 47
Proline Promass F 100
1 2
Orientation Recommendation
C Horizontal orientation, transmitter at
bottom
→  21,  47
A0015590
D Horizontal orientation, transmitter at
side
1) Applications with low process temperatures may decrease the ambient temperature. To maintain the
minimum ambient temperature for the transmitter, this orientation is recommended.
2) Applications with high process temperatures may increase the ambient temperature. To maintain the
maximum ambient temperature for the transmitter, this orientation is recommended.
A0015592
2)
Exceptions:
If a sensor is installed horizontally with a curved measuring tube, match the position of the sensor to the fluid properties.

Inlet and outlet runs

Special mounting instructions

A0028774
 21 Orientation of sensor with curved measuring tube
1 Avoid this orientation for fluids with entrained solids: Risk of solids accumulating. 2 Avoid this orientation for outgassing fluids: Risk of gas accumulating.
No special precautions need to be taken for fittings which create turbulence, such as valves, elbows or T-pieces, as long as no cavitation occurs →  57.
Rupture disk
Information that is relevant to the process: →  56.
The position of the rupture disk is indicated on a sticker beside it.
The transportation guard must be removed.
The existing connecting nozzles are not intended for the purpose of rinsing or pressure monitoring, but instead serve as the mounting location for the rupture disk.
In the event of a failure of the rupture disk, a discharge device can be screwed onto the internal thread of the rupture disk in order to drain off any escaping medium.
Endress+Hauser 47
Page 48
RUPTURE DISK
i
2
3
1
2
3
1 Rupture disk label
> 22.5
(> 0.89)
> 22.5
(> 0.89)
2 Rupture disk with 1/2" NPT internal thread with 1" width across flat 3 Transport protection
Proline Promass F 100
A0028903

Installing the Safety Barrier Promass 100

For information on the dimensions: see the "Mechanical construction -> Accessories" section
Zero point adjustment
All measuring devices are calibrated in accordance with state-of-the-art technology. Calibration takes place under reference conditions→  41. Therefore, a zero point adjustment in the field is generally not required.
Experience shows that zero point adjustment is advisable only in special cases:
• To achieve maximum measuring accuracy even with low flow rates.
• Under extreme process or operating conditions (e.g. very high process temperatures or very high­viscosity fluids).
A0016894
 22 Minimum distance between additional Safety Barrier Promass 100 or other modules. Engineering unit
mm (in)
48 Endress+Hauser
Page 49
Proline Promass F 100

Environment

Ambient temperature range

Storage temperature

Climate class

Degree of protection

Vibration resistance

Measuring device • –40 to +60 °C (–40 to +140 °F)
• Order code for "Test, certificate", option JM: –50 to +60 °C (–58 to +140 °F)
Safety Barrier Promass 100 –40 to +60 °C (–40 to +140 °F)
If operating outdoors:
Avoid direct sunlight, particularly in warm climatic regions.
–40 to +80 °C (–40 to +176 °F), preferably at +20 °C (+68 °F) (standard version) –50 to +80 °C (–58 to +176 °F) (Order code for "Test, certificate", option JM)
DIN EN 60068-2-38 (test Z/AD)
Transmitter and sensor
• As standard: IP66/67, type 4X enclosure
• With the order code for "Sensor options", option CM: IP69 can also be ordered
• When housing is open: IP20, type 1 enclosure
• Display module: IP20, type 1 enclosure
Safety Barrier Promass 100
IP20
• Oscillation, sinusoidal, following IEC 60068-2-6 – 2 to 8.4 Hz, 3.5 mm peak – 8.4 to 2 000 Hz, 1 g peak
• Oscillation, broadband noise following IEC 60068-2-64 – 10 to 200 Hz, 0.003 g2/Hz – 200 to 2 000 Hz, 0.001 g2/Hz – Total: 1.54 g rms

Shock resistance

Shock resistance

Interior cleaning

Electromagnetic compatibility (EMC)

Shock, half-sine according to IEC 60068-2-27 6 ms 30 g
Shock due to rough handling following IEC 60068-2-31
• Cleaning in place (CIP)
• Sterilization in place (SIP)
Options
• Oil- and grease-free version for wetted parts, without declaration Order code for "Service", option HA
• Oil- and grease-free version for wetted parts as per IEC/TR 60877-2.0 and BOC 50000810-4, with declaration Order code for "Service", option HB
• Depends on the communication protocol: – HART, PROFIBUS DP, EtherNet/IP:
As per IEC/EN 61326 and NAMUR Recommendation 21 (NE 21)
– Modbus RS485:
As per IEC/EN 61326 and NAMUR Recommendation 21 (NE 21)
– PROFINET: as per IEC/EN 61326
• Complies with emission limits for industry as per EN 55011 (Class A)
• Device version with PROFIBUS DP: Complies with emission limits for industry as per EN 50170 Volume 2, IEC 61784
The following applies for PROFIBUS DP: If baud rates > 1.5 MBaud, an EMC cable entry must be used and the cable shield must continue as far as the terminal wherever possible.
Details are provided in the Declaration of Conformity.
Endress+Hauser 49
Page 50

Medium temperature range

T
a
T
m
B
A
Proline Promass F 100

Process

Standard version –50 to +150 °C (–58 to +302 °F) Order code for "Measuring tube
mat., wetted surface", option HA,
SA, SB, SC
Extended temperature version –50 to +240 °C (–58 to +464 °F) Order code for "Measuring tube
mat., wetted surface", option SD,
SE, SF, TH
Dependency of ambient temperature on medium temperature
 23 Exemplary representation, values in the table below.
TaAmbient temperature TmMedium temperature A Maximum permitted medium temperature Tm at T
require a reduced ambient temperature T
a
= 60 °C (140 °F); higher medium temperatures T
a max
B Maximum permitted ambient temperature Ta for the maximum specified medium temperature Tm of the
sensor
Values for devices used in the hazardous area: Separate Ex documentation (XA) for the device .
Not insulated Insulated
A B A B
Version T
a
T
m
T
a
T
m
T
a
T
m
T
a
Standard version 60 °C (140 °F) 150 °C (302 °F) 60 °C (140 °F) 110 °C (230 °F) 55 °C (131 °F) 150 °C (302 °F)
Extended
60 °C (140 °F) 170 °C (338 °F) 55 °C (131 °F) 240 °C (464 °F) 60 °C (140 °F) 110 °C (230 °F) 50 °C (122 °F) 240 °C (464 °F) temperature version

Density

Pressure-temperature curves

0 to 5 000 kg/m3 (0 to 312 lb/cf)
The following pressure/temperature diagrams apply to all pressure-bearing parts of the device and not just the process connection. The diagrams show the maximum permissible medium pressure depending on the specific medium temperature.
Pressure-temperature curves with temperature range +151 to +240 °C (+304 to +464 °F) exclusively for extended temperature version of measuring devices.
A0031121
m
T
m
50 Endress+Hauser
Page 51
Proline Promass F 100
PN100
PN63
PN40
PN16
-80
0 80 160
240
320 400 480
0
10
20
30
40
50
60
70
80
90
100
0
200
400
600
800
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
Class 600
Class 300
Class 150
-80
0 80 160
240
320 400 480
0
10
20
30
40
50
60
70
80
90
100
0
200
400
600
800
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
Flange according to EN 1092-1 (DIN 2501)
A0034658-EN
 24 With flange material 1.4404 (F316/F316L), Alloy C22
Flange according to ASME B16.5
A0034659-EN
 25 With flange material 1.4404 (F316/F316L)
Endress+Hauser 51
Page 52
Class 600
Class 300
Class 150
-80
0 80 160
240
320 400 480
0
10
20
30
40
50
60
70
80
90
100
0
200
400
600
800
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
 26 With flange material Alloy C22
63K
40K
20K
10K
-80
0 80 160
240
320 400 480
0
10
20
30
40
50
60
70
0
200
400
600
800
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
DN8…40
≥ DN 50
-80
0 80 160
240
320 400 480
0
10
20
30
40
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
50
Proline Promass F 100
A0034660-EN
Flange JIS B2220
 27 With flange material 1.4404 (F316/F316L), Alloy C22
Flange DIN 11864-2 Form A
A0034665-EN
 28 With connection material 1.4404 (316/316L)
52 Endress+Hauser
A0028782-EN
Page 53
Proline Promass F 100
PN40
-80
0 80 160
240
320 400 480
0
10
20
30
40
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
50
Class 150
Class 600
Class 300
-80
0 80 160
240
320 400 480
0
10
20
30
40
50
60
70
80
90
100
0
200
400
600
800
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
20K
-80
0 80 160
240
320 400 480
0
10
20
30
0
200
400
[°C]
[°F]
[bar]
[psi]
25020015010050
0
-50
Lap joint flange according to EN 1092-1 (DIN 2501)
A0028784-EN
 29 With flange material 1.4301 (F304); wetted parts Alloy C22
Lap joint flange according to ASME B16.5
A0028785-EN
 30 With flange material 1.4301 (F304); wetted parts Alloy C22
Lap joint flange JIS B2220
Endress+Hauser 53
 31 With flange material 1.4301 (F304); wetted parts Alloy C22
A0028786-EN
Page 54
Proline Promass F 100
≥ DN 50
DN8…40
-80
0 80 160
240
320 400 480
0
10
20
30
40
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
50
DN8…40
≥ DN 50
-80
0 80 160
240
320 400 480
0
10
20
30
40
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
50
-80
0 80 160
240
320 400 480
0
10
20
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
Thread DIN 11851
A0028794-EN
 32 With connection material 1.4404 (316/316L)
DIN 11851 allows for applications up to +140 °C (+284 °F) if suitable sealing materials are used. Please take this into account when selecting seals and counterparts, as these components can limit the pressure and temperature range.
Thread DIN 11864-1 Form A
 33 With connection material 1.4404 (316/316L)
Thread ISO 2853
 34 With connection material 1.4404 (316/316L)
54 Endress+Hauser
A0028798-EN
A0028799-EN
Page 55
Proline Promass F 100
-80
0 80 160
240
320 400 480
0
10
20
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
60
70
80
90
100
800
[bar][psi]
-80
0 80 160
240
320 400 480
[°C]
[°F]
25020015010050
0
-50
-80
0 80 160
240
320 400 480
0
10
20
0
[°C]
[°F]
[bar][psi]
25020015010050
0
-50
Thread SMS 1145
A0028800-EN
 35 With connection material 1.4404 (316/316L)
SMS 1145 allows for applications up to 16 bar (232 psi) if suitable sealing materials are used. Please take this into account when selecting seals and counterparts, as these components can limit the pressure and temperature range.
VCO
 36 With connection material 1.4404 (316/316L)
Tri-Clamp
The clamp connections are suitable up to a maximum pressure of 16 bar (232 psi). Please observe the operating limits of the clamp and seal used as they can be over 16 bar (232 psi). The clamp and seal are not included in the scope of supply.

