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Endress+Hauser Proline Promag 53H User Manual

Endress+Hauser Proline Promag 53H
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TI048D/06/en/05.10
71114592
Technical Information
Proline Promag 50H, 53H
Electromagnetic Flow Measuring System
Flow measurement of liquids in
hygienic, food or process applications
Application
Electromagnetic flowmeter for bidirectional
measurement of liquids with a minimum
conductivity of 5 μS/cm:
Beverages, e.g. fruit juice, beer, wine
Dairy products, fruit juice mixes
Saline solutions
Acid, alkalis etc.
Flow measurement up to 4700 dm³/min
(1250 gal/min)
Fluid temperature up to +150 °C (+302 °F)
Process pressures up to 40 bar (580 psi)
CIP-/SIP cleaning
Stainless steel housing
Approvals in food sector/hygiene sector:
3A approval, EHEDG-tested, conform to FDA,
USP Class VI
Application-specific lining material:
•PFA
Approvals for hazardous area:
ATEX, FM, CSA, TIIS
Connection to process control system:
HART, PROFIBUS DP/PA, FOUNDATION Fieldbus,
MODBUS RS485
Your benefits
Promag measuring devices offer you cost-effective flow
measurement with a high degree of accuracy for a wide
range of process conditions.
The uniform Proline transmitter concept comprises:
Modular device and operating concept resulting in a
higher degree of efficiency
Software options for batching, electrode cleaning and
pulsating flow
Uniform operating concept
The tried-and-tested Promag sensors offer:
No pressure loss
Not sensitive to vibrations
Simple installation and commissioning

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Endress+Hauser Proline Promag 53H Specifications

General IconGeneral
Device TypeElectromagnetic Flowmeter
Measuring PrincipleFaraday's law of electromagnetic induction
Housing MaterialAluminum, stainless steel
Nominal DiameterDN 15 to DN 600
Process Temperature-40 to +150 °C
Process PressureUp to 40 bar (depending on nominal diameter)
Output Signal4 to 20 mA HART, pulse/frequency/switch output
Digital CommunicationHART, PROFIBUS PA, FOUNDATION Fieldbus
Power Supply24 V DC
MaterialStainless steel
Lining MaterialPTFE
Electrode Material316L, Hastelloy
Degree of ProtectionIP67
Accuracy±0.2% of measured value ±1 mm/s

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