Endress+Hauser Promass 84F Technical Information

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TI103D/06/en/02.10 71109108
Technical Information
Proline Promass 84F
Coriolis Mass Flow Measuring System The universal and multivariable flowmeter for liquids and gases for custody transfer
The Coriolis measuring principle operates independently of the physical fluid properties, such as viscosity and density.
• Extremely accurate, verified measurement of liquids (other than water) and for gases
• Fluid temperatures up to +350 °C (+660 °F)
• Process pressures up to 100 bar (1450 psi)
• Mass flow measurement up to 2200 t/h (80840 lb/min)
Approvals for custody transfer:
• PTB, METAS, BEV, MID, NTEP, MC
Approvals for hazardous area:
• ATEX, FM, CSA, TIIS, IECEx, NEPSI
Approvals in the food industry/hygiene sector:
• 3A, FDA, EHEDG
Connection to the common process control systems:
•HART, MODBUS
Relevant safety aspects:
• Secondary containment up to 40 bar (580 psi), Pressure Equipment Directive, AD 2000
• Purge connections or rupture disk (optional)
Your benefits
The Promass measuring devices make it possible to simultaneously record several process variables (mass/ density/temperature) for various process conditions during measuring operation.
The Proline transmitter concept comprises:
• Modular device and operating concept resulting in a higher degree of efficiency
• Diagnostic ability and data back-up for increased process quality
The Promass sensors, tried and tested in over 100 000 applications, offer:
• Best performance due to PremiumCal
• Multivariable flow measurement in compact design
• Insensitivity to vibrations thanks to balanced two-tube measuring system
• Immune from external piping forces due to robust design
• Easy installation without taking inlet and outlet runs into consideration
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Proline Promass 84F
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Table of contents
Function and system design. . . . . . . . . . . . . . . . . . . . . 3
Measuring principle . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Measuring system . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
Measured variable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
Measuring range in non-custody transfer mode . . . . . . . . . . . . . . 5
Measuring range in custody transfer mode . . . . . . . . . . . . . . . . . . 6
Operable flow range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Input signal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Output . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Output signal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Signal on alarm . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Load . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Low flow cutoff . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Galvanic isolation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Switching output . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Power supply . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
Electrical connection measuring unit . . . . . . . . . . . . . . . . . . . . . . . 8
Terminal assignment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Electrical connection remote version . . . . . . . . . . . . . . . . . . . . . . . 9
Switching on the power supply in custody transfer mode . . . . . . . 10
Supply voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Cable entries . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Remote version cable specifications . . . . . . . . . . . . . . . . . . . . . . . 10
Power consumption . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Power supply failure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Potential equalisation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Performance characteristics. . . . . . . . . . . . . . . . . . . . 10
Reference operating conditions . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Maximum measured error . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Repeatability . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
Influence of medium temperature . . . . . . . . . . . . . . . . . . . . . . . . 13
Influence of medium pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
Design fundamentals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
Operating conditions: Installation . . . . . . . . . . . . . . . 14
Installation instructions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Inlet and outlet runs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Length of connecting cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
System pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Operating conditions: Environment. . . . . . . . . . . . . . 18
Ambient temperature range . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Storage temperature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Ambient class . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Degree of protection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Shock resistance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Vibration resistance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
CIP cleaning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
SIP cleaning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Electromagnetic compatibility (EMC) . . . . . . . . . . . . . . . . . . . . . 18
Operating conditions: Process . . . . . . . . . . . . . . . . . . 19
Medium temperature range . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Medium pressure range (nominal pressure) . . . . . . . . . . . . . . . . 19
Rupture disk . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Limiting flow . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Pressure loss . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
Custody transfer measurement . . . . . . . . . . . . . . . . . 22
Custody transfer variables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Suitability for custody transfer, metrological control, obligation to
subsequent verification . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Verification (Example) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Stamp points . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23
Mechanical construction . . . . . . . . . . . . . . . . . . . . . . 24
Design/dimensions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
Weight . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
Material . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
Material load diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 56
Process connections . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Human interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Display elements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Operating elements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Language groups . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Remote operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Certificates and approvals . . . . . . . . . . . . . . . . . . . . . 60
CE mark . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
C-tick mark . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Ex approval . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Sanitary compatibility . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
MODBUS RS485 certification . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Other standards and guidelines . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Pressure device approval . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Measuring Instruments Directive . . . . . . . . . . . . . . . . . . . . . . . . 60
Approval for custody transfer . . . . . . . . . . . . . . . . . . . . . . . . . . . 61
Suitability for custody transfer measurement . . . . . . . . . . . . . . . . 61
Ordering Information. . . . . . . . . . . . . . . . . . . . . . . . . 62
Accessories . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Documentation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Registered trademarks . . . . . . . . . . . . . . . . . . . . . . . . 62
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Proline Promass 84F
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Function and system design
Measuring principle The measuring principle is based on the controlled generation of Coriolis forces. These forces are always present
when both translational and rotational movements are superimposed.
FC = 2 · Δm (v · ω) F
C
= Coriolis force
Δm = moving mass ω = rotational velocity
v = radial velocity in rotating or oscillating system
The amplitude of the Coriolis force depends on the moving mass Δm, its velocity v in the system, and thus on the mass flow. Instead of a constant angular velocity ω, the Promass sensor uses oscillation.
The measuring tubes through which the measured material flows are brought into oscillation. The Coriolis forces produced at the measuring tubes cause a phase shift in the tube oscillations (see illustration):
• At zero flow, in other words 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).
a0003383
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 tubes are continuously excited at their resonance frequency. A change in the mass and thus the density of the oscillating system (comprising measuring tubes and fluid) results in a corresponding, automatic adjustment in the oscillation frequency. Resonance frequency is thus a function of fluid density. The micro­processor utilises this relationship to obtain a density signal.
Temperature measurement
The temperature of the measuring tubes 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. The temperature measurement cannot be used to generate data for invoicing in applications subject to legal metrology controls.
12 3
A
B
A
B
A
B
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Proline Promass 84F
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Measuring system The measuring system consists of a transmitter and a sensor. Two versions are available:
• Compact version: transmitter and sensor form a single mechanical unit.
• Remote version: transmitter and sensor are installed separately.
Transmitter
Sensor
Further sensor in separate documentation
Promass 84
a0003672
• Four-line liquid-crystal display
• Operation with "Touch control"
• Application-specific Quick Setup
• Mass flow, volume flow, density and temperature measurement as well as calculated variables (e.g. corrected volume flow)
F
a0003673
• Universal sensor for fluid temperatures up to +200 °C (+392 °F).
• Nominal diameters DN 8 to 250 (3/8" to 10").
• Material: Stainless steel EN 1.4539/ASTM 904L, EN 1.4404/ASTM 316L, Alloy C-22 DIN 2.4602
Documentation No. TI103D
F (High-temperature)
a0003675
• Universal high-temperature sensor for fluid temperatures up to +350 °C (+662 °F).
• Nominal diameters DN 25, 50, 80 (1", 2", 3")
• Material: Alloy C-22, DIN 2.4602, EN 1.4404/ASTM 316L
A
a0003679
• Single-tube system for highly accurate measurement of very small flows
• Nominal diameters DN 1 to 4 (1/24" to 1/8")
• Material: Stainless Steel EN 1.4539/ASTM 904L, EN 1.4404/ASTM 316L , Alloy C-22 DIN 2.4602 (process connection)
Documentation TI068D
M
a0003676
• Robust sensor for extreme process pressures, high requirements for the secondary containment and fluid temperatures up to +150 °C (+302 °F)
• Nominal diameters DN 8 to 80 (3/8" to 3")
• Material: Titanium, Ti Grade 2, Ti Grade 9
Documentation No. TI104D
Esc
E
+
–
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Input
Measured variable • Mass flow (proportional to the phase difference between two sensors mounted on the measuring tube to
register a phase shift in the oscillation)
• Fluid density (proportional to resonance frequency of the measuring tube)
• Fluid temperature (measured with temperature sensors)
Measuring range in non­custody transfer mode
Measuring ranges for liquids
Measuring ranges for gases
The full scale values depend on the density of the gas. Use the formula below to calculate the full scale values:
g
max(G)
= g
max(F)
· ρ
(G)
÷ x [kg/m³]
g
max(G)
= Max. full scale value for gas [kg/h]
g
max(F)
= Max. full scale value for liquid [kg/h]
ρ
(G)
= gas density in [kg/m³] under process conditions
Here, g
max(G)
can never be greater than g
max(F)
Calculation example for gas:
• Sensor type: Promass F, DN 50
• Gas: air with a density of 60.3 kg/m³ (at 20 °C and 50 bar)
• Measuring range (liquids): 70000 kg/h
• x = 90 (for Promass F DN 50)
Max. possible full scale value:
g
max(G)
= g
max(F)
· ρ
(G)
÷ x [kg/m3] = 70000 kg/h · 60.3 kg/m³ ÷ 90 kg/m³ = 46900 kg/h
Recommended full scale values
See information in chapter "Limiting flow" → ä 19
DN Range for full scale values (liquids) g
min(F)
to g
max(F)
[mm] [inch] [kg/h] [lb/min]
8 3/8" 0 to 2000 0 to 73.5
15 ½" 0 to 6500 0 to 238
25 1" 0 to 18000 0 to 660
40 1½" 0 to 45000 0 to 1650
50 2" 0 to 70000 0 to 2570
80 3" 0 to 180000 0 to 6600
100 4" 0 to 350000 0 to 12860
150 6" 0 to 800000 0 to 29400
250 10" 0 to 2200000 0 to 80840
DN
X
DN
X
[mm] [inch] [mm] [inch]
8 3/8" 60 80 3" 110
15 ½" 80 100 4" 130
25 1" 90 150 6" 200
40 1½" 90 250 10" 200
50 2" 90
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Proline Promass 84F
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Measuring range in custody transfer mode
The following are example data for German PTB approval (liquids other than water).
Measuring ranges for liquids in mass flow
Measuring ranges for liquids in volume flow (also LPG)
!
Note! For information about the other approvals → see corresponding certificate.
Operable flow range Over 20 : 1 for verified device
Input signal Status input (auxiliary input), HART:
U = 3 to 30 V DC, Ri = 5 kΩ, galvanically isolated. Configurable for: totalizer reset, positive zero return, error message reset, zero point adjustment start.
Status input (auxiliary input), MODBUS RS485:
U = 3 to 30 V DC, R
i
= 3 kΩ, galvanically isolated, switch level: ±3 to ±30 V DC, independent of polarity.
Configurable for: totalizer reset, positive zero return, error message reset, zero point adjustment start.