Secondary containment

For the Standard version with the temperature range –50 to +150 °C (–58 to +302 °F), the sensor housing is filled with dry nitrogen gas and protects the electronics and mechanics inside.
Endress+Hauser 55
For all other temperature versions the sensor housing is filled with dry inert gas.
The following secondary containment pressure ratings/burst pressures are only valid for standard devices and/or devices equipped with closed purge connections (never opened/as delivered).
If a device fitted with purge connections (order code for "Sensor option", option CH "Purge connection") is connected to the purge system, the maximum nominal pressure is determined by the
A0028801-EN
A0032216-EN
Page 56
Proline Promass F 100
purge system itself or by the device, depending on which component has the lower nominal pressure classification.
If the device is fitted with a rupture disk (order code for "Sensor option", option CA "Rupture disk"), the rupture disk trigger pressure is decisive for the maximum nominal pressure →  56.
The secondary containment burst pressure refers to a typical internal pressure achieved prior to mechanical failure of the secondary containment as determined during type testing. The corresponding type test declaration can be ordered with the device (order code for "Additional approval", option LN "Type test containment").
DN Secondary containment
pressure rating
(designed with a safety factor
≥ 4)
[mm] [in] [bar] [psi] [bar] [psi]
8 ³⁄₈ 40 580 255 3 698
15 ½ 40 580 200 2 900
25 1 40 580 280 4 060
40 40 580 180 2 610
50 2 40 580 195 2 828
80 3 25 362 105 1 522
100 4 16 232 85 1 232
150 6 16 232 80 1 160
250 10 10 145 57 826
Secondary containment burst pressure
If a measuring tube fails (e.g. due to process characteristics like corrosive or abrasive fluids), the fluid will be contained by the secondary containment.
If there is a need to drain the leaking medium into a discharge device, the sensor should be fitted with a rupture disk. Connect the discharge to the additional threaded connection →  77.
If the sensor is to be purged with gas (gas detection), it should be equipped with purge connections.
Do not open the purge connections unless the containment can be filled immediately with a dry, inert gas. Use only low pressure to purge. Maximum pressure: 5 bar (72.5 psi).
In case of a tube failure, the pressure level inside the secondary containment will rise according to the operating process pressure. If the user judges that the secondary containment pressure rating/ burst pressure does not provide an adequate safety margin, the device can be fitted with a rupture disk. This prevents excessively high pressure from forming inside the secondary containment. Therefore, the use of a rupture disk is strongly recommended in applications involving high gas pressures, and particularly in applications in which the process pressure is greater than 2/3 of the secondary containment burst pressure.
For information on the dimensions: see the "Mechanical construction" section

Rupture disk

To increase the level of safety, a device version with a rupture disk with a trigger pressure of 10 to 15 bar (145 to 217.5 psi)can be used (order code for "Sensor option", option CA "rupture disk").
Rupture disks cannot be combined with the separately available heating jacket .
Special mounting instructions: →  47
For information on the dimensions: →  77

Flow limit

Select the nominal diameter by optimizing between the required flow range and permissible pressure loss.
For an overview of the full scale values for the measuring range, see the "Measuring range" section →  8
56 Endress+Hauser
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Proline Promass F 100
• The minimum recommended full scale value is approx. 1/20 of the maximum full scale value
• In most applications, 20 to 50 % of the maximum full scale value can be considered ideal
• A low full scale value must be selected for abrasive media (such as liquids with entrained solids): flow velocity < 1 m/s (< 3 ft/s).
• For gas measurement the following rules apply: – The flow velocity in the measuring tubes should not exceed half the sound velocity (0.5 Mach). – The maximum mass flow depends on the density of the gas: formula →  8
To calculate the flow limit, use the Applicator sizing tool →  100

Pressure loss

System pressure

Thermal insulation

To calculate the pressure loss, use the Applicator sizing tool →  100
Promass F with reduced pressure loss: order code for "Sensor option", option CE "reduced pressure loss"
It is important that cavitation does not occur, or that gases entrained in the liquids do not outgas. This is prevented by means of a sufficiently high system pressure.
For this reason, the following mounting locations are recommended:
• At the lowest point in a vertical pipe
• Downstream from pumps (no danger of vacuum)
A0028777
In the case of some fluids, it is important to keep the heat radiated from the sensor to the transmitter to a low level. A wide range of materials can be used for the required insulation.
The following device versions are recommended for versions with thermal insulation:
• Version with extended neck for insulation: Order code for "Sensor option", option CG with an extended neck length of 105 mm (4.13 in).
• Extended temperature version: Order code for "Measuring tube material", option SD, SE, SF or TH with an extended neck length of 105 mm (4.13 in).

Heating

NOTICE
Electronics overheating on account of thermal insulation!
Recommended orientation: horizontal orientation, transmitter housing pointing downwards.
Do not insulate the transmitter housing .
Maximum permissible temperature at the lower end of the transmitter housing: 80 °C (176 °F)
Thermal insulation with extended neck free: the insulation is omitted around the extended neck.
We recommend that you do not insulate the extended neck in order to ensure optimum dissipation of heat.
 37 Thermal insulation with extended neck free
Some fluids require suitable measures to avoid loss of heat at the sensor.
A0034391
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Proline Promass F 100
Heating options
• Electrical heating, e.g. with electric band heaters
• Via pipes carrying hot water or steam
• Via heating jackets Heating jackets for the sensors can be ordered as accessories from Endress+Hauser .→  99
NOTICE
Danger of overheating when heating
Ensure that the temperature at the lower end of the transmitter housing does not exceed
80 °C (176 °F). Ensure that convection takes place on a sufficiently large scale at the transmitter neck.
Ensure that a sufficiently large area of the housing support remains exposed. The uncovered part
serves as a radiator and protects the electronics from overheating and excessive cooling.

Vibrations

The high oscillation frequency of the measuring tubes ensures that the correct operation of the measuring system is not influenced by plant vibrations.
58 Endress+Hauser
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Proline Promass F 100
A
B
C
G
D
L
E
F
K
M

