Overview

SITRANS F M electromagnetic flowmeter is designed to measure the flow of conductive media.

complete SITRANS F M series includes three different types of flow meters, covering all applications where electromagnetic flow meters are used, so that Siemens can uniquely meet specific applications:

Modular DC Pulse Flow Metercovers all common applications in all industries. The wide variety of components and models in the modular system make it suitable for different measurement tasks.

SITRANS F M Products

battery-powered water meter(fully electronic) is ideal for potable water applications such as network water distribution, billing and irrigation where power is not available. In addition, it complies with MID (EU) and OIML R49 water meter standards and has been certified by MCERTS.

SITRANS F M MAG 8000

High power flow metercan be used in demanding applications where other flow meters are not up to the task. The flow meter can handle liquids and slurries in the mining, cement and pulp and paper industries.

SITRANS F M 911/TRANSMAG 2

advantage

better flexibility

  • product series comprehensive
  • Can be used with the same transmitter and sensor for one-piece or split installation
  • USMII communication platform for easy integration with all systems

MAG 5000, 6000, 6000 I are easy to debug

All SITRANS F M DC pulse electromagnetic flowmeters are equipped with a SENSORPROM memory chip. Sensor calibration data and transmitter settings are always stored on the chip.

When debugging, no initialization programming is required.

factory settings that match the sensor are stored in the SENSORPROM chip, and some of the user's own settings are automatically downloaded to the chip SENSORPROM. When replacing the transmitter, the new transmitter can directly read the previous data in the SENSORPROM to measure, do not need to reset.

In addition, during the initial sensor calibration, the "signature" used to interface with the SITRANS F M calibrator is also stored.

easy maintenance

When replacing the transmitter, there is no need to reset. After initialization, the SENSONRPROM automatically updates all settings.

Expansion Space

has USM II "plug and play" universal signal module, which makes the flowmeter easy to connect with other buses or integrate into other systems, thus ensuring that the flowmeter can be easily upgraded to a higher-level communication/bus platform.

Application

electromagnetic flowmeter is suitable for measuring the flow of almost all conductive liquids, viscous materials and slurries.

prerequisite is that the medium must have a very low conductivity. The temperature, pressure, density and viscosity of the medium have no effect on the measurement results.

electromagnetic flowmeter is mainly used in the following fields:

  • water and waste water
  • chemical industry
  • pharmaceutical industry
  • Food and Beverage Industry
  • Mining, concrete and cement industry
  • Pulp and Paper Industry
  • steel industry
  • power generation, power industry and refrigeration industry

module system in a wide variety of components and models to adapt to each different.

MAG 1100

MAG 1100 HT

MAG 1100 F

MAG 3100

MAG 3100 HT

MAG 3100 P

MAG 5100W

911/E

MAG 8000/MAG 8000 CT

MAG 8000 Irrigation

7ME6110

7ME6120

7ME6140

7ME6310

7ME6320

7ME6340

7ME6520

7ME6580

7ME5610

7ME6810
7ME6820

7ME6880

industrial field

water supply and sewage treatment

XX

XX

√

XXX

XXX

√

XXX20)

XXX20)

chemical industry

XXX

XXX

XX

XXX

XXX

XXX

√

√

√

pharmaceutical industry

XX

XX

XXX

XX

XX

XX

√

√

√

Food and Beverage Industry

XX

XXX

√

√

√

√

√

√

Mining, concrete and cement

XX

XXX

√

√

XXX

√

HPI

XX

√

XX

√

XX

√

√

√

Other

XX

XX

XX

XX

XX

XX

XX

XX

XXX

√

Design

one-piece

Remote

DC Magnetic Field (DC)

alternating magnetic field (AC)

Battery-Powered Constant Magnetic Field (DC)

Specifications

DN 2 (1/12")

DN 3 (1/8")

DN 6 (¼")

DN 10 (3/8")

DN 15 (½")

DN 25 (1")

DN 32 (1¼”)

x22)

DN 40 (1½")

DN 50 (2”)

DN 65 (2½″)

DN 80 (3")

DN 100 (4")

DN 125 (5")

DN 150 (6")