DN Mass flow (liquids) Q
min
to Q
max
Smallest measured quantity
[mm] [inch] [kg/min] [lbs/min] [kg] [lbs]
8 3/8" 1.5 to 30 3.3075 to 66.15 0.5 1.10
15 ½" 5 to 100 11.025 to 220.5 2 4.41
25 1" 15 to 300 33.075 to 661.5 5 11.0
40 1½" 35 to 700 77.175 to 1543.5 20 44.1
50 2" 50 to 1000 110.25 to 2205.0 50 110.25
80 3" 150 to 3000 330.75 to 6615.0 100 220.50
100 4" 200 to 4500 441.00 to 9922.5 200 441.00
150 6" 350 to 12000 771.75 to 26460 500 1102.5
250 10" 1500 to 35000 3307.5 to 77175 1000 2205.0
DN Volume flow (liquids) Q
min
to Q
max
Smallest measured quantity
[mm] [inch] [l/min] [gal/hr] [l] [gal]
8 3/8" 1.5 to 30 23.76 to 475.20 0.5 0.132
15 ½" 5 to 100 79.20 to 1584.0 2.0 0.528
25 1" 15 to 300 237.6 to 4752.0 5.0 1.320
40 1½" 35 to 700 554.4 to 11088 20 5.280
50 2" 50 to 1000 792.0 to 15840 50 13.20
80 3" 150 to 3000 2376 to 47520 100 26.40
100 4" 200 to 4500 3168 to 71280 200 52.80
150 6" 350 to 12000 5544 to 190080 500 132.0
250 10" 1500 to 35000 23760 to 554 400 1000 264.0
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Output
Output signal Current output, HART
Active/passive selectable, galvanically isolated, time constant selectable (0.05 to 100 s), full scale value selectable, temperature coefficient: typically 0.005% o.r./°C, resolution: 0.5 μA
• Active: 0/4 to 20 mA, R
L
< 700 Ω (for HART: RL ≥ 250 Ω)
• Passive: 4 to 20 mA; supply voltage U
S
18 to 30 V DC; Ri ≥ 150 Ω
Pulse / frequency output, HART
For custody transfer measurement, two pulse outputs can be operated. Passive, galvanically isolated, open collector, 30 V DC, 250 mA
• Frequency output: Full scale frequency 2 to 10000 Hz (f
max
= 12500 Hz), on/off ratio 1:1, pulse width max.
2 s. In "Phase-shifted pulse outputs" operating mode, the end frequency is limited to a maximum of 5000 Hz.
• Pulse output: Pulse value and pulse polarity selectable, pulse width configurable (0.05 to 2000 ms)
Pulse / frequency output, MODBUS
Active/passive selectable, galvanically isolated
• Active: 24 V DC, 25 mA (max. 250 mA during 20 ms), R
L
> 100 Ω
• Passive: Open Collector, 30 V DC, 250 mA
• Frequency output: Full scale frequency 2 to 10000 Hz (f
max
= 12500 Hz), on/off ratio 1:1, pulse width max.
2 s.
• Pulse output: Pulse value and pulse polarity selectable, pulse width configurable (0.05 to 2000 ms)
MODBUS interface
• MODBUS device type: slave
• Address range: 1 to 247
• Functions codes supported: 03, 04, 06, 08, 16, 23
• Broadcast: supported with the function codes 06, 16, 23
• Physical interface: RS485 in accordance with standard EIA/TIA-485
• Baud rate supported: 1200, 2400, 4800, 9600, 19200, 38400, 57600, 115200 Baud
• Transmission mode: RTU or ASCII
• Response time: Direct data access = typically 25 to 50 ms Auto-scan buffer (data area) = typically 3 to 5 ms
• Possible output combinations → ä 9
Signal on alarm • Current output: Failsafe mode selectable (e.g. in accordance with NAMUR Recommendation NE 43).
• Pulse/frequency output: Failsafe mode selectable.
• Relay output: De-energised by fault or power supply failure.
• MODBUS RS485: If an error occurs, the value NaN (not a number) is output for the process variables.
Load See "Output signal"
Low flow cutoff Switch points for low flow cutoff are selectable.
Galvanic isolation All circuits for inputs, outputs, and power supply are galvanically isolated from each other.
Switching output Relay output
• max. 30 V / 0.5 A AC; 60 V / 0.1 A DC
• galvanically isolated
• Normally closed (NC or break) or normally open (NO or make) contacts available (factory setting: relay 1 = NO, relay 2 = NC)
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Proline Promass 84F
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Power supply
Electrical connection measuring unit
a0006816
Connecting the transmitter, cable cross-section: max. 2.5 mm²
A View A (field housing) B View B (stainless steel field housing) C View C (wall-mount housing)
a Cable for power supply: 85 to 260 V AC, 20 to 55 V AC, 16 to 62 V DC
– Terminal No. 1: L1 for AC, L+ for DC – Terminal No 2: N for AC, L- for DC
b Signal cable: Terminal assignment → ä 9 c Fieldbus cable: Terminal assignment → ä 9 d Ground terminal for protective earth e Ground terminal for Signal cable/RS485 cable f Service connector for connecting service interface FXA 193 with Proline adapter cable (Fieldcheck, FieldCare)
HART
b
d
e
a
–27
–25 –23 –21
+26 +24 +22 +20
N (L-) 2 L1 (L+) 1
f
MODBUS RS485
25 23 21
2 1
24 22 20
L1 (L+)
N (L-)
– – –
+ + +
27 26
A (RxD/TxD-N) B (RxD/TxD-P)
c
d
e
a
b
f
AB
C
b/c
a/a
–/c
a/a
b/b
–/b
b/c
a/a
–/b
HART
MODBUS RS485
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Proline Promass 84F
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Terminal assignment The inputs and outputs on the communication board can be either permanently assigned (fixed) or variable
(flexible), depending on the version ordered (see table). Replacements for modules which are defective or which have to be replaced can be ordered as accessories.
Electrical connection remote version
a0003681
Connection of remote version
a Wall-mount housing: non-hazardous area and ATEX II3G / zone 2 → see separate "Ex documentation" b Wall-mount housing: ATEX II2G / Zone 1 /FM/CSA → see separate "Ex documentation" c Connection housing sensor d Cover for connection compartment or connection housing e Connecting cable
Terminal No.: 4/5 = grey; 6/7 = green; 8 = yellow; 9/10 = pink; 11/12 = white; 41/42 = brown
Terminal No. (inputs/outputs)
Order variant 20 (+) / 21 (–) 22 (+) / 23 (–) 24 (+) / 25 (–) 26 (+) / 27 (–)
Fixed communication boards (permanent assignment)
84***-***********S – –
Pulse/freq. output Ex i, passive
Current output Ex i active, HART
84***-***********T – –
Pulse/freq. output Ex i, passive
Current output Ex i passive, HART
Flexible communication boards
84***-***********D Status input Relay output
Pulse/frequency out­put
Current output HART
84***-***********M Status input
Pulse/frequency out­put 2
Pulse/frequency out­put 1
Current output HART
84***-***********N Current output
Pulse/frequency out­put
Status input
MODBUS RS485
84***-***********Q – – Status input
MODBUS RS485
84***-***********1 Relay output
Pulse/frequency out­put 2
Pulse/frequency out­put 1
Current output HART
84***-***********2 Relay output Current output 2
Pulse/frequency out­put
Current output 1 HART
84***-***********7 Relay output 2 Relay output 1 Status input
MODBUS RS485
4 5 6 7 8 9 10 11 12 41 42
4 5 6 7 8 9 10 11 12 41 42
S1 S1 S2 S2 GNDTM TM TT TT
++ ++
++ ++
S1 S1 S2 S2 GNDTM TM TT TT
a
b
c
d
d
d
e
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Proline Promass 84F
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Switching on the power supply in custody transfer mode
If the device is started in custody transfer mode, for example also after a power outage, system error No. 271 "POWER BRK. DOWN" flashes on the local display. The fault message can be acknowledged or reset using the "Enter" key or by means of the status input configured accordingly.
!
Note! For correct measuring operation, it is not mandatory to reset the fault message.
Supply voltage 85 to 260 V AC, 45 to 65 Hz
20 to 55 V AC, 45 to 65 Hz 16 to 62 V DC
Cable entries Power-supply and signal cables (inputs/outputs)
• Cable entry M20 × 1.5 (8 to 12 mm / 0.31" to 0.47")
• Thread for cable entries, ½" NPT, G ½"
Connecting cable for remote version
• Cable entry M20 × 1.5 (8 to 12 mm / 0.31" to 0.47")
• Thread for cable entries, ½" NPT, G ½"
Remote version cable specifications
• 6 × 0.38 mm
2
PVC cable with common shield and individually shielded cores
• Conductor resistance: ≤50 Ω/km (≤0.015 Ω/ft)
• Capacitance: core/shield: ≤420 pF/m (≤128 pF/ft)
• Cable length: max. 20 m (65 ft)
• Operating temperature: max. +105 °C (+221 °F)
Operation in zones of severe electrical interference: The measuring device complies with the general safety requirements in accordance with EN 61010, the EMC requirements of ICE/EN 61326, and NAMUR recommendation NE 21/43.
Power consumption AC: <15 VA (including sensor)
DC: <15 W (including sensor)
Switch-on current
• Max. 13.5 A (<50 ms) at 24 V DC
• Max. 3 A (<5 ms) at 260 V AC
Power supply failure Lasting min. 1 power cycle:
• EEPROM or T-DAT save measuring system data if the power supply fails.
• HistoROM/S-DAT: exchangeable data storage chip with sensor specific data (nominal diameter, serial number, calibration factor, zero point, etc.)
• See also "Switching on the power supply in custody transfer mode" → ä 10.
Potential equalisation No special measures for potential equalization are required. For instruments for use in hazardous areas, observe
the corresponding guidelines in the specific Ex documentation.
Performance characteristics
Reference operating conditions
• Error limits following ISO/DIS 11631
• Water, typically +20 to +30 °C (+68 to +86 °F); 2 to 4 bar (30 to 60 psi)
• Data according to calibration protocol ±5 °C (±9 °F) and ±2 bar (±30 psi)
• Accuracy based on accredited calibration rigs according to ISO 17025
Maximum measured error The following values refer to the pulse/frequency output. Deviation at the current output is typically ±5 μA.
Design fundamentals → ä 13.
o.r. = of reading
Mass flow and volume flow (liquids)
• ±0.05% o.r. (PremiumCal, for mass flow)
• ±0.10% o.r
Page 11
Proline Promass 84F
Endress+Hauser 11
Mass flow (gases)
±0.35% o.r.
Density (liquids)
• ±0.0005 g/cc (under reference conditions)
• ±0.0005 g/cc (after field density calibration under process conditions)
• ±0.001 g/cc (after special density calibration)
• ±0.01 g/cc (over the entire measuring range of the sensor)
1 g/cc = 1 kg/l
Special density calibration (optional):
• Calibration range: 0.8 to 1.8 g/cc, +5 to +80 °C (+41 to +176 °F)
• Operation range: 0.0 to 5.0 g/cc, –50 to +200 °C (–58 to +392 °F)
Temperature
±0.5 °C ± 0.005 · T °C (±1 °F ± 0.003 · (T – 32) °F)
T = medium temperature
Zero point stability
Promass F (Standard)
Promass F (high-temperature version)
DN Zero point stability
[mm] [inch] [kg/h] or [l/h] [lb/min]
8 3/8" 0.030 0.001
15 ½" 0.200 0.007
25 1" 0.540 0.019
40 1½" 2.25 0.083
50 2" 3.50 0.129
80 3" 9.00 0.330
100 4" 14.00 0.514
150 6" 32.00 1.17
250 10" 88.00 3.23
DN Zero point stability
[mm] [inch] [kg/h] or [l/h] [lb/min]
25 1" 1.80 0.0661
50 2" 7.00 0.2572
80 3" 18.0 0.6610
Page 12
Proline Promass 84F
12 Endress+Hauser
Example for max. measured error
a0004604
Max. measured error in % o.r. (example: Promass 84F / DN 25)
Flow values (example)
Design fundamentals → ä 13
Repeatability Design fundamentals → ä 13.
o.r. = of reading
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/cc
1 g/cc = 1 kg/l
Temperature
±0.25 °C ± 0.0025 · T °C (±1 °F ± 0.003 · (T – 32) °F)
T = medium temperature
0
±0.5
±0.2
±1.0
[%]
024681012141618
t/h
Turn down Flow Max. measured error
[kg/h] [lb/min] [% o.r.]