Mechanical construction

Dimensions in SI units Compact version

A0033787
Order code for "Housing", option A "Compact, aluminum, coated"
DN
1)
[mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm]
8 148 94 54 75 185 260 136 5.35
15 148 94 54 75 185 260 136 8.30
25 148 94 54 75 185 260 136 12.0
40 148 94 54 105 189.5 294.5 136 17.6
50 148 94 54 141 199.5 340.5 136 26.0
80 148 94 54 200 219.5 419.5 136 40.5
100 148 94 54 254 238 492 136 51.2
150 148 94 54 378 259 637 136 68.9
250 148 94 54 548 302.5 850.5 136 102.3
1) Depending on the cable gland used: values up to + 30 mm
2) With order code for "Sensor option", option CG or order code for "Measuring tube material", option SD, SE, SF, TH: values +70 mm
3) If using a display, order code for "Display; operation", option B: values +28 mm
4) Depending on respective process connection→  61
1)
A
B C D E
2) 3)
F
2) 3)
G K L M
4)
4)
4)
4)
4)
4)
4)
4)
4)
70
70
70
79
99
139
176
218
305
Order code for "Housing", option B "Compact hygienic, stainless"
DN
1)
[mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm]
8 137 78 59 75 180 255 134 5.35
15 137 78 59 75 180 255 134 8.30
25 137 78 59 75 180 255 134 12.0
40 137 78 59 105 184.5 289.5 134 17.6
50 137 78 59 141 194.5 335.5 134 26.0
80 137 78 59 200 214.5 414.5 134 40.5
100 137 78 59 254 233 487 134 51.2
1)
A
B C D E
2) 3)
F
2) 3)
G K L M
4)
4)
4)
4)
4)
4)
4)
70
70
70
79
99
139
176
Endress+Hauser 59
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Proline Promass F 100
DN
1)
1)
A
B C D E
2) 3)
F
2) 3)
G K L M
[mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm]
150 137 78 59 378 254 632 134 68.9
250 137 78 59 548 297.5 845.5 134 102.3
4)
4)
218
305
1) Depending on the cable gland used: values up to + 30 mm
2) With order code for "Sensor option", option CG or order code for "Measuring tube material", option SD, SE, SF, TH: values +70 mm
3) If using a display, order code for "Display; operation", option B: values +28 mm
4) Depending on respective process connection→  61
Order code for "Housing", option C "Ultra-compact hygienic, stainless"
DN
1)
[mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm] [mm]
8 124 68 56 75 180 255 112 5.35
15 124 68 56 75 180 255 112 8.30
25 124 68 56 75 180 255 112 12.0
40 124 68 56 105 184.5 289.5 112 17.6
50 124 68 56 141 194.5 335.5 112 26.0
80 124 68 56 200 214.5 414.5 112 40.5
100 124 68 56 254 233 487 112 51.2
150 124 68 56 378 254 632 112 68.9
250 124 68 56 548 297.5 845.5 112 102.3
1)
A
B C D F
2) 3)
F
2) 3)
G K L M
4)
4)
4)
4)
4)
4)
4)
4)
4)
139
176
218
305
70
70
70
79
99
1) Depending on the cable gland used: values up to + 30 mm
2) With order code for "Sensor option", option CG or order code for "Measuring tube material", option SD, SE, SF, TH: values +70 mm
3) If using a display, order code for "Display; operation", option B: values +14 mm
4) Depending on respective process connection→  61
60 Endress+Hauser
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Proline Promass F 100
C
D
A
B
E
L
Flange connections
Fixed flange EN 1092-1, ASME B16.5, JIS B2220
A0015621
Length tolerance for dimension L in mm:
• DN ≤ 100: +1.5 / –2.0
• DN ≥ 125: +3.5
Flange according to EN 1092-1 (DIN 2501): PN16
1.4404 (F316/F316L): order code for "Process connection", option D1S Alloy C22: order code for "Process connection", option D1C
Flange with groove according to EN 1092-1 Form D (DIN 2512N): PN16
1.4404 (F316/F316L): order code for "Process connection", option D5S Alloy C22: order code for "Process connection", option D5C
DN
[mm]
100 220 180 8 × ⌀18 20 107.1 1 127/1 400
150 285 240 8 × ⌀22 22 159.3 1 330/1 700
250 405 355 12 × ⌀26 26 260.4 1 775
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 µm
1) Installation length in accordance with NAMUR recommendation NE 132 optionally available (order code for "Process connection", option D1N or D5N (with groove))
Flange according to EN 1092-1 (DIN 2501): PN16 with reduction in nominal diameter
1.4404 (F316/F316L
DN
[mm]
100 80 DHS 220 180 8 × ⌀ 18 20 107.1 874
150 100 DJS 285 240 8 × ⌀ 22 22 159.3 1 167
200 150 DLS 340 295 12 × ⌀ 22 24 206.5 1 461
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 µm
A
[mm]
reduction
to DN [mm]
B
[mm]
Order code for
"Process
connection",
option
C
[mm]
A
[mm]B[mm]
D
[mm]
C
[mm]
E
[mm]
D
[mm]E[mm]L[mm]
L
[mm]
1)
1)
Endress+Hauser 61
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Proline Promass F 100
Flange according to EN 1092-1 (DIN 2501): PN 40
1.4404 (F316/F316L): order code for "Process connection", option D2S Alloy C22: order code for "Process connection", option D2C
Flange with groove according to EN 1092-1 Form D (DIN 2512N): PN 40
1.4404 (F316/F316L): order code for "Process connection", option D6S Alloy C22: order code for "Process connection", option D6C
DN
[mm]
1)
8
15 95 65 4 × ⌀14 16 17.3 404/510
25 115 85 4 × ⌀14 18 28.5 440/600
40 150 110 4 × ⌀18 18 43.1 550
50 165 125 4 × ⌀18 20 54.5 715
80 200 160 8 × ⌀18 24 82.5 840/915
100 235 190 8 × ⌀22 24 107.1 1 127
150 300 250 8 × ⌀26 28 159.3 1 370
250 450 385 12 × ⌀33 38 258.8 1 845
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 µm
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
95 65 4 × ⌀14 16 17.3 370/510
L
[mm]
2)
2)
2)
2)
1) DN 8 with DN 15 flanges as standard
2) Installation length in accordance with NAMUR recommendation NE 132 optionally available (order code for "Process connection", option D2N or D6N (with groove))
Flange according to EN 1092-1 (DIN 2501): PN 40 (with DN 25 flanges)
1.4404 (F316/F316L): order code for "Process connection", option R2S
DN
[mm]
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
L
[mm]
8 115 85 4 × ⌀14 18 28.5 440
15 115 85 4 × ⌀14 18 28.5 440
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 µm
Flange according to EN 1092-1 (DIN 2501): PN 40 with reduction in nominal diameter
1.4404 (F316/F316L)
DN
[mm]
reduction
to DN [mm]
Order code for
"Process
connection",
A
[mm]B[mm]
C
[mm]
D
[mm]E[mm]L[mm]
option
50 40 DFS 165 125 4 × ⌀ 18 20 54.5 555
80 50 DGS 200 160 8 × ⌀ 18 24 82.5 840
100 80 DIS 235 190 8 × ⌀ 22 24 107.1 874
150 100 DKS 300 250 8 × ⌀ 26 28 159.3 1 167
200 150 DMS 375 320 12 × ⌀ 30 34 206.5 1 461
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 µm
62 Endress+Hauser
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Proline Promass F 100
Flange according to EN 1092-1 (DIN 2501): PN 63
1.4404 (F316/F316L): order code for "Process connection", option D3S Alloy C22: order code for "Process connection", option D3C
Flange with groove according to EN 1092-1 Form D (DIN 2512N): PN 63
1.4404 (F316/F316L): order code for "Process connection", option D7S Alloy C22: order code for "Process connection", option D7C
DN
[mm]
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
[mm]
50 180 135 4 × ⌀22 26 54.5 724
80 215 170 8 × ⌀22 28 81.7 875
100 250 200 8 × ⌀26 30 106.3 1 127
150 345 280 8 × ⌀33 36 157.1 1 410
250 470 400 12 × ⌀36 46 255.4 1 885
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 µm EN 1092-1 Form B2 (DIN 2526 Form E), Ra
0.8 to 3.2 µm
Flange according to EN 1092-1 (DIN 2501): PN 100
1.4404 (F316/F316L): order code for "Process connection", option D4S Alloy C22: order code for "Process connection", option D4C
Flange with groove according to EN 1092-1 Form D (DIN 2512N): PN 100
1.4404 (F316/F316L): order code for "Process connection", option D8S Alloy C22: order code for "Process connection", option D8C
DN
[mm]
1)
8
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
[mm]