DN 200 (8")

DN 250 (10")

DN 300 (12")

DN 350 (14")

DN 400 (16")

DN 450 (18")

DN 500 (20")

DN 600 (24")

DN 700 (28")

DN 750 (30")

DN 800 (32")

DN 900 (36")

DN 1000 (40")

DN 1050 (42")

DN 1100 (44")

DN 1200 (48”)

DN 1400 (56")

DN 1500 (60")

DN 1600 (66")

DN 1800 (72")

DN 2000 (78")

Process Connection

Clamping type

Sanitary Equipment Connection

flange

3)

flange

EN 1092-1

3)

ANSI B 16.5 class 150

3)

ANSI B 16.5 class 300

ASME B 16.47 class 150

AWWA class D

AS 2129

X3)

AS 4087, PN 16

AS 4087, PN 21

AS 4087, PN 35

JIS 10K

JIS 20K

pressure rating1)

PN 6

PN 10

PN 16

PN 25

PN 40

PN 63

PN 100

accuracy

flow error ≤ 0.2% indication

flow error ≤ 0.4% indication

flow error ≤ 0.5% indication

flow error ≤ 0.8% indication

repeat accuracy21)

0.1 percent

0.2 percent

earth electrode, including

4)

4)

(●)

factory pre-installed ground ring

Material/Temperature:

lining material/maximum temperature

compound synthetic hard rubber: 70°C (158 °F)

EPDM:70 °C (158 °F)

soft rubber: 70°C (158 °F)

PTFE:100 °C (212 °F)

PTFE:130 °C (266 °F)

PTFE:180 °C (356 °F)

(●)5)

hard rubber: 95°C (203 °F)

7)

7)

Anti-Rust Latex: 70°C (158 °F)

Ceramic: 150°C (302 °F)

Ceramic: 200°C (392 °F)

6)

PFA:100 °C (212 °F)

PFA:150 °C (302 °F)

Phenolic resin: 130°C (266 °F)

electrode

stainless steel

Hastelloy C

Platinum

Titanium

Tantalum

Flange/shell material

carbon steel

stainless steel/carbon steel

polished stainless steel

Certification:

airtight conveying type

cold water-MI 001 (EU)

cold water certification-OIML R 49/OIML R 49 MAA

16)

NMI 10 (Australia)

Chilled Water Mode Certification-PTB K 7.2

16)

16)

OE 12/C 040 (Austria) cold water mode certification

KIWA Water Permit

ship

ABS

French Classification Society

DNV

GL

Lloyd's Register of Shipping

Hazardous Area

ATEX - 2 GD (Zone 1/21)

IECEx Zone 1/21

FM Class I /II/III, Div 1

x19)

19)

19)

FM Class I, Zone 1/21

FM - Class I, Div 2

FM Class I, Zone 2

CSA Class I, Zone 1/21

CSA - Class I, Div 2

NEPSI Zone 1

EAC Ex

sanitary type

EHEDG

3A

EC 1935:2004
European food-grade contact materials for hygiene and health standards

drinking water

WRAS (WRc)

12)

ANSI/NSF 61 (US)18)

13)

ACS (FR) EPDM lining

Belgaque (B) EPDM lining

DVGW-W270 (D) EPDM lining

KIWA (NL) EPDM liner

MCERTS (GB Environment)

14)

12)

Other

CRN (Canada)

● 23)

FM Fire Protection (Class 1044)

17)

17)

MCERTS (GB)

14)

12)

EAC (Russia, Belarus, and Kazakhstan)

CMC/CPA (China)

PED 2014/68/EU

VdS

15)

Calibrator Compatible

10)

10)

10)

10)

10)

10)

10)

10)


● = Provided

X= Available

XX= Frequently Used

XXX= Most Used

1)be limited by the choice of lining material.