500:1 36 1.30 1.5
100:1 180 6.60 0.3
25:1 720 26.45 0.1
10:1 1800 66.15 0.1
2:1 9000 330.70 0.1
o.r. = of reading
Page 13
Proline Promass 84F
Endress+Hauser 13
Influence of medium temperature
When there is a difference between the temperature for zero point adjustment and the process temperature, the typical measured error of the Promass sensor is ±0.0002% of the full scale value / °C (±0.0001% of the full scale value / °F).
Influence of medium pressure The table below shows the effect on accuracy of mass flow due to a difference between calibration pressure
and process pressure.
Design fundamentals Dependent on the flow:
•Flow ≥ zero point stability ÷ (base accuracy ÷ 100) – Max. measured error: ±base accuracy in % o.r. – Repeatability: ± ½ · base accuracy in % o.r.
• Flow < zero point stability ÷ (base accuracy ÷ 100) – Max. measured error: ± (zero point stability ÷ measured value) · 100% o.r. – Repeatability: ± ½ · (zero point stability ÷ measured value) · 100% o.r.
o.r. = of reading
DN Promass F Promass F High-temperature version
[mm] [inch] [% o.r./bar] [% o.r./bar]
8 3/8" no influence –
15 ½" no influence –
25 1" no influence no influence
40 1½" –0.003 –
50 2" –0.008 –0.008
80 3" –0.009 –0.009
100 4" –0.007 –
150 6" –0.009 –
250 10" –0.009 –
o.r. = of reading
Base accuracy for
Mass flow liquids, PremiumCal 0.05
Mass flow liquids 0.10
Volume flow liquids 0.10
Mass flow gases 0.35
Page 14
Proline Promass 84F
14 Endress+Hauser
Operating conditions: Installation
Installation instructions Note the following points:
• No special measures such as supports are necessary. External forces are absorbed by the construction of the instrument, for example the secondary containment.
• The high oscillation frequency of the measuring tubes ensures that the correct operation of the measuring system is not influenced by pipe vibrations.
• No special precautions need to be taken for fittings which create turbulence (valves, elbows, T-pieces, etc.), as long as no cavitation occurs.
• For mechanical reasons and in order to protect the pipe, it is advisable to support heavy sensors.
• Please refer to the verification ordinances for the installation conditions of the approval for custody transfer in question.
The necessary steps for creating a measuring system and obtaining approval from the Standards Authorities must be clarified with the authority for legal metrology controls responsible.
Mounting location
Entrained air or gas bubbles in the measuring tube can result in an increase in measuring errors Avoid the following locations:
• Highest point of a pipeline. Risk of air accumulating.
• Directly upstream of a free pipe outlet in a vertical pipeline.
a0003605
Mounting location
The proposed configuration in the following diagram, however, permits installation in a vertical pipeline. Pipe restrictors or the use of an orifice plate with a smaller cross-section than the nominal diameter prevent the sensor from running empty during measurement.
a0003597
Installation in a down pipe (e.g. for batching applications)
1Supply tank 2Sensor 3 Orifice plate, pipe restriction (see Table following page) 4Valve 5 Batching tank
1
2
3
4
5
Page 15
Proline Promass 84F
Endress+Hauser 15
Orientation
Make sure that the direction of the arrow on the nameplate of the sensor matches the direction of flow (direction in which the fluid flows through the pipe).
Vertical (View V)
Recommended orientation with upward direction of flow (View V). When fluid is not flowing, entrained solids will sink down and gases will rise away from the measuring tube. The measuring tubes can be completely drained and protected against solids build-up.
Horizontal (Views H1, H2)
The measuring tubes must be horizontal and beside each other. When installation is correct the transmitter housing is above or below the pipe (View H1, H2). Always avoid having the transmitter housing in the same horizontal plane as the pipe. Please note the special installation instructions → ä 16.
In order to ensure that the maximum permissible ambient temperature for the transmitter is not exceeded, we recommend the following orientations:
m = For fluids with low temperatures, we recommend the horizontal orientation with the transmitter head pointing upwards (View H1) or the vertical orientation (View V).
n = For fluids with high-temperatures, >200 °C (>392 °F), we recommend the horizontal orientation with the transmitter head pointing downwards (View H2) or the vertical orientation (View V).
DN ∅ Orifice plate, pipe restriction
[mm] [inch] mm inch
83/8" 60.24
15 ½" 10 0.40
25 1" 14 0.55
40 1½" 22 0.87
50 2" 28 1.10
80 3" 50 2.00
100 4" 65 2.60
150 6" 90 3.54
250 10" 150 5.91
Orientation Vertical Horizontal,
Transmitter head up
Horizontal,
Transmitter head down
a0004572
View V
a0004576
View H1
a0004580
View H2
Standard, Compact version
ÃÃ ÃÃ
ÃÃ
n
Standard, Remote version
ÃÃ ÃÃ
ÃÃ
n
High-temperature, Compact version
ÃÃ
✘ m
TM > 200 °C (> 392°F)
ÃÃ
n
High-temperature, Remote version
ÃÃ
✘ m
TM > 200 °C (> 392°F)
ÃÃ
n
ÃÃ = Recommended orientation; Ã = Orientation recommended in certain situations; ✘ = Impermissible orientation
Page 16
Proline Promass 84F
16 Endress+Hauser
Special installation instructions
"
Caution! The two measuring tubes are slightly curved. The position of the sensor, therefore, has to be matched to the fluid properties when the sensor is installed horizontally .
a0004581
Installed horizontally
1 Not suitable for fluids with entrained solids. Risk of solids accumulating. 2 Not suitable for outgassing fluids. Risk of air accumulating.
Heating
Some fluids require suitable measures to avoid loss of heat at the sensor. Heating can be electric, e.g. with heated elements, or by means of hot water or steam pipes made of copper or heating jackets.
"
Caution!
• Risk of electronics overheating! Make sure that the maximum permissible ambient temperature for the transmitter is not exceeded. Consequently, make sure that the adapter between sensor and transmitter and the connection housing of the remote version always remain free of insulating material. Note that a certain orientation might be required, depending on the fluid temperature → ä 19.
• With a fluid temperature between +200 °C to +350 °C (+392 °F to +662 °F) the remote version of the high­temperature version is preferable.
• When using electrical heat tracing whose heat is regulated using phase control or by pulse packs, it cannot be ruled out that the measured values are influenced by magnetic fields which may occur, (i.e. at values greater than those permitted by the EC standard (Sinus 30 A/m)). In such cases, the sensor must be magnetically shielded. The secondary containment can be shielded with tin plates or electric sheets without privileged direction (e.g. V330-35A) with the following properties: – Relative magnetic permeability μ
r
≥ 300
– Plate thickness d ≥ 0.35 mm (d ≥ 0.014")
• Information on permissible temperature ranges → ä 19
Special heating jackets which can be ordered as accessories from Endress+Hauser are available for the sensors.
1
2
Page 17
Proline Promass 84F
Endress+Hauser 17
Thermal insulation
Some fluids require suitable measures to avoid loss of heat at the sensor. A wide range of materials can be used to provide the required thermal insulation.
a0004614-ae
High-temperature version: maximum insulation thickness of 60 mm (2.4") in the area of the electronics/neck
If the Promass F high-temperature version is installed horizontally (with transmitter head pointing upwards), an insulation thickness of min. 10 mm (0.4") is recommended to reduce convection. The maximum insulation thickness of 60 mm (2.4") must be observed.
Zero point adjustment
All measuring devices are calibrated with state-of-the-art technology. The zero point determined in this way is imprinted on the nameplate of the device. Calibration takes place under reference operating conditions → ä 10. Consequently, the zero point adjustment is generally not necessary for Promass!
Experience shows that the zero point adjustment is advisable only in special cases:
• To achieve highest measuring accuracy also with very small flow rates.
• Under extreme process or operating conditions (e.g. very high process temperatures or very high viscosity fluids).
Inlet and outlet runs There are no installation requirements regarding inlet and outlet runs.
Length of connecting cable max. 20 m (65 ft), remote version
System pressure It is important to ensure that cavitation does not occur, because it would influence the oscillation of the
measuring tube. No special measures need to be taken for fluids which have properties similar to water under normal conditions. In the case of liquids with a low boiling point (hydrocarbons, solvents, liquefied gases) or in suction lines, it is important to ensure that pressure does not drop below the vapour pressure and that the liquid does not start to boil. It is also important to ensure that the gases that occur naturally in many liquids do not outgas. Such effects can be prevented when system pressure is sufficiently high.
Consequently, it is generally best to install the sensor:
• downstream from pumps (no danger of vacuum),
• at the lowest point in a vertical pipe.
E
s
c
E
-
+
mm (inch)
max. 60 (2.4)
max. 60 (2.4)
Page 18
Proline Promass 84F
18 Endress+Hauser
Operating conditions: Environment
Ambient temperature range Sensor, transmitter
• Standard: –20 to +60 °C (–4 to +140 °F)
• Optional: –40 to +60 °C (–40 to +140 °F)
!
Note!
• Install the device at a shady location. Avoid direct sunlight, particularly in warm climatic regions.
• At ambient temperatures below –20 °C (–4 °F) the readability of the display may be impaired.
Storage temperature –40 to +80 °C (–40 to +175 °F), preferably +20 °C (+68 °F)
Ambient class B, C, I
Degree of protection Standard: IP 67 (NEMA 4X) for transmitter and sensor
Shock resistance According to IEC 68-2-31
Vibration resistance Acceleration up to 1 g, 10 to 150 Hz, following IEC 68-2-6
CIP cleaning yes
SIP cleaning yes
Electromagnetic compatibility (EMC)
To ICE/EN 61326 and NAMUR recommendation NE 21
Page 19
Proline Promass 84F
Endress+Hauser 19
Operating conditions: Process
Medium temperature range Sensor
• –50 to +200 °C (–58 to +392 °F)
• High-temperature version: –50 to +350 °C (–58 to +660 °F)
Medium pressure range (nominal pressure)
Flanges
•Standard: – according to DIN PN 16 to 100 – according to ASME B16.5 Cl 150, Cl 300, Cl 600 – JIS 10K, 20K, 40K, 63K
• High-temperature version: – according to DIN PN 40, 64, 100 – according to ASME B16.5 Cl 150, Cl 300, Cl 600 – JIS 10K, 20K, 63K
Pressure ranges of secondary containment
• DN 8 to 50 (3/8" to 2"): 40 bar (580 psi)
• DN 80 (3"): 25 bar (362 psi)
• DN 100 to 150 (4" to 6"): 16 bar (232 psi)
• DN 250 (10"): 10 bar (145 psi)
#
Warning! In case a danger of measuring tube failure exists due to process characteristics, e.g. with corrosive process fluids, we recommend the use of sensors whose secondary containment is equipped with special pressure monitoring connections (ordering option). With the help of these connections, fluid collected in the secondary containment in the event of tube failure can be bled off. This is especially important in high pressure gas applications. These connections can also be used for gas circulation and/or detection (Dimensions → ä 51).
Rupture disk Further information → ä 52
Limiting flow See "Measuring range" section → ä 5
Select nominal diameter by optimising between required flow range and permissible pressure loss. An overview of max. possible full scale values can be found in the "Measuring range" Section.