105 75 4 × ⌀14 20 17.3 400
15 105 75 4 × ⌀14 20 17.3 420
25 140 100 4 × ⌀18 24 28.5 470
40 170 125 4 × ⌀22 26 42.5 590
50 195 145 4 × ⌀26 28 53.9 740
80 230 180 8 × ⌀26 32 80.9 885
100 265 210 8 × ⌀30 36 104.3 1 127
150 355 290 12 × ⌀33 44 154.0 1 450
Surface roughness (flange): EN 1092-1 Form B2 (DIN 2526 Form E), Ra 0.8 to 3.2 µm
L
L
1) DN 8 with DN 15 flanges as standard
Flange according to ASME B16.5: Class 150
1.4404 (F316/F316L): order code for "Process connection", option AAS Alloy C22: order code for "Process connection", option AAC
DN
[mm]
1)
8
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
90 60.3 4 × ⌀15.7 11.2 15.7 370
L
[mm]
15 90 60.3 4 × ⌀15.7 11.2 15.7 404
25 110 79.4 4 × ⌀15.7 14.2 26.7 440
40 125 98.4 4 × ⌀15.7 17.5 40.9 550
50 150 120.7 4 × ⌀19.1 19.1 52.6 715
80 190 152.4 4 × ⌀19.1 23.9 78.0 840
100 230 190.5 8 × ⌀19.1 23.9 102.4 1 127
150 280 241.3 8 × ⌀22.4 25.4 154.2 1 398
Endress+Hauser 63
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Proline Promass F 100
Flange according to ASME B16.5: Class 150
1.4404 (F316/F316L): order code for "Process connection", option AAS Alloy C22: order code for "Process connection", option AAC
DN
[mm]
250 405 362 12 × ⌀25.4 30.2 254.5 1 832
Surface roughness (flange): Ra 3.2 to 6.3 µm
1) DN 8 with DN 15 flanges as standard
Flange according to ASME B16.5: Class 150 with reduction in nominal diameter
1.4404 (F316/F316L)
DN
[mm]
50 40 AHS 150 120.7 4 × ⌀ 19.1 19.1 52.6 550
80 50 AJS 190 152.4 4 × ⌀ 19.1 23.9 78.0 720
100 80 ALS 230 190.5 8 × ⌀ 19.1 23.9 102.4 874
150 100 ANS 280 241.3 8 × ⌀ 22.4 25.4 154.2 1 167
200 150 APS 345 298.5 8 × ⌀ 22.4 29 202.7 1 461
Surface roughness (flange): Ra 3.2 to 6.3 µm
[mm]
reduction
to DN [mm]
A
B
[mm]
Order code for
"Process
connection",
option
C
[mm]
A
[mm]B[mm]
D
[mm]
C
[mm]
E
[mm]
D
[mm]E[mm]L[mm]
L
[mm]
Flange according to ASME B16.5: Class 300
1.4404 (F316/F316L): order code for "Process connection", option ABS Alloy C22: order code for "Process connection", option ABC
DN
[mm]
1)
8
15 95 66.7 4 × ⌀15.7 14.2 15.7 404
25 125 88.9 4 × ⌀19.1 17.5 26.7 440
40 155 114.3 4 × ⌀22.3 20.6 40.9 550
50 165 127 8 × ⌀19.1 22.3 52.6 715
80 210 168.3 8 × ⌀22.3 28.4 78.0 840
100 255 200 8 × ⌀22.3 31.7 102.4 1 127
150 320 269.9 12 × ⌀22.3 36.5 154.2 1 417
250 445 387.4 16 × ⌀28.4 47.4 254.5 1 863
Surface roughness (flange): Ra 3.2 to 6.3 µm
1) DN 8 with DN 15 flanges as standard
Flange according to ASME B16.5: Class 300 with reduction in nominal diameter
1.4404 (F316/F316L)
DN
[mm]
50 40 AIS 165 127 8 × ⌀ 19.1 22.3 52.6 615
80 50 AKS 210 168.3 8 × ⌀ 22.3 28.4 78.0 732
100 80 AMS 255 200 8 × ⌀ 22.3 31.7 102.4 894
A
[mm]
95 66.7 4 × ⌀15.7 14.2 15.7 370
reduction
to DN [mm]
B
[mm]
Order code for
"Process
connection",
option
C
[mm]
A
[mm]B[mm]
D
[mm]
C
[mm]
[mm]
D
[mm]E[mm]L[mm]
E
L
[mm]
64 Endress+Hauser
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Proline Promass F 100
Flange according to ASME B16.5: Class 300 with reduction in nominal diameter
1.4404 (F316/F316L)
DN
[mm]
reduction
to DN [mm]
Order code for
"Process
connection",
A
[mm]B[mm]
C
[mm]
D
[mm]E[mm]L[mm]
option
150 100 AOS 320 269.9 12 × ⌀ 22.3 36.5 154.2 1 187
200 150 AQS 380 330.2 12 × ⌀ 25.4 41.7 202.7 1 461
Surface roughness (flange): Ra 3.2 to 6.3 µm
Flange according to ASME B16.5: Class 600
1.4404 (F316/F316L): order code for "Process connection", option ACS Alloy C22: order code for "Process connection", option ACC
DN
[mm]
1)
8
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
95 66.7 4 × ⌀15.7 20.6 13.9 400
[mm]
15 95 66.7 4 × ⌀15.7 20.6 13.9 420
25 125 88.9 4 × ⌀19.1 23.9 24.3 490
40 155 114.3 4 × ⌀22.3 28.7 38.1 600
50 165 127 8 × ⌀19.1 31.8 49.2 742
80 210 168.3 8 × ⌀22.3 38.2 73.7 900
100 275 215.9 8 × ⌀25.4 48.4 97.3 1 157
150 355 292.1 12 × ⌀28.4 47.8 154.2 1 467
250 510 431.8 16 × ⌀35.1 69.9 254.5 1 946
Surface roughness (flange): Ra 3.2 to 6.3 µm
L
1) DN 8 with DN 15 flanges as standard
Flange JIS B2220: 10K
1.4404 (F316/F316L): order code for "Process connection", option NDS Alloy C22: order code for "Process connection", option NDC
DN
[mm]
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
50 155 120 4 × ⌀19 16 50 715
80 185 150 8 × ⌀19 18 80 832
100 210 175 8 × ⌀19 18 100 1 127
150 280 240 8 × ⌀23 22 150 1 354
250 400 355 12 × ⌀25 24 250 1 775
Surface roughness (flange): Ra 3.2 to 6.3 µm
Flange JIS B2220: 20K
1.4404 (F316/F316L): order code for "Process connection", option NES Alloy C22: order code for "Process connection", option NEC
DN
[mm]
1)
8
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
95 70 4 × ⌀15 14 15 370
15 95 70 4 × ⌀15 14 15 404
25 125 90 4 × ⌀19 16 25 440
40 140 105 4 × ⌀19 18 40 550
L
[mm]
L
[mm]
Endress+Hauser 65
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Proline Promass F 100
Flange JIS B2220: 20K
1.4404 (F316/F316L): order code for "Process connection", option NES Alloy C22: order code for "Process connection", option NEC
DN
[mm]
50 155 120 8 × ⌀19 18 50 715
80 200 160 8 × ⌀23 22 80 832
100 225 185 8 × ⌀23 24 100 1 127
150 305 260 12 × ⌀25 28 150 1 386
250 430 380 12 × ⌀27 34 250 1 845
Surface roughness (flange): Ra 1.6 to 3.2 µm
1) DN 8 with DN 15 flanges as standard
Flange JIS B2220: 40K
1.4404 (F316/F316L): order code for "Process connection", option NGS Alloy C22: order code for "Process connection", option NGC
DN
[mm]
1)
8
15 115 80 4 × ⌀19 20 15 425
25 130 95 4 × ⌀19 22 25 485
40 160 120 4 × ⌀23 24 38 600
50 165 130 8 × ⌀19 26 50 760
80 210 170 8 × ⌀23 32 75 890
100 250 205 8 × ⌀25 36 100 1 167
150 355 295 12 × ⌀33 44 150 1 498
Surface roughness (flange): Ra 1.6 to 3.2 µm
A
[mm]
A
[mm]
B
[mm]
B
[mm]
C
[mm]
C
[mm]
D
[mm]
D
[mm]
E
[mm]
E
[mm]
115 80 4 × ⌀19 20 15 400
L
[mm]
L
[mm]
1) DN 8 with DN 15 flanges as standard
Flange JIS B2220: 63K
1.4404 (F316/F316L): order code for "Process connection", option NHS Alloy C22: order code for "Process connection", option NHC
DN
[mm]
1)
8
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
120 85 4 × ⌀19 23 12 420
15 120 85 4 × ⌀19 23 12 440
25 140 100 4 × ⌀23 27 22 494
40 175 130 4 × ⌀25 32 35 620
50 185 145 8 × ⌀23 34 48 775
80 230 185 8 × ⌀25 40 73 915
100 270 220 8 × ⌀27 44 98 1 167
150 365 305 12 × ⌀33 54 146 1 528
Surface roughness (flange): Ra 1.6 to 3.2 µm
1) DN 8 with DN 15 flanges as standard
L
[mm]
66 Endress+Hauser
Page 67
Proline Promass F 100
C
D
A
B
E
X X
L
Fixed flange DIN 11864-2
A0015627
 38 Detail X: Asymmetrical process connection; the part shown in blue is provided by the supplier.
Length tolerance for dimension L in mm: +1.5 / –2.0
Flange DIN11864-2 Form A, for pipe according to DIN11866 series A, flat with notch
1.4404 (316/316L) Order code for "Process connection", option KCS
DN
[mm]
8 54 37 4 × ⌀9 10 10 387
15 59 42 4 × ⌀9 10 16 418
25 70 53 4 × ⌀9 10 26 454
40 82 65 4 × ⌀9 10 38 560
50 94 77 4 × ⌀9 10 50 720
80 133 112 8 × ⌀11 12 81 900
100 159 137 8 × ⌀11 14 100 1 127
3A-version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE or Ra ≤ 0.4 µm: order code for "Measuring tube material", option SC, SF
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
L
[mm]
Endress+Hauser 67
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Proline Promass F 100
L
C
D
A
B
F
E
Lap joint flange EN 1092-1, ASME B16.5, JIS B2220
Length tolerance for dimension L in mm: +1.5 / –2.0
Lap joint flange according to EN 1092-1 Form D: PN 40
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option DAC
DN
[mm]A[mm]
2)
8
95 65 4 × ⌀ 14 14.5 45 17.3 370 0