3)when required

4)Flange Drill Mode up to 7 bar (107 psi)

5)Optional on PFA

6)150°C (302 °F)

7)explosion-proof sensor: 180°C (356 °F)

8)70°C (158 °F)

10)only applies to MAG 5000 and MAG 6000 transmitters

11)can only be used with integral sensors from DN 15 to DN 300(½ "to 12")

12)EPDM lining

13)EPDM with Hastelloy electrodes only

14)EPDM or PTFE lined with AISI 316 or Hastelloy electrodes

15)only for DN 50 to DN 300(2 "to 12")

16)is used to validate the submission of a Product Change Request (PVR)

17)specifications: DN 50, DN 80, DN 100, DN 150, DN 200, DN 250 and DN 300 (2 ", 3", 4 ", 6", 8 ", 10" and 12 "), flange class ANSI B16.5 Class 150

18)includes Appendix G

19)DN 15 to DN 300(½ "to 12") only with MAG 6000 I Ex, one-piece

20)is not suitable for wastewater applications

21)V ≥ 0.5 m/s (15 ft/s) and Conductivity> 10 μS/cm

22)only in conjunction with DN 32 connector A5E02054637, A5E02218297, FDK:083G2120 and FDK:083G2160

23)PFA Liner Only

MAG 5000

MAG 6000

MAG 6000 I

MAG 6000 I Ex

MAG 6000 Barrier

TRANSMAG 2

MAG 8000/ MAG 8000 CT

MAG 8000 Irrigation

7ME6910

7ME6920

7ME6930

7ME6930

7ME6920

7ME5034

7ME6810
7ME6820

7ME6880

industrial field

water supply and sewage treatment

XXX

XXX

XX

√

√

XXX

XXX

chemical industry

√

XX

XX

XXX

√

√

pharmaceutical industry

√

XXX

XX

XXX

√

√

Food and Beverage Industry

XX

XXX

XX

√

Mining, concrete and cement

XX

√

XX

√

XXX

√

HPI

√

√

√

XX

√

Other

XX

XX

XX

XX

XX

√

Design

one-piece

Remote

DC Magnetic Field (DC)

alternating magnetic field (AC)

Battery-Powered Constant Magnetic Field (DC)

Converter Housing

polyamide, IP67

cast aluminum

stainless steel

1)

1)

19 & Prime; Rack

Front Panel Installation

tray-mounted

IP66 wall mount

accuracy

flow error ≤ 0.2% indication

flow error ≤ 0.4% indication

flow error ≤ 0.5% indication

flow error ≤ 0.8% indication

repeat accuracy7)

0.1 percent

0.2 percent

Communications

HART

PROFIBUS PA

PROFIBUS DP

FOUNDATION Fieldbus H1

DeviceNet

Modbus RTU/RS 485

2)

2)

Encoder Interface Module with Sensus Protocol for Itron 200WP radio

GSM/GPRS module

Batch Control

power supply

24V

3)

3)

3)4)

3)4)

115V - 230V

4)

4)

Battery

certification

airtight conveying type

cold water-MI-001 (EU)

cold water certification-OIML R 49/OIML R 49 MAA

chilled water mode approved PTB K 7.2

8)

8)

8)

OE12/C 040 (Austria)
Cold water mode certification

KIWA Water Permit

ship

ABS

French Classification Society

DNV

GL

Lloyd's Register of Shipping

Hazardous Area

ATEX - 2G GD (Zone 1/21)

(●)5)

IECEx Gb Zone 1/21

FM Class I /II/III, Div 1

6)

FM Class I, Zone 1/21

FM Class I, Zone 2

FM Class I, Zone 2

CSA Class I, Zone 1/21

CSA Class I, Div 2

UL / C- UL-General Safety

NEPSI Zone 1

EAC Ex

Other

FM Fire (1044)

C - tick (Australia)

EAC (Russia, Belarus, Kazakhstan)

CMC/CPA (China)

VdS

other national certification, online query

Calibrator Compatible


● = Provided

X= Available

XX= Frequently Used

XXX= Most Used

1)IP68 enclosure

2)Modbus RTU RS232 Serial Communication

3)12/24V AC/DC

4)mains power supply, battery backup

5)Sensors in hazardous areas only

6)can only be used with integral sensors from DN 15 to DN 300(½ "to 12")

7)V ≥ 0.5 m/s (1.5 ft/s) conductivity is greater than 10 & micro;S/cm

8)is used to validate the submission of a Product Change Request (PVR)

