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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

Table of Contents

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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

Summary

Function and system design

Measuring principle

Explains Faraday's law for flow measurement.

Measuring system

Describes transmitter and sensor configurations.

Input

Measured variable and ranges

Flow velocity and typical measurement ranges.

Input signal

Details for status and current inputs.

Output

Output signal types

Current, pulse, frequency, and digital outputs.

Power supply

Electrical connection, measuring unit

Wiring diagrams for transmitter connection.

Electrical connection, remote version

Cable and supply specifications

Details on cable entry, supply voltage, and cable types.

Performance characteristics

Operating conditions and error limits

Specifies conditions, max error, and repeatability.

Operating conditions: Installations

Operating conditions: Environment

Operating conditions: Process

Temperature, conductivity, and pressure

Key process fluid properties and limits.

Mechanical construction

Design and dimensions

General physical dimensions of the transmitter.

Weight

Human interface

Certificates and approvals

Ordering information

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