15 95 65 4 × ⌀ 14 14.5 45 17.3 404 0
25 115 85 4 × ⌀ 14 16.5 68 28.5 444 +4
40 150 110 4 × ⌀ 18 21 88 43.1 560 +10
50 165 125 4 × ⌀ 18 23 102 54.5 719 +4
80 200 160 8 × ⌀ 18 29 138 82.5 848 +8
100 235 190 8 × ⌀ 22 34 162 107.1 1 131 +4
Surface roughness (flange): Ra 3.2 to 12.5 µm
B
[mm]
C
[mm]
D
[mm]E[mm]
F
[mm]L[mm]
A0022221
L
diff
[mm]
1)
1) Difference to installation length of the welding neck flange (order code for "Process connection", option D2C)
2) DN 8 with DN 15 flanges as standard
Lap joint flange according to ASME B16.5: Class 150
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option ADC
DN
[mm]A[mm]
2)
8
90 60.3 4 × ⌀ 15.7 15 35.1 15.7 370 0
B
[mm]
C
[mm]
D
[mm]E[mm]
F
[mm]L[mm]
L
diff
[mm]
1)
15 90 60.3 4 × ⌀ 15.7 15 35.1 15.7 404 0
25 110 79.4 4 × ⌀ 15.7 16 50.8 26.7 440 0
40 125 98.4 4 × ⌀ 15.7 15.9 73.2 40.9 550 0
50 150 120.7 4 × ⌀ 19.1 19 91.9 52.6 715 0
80 190 152.4 4 × ⌀ 19.1 22.3 127.0 78.0 840 0
68 Endress+Hauser
Page 69
Proline Promass F 100
Lap joint flange according to ASME B16.5: Class 150
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option ADC
DN
[mm]A[mm]
B
[mm]
C
[mm]
D
[mm]E[mm]F[mm]L[mm]
L
diff
[mm]
100 230 190.5 8 × ⌀ 19.1 26 157.2 102.4 1 127 0
Surface roughness (flange): Ra 3.2 to 12.5 µm
1) Difference to installation length of the welding neck flange (order code for "Process connection", option AAC)
2) DN 8 with DN 15 flanges as standard
Lap joint flange according to ASME B16.5: Class 300
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option AEC
DN
[mm]A[mm]
2)
8
95 66.7 4 × ⌀ 15.7 16.5 35.1 15.7 376 +6
B
[mm]
C
[mm]
D
[mm]E[mm]F[mm]L[mm]
L
diff
[mm]
15 95 66.7 4 × ⌀ 15.7 16.5 35.1 15.7 406 +2
25 125 88.9 4 × ⌀ 19.1 21.0 50.8 26.7 450 +10
40 155 114.3 4 × ⌀ 22.3 23.0 73.2 40.9 564 +14
50 165 127 8 × ⌀ 19.1 25.5 91.9 52.6 717 +2
80 210 168.3 8 × ⌀ 22.3 31.0 127.0 78.0 852.6 +12.6
100 255 200 8 × ⌀ 22.3 32.0 157.2 102.4 1 139 +12
Surface roughness (flange): Ra 3.2 to 12.5 µm
1)
1)
1) Difference to installation length of the welding neck flange (order code for "Process connection", option ABC)
2) DN 8 with DN 15 flanges as standard
Lap joint flange according to ASME B16.5: Class 600
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option AFC
DN
[mm]A[mm]
2)
8
95 66.7 4 × ⌀ 15.7 17.0 35.1 13.9 400 0
B
[mm]
C
[mm]
D
[mm]E[mm]F[mm]L[mm]
L
diff
[mm]
15 95 66.7 4 × ⌀ 15.7 17.0 35.1 13.9 420 0
25 125 88.9 4 × ⌀ 19.1 21.5 50.8 24.3 490 0
40 155 114.3 4 × ⌀ 22.3 25.0 73.2 38.1 600 0
50 165 127 8 × ⌀ 19.1 28.0 91.9 49.2 742 0
80 210 168.3 8 × ⌀ 22.3 35.0 127.0 73.7 900 0
100 275 215.9 8 × ⌀ 25.4 44.0 157.2 97.3 1 167 +10
Surface roughness (flange): Ra 3.2 to 12.5 µm
1) Difference to installation length of the welding neck flange (order code for "Process connection", option ACC)
2) DN 8 with DN 15 flanges as standard
1)
Endress+Hauser 69
Page 70
Proline Promass F 100
Lap joint flange JIS B2220: 20K
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option NIC
DN
[mm]
2)
8
15 95 70 4 × ⌀ 15 14 51 15 404 0
25 125 90 4 × ⌀ 19 18.5 67 25 440 0
40 140 105 4 × ⌀ 19 18.5 81 40 550 0
50 155 120 8 × ⌀ 19 23 96 50 715 0
80 200 160 8 × ⌀ 23 29 132 80 844 +12
100 225 185 8 × ⌀ 23 29 160 100 1 127 0
Surface roughness (flange): Ra 3.2 to 12.5 µm
1) Difference to installation length of the welding neck flange (order code for "Process connection", option NEC)
2) DN 8 with DN 15 flanges as standard
A
[mm]
B
[mm]
C
[mm]
D
[mm]
E
[mm]
F
[mm]
L
[mm]
95 70 4 × ⌀ 15 14 51 15 370 0
L
diff
[mm]
1)
70 Endress+Hauser
Page 71
Proline Promass F 100
L
A
B
Clamp connections
Tri-Clamp
Length tolerance for dimension L in mm: +1.5 / –2.0
Tri-Clamp (½"), for pipe according to DIN 11866 series C
1.4404 (316/316L) Order code for "Process connection", option FDW
DN
[mm]
8 ½ 25.0 9.5 367
15 ½ 25.0 9.5 398
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE or Ra ≤ 0.4 µm: order code for "Measuring tube material", option SC, SF
Clamp
[in]
A
[mm]
B
[mm]
A0015625
L
[mm]
Tri-Clamp ( ≥ 1"), for pipe according to DIN 11866 series C
1.4404 (316/316L) Order code for "Process connection", option FTS
DN
[mm]
8 1 50.4 22.1 367
15 1 50.4 22.1 398
25 1 50.4 22.1 434
40 50.4 34.8 560
50 2 63.9 47.5 720
80 3 90.9 72.9 900
100 4 118.9 97.4 1 127
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE or Ra ≤ 0.4 µm: order code for "Measuring tube material", option SC, SF
Clamp
[in]
A
[mm]
B
[mm]
L
[mm]
Endress+Hauser 71
Page 72
Threaded couplings
L
A
B
Thread DIN 11851, DIN11864-1, SMS 1145
Length tolerance for dimension L in mm: +1.5 / –2.0
Thread DIN 11851, for pipe according to DIN11866, series A
1.4404 (316/316L) Order code for "Process connection", option FMW
DN
[mm]
8 Rd 34 × ¹⁄₈ 16 367
15 Rd 34 × ¹⁄₈ 16 398
25 Rd 52 × ¹⁄₆ 26 434
40 Rd 65 × ¹⁄₆ 38 560
50 Rd 78 × ¹⁄₆ 50 720
80 Rd 110 × ¹⁄₄ 81 900
100 Rd 130 × ¹⁄₄ 100 1 127
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE
A
[in]
B
[mm]
Proline Promass F 100
A0015628
L
[mm]
Thread DIN11864-1 Form A, for pipe according to DIN11866, series A
1.4404 (316/316L) Order code for "Process connection", option FLW
DN
[mm]
8 Rd 28 × ¹⁄₈ 10 367
15 Rd 34 × ¹⁄₈ 16 398
25 Rd 52 × ¹⁄₈ 26 434
40 Rd 65 × ¹⁄₆ 38 560
50 Rd 78 × ¹⁄₆ 50 720
80 Rd 110 × ¹⁄₄ 81 900
100 Rd 130 × ¹⁄₄ 100 1 127
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE or Ra ≤ 0.4 µm: order code for "Measuring tube material", option SC, SF
A
[in]
B
[mm]
L
[mm]
72 Endress+Hauser
Page 73
Proline Promass F 100
Thread SMS 1145
1.4404 (316/316L) Order code for "Process connection", option SCS
DN
[mm]
8 Rd 40 × ¹⁄₆ 22.6 367
15 Rd 40 × ¹⁄₆ 22.6 398
25 Rd 40 × ¹⁄₆ 22.6 434
40 Rd 60 × ¹⁄₆ 35.6 560
50 Rd 70 × ¹⁄₆ 48.6 720
80 Rd 98 × ¹⁄₆ 72.9 900
100 Rd 132 × ¹⁄₆ 97.6 1 127
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE
A
[in]
B
[mm]
L
[mm]
Endress+Hauser 73
Page 74
Thread ISO 2853
L
A
B
Length tolerance for dimension L in mm: +1.5 / –2.0
Thread ISO 2853, for pipe according to ISO 2037
1.4404 (316/316L) Order code for "Process connection", option JSF
DN
[mm]
8 37.13 22.6 367
15 37.13 22.6 398
25 37.13 22.6 434
40 52.68 35.6 560
50 64.16 48.6 720
80 91.19 72.9 900
100 118.21 97.6 1 127
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 0.8 µm: order code for "Measuring tube material", option SB, SE or Ra ≤ 0.4 µm: order code for "Measuring tube material", option SC, SF
1)
A
[mm]
B
[mm]
Proline Promass F 100
A0015623
L
[mm]
1) Max. thread diameter as per ISO 2853 annex A
74 Endress+Hauser
Page 75
Proline Promass F 100
L
A
B
VCO
Length tolerance for dimension L in mm: +1.5 / –2.0
8-VCO-4 (½")
1.4404 (316/316L) Order code for "Process connection", option CVS
DN
[mm]
8 AF 1 10.2 390
A
[in]
B
[mm]
A0015624
L
[mm]
12-VCO-4 (¾")
1.4404 (316/316L) Order code for "Process connection", option CWS
DN
[mm]
15 AF 1½ 15.7 430
A
[in]
B
[mm]
L
[mm]
Endress+Hauser 75
Page 76
Safety Barrier Promass 100
B
D
A
C
Top-hat rail EN 60715:
• TH 35 x 7.5
• TH 35 x 15
A B C D
[mm] [mm] [mm] [mm]
108 114.5 99 22.5
Proline Promass F 100
A0016777
76 Endress+Hauser
Page 77
Proline Promass F 100
L L
45°
A
A
SW 1"
2
½" NPT
1
½" NPT
35 (1.38) ca. 75 (approx. 2.95)
1
1;2
1
1;2
Accessories
Rupture disk/purge connections
 39
1 Connection nipple for purge connections: order code for "Sensor options", option CH "Purge connection" 2 Connection nipple with rupture disk: order code for "Sensor option", option CA "Rupture disk"
DN A L
[mm] [mm] [mm]
8 62 216
15 62 220
25 62 260
40 67 310
50 79 452
80 101 560
100 120 684
150 141 880
250 182 380
A0028914
Endress+Hauser 77
Page 78