SITRANS F M one-piece installation

+

=

MAG 6000 transmitter

MAG 3100 sensor

MAG 6000 is integrated on the MAG 3100 sensor

example

sensor

7ME6310-3TC11-1JA1

Pipe Size

DN 100

lining

soft rubber

electrode

SS 316

flange

EN 1092-1, PN 16

Transmitter

MAG 6000, Polyamide, 115 - 230V AC

accuracy

± 0.2 % ± 1 mm/s

power supply

230V AC


Note:
MAG 5000/6000 transmitters, sensors and communication modules are packed in separate boxes, and the final assembly is completed at the time of installation at the customer's site.

SITRANS F M Split mounting

+

=

Wall mounting bracket

MAG 6000

+

=

MAG 3100

2 x cable

MAG 3100 Split Installation

example

sensor

7ME6310-3TC11-1AA1

Pipe Size

DN 100

lining

soft rubber

electrode

SS 316

flange

EN 1092-1, PN 16

Transmitter

7ME6920-1AA10-0AA0

accuracy

± 0.2 % ± 1 mm/s

Power

230V AC

Wall Mount Kit

FDK:085U1018

cable kit, including sensor cable and electrode cable

A5E01181647


Technical Specifications

Flowmeter accuracy

In order to ensure the accuracy of flow measurement, the flowmeter must be calibrated. The calibration is carried out in Siemens Flow Products using traceable meters, and the International System of Units (SI) units of measurement are used for calibration.

As a result, the calibration certificate ensures that test results are recognized worldwide, including in the United States (NIST Traceability).

Siemens can provide approved calibration in accordance with ISO 17025 in the flow range of 0.0001 m & sup3;/h to 10000 m & sup3;/h.

Calibration According to ISO 4185, two methods are used for calibration: static weighing and reference table. Provides a measurement uncertainty of ± 0.1%.

Siemens Flow Instruments (Siemens Flow) accredited laboratories are certified by ILAC MRA (International Laboratory Accreditation Corporation-Multilateral Mutual Recognition Agreement), which ensures the traceability and recognition of test results worldwide.

calibration certificate is shipped with the sensor and the calibration data is stored in the SENSORPROM unit.

flow meters

Calibration Reference Conditions

reference conditions (ISO 9104 and DIN EN 29104)

ambient temperature

20°C ± 10 K (68 °F ± 18 °F)

ambient temperature

25°C ± 10 K (77 °F ± 18 °F)

supply voltage

Un± 1%

temperature rise time

30 minutes

to pipe section

  • entrance section

10 x DN (DN ≤ 1200/48")

5 x DN (DN > 1200/48")

  • export part

5 x DN (DN ≤ 1200/48")

3 x DN (DN > 1200/48")

Fluid Conditions

good flow distribution

other conditions for deviation from the reference condition

current output

pulse output (± 0.1% of actual flow +0.05% of FSO)

Ambient temperature influence

  • display frequency/pulse output

< ± 0,003 %/K act.

  • current output

< ± 0,005 %/K act.

supply voltage

has a 1% change, the change is less than 0.005 of the measured value.

Repeatability

v ≥ 0,5 m/s (1.5 ft/s), conductivity> 10 μS/cm, ± 0.1% of actual flow

Certificate

  • EN 10204-2.1

conformity certificate indicates that the delivered parts meet the material quality requirements of the order. Z option C15 available

  • EN 10204-2.2

test report certificate is a non-batch, material-specific analysis of the ordered material. Z Option C14 available

  • EN 10204-3.1

Material Analysis Certificate is a batch specific analysis of a material issued by an independent inspector.
Certification covers all pressure and wetted parts. Z Option C12 available


Technical Parameters for PROFIBUS PA/DP

GENERAL SPECIFICATIONS

PROFIBUS Equipment Code

3.00 Class B

Certification

-

MS0 connector

1

MS1 connector

1

MS2 connector

2


Electrical Data DP

Physical Layer Data

Applicable Standards

IEC 61158/EN 50170

Physical Layer (Transmission Technology)