• The minimum recommended full scale value is approx. 1/20 of the max. full scale value.
• In most applications, 20 to 50% of the maximum full scale value can be considered ideal.
• Select a lower full scale value for abrasive substances such as fluids with entrained solids (flow velocity <1 m/s (<3 ft/s)).
• For gas measurement the following rules apply: – Flow velocity in the measuring tubes should not be more than half the sonic velocity (0.5 Mach). – The maximum mass flow depends on the density of the gas: formula → ä 5
Page 20
Proline Promass 84F
20 Endress+Hauser
Pressure loss Pressure loss depends on the properties of the fluid and on its flow.
The following formulas can be used to approximately calculate the pressure loss:
Pressure loss coefficient
a0001396
Pressure loss diagram for water
Reynolds number
a0004623
Re ≥ 2300
1)
a0004626
Promass F DN 250
a0012135
Re < 2300
a0004628
Δp = pressure loss [mbar] ν = kinematic viscosity [m
2
/s]
g = Mass flow [kg/s] ρ = fluid density [kg/m
3
]
d = inside diameter of measuring tubes [m] K to K2 = constants (depending on nominal diameter) a = 0.3 b = 91000
1)
To compute the pressure loss for gases, always use the formula for Re ≥ 2300.
DN
d[m] K K1 K2
[mm] [inch]
8 3/8" 5.35 · 10
–3
5.70 · 10
7
9.60 · 10
7
1.90 · 10
7
15 ½" 8.30 · 10
–3
5.80 · 10
6
1.90 · 10
7
10.60 · 10
5
25 1" 12.00 · 10
–3
1.90 · 10
6
6.40 · 10
6
4.50 · 10
5
40 1½" 17.60 · 10
–3
3.50 · 10
5
1.30 · 10
6
1.30 · 10
5
50 2" 26.00 · 10
–3
7.00 · 10
4
5.00 · 10
5
1.40 · 10
4
80 3" 40.50 · 10
–3
1.10 · 10
4
7.71 · 10
4
1.42 · 10
4
100 4" 51.20 · 10
–3
3.54 · 10
3
3.54 · 10
4
5.40 · 10
3
150 6" 68.90 · 10
–3
1.36 · 10
3
2.04 · 10
4
6.46 · 10
2
250 10" 102.26 · 10
–3
3.00 · 10
2
6.10 · 10
3
1.33 · 10
2
Re =
2·
g
pnr·d· ·
Drp=K· · ·
0.25 1.85 –0.86
gn
Dp =·K
a
1-a+
e
b·(v-10-6)
·· ·g
1.85 -0.86
rv
0.25
Dp=K1· · +gn
K2 · ·
0.25 2
gn
r
DN 50
DN 40
DN 25
DN 8
10000
1000
100
10
1
0.1
0.001
0.01
0.1
1
10
100 1000
DN 15
DN 80
DN 100
[mbar]
[t/h]
DN 150
DN 250
Page 21
Proline Promass 84F
Endress+Hauser 21
Pressure loss (US units)
Pressure loss is dependent on fluid properties nominal diameter. Consult Endress+Hauser for Applicator PC software to determine pressure loss in US units. All important instrument data is contained in the Applicator software programm in order to optimize the design of measuring system. The software is used for following calculations:
• Nominal diameter of the sensor with fluid characteristics such as viscosity, density, etc.
• Pressure loss downstream of the measuring point.
• Converting mass flow to volume flow, etc.
• Simultaneous display of various meter size.
• Determining measuring ranges.
The Applicator runs on any IBM compatible PC with windows.
Page 22
Proline Promass 84F
22 Endress+Hauser
Custody transfer measurement
Promass 84 is a flowmeter suitable for custody transfer measurement for liquids (other than water) and gases.
Custody transfer variables •Mass flow
• Volume flow
•Density
Suitability for custody transfer, metrological control, obligation to subsequent verification
Promass 84 flowmeters are usually verified on site using reference measurements. Only once it has been verified on site by the Verification Authority for legal metrology controls may the measuring device be regarded as verified and used for applications subject to legal metrology controls. The associated seal (stamp) on the measuring device ensures this status.
"
Caution! Only flowmeters verified by the Verification Authorities may be used for invoicing in applications subject to legal metrology controls. For all verification processes, both the corresponding approvals and the country­specific requirements resp. regulations (e.g. such as the German Verification Act) must be observed. The owner / user of the instrument is obliged to subsequent verification.
Approval for custody transfer
The requirements of the following legal metrology authorities are taken into consideration:
• PTB, Germany; (www.eichamt.de)
• METAS, Switzerland; (www.metas.ch)
• BEV, Austria; (www.bev.gv.at)
• NTEP, USA; (www.ncwm.net)
• MC, Canada; (www.ic.gc.ca)
Switching on the power supply in custody transfer mode
If the device is started in custody transfer mode, for example also after a power outage, system error No. 271 "POWER BRK. DOWN" flashes on the local display. The fault message can be acknowledged or reset using the "Enter" key or by means of the status input configured accordingly.
!
Note! For correct measuring operation, it is not mandatory to reset the fault message.
Verification (Example) Type-approved measuring systems for liquids other than water are always verified at their place of deployment.
For this purpose, the facility's owner-operator must make everything available when the Verification Authorities come to inspect and verify the system. This includes:
• Scales or container with a reading unit with a load or volumetric capacity that corresponds to the operation of the system at Q
max
for one minute. The resolution of the scales display or the reading unit must be at least
0.1 % of the minimum measured quantity.
• Unit for removing the medium being measured after the totalizer to fill the scales or the container.
• Making a sufficient quantity of the medium being measured available. The quantity is derived from the operation of the system. The following rule of thumb applies - quantity at:
3 × 1 minute at Q
min
,
plus 3 × 1 minute at ½ Q
max
,
plus 3 × 1 minute at Q
max
,
plus adequate quantity in reserve.
• Approval certificates
!
Note! All issues should be clarified in advance with the authority responsible to ensure the successful verification of the measuring system.
Setting up custody transfer mode
A detailed description of the "setting up custody transfer mode" process is provided in the Operating Instructions supplied with the device.
Page 23
Proline Promass 84F
Endress+Hauser 23
Stamp points
a0003467
Examples of how to seal the various device versions.
Disabling custody transfer mode
A detailed description of the "disabling custody transfer mode" process is provided in the Operating Instructions supplied with the device.
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AB
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A
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B
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Page 24
Proline Promass 84F
24 Endress+Hauser
Mechanical construction
Design/dimensions
Abmessungen:
Transmitter compact version, powder coated die-cast aluminium field housing → ä 25
Transmitter compact version, stainless steel field housing → ä 26
Transmitter and remote field housing (II2G/zone 1) → ä 26
Transmitter wall-mount housing (non hazardous area and II3G/zone 2) → ä 27
Connection housing remote version → ä 28
Connection housing remote version, connection housing with an extended neck → ä 29
High-temperature version (compact) → ä 30
High-temperature version (remote) → ä 31
Process connections in SI units
Flange connections EN (DIN) → ä 32
Flange connections ASME B16.5 → ä 35
Flange connections JIS B2220 → ä 37
Tri-Clamp → ä 39
DIN 11851 (threaded hygienic connection) → ä 40
DIN 11864-1 Form A (threaded hygienic connection) → ä 41
DIN 11864-2 Form A (flat flange with groove) → ä 42
ISO 2853 (threaded hygienic connection) → ä 43
SMS 1145 (threaded hygienic connection) → ä 44
VCO connections → ä 45
Process connection in US units
Flange connections ASME B16.5 → ä 46
Tri-Clamp → ä 48
SMS 1145 (Threaded hygienic connection) → ä 49
VCO connections → ä 50
Purge connections / secondary containment monitoring → ä 51
Rupture disk → ä 52
Page 25
Proline Promass 84F
Endress+Hauser 25
Transmitter compact version, powder coated die-cast aluminium field housing
a0003165
Dimensions in SI units
Dimensions in US units
!
Note! Dimensions for transmitters II2G/Zone 1 → ä 26.
DN A A* B C D E F G L di
8 227 207 187 168 160 75 266 341
1) 1)
15 227 207 187 168 160 75 266 341
1) 1)
25 227 207 187 168 160 75 266 341
1) 1)
40 227 207 187 168 160 105 271 376
1) 1)
50 227 207 187 168 160 141 283 424
1) 1)
80 227 207 187 168 160 200 305 505
1) 1)
100 227 207 187 168 160 254 324 578
1) 1)
150 227 207 187 168 160 378 362 740
1) 1)
250 227 207 187 168 160 548 390 938
1) 1)
* Blind version (without local display)
1)
dependent on respective process connection
All dimensions in [mm]
DN A A* B C D E F G L di
3/8" 8.94 8.15 7.68 6.61 6.30 2.95 10.5 13.4
1) 1)
½" 8.94 8.15 7.68 6.61 6.30 2.95 10.5 13.4
1) 1)
1" 8.94 8.15 7.68 6.61 6.30 2.95 10.5 13.4
1) 1)
1½" 8.94 8.15 7.68 6.61 6.30 4.13 10.7 14.8
1) 1)
2" 8.94 8.15 7.68 6.61 6.30 5.55 11.1 16.7
1) 1)
3" 8.94 8.15 7.68 6.61 6.30 7.87 12.0 19.9
1) 1)
4" 8.94 8.15 7.68 6.61 6.30 10.0 12.8 22.8
1) 1)
6" 8.94 8.15 7.68 6.61 6.30 14.9 14.3 29.1
1) 1)
10" 8.94 8.15 7.68 6.61 6.30 21.6 15.4 36.9
1) 1)
*Blind version (without local display)
1)
dependent on respective process connection
All dimensions in [inch]
Esc
E
-
+
AB
A* C
E
F
D
G
L
di
Page 26
Proline Promass 84F
26 Endress+Hauser
Transmitter compact version, stainless steel field housing
a0002245
Dimensions in SI and US units
Transmitter and remote field housing (II2G/zone 1)
a0002128
Dimensions in SI units
Dimensions in US units
A B C
[mm] [inch] [mm] [inch] [mm] [inch]
225 8.86 153 6.02 168 6.61
A A* B B* C D E F ∅ G H J K L M
265 242 240 217 206 186 178
8.6
(M8)
100 130 100 144 170 348
* Blind version (without display) All dimensions in [mm]
A A* B B* C D E F ∅ G H J K L M
10.4 9.53 9.45 8.54 8.11 7.32 7.01
0.34
(M8)
3.94 5.12 3.94 5.67 6.69 13.7
* Blind version (without display) All dimensions in [inch]
A
B
C
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t
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e
a
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a
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o
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v
r
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a
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p
a
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s
o
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s
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s
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K
e
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s
a
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a
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v
e
Nicht-eigensichere Stromkreisedurch
IP40-Abdeckunggeschützt
Non-intrinsicallysafe circuitsIp40 protected
Bouclesde courant
sanssécurité intrinsèque
protégéespar Ip40
B*
B
A*
A
F
G
D
C
H
J
K
L
M
E
Esc
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–
Page 27
Proline Promass 84F
Endress+Hauser 27
Transmitter wall-mount housing (non hazardous area and II3G/zone 2)
a0001150
Dimensions in SI units
Dimensions in US units
A B C D E F G H J
215 250 90.5 159.5 135 90 45 >50 81
K L M N O P Q R S
53 95 53 102 81.5 11.5 192 8 × M5 20
All dimensions in [mm]
A B C D E F G H J
8.46 9.84 3.56 6.27 5.31 3.54 1.77 >1.97 3.18
K L M N O P Q R S
2.08 3.74 2.08 4.01 3.20 0.45 7.55 8 × M5 0.79
All dimensions in [inch]
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D
C
B
A
F
E
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K
J
Q
N
L
O
R
H J
M
PP
SS
T
Page 28
Proline Promass 84F
28 Endress+Hauser
Connection housing remote version
a0002516
Dimensions in SI units
Dimensions in US units
DN A B C
8 118.5 137.5 113
15 118.5 137.5 113
25 118.5 137.5 113
40 118.5 137.5 118
50 118.5 137.5 130
80 118.5 137.5 152
100 118.5 137.5 171
150 118.5 137.5 209
250 118.5 137.5 237
All dimensions in [mm]
DN A B C
3/8" 4.67 5.41 4.52
½" 4.67 5.41 4.52
1" 4.67 5.41 4.52
1½" 4.67 5.41 4.72
2" 4.67 5.41 5.20
3" 4.67 5.41 6.08
4" 4.67 5.41 6.84
6" 4.67 5.41 8.36
10" 4.67 5.41 9.48
All dimensions in [inch]
B
C
A
Page 29
Proline Promass 84F
Endress+Hauser 29
Connection housing remote version, connection housing with an extended neck
!