Dimensions in US units Compact version

A
B
C
G
D
L
E
F
K
M
Order code for "Housing", option A "Compact, aluminum, coated"
DN A
[in] [in] [in] [in] [in] [in] [in] [in] [in] [in] [in]
³⁄₈ 5.83 3.70 2.13 2.95 7.28 10.24 5.35 0.211
½ 5.83 3.70 2.13 2.95 7.28 10.24 5.35 0.33
1 5.83 3.70 2.13 2.95 7.28 10.24 5.35 0.47
5.83 3.70 2.13 4.13 7.46 11.59 5.35 0.69
2 5.83 3.70 2.13 5.55 7.85 13.41 5.35 1.02
3 5.83 3.70 2.13 7.87 8.64 16.52 5.35 1.59
4 5.83 3.70 2.13 10 9.37 19.37 5.35 2.02
6 5.83 3.70 2.13 14.88 10.2 25.08 5.35 2.71
10 5.83 3.70 2.13 21.57 11.91 33.48 5.35 4.03
1)
Proline Promass F 100
A0033787
1)
B
C D F
2) 3)
F
2) 3)
G K L M
4)
4)
4)
4)
4)
4)
4)
4)
4)
2.76
2.76
2.76
3.11
3.90
5.47
6.93
8.58
12.01
1) Depending on the cable gland used: values up to + 1.18 in
2) With order code for "Sensor option", option CG or order code for "Measuring tube material", option SD, SE, SF, TH: values +2.76 in
3) If using a display, order code for "Display; operation", option B: values +1.1 in
4) Depending on respective process connection→  80
Order code for "Housing", option B "Compact hygienic, stainless"
DN A
1)
B C D F
[in] [in] [in] [in] [in] [in] [in] [in] [in] [in] [in]
³⁄₈ 5.39 3.07 2.32 2.95 7.09 10.04 5.28 0.211
½ 5.39 3.07 2.32 2.95 7.09 10.04 5.28 0.33
1 5.39 3.07 2.32 2.95 7.09 10.04 5.28 0.47
5.39 3.07 2.32 4.13 7.26 11.4 5.28 0.69
2 5.39 3.07 2.32 5.55 7.66 13.21 5.28 1.02
3 5.39 3.07 2.32 7.87 8.44 16.32 5.28 1.59
4 5.39 3.07 2.32 10 9.17 19.17 5.28 2.02
2) 3)
F
2) 3)
G K L M
4)
4)
4)
4)
4)
4)
4)
2.76
2.76
2.76
3.11
3.90
5.47
6.93
78 Endress+Hauser
Page 79
Proline Promass F 100
DN A
1)
B C D F
2) 3)
F
2) 3)
G K L M
[in] [in] [in] [in] [in] [in] [in] [in] [in] [in] [in]
6 5.39 3.07 2.32 14.88 10 24.88 5.28 2.71
10 5.39 3.07 2.32 21.57 11.71 33.29 5.28 4.03
4)
4)
8.58
12.01
1) Depending on the cable gland used: values up to +1.18 in
2) With order code for "Sensor option", option CG or order code for "Measuring tube material", option SD, SE, SF, TH: values +2.76 in
3) If using a display, order code for "Display; operation", option B: values +1.1 in
4) Depending on respective process connection→  80
Order code for "Housing", option C "Ultra-compact hygienic, stainless"
DN A
1)
B C D F
[in] [in] [in] [in] [in] [in] [in] [in] [in] [in] [in]
³⁄₈ 4.88 2.68 2.20 2.95 7.09 10.04 4.41 0.21
½ 4.88 2.68 2.20 2.95 7.09 10.04 4.41 0.33
1 4.88 2.68 2.20 2.95 7.09 10.04 4.41 0.47
4.88 2.68 2.20 4.13 7.26 11.4 4.41 0.69
2 4.88 2.68 2.20 5.55 7.66 13.21 4.41 1.02
3 4.88 2.68 2.20 7.87 8.44 16.32 4.41 1.59
4 4.88 2.68 2.20 10 9.17 19.17 4.41 2.02
6 4.88 2.68 2.20 14.88 10 24.88 4.41 2.71
10 4.88 2.68 2.20 21.57 11.71 33.29 4.41 4.03
2) 3)
F
2) 3)
G K L M
4)
4)
4)
4)
4)
4)
4)
4)
4)
2.76
2.76
2.76
3.11
3.90
5.47
6.93
8.58
12.01
1) Depending on the cable gland used: values up to +1.18 in
2) With order code for "Sensor option", option CG or order code for "Measuring tube material", option SD, SE, SF, TH: values +2.76 in
3) If using a display, order code for "Display; operation", option B: values +1.1 in
4) Depending on respective process connection→  80
Endress+Hauser 79
Page 80
Flange connections
C
D
A
B
E
L
Fixed flange ASME B16.5
Length tolerance for dimension L in inch:
• DN ≤ 4": +0.06 / –0.08
• DN ≥ 5": +0.14
Proline Promass F 100
A0015621
Flange according to ASME B16.5: Class 150
1.4404 (F316/F316L): order code for "Process connection", option AAS Alloy C22: order code for "Process connection", option AAC
DN
[in]
1)
³⁄₈
½ 3.54 2.37 4 × ⌀0.62 0.44 0.62 15.91
1 4.33 3.13 4 × ⌀0.62 0.56 1.05 17.32
4.92 3.87 4 × ⌀0.62 0.69 1.61 21.65
2 5.91 4.75 4 × ⌀0.75 0.75 2.07 28.15
3 7.48 6.00 4 × ⌀0.75 0.94 3.07 33.07
4 9.06 7.50 8 × ⌀0.75 0.94 4.03 44.37
6 11.02 9.50 8 × ⌀0.88 1 6.07 55.04
10 15.94 14.25 12 × ⌀1.0 1.19 10.02 72.13
Surface roughness (flange): Ra 125 to 250 µin
1) DN ³⁄₈" with DN ½" flanges as standard
Flange according to ASME B16.5: Class 150 with reduction in nominal diameter
1.4404 (F316/F316L)
DN
[in]
2 AHS 5.91 4.75 4 × ⌀ 0.75 0.75 2.07 21.65
3 2 AJS 7.48 6 4 × ⌀ 0.75 0.94 3.07 28.35
4 3 ALS 9.06 7.5 8 × ⌀ 0.75 0.94 4.03 34.41
6 4 ANS 11.02 9.5 8 × ⌀ 0.88 1 6.07 45.94
8 6 APS 13.58 11.75 8 × ⌀ 0.88 1.14 7.98 57.52
Surface roughness (flange): Ra 125 to 250 µin
A
[in]
3.54 2.37 4 × ⌀ 0.62 0.44 0.62 14.57
reduction
to DN
[in]
Order code for
connection",
[in]
"Process
option
B
A
[in]
C
[in]
B
[in]
D
[in]
C
[in]
E
[in]
D
[in]
E
[in]
L
[in]
L
[in]
80 Endress+Hauser
Page 81
Proline Promass F 100
Flange according to ASME B16.5: Class 300
1.4404 (F316/F316L): order code for "Process connection", option ABS Alloy C22: order code for "Process connection", option ABC
DN
[in]
³⁄₈
1)
A
[in]
B
[in]
C
[in]
D
[in]
E
[in]
3.74 2.63 4 × ⌀0.62 0.56 0.62 14.57
½ 3.74 2.63 4 × ⌀0.62 0.56 0.62 15.91
1 4.92 3.50 4 × ⌀0.75 0.69 1.05 17.32
6.10 4.50 4 × ⌀0.88 0.81 1.61 21.65
2 6.50 5.00 8 × ⌀0.75 0.88 2.07 28.15
3 8.27 6.63 8 × ⌀0.88 1.12 3.07 33.07
4 10.04 7.87 8 × ⌀0.88 1.25 4.03 44.37
6 12.6 10.63 12 × ⌀0.88 1.44 6.07 55.79
10 17.52 15.25 16 × ⌀1.12 1.87 10.02 73.35
Surface roughness (flange): Ra 125 to 250 µin
1) DN ³⁄₈" with DN ½" flanges as standard
L
[in]
Flange according to ASME B16.5: Class 300 with reduction in nominal diameter
1.4404 (F316/F316L)
DN
[in]
reduction
to DN
[in]
Order code for
"Process
connection",
A
[in]
B
[in]
C
[in]
D
[in]
E
[in]
option
2 AIS 6.5 5 8 × ⌀ 0.75 0.88 2.07 24.21
3 2 AKS 8.27 6.63 8 × ⌀ 0.88 1.12 3.07 28.82
4 3 AMS 10.04 7.87 8 × ⌀ 0.88 1.25 4.03 35.2
6 4 AOS 12.6 10.63 12 × ⌀ 0.88 1.44 6.07 46.73
8 6 AQS 14.96 13 12 × ⌀ 1 1.64 7.98 57.52
Surface roughness (flange): Ra 125 to 250 µin
Flange according to ASME B16.5: Class 600
1.4404 (F316/F316L): order code for "Process connection", option ACS Alloy C22: order code for "Process connection", option ACC
DN
[in]
³⁄₈
1)
A
[in]
B
[in]
C
[in]
D
[in]
E
[in]
3.74 2.63 4 × ⌀0.62 0.81 0.55 15.75
½ 3.74 2.63 4 × ⌀0.62 0.81 0.55 16.54
1 4.92 3.50 4 × ⌀0.75 0.94 0.96 19.29
6.10 4.50 4 × ⌀0.88 1.13 1.5 23.62
2 6.50 5.00 8 × ⌀0.75 1.25 1.94 29.21
3 8.27 6.63 8 × ⌀0.88 1.5 2.9 35.43
4 10.83 8.50 8 × ⌀1.00 1.91 3.83 45.55
6 13.98 11.50 12 × ⌀1.12 1.88 6.07 57.76
10 20.08 17.00 16 × ⌀1.38 2.75 10.02 76.61
Surface roughness (flange): Ra 125 to 250 µin
L
[in]
L
[in]
1) DN ³⁄₈" with DN ½" flanges as standard
Endress+Hauser 81
Page 82
Proline Promass F 100
L
C
D
A
B
F
E
Lap joint flange ASME B16.5
Length tolerance for dimension L in inch: +0.06 / –0.08
Lap joint flange according to ASME B16.5: Class 150
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option ADC
DN
[in]
2)
³⁄₈
½ 3.54 2.37 4 × ⌀ 0.62 0.59 1.38 0.62 15.91 0
1 4.33 3.13 4 × ⌀ 0.62 0.63 2 1.05 17.32 0
4.92 3.87 4 × ⌀ 0.62 0.63 2.88 1.61 21.65 0
2 5.91 4.75 4 × ⌀ 0.75 0.75 3.62 2.07 28.15 0
3 7.48 6.00 4 × ⌀ 0.75 0.88 5 3.07 33.07 0
4 9.06 7.50 8 × ⌀ 0.75 1.02 6.19 4.03 44.37 0
Surface roughness (flange): Ra 125 to 492 µin
A
[in]
B
[in]
C
[in]
D
[in]
E
[in]
F
[in]
L
[in]
3.54 2.37 4 × ⌀ 0.62 0.59 1.38 0.62 14.57 0
L
diff
[in]
A0022221
1)
1) Difference to installation length of the welding neck flange (order code for "Process connection", option AAC)
2) DN ³⁄₈" with DN ½" flanges as standard
Lap joint flange according to ASME B16.5: Class 300
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option AEC
DN
[in]
³⁄₈
A
[in]
2)
3.74 2.63 4 × ⌀ 0.62 0.65 1.38 0.62 14.8 +0.23
B
[in]
C
[in]
D
[in]
E
[in]
F
[in]
L
[in]
L
diff
[in]
1)
½ 3.74 2.63 4 × ⌀ 0.62 0.65 1.38 0.62 15.98 +0.07
1 4.92 3.50 4 × ⌀ 0.75 0.83 2 1.05 17.72 +0.40
6.10 4.50 4 × ⌀ 0.88 0.91 2.88 1.61 22.2 +0.55
2 6.50 5.00 8 × ⌀ 0.75 1 3.62 2.07 28.23 +0.08
3 8.27 6.63 8 × ⌀ 0.88 1.22 5 3.07 33.57 +0.50
82 Endress+Hauser
Page 83
Proline Promass F 100
Lap joint flange according to ASME B16.5: Class 300
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option AEC
DN
[in]
A
[in]
B
[in]
C
[in]
D
[in]
E
[in]
F
[in]
L
[in]
L
diff
[in]
4 10.04 7.87 8 × ⌀ 0.88 1.26 6.19 4.03 44.84 +0.47
Surface roughness (flange): Ra 125 to 492 µin
1) Difference to installation length of the welding neck flange (order code for "Process connection", option AAC)
2) DN ³⁄₈" with DN ½" flanges as standard
Lap joint flange according to ASME B16.5, Class 600
1.4301 (F304), wetted parts Alloy C22 Order code for "Process connection", option AFC
DN
[in]
³⁄₈
2)
A
[in]
B
[in]
C
[in]
D
[in]
E
[in]
F
[in]
L
[in]
L
diff
[in]
3.74 2.63 4 × ⌀ 0.62 0.67 1.38 0.55 15.75 0
½ 3.74 2.63 4 × ⌀ 0.62 0.67 1.38 0.55 16.54 0
1 4.92 3.50 4 × ⌀ 0.75 0.85 2 0.96 19.29 0
6.10 4.50 4 × ⌀ 0.88 0.98 2.88 1.5 23.62 0
2 6.50 5.00 8 × ⌀ 0.75 1.1 3.62 1.94 29.21 0
3 8.27 6.63 8 × ⌀ 0.88 1.38 5 2.9 35.43 0
4 10.83 8.50 8 × ⌀ 1 1.73 6.19 3.83 45.94 +0.39
Surface roughness (flange): Ra 125 to 492 µin
1)
1)
1) Difference to installation length of the welding neck flange (order code for "Process connection", option AAC)
2) DN ³⁄₈" with DN ½" flanges as standard
Endress+Hauser 83
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Clamp connections
L
A
B
Tri-Clamp
Length tolerance for dimension L in inch: +0.06 / –0.08
Tri-Clamp (½"), DIN 11866 series C
1.4404 (316/316L) Order code for "Process connection", option FDW
DN
[in]
³⁄₈ ½ 0.98 0.37 14.4
½ ½ 0.98 0.37 15.7
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 32 µin: order code for "Measuring tube material", option SB, SE or Ra ≤ 16 µin: order code for "Measuring tube material", option SC, SF
Clamp
[in]
A
[in]
B
[in]
Proline Promass F 100
A0015625
L
[in]
Tri-Clamp ( ≥ 1"), DIN 11866 series C
1.4404 (316/316L) Order code for "Process connection", option FTS
DN
[in]
³⁄₈ 1 1.98 0.87 14.4
½ 1 1.98 0.87 15.7
1 1 1.98 0.87 17.1
1.98 1.37 22.0
2 2 2.52 1.87 28.3
3 3 3.58 2.87 35.4
4 4 4.68 3.83 44.4
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 32 µin: order code for "Measuring tube material", option SB, SE or Ra ≤ 16 µin: order code for "Measuring tube material", option SC, SF
Clamp
[in]
A
[in]
B
[in]
L
[in]
84 Endress+Hauser
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Proline Promass F 100
L
A
B
Threaded couplings
Thread SMS 1145
Length tolerance for dimension L in inch: +0.06 / –0.08
Thread SMS 1145
1.4404 (316/316L) Order code for "Process connection", option SCS
DN
[in]
³⁄₈ Rd 40 × ¹⁄₆ 0.89 14.45
½ Rd 40 × ¹⁄₆ 0.89 15.67
1 Rd 40 × ¹⁄₆ 0.89 17.09
Rd 60 × ¹⁄₆ 1.4 22.05
2 Rd 70 × ¹⁄₆ 1.91 28.35
3 Rd 98 × ¹⁄₆ 2.87 35.43
4 Rd 132 × ¹⁄₆ 3.84 44.37
3-A version available: order code for "Additional approval", option LP in conjunction with Ra ≤ 32 µin: order code for "Measuring tube material", option SB, SE
A
[in]
B
[in]
A0015628
L
[in]
Endress+Hauser 85
Page 86
VCO
L
A
B
B
D
A
C
Length tolerance for dimension L in inch: +0.06 / –0.08
8-VCO-4 (½")
1.4404 (316/316L) Order code for "Process connection", option CVS
DN
[in]
³⁄₈ AF 1 0.4 15.35
A
[in]
B
[in]
Proline Promass F 100
A0015624
L
[in]
12-VCO-4 (¾")
1.4404 (316/316L) Order code for "Process connection", option CWS
DN
[in]
½ AF 1½ 0.62 16.93
A
[in]
Safety Barrier Promass 100
Top-hat rail EN 60715:
• TH 35 x 7.5
• TH 35 x 15
B
[in]
L
[in]
A B C D
[in] [in] [in] [in]
4.25 4.51 3.9 0.89
86 Endress+Hauser
A0016777
Page 87
Proline Promass F 100
L L
45°
A
A
SW 1"
2
½" NPT
1
½" NPT
35 (1.38) ca. 75 (approx. 2.95)
1
1;2
1
1;2
Accessories
Rupture disk/purge connections

Weight

A0028914
1 Connection nipple for purge connections: order code for "Sensor options", option CH "Purge connection" 2 Connection nipple with rupture disk: order code for "Sensor option", option CA "Rupture disk"
DN A L
[in] [in] [in]
³⁄₈ 2.44 8.50
½ 2.44 8.66
1 2.44 10.24
2.64 12.20
2 3.11 17.78
3 3.98 22.0
4 4.72 27.0
6 5.55 34.6
10 7.17 14.96
All values (weight exclusive of packaging material) refer to devices with EN/DIN PN 40 flanges. Weight specifications including transmitter: order code for "Housing", option A "Compact, aluminum coated".
Different values due to different transmitter versions:
Endress+Hauser 87
Weight in SI units
DN [mm] Weight [kg]
8 9
15 10
25 12
40 17
50 28
80 53
100 94
Page 88
DN [mm] Weight [kg]
1
2
3
Weight in US units
DN [in] Weight [lbs]
Proline Promass F 100
150 152
250 398
3/8 20
½ 22
1 26
37
2 62
3 117
4 207
6 335
10 878
Safety Barrier Promass 100
49 g (1.73 ounce)