RS 485

transmission rate

≤ 1.5 Mbits/s

stations

up to 32 per segment (up to 126 total)

Cable Data (Type A)

cable type

Twisted Pair

Shielding mode

copper braided shield or braided shield and foil shield

impedance

35 - 165 Ω, frequency range 3... 20 MHz

Cable Capacity

< 30 pF/m

Core Wire Diameter

> 0.34mm2, corresponding to AWG 22

resistance

< 110 Ω/m

signal attenuation

The total length of the entire network segment is a maximum of 9 dB

longest bus length

200 m at 1500 kbit/s and up to 1.2km at 93.75 kbit/s. Can be extended using repeaters


Electrical data PA

Physical Layer Data

Applicable Standards

IEC 61158/EN 50170

Physical Layer (Transmission Technology)

IEC-61158-2

transmission rate

31.25 Kbps

stations

up to 32 per segment (up to 126 total)

Maximum basic current [IB]

14 mA

fault current [IFDE]

0 mA

bus voltage

9... 32V (non-explosion-proof)

Preferred Cable Data (Type A)

cable type

Twisted Pair

conductor (nominal)

0,8mm2(AWG 18)

Loop Resistance

44 Ω/km

impedance

100 Ω ± 20%

wave attenuation at 39 kHz

3 dB/km

capacitance unbalance

2 nF/km

bus termination

are passive line terminals

longest bus length

up to 1.9km. Can be extended using repeaters

IS (Intrinsic Safety) data

Required Sensor Electronics

One-piece or split SITRANS F M MAG 6000 I Ex

FISCO

&radic;

maximum UI

17,5V

Maximum II

380 mA

maximum pI

5,32V

Max LI

0 μH

maximum CI

0 nF

FISCO Cable Specifications

Loop Resistance RC

15... 150 Ω/km

loop inductance LC

0,4... 1 mH/km

Capacitance CC

80... 200 nF/km

maximum spacing between IIC and IIB

30 m

the maximum trunk length of the IIC

1km

IIB

5km


PROFIBUS parameters

uses the MS0 relationship to access the following parameters from the level 1 master.
MS0 specified cyclic data exchange between master and slave.

Cycle conditions:

Input (Master View)

parameters

MAG 6000/MAG 6000 I

mass flow

volume flow

temperature

density

Component A

Component B

Pct Component A

Accumulator 1

Accumulator 21)

Batch Progress1)

Batch set point

batch compensation

Batch Status (Run...)

output (master view)

Set Accumulator 1 2

Set Mode Accumulator 1 2

Batch Control
(Start, Stop...)

Batch set point

batch compensation


1)return value depends on the batch function.

ON, when the batch progress is returned.

OFF, when return accumulator 2.

Flow and velocity diagram

Metric

Size Selection Table (DN 2 - DN 2000)

The table shows the relationship between the flow rate v, the flow rate Q and the sensor size DN.

Sensor Selection Guide

minimum range: 0... 0.25 m/s

maximum range: 0... 10 m/s

Under normal circumstances, the sensor should be selected so that the flow rate v falls within the range of 1 to 3 m/s.

example:

50 m3/h provide a flow rate of 2.7 m/s for the DN 80 sensor, which is within the recommended range of 1 to 3 m/s.

Velocity Calculation Formula

Unit

v = 1273.24 · Q/DN2or

v: [m/s], Q: [l/s], DN: [mm]

v = 353.68 · Q/DN2

v: [m/s], Q: [m&sup3;/h], DN: [mm]


imperial

calculation sheet (1/12 "~ 78")

The table shows the relationship between the flow rate v, the flow rate Q and the sensor size DN.

Sensor Selection Guide

minimum range: 0... 0.8 ft/s

maximum range: 0... 33 ft/s

Under normal conditions, the sensor should be selected so that the flow rate v falls within the range of 3 to 10 ft/s.

example:

500 GPM flow and 6 "sensor provides a flow rate of 5.6 ft/s C which is within the recommended range of 3 to 10 ft/s B

Velocity Calculation Formula

Unit

v = 0.408 · Q/(Pipe I .D.)2or

v:[ft/s],Q:[MGD], Tube ID: [inch]

v = 283.67 • Q/(tube inner diameter)2

v:[ft/s],Q:[MGD], Tube ID: [inch]

Installation conditions

vibration resistance

should avoid strong vibrations.