Note! Use this version in case of insulation or application of heating jacket.
a0002517
Dimensions in SI and US units
A B C D E
[mm] [inch] [mm] [inch] [mm] [inch] [mm] [inch] [mm] [inch]
129 5.08 80 3.15 110 4.33 102 4.02 292 11.5
E
B
C
D
A
Page 30
Proline Promass 84F
30 Endress+Hauser
High-temperature version (compact)
a0002518
Dimensions in SI units
Dimensions in US units
DN A B C D E
25 187 168 100 350 450
50 187 168 141 365 506
80 187 168 200 385 585
All dimensions in [mm]
DN A B C D E
1" 7.36 6.61 3.94 13.78 17.72
2" 7.36 6.61 5.55 14.37 19.92
3" 7.36 6.61 7.87 15.16 23.03
All dimensions in [inch]
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Page 31
Proline Promass 84F
Endress+Hauser 31
High-temperature version (remote)
a0002519
Dimensions in SI units
Dimensions in US units
DN A B C D
25 129 292 105 397
50 129 307 141 448
80 129 327 200 527
All dimensions in [mm]
DN A B C D
1" 5.08 11.50 4.13 15.63
2" 5.08 12.09 5.55 17.64
3" 5.08 12.87 7.87 20.75
All dimensions in [inch]
A
B
C
D
Page 32
Proline Promass 84F
32 Endress+Hauser
Process connections in SI units
Flange connections EN (DIN), ASME B16.5, JIS
a0002501-ae
Flange connections EN (DIN)
Flange according to EN 1092-1 (DIN 2501 / DIN 2512N 1)) / PN 16: 1.4404/316L
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 μm
DN G L N S LK U di
100 220 1128 8 × Ø18 20 180 107.1 51.20
150 285 1330 8 × Ø22 22 240 159.3 68.90
250
2)
405 1780 12 × Ø26 26 355 260.4 102.26
1)
Flange with groove according to EN 1092-1 Form D (DIN 2512N) available
2)
Not available in Alloy
All dimensions in [mm]
Flange according to EN 1092-1 (DIN 2501 / DIN 2512N 1)) / PN 40: 1.4404/316L, Alloy C-22
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 μm
DN G L N S LK U di
8 95 370 4 × Ø14 16 65 17.3 5.35
15 95 404 4 × Ø14 16 65 17.3 8.30
25 115 440 4 × Ø14 18 85 28.5 12.00
40 150 550 4 × Ø18 18 110 43.1 17.60
50 165 715 4 × Ø18 20 125 54.5 26.00
80 200 840 8 × Ø18 24 160 82.5 40.50
100 235 1128 8 × Ø22 24 190 107.1 51.20
150 300 1370 8 × Ø26 28 250 159.3 68.90
250
2)
450 1850 12 × Ø33 38 385 258.8 102.26
1)
Flange with groove according to EN 1092-1 Form D (DIN 2512N) available
2)
Not available in Alloy
All dimensions in [mm]
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LK
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mm (inch)
+1.5 –2.0
L
(+0.06)* (–0.08)*
*DN 150…250: ±3.5
(6" …10": ±0.14)
Page 33
Proline Promass 84F
Endress+Hauser 33
Flange according to EN 1092-1 (DIN 2501) / PN 40 (with DN 25-Flanges): 1.4404/316L
Surface roughness (flange): EN 1092-1 Form B1 (DIN 2526 Form C), Ra 3.2 to 12.5 μm
DN G L N S LK U di
8 115 440 4 × Ø14 18 85 28.5 5.35
15 115 440 4 × Ø14 18 85 28.5 8.30
All dimensions in [mm]
Flange according to EN 1092-1 (DIN 2501 / DIN 2512N ) extension-reduction / PN 16: 1.4404/316L Only for nominal diameter DN 250 (on request)
Surface roughness (flange): Ra 0.8 to 3.2 μm
DN G L N S LK U di
150 285 1980 8 × Ø22 22 240 159.3 102.26
200 340 1940 12 × Ø22 24 295 207.3 102.26
300 460 1940 12 × Ø26 28 410 309.7 102.26
All dimensions in [mm]
Flange according to EN 1092-1 (DIN 2501 / DIN 2512N ) extension-reduction / PN 40: 1.4404/316L Only for nominal diameter DN 250 (on request)
Surface roughness (flange): Ra 0.8 to 3.2 μm
DN G L N S LK U di
150 300 1980 8 × Ø26 28 250 159.3 102.26
200 375 1940 12 × Ø30 34 320 206.5 102.26
300 515 1940 16 × Ø33 42 450 307.9 102.26
All dimensions in [mm]
Flange according to EN 1092-1 (DIN 2501 / DIN 2512N 1)) / PN 63: 1.4404/316L, Alloy C-22
Surface roughness (flange): EN 1092-1 Form B2 (DIN 2526 Form E), Ra 0.8 to 3.2 μm
DN G L N S LK U di
50 180 724 4 × Ø22 26 135 54.5 26.00
80 215 875 8 × Ø22 28 170 81.7 40.50
100 250 1128 8 × Ø26 30 200 106.3 51.20
150 345 1410 8 × Ø33 36 280 157.1 68.90
250
2)
470 1890 12 × Ø36 46 400 255.4 102.26
1)
Flange with groove according to EN 1092-1 Form D (DIN 2512N) available
2)
Not available in Alloy
All dimensions in [mm]
Page 34
Proline Promass 84F
34 Endress+Hauser
Flange EN 1092-1 (DIN 2501 / DIN 2512N 1)) / PN 100: 1.4404/316L, Alloy C-22
Surface roughness (flange): EN 1092-1 Form B2 (DIN 2526 Form E), Ra 0.8 to 3.2 μm
DN G L N S LK U di
8 105 400 4 × Ø14 20 75 17.3 5.35
15 105 420 4 × Ø14 20 75 17.3 8.30
25 140 470 4 × Ø18 24 100 28.5 12.00
40 170 590 4 × Ø22 26 125 42.5 17.60
50 195 740 4 × Ø26 28 145 53.9 26.00
80 230 885 8 × Ø26 32 180 80.9 40.50
100 265 1128 8 × Ø30 36 210 104.3 51.20
150 355 1450 12 × Ø33 44 290 154.0 68.90
1)
Flange with groove according to EN 1092-1 Form D (DIN 2512N) available
All dimensions in [mm]
Page 35
Proline Promass 84F
Endress+Hauser 35
Flange connections ASME B16.5
Flange according to ASME B16.5 / Cl 150: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
8 88.9 370.0 4 × Ø15.7 11.2 60.5 15.7 5.35
15 88.9 404.0 4 × Ø15.7 11.2 60.5 15.7 8.30
25 108.0 440.0 4 × Ø15.7 14.2 79.2 26.7 12.00
40 127.0 550.0 4 × Ø15.7 17.5 98.6 40.9 17.60
50 152.4 715.0 4 × Ø19.1 19.1 120.7 52.6 26.00
80 190.5 840.0 4 × Ø19.1 23.9 152.4 78.0 40.50
100 228.6 1128.0 8 × Ø19.1 23.9 190.5 102.4 51.20
150 279.4 1398.0 8 × Ø22.4 25.4 241.3 154.2 68.90
250
1)
406.4 1836.8 12 × Ø25.4 30.2 362.0 254.5 102.26
1)
Not available in Alloy
All dimensions in [mm]
Flange according to ASME B16.5 / Cl 300: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
8 95.2 370.0 4 × Ø15.7 14.2 66.5 15.7 5.35
15 95.2 404.0 4 × Ø15.7 14.2 66.5 15.7 8.30
25 123.9 440.0 4 × Ø19.0 17.5 88.9 26.7 12.00
40 155.4 550.0 4 × Ø22.3 20.6 114.3 40.9 17.60
50 165.1 715.0 8 × Ø19.0 22.3 127.0 52.6 26.00
80 209.5 840.0 8 × Ø22.3 28.4 168.1 78.0 40.50
100 254.0 1128.0 8 × Ø22.3 31.7 200.1 102.4 51.20
150 317.5 1417.0 12 × Ø22.3 36.5 269.7 154.2 68.90
250
1)
444.5 1868.2 16 × Ø28.4 47.4 387.3 254.5 102.26
1)
Not available in Alloy
All dimensions in [mm]
Page 36
Proline Promass 84F
36 Endress+Hauser
Flange according to ASME B16.5 / Cl 600: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
8 95.3 400.0 4 × Ø15.7 20.6 66.5 13.9 5.35
15 95.3 420.0 4 × Ø15.7 20.6 66.5 13.9 8.30
25 124.0 490.0 4 × Ø19.1 23.9 88.9 24.3 12.00
40 155.4 600.0 4 × Ø22.4 28.7 114.3 38.1 17.60
50 165.1 742.0 8 × Ø19.1 31.8 127.0 49.2 26.00
80 209.6 900.0 8 × Ø22.4 38.2 168.1 73.7 40.50
100 273.1 1158.0 8 × Ø25.4 48.4 215.9 97.3 51.20
150 355.6 1467.0 12 × Ø28.4 47.8 292.1 154.2 68.90
250
1)
508.0 1951.2 16 × Ø35.1 69.9 431.8 254.5 102.26
1)
Not available in Alloy
All dimensions in [mm]
Flange according to ASME B16.5 extension-reduction / Cl 150: 1.4404/316L Only for nominal diameter DN 250 /10" (on request)
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
150 279.4 1980 8 × Ø22.4 25.4 241.3 154.2 102.26
200 342.9 1940 8 × Ø22.4 28.4 298.5 202.7 102.26
300 482.6 1940 12 × Ø25.4 31.8 431.8 304.80 102.26
All dimensions in [mm]
Flange according to ASME B16.5 extension-reduction / Cl 300: 1.4404/316 Only for nominal diameter DN 250 /10" (on request)
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
150 317.5 1980 12 × Ø22.4 36.5 269.7 154.2 102.26
200 381.0 1940 12 × Ø25.4 41.1 330.2 202.7 102.26
300 520.7 1940 16 × Ø31.7 50.8 450.8 304.80 102.26
All dimensions in [mm]
Flange according to ASME B16.5 extension-reduction / Cl 600: 1.4404/316L Only for nominal diameter DN 250 /10" (on request)
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
150 355.6 1980 12 × Ø28.4 54.2 292.1 154.2 102.26
200 419.1 1940 12 × Ø31.8 62.0 349.3 202.7 102.26
All dimensions in [mm]
Page 37
Proline Promass 84F
Endress+Hauser 37
Flange connections JIS B2220
Flange JIS B2220 / 10K: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 1.6 to 3.2 μm
DN G L N S LK U di
50 155 715 4 × Ø19 16 120 50 26.00
80 185 832 8 × Ø19 18 150 80 40.50
100 210 1128 8 × Ø19 18 175 100 51.20
150 280 1354 8 × Ø23 22 240 150 68.90
250
1)
400 1780 12 × Ø25 24 355 250 102.26
1)
Not available in Alloy
All dimensions in [mm]
Flange JIS B2220 / 20K: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 1.6 to 3.2 μm
DN G L N S LK U di
8953704 × Ø151470155.35
15 95 404 4 × Ø15 14 70 15 8.30
25 125 440 4 × Ø19 16 90 25 12.00
40 140 550 4 × Ø19 18 105 40 17.60