Materials Transmitter housing

• Order code for "Housing", option A "Compact, aluminum coated": Aluminum, AlSi10Mg, coated
• Order code for "Housing", option B "Compact, hygienic, stainless": – Hygienic version, stainless steel 1.4301 (304) – Optional: order code for "Sensor feature", option CC
Hygienic version, for maximum corrosion resistance: stainless steel 1.4404 (316L)
• Order code for "Housing", option C "Ultra-compact, hygienic, stainless": – Hygienic version, stainless steel 1.4301 (304) – Optional: order code for "Sensor feature", option CC
Hygienic version, for maximum corrosion resistance: stainless steel 1.4404 (316L)
• Window material for optional local display (→  91): – For order code for "Housing", option A: glass – For order code for "Housing", option B and C: plastic
Cable entries/cable glands
 40 Possible cable entries/cable glands
1 Female thread M20 × 1.5 2 Cable gland M20 × 1.5 3 Adapter for cable entry with internal thread G ½" or NPT ½"
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A0020640
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Proline Promass F 100
Order code for "Housing", option A "Compact, aluminum, coated"
The various cable entries are suitable for hazardous and non-hazardous areas.
Cable entry/cable gland Material
Cable gland M20 × 1.5
Nickel-plated brassAdapter for cable entry with internal thread G ½"
Adapter for cable entry with internal thread NPT ½"
Order code for "Housing", option B "Compact hygienic, stainless"
The various cable entries are suitable for hazardous and non-hazardous areas.
Cable entry/cable gland Material
Cable gland M20 × 1.5 Stainless steel, 1.4404 (316L)
Adapter for cable entry with internal thread G ½"
Adapter for cable entry with internal thread NPT ½"
Device plug
Electrical connection Material
Plug M12x1 • Socket: Stainless steel, 1.4404 (316L)
• Contact housing: Polyamide
• Contacts: Gold-plated brass
Sensor housing
The material of the sensor housing depends on the option selected in the order code for "Measuring tube mat., wetted surface".
Order code for "Measuring tube mat., wetted surface"
Option HA, SA, SD, TH • Acid and alkali-resistant outer surface
Option SB, SC, SE, SF • Acid and alkali-resistant outer surface
Material
• Stainless steel 1.4301 (304)
With order code for "Sensor option", option CC
"316L Sensor housing": stainless steel, 1.4404 (316L)
• Stainless steel 1.4301 (304)
Measuring tubes
• DN 8 to 100 (3/8…4"): stainless steel, 1.4539 (904L); Manifold: stainless steel, 1.4404 (316/316L)
• DN 150 (6"), DN 250 (10"): stainless steel, 1.4404 (316/316L); Manifold: stainless steel, 1.4404 (316/316L)
• DN 8 to 250 (3/8 to 10"): Alloy C22, 2.4602 (UNS N06022); Manifold: Alloy C22, 2.4602 (UNS N06022)
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Process connections

• Flanges according to EN 1092-1 (DIN2501) / according to ASME B 16.5 / as per JIS B2220: – Stainless steel, 1.4404 (F316/F316L) – Alloy C22, 2.4602 (UNS N06022) – Lap joint flanges: stainless steel, 1.4301 (F304); wetted parts Alloy C22
• All other process connections: Stainless steel, 1.4404 (316/316L)
Available process connections→  90
Seals
Welded process connections without internal seals
Safety Barrier Promass 100
Housing: Polyamide
Process connections

Surface roughness

• Fixed flange connections: – EN 1092-1 (DIN 2501) flange – EN 1092-1 (DIN 2512N) flange – Namur lengths in accordance with NE 132 – ASME B16.5 flange – JIS B2220 flange – DIN 11864-2 Form A flange, DIN 11866 series A, flange with notch
• Clamp connections: Tri-Clamp (OD tubes), DIN 11866 series C
• Thread: – DIN 11851 thread, DIN 11866 series A – SMS 1145 thread – ISO 2853 thread, ISO 2037 – DIN 11864-1 Form A thread, DIN 11866 series A
• VCO connections: – 8-VCO-4 – 12-VCO-4
Process connection materials
All data relate to parts in contact with fluid. The following surface roughness quality can be ordered.
• Not polished
• Ra
= 0.8 µm (32 µin)
max
• Ra
= 0.4 µm (16 µin)
max

Operability

Operating concept

90 Endress+Hauser
Operator-oriented menu structure for user-specific tasks
• Commissioning
• Operation
• Diagnostics
• Expert level
Quick and safe commissioning
• Individual menus for applications
• Menu guidance with brief explanations of the individual parameter functions
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Proline Promass F 100
1 2 3 5
7
4 6
Reliable operation
• Operation in the following languages: – Via "FieldCare", "DeviceCare" operating tool:
English, German, French, Spanish, Italian, Chinese, Japanese
– Via integrated Web browser(only available for device versions with HART, PROFIBUS DP,
PROFINET and EtherNet/IP): English, German, French, Spanish, Italian, Dutch, Portuguese, Polish, Russian, Turkish, Chinese, Japanese, Bahasa (Indonesian), Vietnamese, Czech, Swedish, Korean
• Uniform operating philosophy applied to operating tools and Web browser
• If replacing the electronic module, transfer the device configuration via the plug-in memory (HistoROM DAT) which contains the process and measuring device data and the event logbook. No need to reconfigure. For devices with Modbus RS485, the data recovery function is implemented without the plug-in memory (HistoROM DAT).
Efficient diagnostics increase measurement availability
• Troubleshooting measures can be called up via the operating tools and web browser
• Diverse simulation options
• Status indicated by several light emitting diodes (LEDs) on the electronic module in the housing compartment

Local display

A local display is only available for device versions with the following communication protocols: HART, PROFIBUS-DP, PROFINET, EtherNet/IP
The local display is only available with the following device order code: Order code for "Display; operation", option B: 4-line; illuminated, via communication
Display element
• 4-line liquid crystal display with 16 characters per line.
• White background lighting; switches to red in event of device errors.
• Format for displaying measured variables and status variables can be individually configured.
• Permitted ambient temperature for the display: –20 to +60 °C (–4 to +140 °F). The readability of the display may be impaired at temperatures outside the temperature range.

Remote operation Via HART protocol

This communication interface is available in device versions with a HART output.
 41 Options for remote operation via HART protocol
1 Control system (e.g. PLC) 2 Field Communicator 475 3 Computer with operating tool (e.g. FieldCare, AMS Device Manager, SIMATIC PDM) 4 Commubox FXA195 (USB) 5 Field Xpert SFX350 or SFX370 6 VIATOR Bluetooth modem with connecting cable 7 Transmitter
Via PROFIBUS DP network
This communication interface is available in device versions with PROFIBUS DP.
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A0028747
Page 92
1 2
3
444
 42 Options for remote operation via PROFIBUS DP network
4
21 3
5 5 5
1 Automation system 2 Computer with PROFIBUS network card 3 PROFIBUS DP network 4 Measuring device
Proline Promass F 100
A0020903
Via EtherNet/IP network
This communication interface is available in device versions with EtherNet/IP.
Star topology
 43 Options for remote operation via EtherNet/IP network: star topology
1 Automation system, e.g. "RSLogix" (Rockwell Automation) 2 Workstation for measuring device operation: with Custom Add-On Profile for "RSLogix 5000" (Rockwell
Automation) or with Electronic Data Sheet (EDS)
3 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or
computer with operating tool (e.g. FieldCare, DeviceCare) with COM DTM "CDI Communication TCP/IP" 4 Ethernet switch 5 Measuring device
A0032078
Via PROFINET network
This communication interface is available in device versions with PROFINET.
92 Endress+Hauser
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Proline Promass F 100
31 2
4 4 4
1
Star topology
A0026545
 44 Options for remote operation via PROFINET network: star topology
1 Automation system, e.g. Simatic S7 (Siemens) 2 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or
computer with operating tool (e.g. FieldCare, DeviceCare, SIMATIC PDM) with COM DTM "CDI Communication
TCP/IP" 3 Switch, e.g. Scalance X204 (Siemens) 4 Measuring device

Service interface Via service interface (CDI-RJ45)

This communication interface is present in the following device version:
• Order code for "Output", option B: 4-20 mA HART, pulse/frequency/switch output
• Order code for "Output", option L: PROFIBUS DP
• Order code for "Output", option N: EtherNet/IP
• Order code for "Output", option R: PROFINET
HART
 45 Connection for the order code for "Output", option B: 4-20 mA HART, pulse/frequency/switch output
1 Service interface (CDI -RJ45) of the measuring device with access to the integrated Web server 2 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP" 3 Standard Ethernet connecting cable with RJ45 plug
A0016926
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Proline Promass F 100
1
1
PROFIBUS DP
A0021270
 46 Connection for order code for "Output", option L: PROFIBUS DP
1 Service interface (CDI -RJ45) of the measuring device with access to the integrated Web server 2 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP"
3 Standard Ethernet connecting cable with RJ45 plug
EtherNet/IP
A0016940
 47 Connection for order code for "Output", option N: EtherNet/IP
1 Service interface (CDI -RJ45) and EtherNet/IP interface of the measuring device with access to the integrated
Web server
2 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP"
3 Standard Ethernet connecting cable with RJ45 plug
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Proline Promass F 100
1
1
2
PROFINET
A0016940
 48 Connection for order code for "Output", option R: PROFINET
1 Service interface (CDI -RJ45) and PROFINET interface of the measuring device with access to the integrated
Web server 2 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP" 3 Standard Ethernet connecting cable with RJ45 plug
Via service interface (CDI)
This communication interface is present in the following device version: Order code for "Output", option M: Modbus RS485
Modbus RS485
1 Service interface (CDI) of measuring device 2 Commubox FXA291 3 Computer with "FieldCare" operating tool with COM DTM "CDI Communication FXA291"
A0030216

Certificates and approvals

CE mark

C-Tick symbol

Endress+Hauser 95
The device meets the legal requirements of the applicable EU Directives. These are listed in the corresponding EU Declaration of Conformity along with the standards applied.
Endress+Hauser confirms successful testing of the device by affixing to it the CE mark.
The measuring system meets the EMC requirements of the "Australian Communications and Media Authority (ACMA)".
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Proline Promass F 100

Ex approval

The measuring device is certified for use in hazardous areas and the relevant safety instructions are provided in the separate "Safety Instructions" (XA) document. Reference is made to this document on the nameplate.
The separate Ex documentation (XA) containing all the relevant explosion protection data is available from your Endress+Hauser sales center.
ATEX/IECEx
Currently, the following versions for use in hazardous areas are available:
Ex ia
Category (ATEX) Type of protection
II1/2G Ex ia IIC T6…T1 Ga/Gb or Ex ia IIB T6…T1 Ga/Gb
II2G Ex ia IIC T6…T1 Gb or Ex ia IIB T6…T1 Gb
II1/2G, II2D Ex ia IIC T6…T1 Ga/Gb or Ex ia IIB T6…T1 Ga/Gb
Ex tb IIIC Txx °C Db
II2G, II2D Ex ia IIC T6…T1 Gb or Ex ia IIB T6…T1 Gb
Ex tb IIIC Txx °C Db
Ex nA
Category (ATEX) Type of protection
II3G Ex nA IIC T6…T1 Gc or Ex nA IIC T5-T1 Gc
CSA
C
US
Currently, the following versions for use in hazardous areas are available:
IS (Ex i)
• Class I Division 1 Groups ABCD
• Class II Division 1 Groups EFG and Class III
NI (Ex nA)
Class I Division 2 Groups ABCD

Sanitary compatibility

• 3-A approval Only devices with the order code for "Additional approval", option LP "3A" have 3-A approval.
• EHEDG-tested Only devices with the order code for "Additional approval", option LT "EHEDG" have been tested and meet the requirements of the EHEDG. To meet the requirements for EHEDG certification, the device must be used with process connections in accordance with the EHEDG position paper entitled "Easy Cleanable Pipe Couplings and Process Connections" (www.ehedg.org).