50 155 715 8 × Ø19 18 120 50 26.00
80 200 832 8 × Ø23 22 160 80 40.50
100 225 1128 8 × Ø23 24 185 100 51.20
150 305 1386 12 × Ø25 28 260 150 68.90
250
1)
430 1850 12 × Ø27 34 380 250 102.26
1)
Not available in Alloy
All dimensions in [mm]
Flange JIS B2220 / 40K: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 1.6 to 3.2 μm
DN G L N S LK U di
8 115 400 4 × Ø19 20 80 15 5.35
15 115 425 4 × Ø19 20 80 15 8.30
25 130 485 4 × Ø19 22 95 25 12.00
40 160 600 4 × Ø23 24 120 38 17.60
50 165 760 8 × Ø19 26 130 50 26.00
80 210 890 8 × Ø23 32 170 75 40.50
100 250 1168 8 × Ø25 36 205 100 51.20
150 355 1498 12 × Ø33 44 295 150 68.90
All dimensions in [mm]
Page 38
Proline Promass 84F
38 Endress+Hauser
Flange JIS B2220 / 63K: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 1.6 to 3.2 μm
DN G L N S LK U di
8 120 420 4 × Ø19 23 85 12 5.35
15 120 440 4 × Ø19 23 85 12 8.30
25 140 494 4 × Ø23 27 100 22 12.00
40 175 620 4 × Ø25 32 130 35 17.60
50 185 775 8 × Ø23 34 145 48 26.00
80 230 915 8 × Ø25 40 185 73 40.50
100 270 1168 8 × Ø27 44 220 98 51.20
150 365 1528 12 × Ø33 54 305 146 68.90
All dimensions in [mm]
Flange JIS B2220 extension-reduction / 10K: 1.4404/316L Only for nominal diameter DN 250 (on request)
Surface roughness (flange): Ra 1.6 to 3.2 μm
DN G L N S LK U di
150 280 1980 8 × Ø23 22 240 150 102.26
200 330 1940 12 × Ø23 22 290 200 102.26
300 445 1940 16 × Ø25 24 400 300 102.26
All dimensions in [mm]
Flange JIS B2220 extension-reduction / 20K: 1.4404/316L Only for nominal diameter DN 250 (on request)
Surface roughness (flange): Ra 1.6 to 3.2 μm
DN G L N S LK U di
150 305 1980 12 × Ø25 28 260 150 102.26
200 350 1940 12 × Ø25 30 305 200 102.26
300 480 1940 16 × Ø27 36 430 300 102.26
All dimensions in [mm]
Page 39
Proline Promass 84F
Endress+Hauser 39
Tri-Clamp
a0002515-ae
Tri-Clamp: 1.4404/316L
DN Clamp G L U di
8 1" 50.4 367 22.1 5.35
15 1" 50.4 398 22.1 8.30
25 1" 50.4 434 22.1 12.00
40 1½" 50.4 560 34.8 17.60
50 2" 63.9 720 47.5 26.00
80 3" 90.9 900 72.9 40.50
100 4" 118.9 1128 97.4 51.20
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [mm]
½"-Tri-Clamp: 1.4404/316L
DN Clamp G L U di
8½"25.03679.55.35
15 ½" 25.0 398 9.5 8.30
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [mm]
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mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 40
Proline Promass 84F
40 Endress+Hauser
DIN 11851 (threaded hygienic connection)
a0002520-ae
Threaded hygienic connection DIN 11851: 1.4404/316L
DN G L U di
8 Rd 34 × 1/8" 367 16 5.35
15 Rd 34 × 1/8" 398 16 8.30
25 Rd 52 × 1/6" 434 26 12.00
40 Rd 65 × 1/6" 560 38 17.60
50 Rd 78 × 1/6" 720 50 26.00
80 Rd 110 × 1/4" 900 81 40.50
100 Rd 130 × 1/4" 1128 100 51.20
3A version also available (Ra ≤ 0.8 μm/150 grit) All dimensions in [mm]
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di
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 41
Proline Promass 84F
Endress+Hauser 41
DIN 11864-1 Form A (threaded hygienic connection)
a0002521-ae
Threaded hygienic connection DIN 11864-1 Form A: 1.4404/316L
DN G L U di
8 Rd 28 × 1/8" 367 10 5.35
15 Rd 34 × 1/8" 398 16 8.30
25 Rd 52 × 1/6" 434 26 12.00
40 Rd 65 × 1/6" 560 38 17.60
50 Rd 78 × 1/6" 720 50 26.00
80 Rd 110 × 1/4" 900 81 40.50
100 Rd 130 × 1/4" 1128 100 51.20
3A version also available (Ra ≤ 0.8 μm/150 grit) All dimensions in [mm]
Esc
E
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di
G
U
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 42
Proline Promass 84F
42 Endress+Hauser
DIN 11864-2 Form A (flat flange with groove)
a0002522-ae
Detail A: The flange has the smaller groove for the O-ring on the sensor side. When mounting the sensor the corresponding flange must have accordingly a larger groove.
G
N
S
LK
U
Esc
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di
+1.5 –2.0
L
(+0.06) (–0.08)
A
A
mm (inch)
DIN 11864-2 Form A (flat flange with groove): 1.4404/316L
DN G L N S LK U di
8 54 387 4 × Ø9 10 37 10 5.35
15 59 418 4 × Ø9 10 42 16 8.30
25 70 454 4 × Ø9 10 53 26 12.00
40 82 560 4 × Ø9 10 65 38 17.60
50 94 720 4 × Ø9 10 77 50 26.00
80 133 900 8 × Ø11 12 112 81 40.50
100 159 1128 8 × Ø11 14 137 100 51.20
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [mm]
Page 43
Proline Promass 84F
Endress+Hauser 43
ISO 2853 (threaded hygienic connection)
a0002523-ae
Threaded hygienic connection ISO 2853: 1.4404/316L
DN G
1)
L N di
8 37.13 367 22.6 5.35
15 37.13 398 22.6 8.30
25 37.13 434 22.6 12.00
40 52.68 560 35.6 17.60
50 64.16 720 48.6 26.00
80 91.19 900 72.9 40.50
100 118.21 1128 97.6 51.20
1)
Max. thread diameter to ISO 2853 Annex A 3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [mm]
Esc
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di
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 44
Proline Promass 84F
44 Endress+Hauser
SMS 1145 (threaded hygienic connection)
a0002524-ae
Threaded hygienic connections SMS 1145: 1.4404/316L
DN G L U di
8 Rd 40 x 1/6" 367 22.6 5.35
15 Rd 40 x 1/6" 398 22.6 8.30
25 Rd 40 x 1/6" 434 22.6 12.00
40 Rd 60 x 1/6" 560 35.6 17.60
50 Rd 70 x 1/6" 720 48.6 26.00
80 Rd 98 x 1/6" 900 72.9 40.50
100 Rd 132 x 1/6" 1128 97.6 51.20
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [mm]
Esc
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+
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U
di
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 45
Proline Promass 84F
Endress+Hauser 45
VCO connections
a0004552-ae
8-VCO-4 (½"): 1.4404/316L
DN G L U di
8 AF 1" 390 10.2 5.35
All dimensions in [mm]
12-VCO-4 (¾"): 1.4404/316L
DN G L
1)
U di
15 AF 1½" 430 15,7 8,30
All dimensions in [mm]
di
G
U
Esc
E
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+
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 46
Proline Promass 84F
46 Endress+Hauser
Process connections in US units
Flange connections ASME B16.5
a0002501-ae
Flange according to ASME B16.5 / Cl 150: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
3/8" 3.50 14.6 4 × Ø 0.62 0.44 2.38 0.62 0.21
½" 3.50 15.9 4 × Ø 0.62 0.44 2.38 0.62 0.33
1" 4.25 17.3 4 × Ø 0.62 0.56 3.12 1.05 0.47
1½" 5.00 21.7 4 × Ø 0.62 0.69 3.88 1.61 0.69
2" 6.00 28.1 4 × Ø 0.75 0.75 4.75 2.07 1.02
3" 7.50 33.1 4 × Ø 0.75 0.94 6.00 3.07 1.59
4" 9.00 44.4 8 × Ø 0.75 0.94 7.50 4.03 2.01
6" 11.0 55.0 8 × Ø 0.88 0.99 9.50 6.07 2.71
10"
1)
16.0 72.3 12 × Ø 1.0 1.19 14.25 10.0 4.03
1)
Not available in Alloy
All dimensions in [inch]
Flange according to ASME B16.5 / Cl 300: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
3/8" 3.75 14.57 4 × Ø0.62 0.56 2.62 0.62 0.21
½" 3.75 15.91 4 × Ø0.62 0.56 2.62 0.62 0.33
1" 4.88 17.32 4 × Ø0.75 0.69 3.50 1.05 0.47
1½" 6.12 21.65 4 × Ø0.88 0.81 4.50 1.61 0.69
2" 6.50 28.15 8 × Ø0.75 0.88 5.00 2.07 1.02
3" 8.25 33.07 8 × Ø0.88 1.12 6.62 3.07 1.59
4" 10.00 44.41 8 × Ø0.88 1.25 7.88 4.03 2.02
6" 12.50 55.79 12 × Ø0.88 1.44 10.62 6.07 2.71
10"
1)
17.50 73.55 16 × Ø1.12 1.87 15.25 10.02 4.03
1)
Not available in Alloy
All dimensions in [inch]
Esc
E
-
+
S
di
N
G
LK
U
mm (inch)
+1.5 –2.0
L
(+0.06)* (–0.08)*
*DN 150…250: ±3.5
(6" …10": ±0.14)
Page 47
Proline Promass 84F
Endress+Hauser 47
Flange according to ASME B16.5 / Cl 600: 1.4404/316L, Alloy C-22
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
3/8" 3.75 15.75 4 × Ø0.62 0.81 2.62 0.55 0.21
½" 3.75 16.54 4 × Ø0.62 0.81 2.62 0.55 0.33
1" 4.88 19.29 4 × Ø0.75 0.94 3.50 0.96 0.47
1½" 6.12 23.62 4 × Ø0.88 1.13 4.50 1.50 0.69
2" 6.50 29.21 8 × Ø0.75 1.25 5.00 1.94 1.02
3" 8.25 35.43 8 × Ø0.88 1.50 6.62 2.90 1.59
4" 10.75 45.59 8 × Ø1.00 1.91 8.50 3.83 2.02
6" 14.00 57.76 12 × Ø1.12 1.88 11.50 6.07 2.71
10"
1)
20.00 76.82 16 × Ø1.38 2.75 17.00 10.02 4.03
1)
Not available in Alloy All dimensions in [inch]
Flange according to ASME B16.5 extension-reduction / Cl 150: 1.4404/316L Only for nominal diameter DN 250 /10" (on request)
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
6" 11.00 77.95 8 × Ø22.4 1.00 9.50 6.07 4.03
8" 13.50 76.38 8 × Ø22.4 1.12 11.75 7.98 4.03
12" 19.00 76.38 12 × Ø25.4 1.25 17.00 12.00 4.03
All dimensions in [inch]
Flange according to ASME B16.5 extension-reduction / Cl 300: 1.4404/316 Only for nominal diameter DN 250 /10" (on request)
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
6" 12.5 78.0 12 × Ø 0.88 1.44 10.6 6.07 4.03
8" 15.0 76.4 12 × Ø 1.00 1.62 13.0 7.98 4.03
12" 20.5 76.4 16 × Ø 1.25 2.00 17.7 12.0 4.03
All dimensions in [inch]
Flange according to ASME B16.5 extension-reduction / Cl 600: 1.4404/316L Only for nominal diameter DN 250 /10" (on request)
Surface roughness (flange): Ra 3.2 to 6.3 μm
DN G L N S LK U di
6" 14.0 78.0 12 × Ø 1.12 2.13 11.5 6.07 4.03
8" 16.5 76.4 12 × Ø 1.25 2.44 13.7 7.98 4.03
All dimensions in [inch]
Page 48
Proline Promass 84F
48 Endress+Hauser
Tri-Clamp
a0002515-ae
Tri-Clamp: 1.4404/316L
DN Clamp G L U di
3/8" 1" 1.98 14.4 0.87 0.21
½" 1" 1.98 15.7 0.87 0.33
1" 1" 1.98 17.1 0.87 0.47
1½" 1½" 1.98 22.0 1.37 0.69
2" 2" 2.52 28.3 1.87 1.02
3" 3" 3.58 35.4 2.87 1.59
4" 4" 4.68 44.4 3.83 2.01
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [inch]
½"-Tri-Clamp: 1.4404/316L
DN Clamp G L U di
3/8" ½" 0.98 14.4 0.37 0.21
½" ½" 0.98 15.7 0.37 0.33
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [inch]
Esc
E
-
+
G
U
di
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 49
Proline Promass 84F
Endress+Hauser 49
SMS 1145 (Threaded hygienic connection)
a0002524-ae
Threaded hygienic connection SMS 1145: 1.4404/316L
DN G L U di
3/8" Rd 40 × 1/6" 14.68 0.904 0.214
½" Rd 40 × 1/6" 15.92 0.904 0.332
1" Rd 40 × 1/6" 17.36 0.904 0.480
1½" Rd 60 × 1/6" 22.40 1.424 0.704
2" Rd 70 × 1/6" 28.80 1.944 0.104
3" Rd 98 × 1/6" 36.00 2.916 1.620
4" Rd 132 × 1/6" 45.12 3.904 2.048
3A version also available (Ra ≤ 0.8 μm/150 grit, Option: Ra ≤ 0.4 μm/240 grit) All dimensions in [inch]
Esc
E
-
+
G
U
di
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 50
Proline Promass 84F
50 Endress+Hauser
VCO connections
a0004552-ae
8-VCO-4 (½"): 1.4404/316L
DN G L U di
3/8" AF 1" 15.35 0.40 0.21
All dimensions in [inch]
12-VCO-4 (¾"): 1.4404/316L
DN G L
1)
U di
½" AF 1½" 16.93 0.62 0.33
All dimensions in [inch]
di
G
U
Esc
E
-
+
mm (inch)
+1.5 –2.0
L
(+0.06) (–0.08)
Page 51
Proline Promass 84F
Endress+Hauser 51
Purge connections / secondary containment monitoring
"
Caution!
• The secondary containment is filled with dry nitrogen (N
2
). Do not open the purge connections unless the containment can be filled immediately with a dry inert gas. Use only low gauge pressure to purge. Maximum pressure: 5 bar (72.5 psi).
• Purge connections or secondary containment monitioring can not be combined with separately available heating jacket.
Dimensions (not available for the Promass F high-temperature version)
a0002537
DN 8 to DN 150 (3/8" to 6")
a0009734
DN 250 (10")
L
G
H
4
5
°
DN G H L
[mm] [inch] [mm] [inch] [mm] [inch]
8 3/8" ½"-NPT 62 2.44 216 8.50
15 ½" ½"-NPT 62 2.44 220 8.66
25 1" ½"-NPT 62 2.44 260 10.24
40 1½" ½"-NPT 67 2.64 310 12.20
50 2" ½"-NPT 79 3.11 452 17.78
80 3" ½"-NPT 101 3.98 560 22.0
100 4" ½"-NPT 120 4.72 684 27.0
150 6" ½"-NPT 141 5.55 880 34.6
HL
G
DN G H L
[mm] [inch] [mm] [inch] [mm] [inch]
250 10" ½"-NPT 182 7.17 380 14.96
Page 52
Proline Promass 84F
52 Endress+Hauser
Rupture disk
Sensor housings with integrated rupture disks are optionally available.
#
Warning!
• Make sure that the function and operation of the rupture disk is not impeded through the installation. Triggering overpressure in the housing as stated on the indication label. Take adequate precautions to ensure that no damage occurs, and risk to human life is ruled out, if the rupture disk is triggered. Rupture disk: Burst pressure 10 to 15 bar (145 to 217 psi).
• Please note that the housing can no longer assume a secondary containment function if a rupture disk is used.
• It is not permitted to open the connections or remove the rupture disk.
"
Caution!
• Rupture disks can not be combined with separately available heating jacket.
• The existing connection nozzles are not designed for a rinse or pressure monitoring function.
!
Note!
• Before commissioning, please remove the transport protection of the rupture disk.
• Please note the indication labels.
A0008361
DN 8 to DN 150 (3/8" to 6")
1 Indication label for the rupture disk 2 ½" NPT internal screw thread with 1" width across flat 3 Transport protection
L
H
4
5
°
F
G
E
Z
Z
1
2
3
RUPTURE DISK
12,5 BAR +/-10%@80°C
i
DN E
F G
H L
[mm] [inch] [mm] [inch] [mm] [inch] [mm] [inch]
8 3/8" ca. 42 ca. 1.65 AF 1" ½"-NPT 62 2.44 216 8.50
15 ½" ca. 42 ca. 1.65 AF 1" ½"-NPT 62 2.44 220 8.66
25 1" ca. 42 ca. 1.65 AF 1" ½"-NPT 62 2.44 260 10.24
40 1½" ca. 42 ca. 1.65 AF 1" ½"-NPT 67 2.64 310 12.20
50 2" ca. 42 ca. 1.65 AF 1" ½"-NPT 79 3.11 452 17.78
80 3" ca. 42 ca. 1.65 AF 1" ½"-NPT 101 3.98 560 22.0
100 4" ca. 42 ca. 1.65 AF 1" ½"-NPT 120 4.72 684 27.0
150 6" ca. 42 ca. 1.65 AF 1" ½"-NPT 141 5.55 880 34.6
Page 53
Proline Promass 84F
Endress+Hauser 53
A0009733
DN 250 (10")
1 Indication label for the rupture disk 2 ½" NPT internal screw thread with 1" width across flat 3 Transport protection
H
G
F
1
RUPTURE DISK
12,5 BAR +/-10%@80°C
i
E
2
3
L
DN E
F G
H L
[mm] [inch] [mm] [inch] [mm] [inch] [mm] [inch]
250 10" ca. 42 ca. 1.65 AF 1" ½"-NPT 182 7.17 380 14.96
Page 54
Proline Promass 84F
54 Endress+Hauser
Weight • Compact version: see table below
• Remote version – Sensor: see table below – Wall-mount housing: 5 kg (11 lbs)
Weight information in SI units
Weight information in US
DN [mm] 8 15 25 40 50 80 100 150 250
1)
Compact version 11121419305596154400
High-temperature compact version – – 14.7 – 30.7 55.7 – – –
Compact version Ex d 202123283964105163409
Remote version 9 10 12 17 28 53 94 152 398
High-temperature remote version – – 13.5 – 29.5 54.5 – – –
1)
With 10" according to ASME B16.5 Cl 300 flanges All values (weight) refer to devices with EN/DIN PN 40 flanges. Weight information in [kg].
DN [inch] 3/8" ½" 1" 1½" 2" 3" 4" 6" 10"
1)
Compact version 2426314266121212339882
High-temperature compact version – – 32 – 68 123 – – –
Compact version Ex d 44 46 51 62 86 141 232 359 902
Remote version 2022263762117207335877
High-temperature remote version – – 29 – 65 120 – – –
1)
With 10" according to ASME B16.5 Cl 300 flanges All values (weight) refer to devices with EN/DIN PN 40 flanges. Weight information in [lbs].
Page 55
Proline Promass 84F
Endress+Hauser 55
Material Transmitter housing
Compact version
• Compact version: powder coated die-cast aluminium
• Stainless steel housing: stainless steel 1.4301/ASTM 304
• Window material: glass or polycarbonate
Remote version
• Remote field housing: powder coated die-cast aluminium
• Wall-mount housing: powder coated die-cast aluminium
• Window material: glass
Sensor housing / containment
• Acid and alkali-resistant outer surface
• Stainless steel 1.4301/1.4307/304L
Connection housing, sensor (remote version)
• Stainless steel 1.4301/304 (standard)
• Powder coated die-cast aluminium (high-temperature version and version for heating)
Process connections
• Stainless steel 1.4404/316L – Flanges according to EN 1092-1 (DIN 2501) / according to ASME B16.5 / JIS B2220 – DIN 11864-2 Form A (flat flange with groove) – Threaded hygienic connection:
– DIN 11851 – SMS 1145 – ISO 2853
– DIN 11864-1 Form A –Tri-Clamp (OD-Tubes) – VCO connections
• Alloy C-22 2.4602/N 06022 Flanges according to EN 1092-1 (DIN 2501) / according to ASME B16.5 / JIS B2220
High-temperature version
• Stainless steel 1.4404/316L Flanges according to EN 1092-1 (DIN 2501) / according to ASME B16.5 / JIS B2220
• Alloy C-22 2.4602/N 06022 Flanges according to EN 1092-1 (DIN 2501) / according to ASME B16.5 / JIS B2220
Measuring tubes
• DN 8 to 100 (3/8" to 4"): Stainless steel 1.4539/904L; manifold: 1.4404/316L
• DN 150 (6"): Stainless steel 1.4404/316L
• DN 250 (10"): Stainless steel 1.4404/316L; manifold: CF3M
• DN 8 to 150 (3/8" to 6"): Alloy C-22 2.4602/N 06022
High-temperature version
DN 25, 50, 80: Alloy C-22 2.4602/N 06022
Page 56
Proline Promass 84F
56 Endress+Hauser
Material load diagram
#
Warning! The following material load curves refer to the entire sensor and not just the process connection.