HART certification HART interface

The measuring device is certified and registered by the FieldComm Group. The measuring system meets all the requirements of the following specifications:
• Certified according to HART 7
• The device can also be operated with certified devices of other manufacturers (interoperability)

Certification PROFIBUS PROFIBUS interface

The measuring device is certified and registered by the PNO (PROFIBUS User Organization Organization). The measuring system meets all the requirements of the following specifications:
• Certified in accordance with PROFIBUS PA Profile 3.02
• The device can also be operated with certified devices of other manufacturers (interoperability)
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Proline Promass F 100

Certification PROFINET PROFINET interface

The measuring device is certified and registered by the PNO (PROFIBUS User Organization Organization). The measuring system meets all the requirements of the following specifications:
• Certified according to: – Test specification for PROFINET devices – PROFINET Security Level 1 – Netload Class
• The device can also be operated with certified devices of other manufacturers (interoperability)

EtherNet/IP certification

Modbus RS485 certification

Pressure Equipment Directive

The measuring device is certified and registered by the ODVA (Open Device Vendor Association). The measuring system meets all the requirements of the following specifications:
• Certified in accordance with the ODVA Conformance Test
• EtherNet/IP Performance Test
• EtherNet/IP PlugFest compliance
• The device can also be operated with certified devices of other manufacturers (interoperability)
The measuring device meets all the requirements of the MODBUS/TCP conformity test and has the "MODBUS/TCP Conformance Test Policy, Version 2.0". The measuring device has successfully passed all the test procedures carried out.
The devices can be ordered with or without a PED approval. If a device with a PED approval is required, this must be explicitly stated in the order. For devices with nominal diameters less than or equal to DN 25 (1"), this is neither possible nor necessary.
• With the identification PED/G1/x (x = category) on the sensor nameplate, Endress+Hauser confirms conformity with the "Essential Safety Requirements" specified in Appendix I of the Pressure Equipment Directive 2014/68/EU.
• Devices bearing this marking (PED) are suitable for the following types of medium: – Media in Group 1 and 2 with a vapor pressure greater than, or smaller and equal
to0.5 bar (7.3 psi)
– Unstable gases
• Devices not bearing this marking (PED) are designed and manufactured according to good engineering practice. They meet the requirements of Article 4 paragraph 3 of the Pressure Equipment Directive 2014/68/EU. The range of application is indicated in tables 6 to 9 in Annex II of the Pressure Equipment Directive 2014/68/EU.

Other standards and guidelines

• EN 60529 Degrees of protection provided by enclosures (IP code)
• IEC/EN 60068-2-6 Environmental influences: Test procedure - Test Fc: vibrate (sinusoidal).
• IEC/EN 60068-2-31 Environmental influences: Test procedure - Test Ec: shocks due to rough handling, primarily for devices.
• EN 61010-1 Safety requirements for electrical equipment for measurement, control and laboratory use ­general requirements
• IEC/EN 61326 Emission in accordance with Class A requirements. Electromagnetic compatibility (EMC requirements).
• NAMUR NE 21 Electromagnetic compatibility (EMC) of industrial process and laboratory control equipment
• NAMUR NE 32 Data retention in the event of a power failure in field and control instruments with microprocessors
• NAMUR NE 43 Standardization of the signal level for the breakdown information of digital transmitters with analog output signal.
• NAMUR NE 53 Software of field devices and signal-processing devices with digital electronics
• NAMUR NE 80 The application of the pressure equipment directive to process control devices
• NAMUR NE 105 Specifications for integrating fieldbus devices in engineering tools for field devices
• NAMUR NE 107 Self-monitoring and diagnosis of field devices
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• NAMUR NE 131 Requirements for field devices for standard applications
• NAMUR NE 132 Coriolis mass meter
• NACE MR0103 Materials resistant to sulfide stress cracking in corrosive petroleum refining environments.
• NACE MR0175/ISO 15156-1 Materials for use in H2S-containing Environments in Oil and Gas Production.

Ordering information

Detailed ordering information is available from the following sources:
• In the Product Configurator on the Endress+Hauser website: www.endress.com -> Click "Corporate"
-> Select your country -> Click "Products" -> Select the product using the filters and search field -> Open product page -> The "Configure" button to the right of the product image opens the Product Configurator.
• From your Endress+Hauser Sales Center: www.addresses.endress.com
Product Configurator - the tool for individual product configuration
• Up-to-the-minute configuration data
• Depending on the device: Direct input of measuring point-specific information such as measuring range or operating language
• Automatic verification of exclusion criteria
• Automatic creation of the order code and its breakdown in PDF or Excel output format
• Ability to order directly in the Endress+Hauser Online Shop

Heartbeat Technology

Application packages

Many different application packages are available to enhance the functionality of the device. Such packages might be needed to address safety aspects or specific application requirements.
The application packages can be ordered with the device or subsequently from Endress+Hauser. Detailed information on the order code in question is available from your local Endress+Hauser sales center or on the product page of the Endress+Hauser website: www.endress.com.
Detailed information on the application packages: Special Documentation for the device →  102
Package Description
Heartbeat Verification +Monitoring
Heartbeat Verification
Meets the requirement for traceable verification to DIN ISO 9001:2008 Chapter
7.6 a) "Control of monitoring and measuring equipment".
• Functional testing in the installed state without interrupting the process.
• Traceable verification results on request, including a report.
• Simple testing process via local operation or other operating interfaces.
• Clear measuring point assessment (pass/fail) with high test coverage within the framework of manufacturer specifications.
• Extension of calibration intervals according to operator's risk assessment.
Heartbeat Monitoring
Continuously supplies data, which are characteristic of the measuring principle, to an external condition monitoring system for the purpose of preventive maintenance or process analysis. These data enable the operator to:
• Draw conclusions - using these data and other information - about the impact process influences (such as corrosion, abrasion, buildup etc.) have on the measuring performance over time.
• Schedule servicing in time.
• Monitor the process or product quality, e.g. gas pockets.
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Concentration

Special density

Package Description
Concentration Calculation and outputting of fluid concentrations
The measured density is converted to the concentration of a substance of a binary mixture using the "Concentration" application package:
• Choice of predefined fluids (e.g. various sugar solutions, acids, alkalis, salts, ethanol etc.)
• Common or user-defined units (°Brix, °Plato, % mass, % volume, mol/l etc.) for standard applications.
• Concentration calculation from user-defined tables.
The measured values are output via the digital and analog outputs of the device.
Package Description
Special density Many applications use density as a key measured value for monitoring quality or
controlling processes. The device measures the density of the fluid as standard and makes this value available to the control system. The "Special Density" application package offers high-precision density measurement over a wide density and temperature range particularly for applications subject to varying process conditions.

Accessories

Various accessories, which can be ordered with the device or subsequently from Endress+Hauser, are available for the device. Detailed information on the order code in question is available from your local Endress+Hauser sales center or on the product page of the Endress+Hauser website:
www.endress.com.

Device-specific accessories For the sensor

Accessories Description
Heating jacket Is used to stabilize the temperature of the fluids in the sensor.

Communication-specific accessories

Accessories Description
Commubox FXA195 HART
Commubox FXA291 Connects Endress+Hauser field devices with a CDI interface (= Endress+Hauser
HART Loop Converter HMX50
Wireless HART adapter SWA70
Water, water vapor and other non-corrosive liquids are permitted for use as fluids. If using oil as a heating medium, please consult with Endress+Hauser. Heating jackets cannot be used with sensors fitted with a rupture disk.
For details, see Operating Instructions BA00132D
For intrinsically safe HART communication with FieldCare via the USB interface.
For details, see "Technical Information" TI00404F
Common Data Interface) and the USB port of a computer or laptop.
For details, see the "Technical Information" document TI405C/07
Is used to evaluate and convert dynamic HART process variables to analog current signals or limit values.
For details, see "Technical Information" TI00429F and Operating Instructions
BA00371F
Is used for the wireless connection of field devices. The WirelessHART adapter can be easily integrated into field devices and existing infrastructures, offers data protection and transmission safety and can be operated in parallel with other wireless networks with minimum cabling complexity.
For details, see Operating Instructions BA00061S
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Proline Promass F 100
Fieldgate FXA320 Gateway for the remote monitoring of connected 4 to 20 mA measuring devices via
a Web browser.
For details, see "Technical Information" TI00025S and Operating Instructions
BA00053S
Fieldgate FXA520 Gateway for the remote diagnostics and remote configuration of connected HART
measuring devices via a Web browser.
For details, see "Technical Information" TI00025S and Operating Instructions
BA00051S
Field Xpert SFX350 Field Xpert SFX350 is a mobile computer for commissioning and maintenance. It
enables efficient device configuration and diagnostics for HART and FOUNDATION Fieldbus devices and can be used in non-hazardous areas.
For details, see Operating Instructions BA01202S
Field Xpert SFX370 Field Xpert SFX370 is a mobile computer for commissioning and maintenance. It
enables efficient device configuration and diagnostics for HART and FOUNDATION Fieldbus devices and can be used in the non-hazardous area and in the hazardous area.
For details, see Operating Instructions BA01202S

Service-specific accessories

Accessories Description
Applicator Software for selecting and sizing Endress+Hauser measuring devices:
• Choice of measuring devices for industrial requirements
• Calculation of all the necessary data for identifying the optimum flowmeter: e.g. nominal diameter, pressure loss, flow velocity and accuracy.
• Graphic illustration of the calculation results
• Determination of the partial order code, administration, documentation and access to all project-related data and parameters over the entire life cycle of a project.
Applicator is available:
• Via the Internet: https://wapps.endress.com/applicator
• As a downloadable DVD for local PC installation.
W@M W@M Life Cycle Management
Improved productivity with information at your fingertips. Data relevant to a plant and its components is generated from the first stages of planning and during the asset’s complete life cycle. W@M Life Cycle Management is an open and flexible information platform with online and on-site tools. Instant access for your staff to current, in-depth data shortens your plant’s engineering time, speeds up procurement processes and increases plant uptime. Combined with the right services, W@M Life Cycle Management boosts productivity in every phase. For more information, visit
www.endress.com/lifecyclemanagement
FieldCare FDT-based plant asset management tool from Endress+Hauser.
It can configure all smart field units in your system and helps you manage them. By using the status information, it is also a simple but effective way of checking their status and condition.
For details, see Operating Instructions BA00027S and BA00059S
DeviceCare Tool for connecting and configuring Endress+Hauser field devices.
For details, see Innovation brochure IN01047S
Commubox FXA291 Connects Endress+Hauser field devices with a CDI interface (= Endress+Hauser
Common Data Interface) and the USB port of a computer or laptop.
For details, see "Technical Information" TI00405C
100 Endress+Hauser
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