Flange connection according to EN 1092-1 (DIN 2501)
Flange material: 1.4404/316L, Alloy C-22
a0004654-ae
The values for the temperature range from +200 °C to +350 °C (+392 °F to +662 °F) are exclusively valid for the high­temperature version.
Flange connection according to ASME B16.5
Flange material: 1.4404/316L, Alloy C-22
a0004655-ae
The values for the temperature range from +200 °C to +350 °C (+392 °F to +662 °F) are exclusively valid for high­temperature version.
PN40
PN16
PN100
PN63
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
220 240 260 280 300 320 340
[°C]
0
10
20
30
40
50
70 60
80
90
100
[bar]
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
440 480 520 560 600 640
300
400
500
700 600
200 100
0
800
900
1100 1000
1200
1300
1400
1500
[psi]
1.4404/316L,Class 300
1.4404/316L,Class 150
AlloyC-22,Class 300
AlloyC-22,Class 150
1.4404/316L,Class 600
[°C]
0
10
20
30
40
50
70 60
80
90
100
[bar]
AlloyC-22,Class 600
[°F]
300
400
500
700 600
200 100
0
800
900
1100 1000
1200
1300
1400
1500
[psi]
-40
0
-80
40 80 120 160 200 240 280 320 360 400 440 480 520 560 600 640
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
220 240 260 280 300 320 340
Page 57
Proline Promass 84F
Endress+Hauser 57
Flange connection to JIS B2220
Flange material: 1.4404/316L, Alloy C-22
a0004656-ae
The values for the temperature range from +200 °C to +350 °C (+392 °F to +662 °F) are exclusively valid for high­temperature version.
Process connection to DIN 11851
Connection material: 1.4404/316L
A0012479
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.
Process connection to SMS 1145
Connection material: 1.4404/316L
A0013056
SMS 1145 allows for applications up to 6 bar (87 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.
0
10
20
30
40
50
70 60
[bar]
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
[°C]
63K
10K
40K
20K
220 240 260 280 300 320 340
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
440 480 520 560 600 640
300
400
500
700 600
200 100
0
800
900
1000
[psi]
0
10
20
30
40
50
DN8…40
DN50…100
[bar]
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
[°C]
DN150…250
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
300
400
500
700 600
200 100
0
[psi]
0
10
20
30
PN16
[bar]
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
[°C]
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
300
400
500
200 100
0
[psi]
Page 58
Proline Promass 84F
58 Endress+Hauser
Tri-Clamp process connection
The Clamp connections are suited up to a maximum pressure of 16 bar (232 psi). Please observe the operating limits of the clamp and seal used as they could be under 16 bar (232 psi). The clamp and the seal are not included in the scope of supply.
Threaded hygienic connection to DIN 11864-1 Form A
Connection material: 1.4404/316L
a0004658-ae
Flange connection to DIN 11864-2 Form A (flat flange with groove)
Flange material: 1.4404/316L
a0004659-ae
Threaded hygienic connection to ISO 2853
Connection material: 1.4404/316L
a0004660-ae
0
10
20
30
40
50
DN 8...40
DN 50...100
[bar]
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
[°C]
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
300
400
500
700 600
200 100
0
[psi]
0
10
20
30
40
DN 8...40
DN 50...100
[bar]
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
[°C]
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
300
400
500
600
200 100
0
[psi]
0
10
20
30
[bar]
-60
-40
-20
020
40 60 80 100 120 140
180
200
160
[°C]
-40
0
-80
40 80 120 160 200 240 280 320 360 400
[°F]
300
400
200 100
0
[psi]
Page 59
Proline Promass 84F
Endress+Hauser 59
VCO process connection
Connection material: 1.4404/316L
a0004553-ae
Process connections • Flanges according to EN 1092-1 (DIN 2501), according to ASME B16.5, JIS B2220, VCO connections
• Sanitary connections: Tri-Clamp, threaded hygienic connections (DIN 11851, SMS 1145, ISO 2853, DIN 11864-1 Form A), flange to DIN 11864-2 Form A (flat flange with groove)
Human interface
Display elements • Liquid crystal display: illuminated, four lines with 16 characters per line
• Selectable display of different measured values and status variables
• At ambient temperatures below –20 °C (–4 °F) the readability of the display may be impaired.
Operating elements • Local operation with three optical sensors (S, O, F)
• Application specific Quick Setup menus for straightforward commissioning
Language groups Language groups available for operation in different countries:
• Western Europe and America (WEA): English, German, Spanish, Italian, French, Dutch and Portuguese
• Eastern Europe and Scandinavia (EES): English, Russian, Polish, Norwegian, Finnish, Swedish and Czech
• South and east Asia (SEA): English, Japanese, Indonesian
• China (CIN): English, Chinese
You can change the language group via the operating program "FieldCare".
Remote operation Operation via HART, MODBUS RS485
70
80
90
100
PN100
[bar]
-60
-40
-20
020
40 60 80 100 120 140 180 200160
[°C]
[psi]
1000
1100
1200
1300
1400
1500
[°F]
200
0-40
80 120
160
240 280
40 360
320
400-80
Page 60
Proline Promass 84F
60 Endress+Hauser
Certificates and approvals
CE mark The measuring system is in conformity with the statutory requirements of the EC Directives.
Endress+Hauser confirms successful testing of the device by affixing to it the CE mark.
C-tick mark The measuring system meets the EMC requirements of the Australian Communication and
Media Authority (ACMA).
Ex approval Information about currently available Ex versions (ATEX, FM, CSA, IECEx, NEPSI) can be supplied by your
Endress+Hauser Sales Centre on request. All explosion protection data are given in a separate documentation which is available upon request.
Sanitary compatibility • 3A approval
•EHEDG tested
MODBUS RS485 certification The measuring device meets all the requirements of the MODBUS/TCP conformity and integration test and
has the "MODBUS/TCP Conformance Test Policy, Version 2.0". The measuring device has successfully passed all the test procedures carried out and is certified by the "MODBUS/TCP Conformance Test Laboratory" of the University of Michigan.
Other standards and guidelines
• EN 60529 Degrees of protection by housing (IP code)
• EN 61010-1 Protection Measures for Electrical Equipment for Measurement, Control, Regulation and Laboratory Procedures.
• 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 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
Pressure device approval Flowmeters with a nominal diameter smaller or equal DN 25 are covered by Art. 3(3) of the European
directive 97/23/EC (Pressure Equipment Directive) and are designed according to sound engineer practice. For larger nominal diameters, optional approvals according to Cat. II/III are available when required (depends on fluid and process pressure).
Optionally flowmeters in accordance to the guidelines AD 2000 are available on request.
Measuring Instruments Directive
Measuring Instruments Directive 2004/22/EG (MID)
Annex MI-002 (gas meter)
The measuring device is approved as gas meter for use under legal control (in commercial transactions) acc. the European Measuring Instruments Directive, Annex MI-002 (DE-08-MI002-PTB014).
Annex MI-005 (liquids other than water)
• This flowmeter which is a suitable component in measuring systems subject to legal metrology controls in accordance with Annex MI-005 of the European Measuring Instruments Directive 2004/22/EC (MID) Note: According to the Measuring Instruments Directive, however, only the complete measuring system is licensable, covered by an EC type-examination certificate and bears conformity marking.
• This flowmeter is qualified to OIML R117-1 and has an MID Evaluation Certificate (1) which confirms compliance with the essential requirements of the Measuring Instruments Directive. The Evaluation Certificate results from the WELMEC (cooperation between the legal metrology services of the member states of the European Union and EFTA) towards voluntary modular approval for measuring systems in accordance with Annex MI-005 (measuring systems for the continuous and dynamic measurement of quantities of liquids other than water) of the Measuring Instruments Directive 2004/22/ EC.
Page 61
Proline Promass 84F
Endress+Hauser 61
Approval for custody transfer Promass 84 is a flowmeter suitable for custody transfer measurement for liquids (other than water) and
for fuel gases under high pressure (> 100 bar (> 1450 psi)). The requirements of the following test centres are taken into consideration:
•PTB, Germany
• NMi, The Netherlands
• METAS, Switzerland
•BEV, Austria
• NTEP, USA
• MC, Canada
Information on custody transfer measurement → ä 22
Suitability for custody transfer measurement
PTB/METAS/BEV approval
PTB, METAS and BEV approval for determining the mass and volume of liquids, other than water, and of fuel gases.
MID approval, Annex MI-002 (gas meter)
The device is qualified to OIML R137/D11.
MID approval, Annex MI-005 (liquids other than water)
The device is qualified to OIML R117-1.
NTEP approval
The measuring instrument is qualified in accordance with the National Type Evaluation Program (NTEP) Handbook 44 ("Specifications and Tolerances and other Technical Requirements for Weighing and Measuring Devices").
MC approval
The measuring instrument is qualified in accordance with "The Draft Ministerial Specifications ­Mass Flow Meters" (1993-09-21).
Sensor DN PTB /METAS /BEV approval
For liquids other than water High pressure gas
Promass [mm] [inch] Mass Volume Density (CNG) Mass
F 8 to 250 3/8" to 10" YES YES YES NO
Sensor DN MID Type Examination Certificate MI-002 (Europe)
Fuel gases up to 100 bar (1450 psi)
Promass [mm] [inch] Mass Volume Density
F8 to 2503/8" to 10"YES YES* NO
* at pure gases only (invariable gas density)
Sensor DN OIML R117-1/MID Evaluation Certificate (Europe)
Liquids other than water
Promass [mm] [inch] Mass Volume Density
F8 to 2503/8" to 10"YES YES YES
Sensor DN NTEP approval
Liquids other than water High-pressure gas
Promass [mm] [inch] Mass Volume (CNG) Mass
F 15 to 150 ½" to 6" YES YES NO
Sensor DN MC approval
Liquids other than water
Promass [mm] [inch] Mass Volume
F8 to 1503/8" to 6" YES YES
Page 62
Proline Promass 84F
62 Endress+Hauser
Ordering Information
The Endress +Hauser service organization can provide detailed ordering information and information on the order codes upon request.
Accessories
Various accessories, which can be ordered separately from Endress+Hauser, are available for the transmitter and the sensor.
Documentation
• Flow measuring technology (FA005D)
• Technical Information – Promass 84A (TI068D) – Promass 84M (TI104D)
• Operating Instructions/Description of Device Functions – Promass 84 (BA109D/BA110D) – Promass 84 MODBUS (BA129D/BA130D)
• Supplementary documentation on Ex-ratings: ATEX, FM, CSA, IECEx, NEPSI
Registered trademarks
KALREZ® and VITON
®
Registered trademarks of E.I. Du Pont de Nemours & Co., Wilmington, USA
TRI-CLAMP
®
Registered trademark of Ladish & Co., Inc., Kenosha, USA
SWAGELOK
®
Registered trademark of Swagelok & Co., Solon, USA
HART
®
Registered trademark of HART Communication Foundation, Austin, USA
MODBUS
®
Registered trademark of the MODBUS Organization
HistoROM™, S-DAT
®
, T-DAT™, F-CHIP®, FieldCare®, Fieldcheck®, Applicator
®
Registered or registration-pending trademarks of Endress+Hauser Flowtec AG, Reinach, CH
Page 63
Proline Promass 84F
Endress+Hauser 63
Page 64
Instruments International
Endress+Hauser Instruments International AG Kaegenstrasse 2 4153 Reinach Switzerland
Tel. +41 61 715 81 00 Fax +41 61 715 25 00 www.endress.com [email protected]
TI103D/06/en/02.10 71109108 FM+SGML6.0 ProMoD
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