In the presence of severe vibration, it is recommended to use a split transmitter.

sensor must be completely filled with liquid.

installed on full pipe

sensor must be completely filled with liquid. The following two points should be avoided:

  • flow meter is installed at the highest point of the pipeline
  • installed on vertical pipes with free outlets

cannot be installed on the air pipe

For partially filled pipes, or downward pipes with free outlets, the flow meter should be installed at the U-shaped pipe.

When the pipe is half full, install it at the U-shaped pipe

on vertical pipes

recommended that the fluid flow direction is upward, which can minimize the influence of bubbles in the liquid on the measurement.

installed on vertical pipes, fluid flow upward

Installation on horizontal pipe

sensor must be installed as shown in the figure below. It cannot be installed as shown in the figure below, which will cause the measuring electrode to be either at a high point in the pipeline, which is susceptible to air bubbles, or at a low point in the pipeline where silt, dirt, etc. may be present.

want to measure the fluid containing dust

shall install the flow meter on a vertical pipe with the fluid flow direction upward

To measure fluids containing dust, the flow meter should be installed on a vertical pipe with the fluid flow direction upward.

Inlet and outlet pipe sections

elbows, pumps and valves

In order to achieve the most accurate flow measurement, the upstream and downstream straight pipe lengths must be known. Practical experience has proved that MAG 5100W and MAG 8000 can operate in non-optimal pipe arrangements, even if there is zero diameter upstream and downstream of the straight pipe, it can provide acceptable accuracy.

At the same time, try to align the flowmeter with the center of the pipe flange and gasket.

Ambient Temperature-Installation

temperature changes can cause expansion or contraction of the piping system. To avoid damaging the sensor, washers must be used and the appropriate torque applied. See the sensor manual for details.

potential balance

potential balance

at all times, the potential of the liquid and the potential of the sensor must be equal. Depending on the application, it can be implemented in different ways:

  • Connect the Sensor to the Adjacent Flange with a Span (MAG 1100,CMAG 3100)
  • Direct metal contact between sensor and accessory (MAG 1100 F)
  • Built-in ground electrode (MAG 3100,MAG 5100W)
  • Optional earthing/protective flange/earthing ring (MAG 1100,MAG 3100,MAG 8000)
  • optional graphite gasket for MAG 1100 (for MAG 1100 high temperature type, graphite gasket is standard)
  • MAG 8000 is installed in a plastic or coated tube: 2 grounding rings are used.

Ground connection

MAG 3100 and MAG 5100W: Conductive and non-conductive tubes with ground electrode (no further action required)

MAG 1100 and MAG 3100; no ground electrode in conductive tube (graphite gasket used for MAG 1100)

Use a grounding ring in a non-conductive pipe without a grounding electrode (MAG 1100 use a graphite gasket)

MAG 1100 F is grounded through the process connection. Detailed information about MAG 8000 grounding

vacuum

In order to prevent damage to the lining when operating the instrument under vacuum conditions, please pay attention to the "working pressure" information given in the "technical specifications" section.

Installation of Flowmeter on Large Diameter Pipe

reduce the normal pipe diameter

flow meter can be installed between two convertors (e. g. DIN 28545). The following figure shows the pressure drop curve assuming a diameter reduction angle of 8 °. This curve is applicable to the case where the medium is water.

diameter reduction and pressure drop

example:

In the sensor, when the flow rate (v) is 3 m/s (10 ft/s), when the caliber is reduced from DN 100 (4 ") to DN 80 (3") (d1/d2= 0.8), a pressure drop of 2.9 mbar (0.04 psi) is produced.

ambient temperature

Relationship between maximum ambient temperature and medium temperature

transmitter can be installed in one piece or separately.

is installed in one piece, the medium temperature must meet the requirements in the figure.

sensor cables and media

One-piece installation:

liquid conductivity ≥ 5 & micro;S/cm.

split type

medium (using standard electrode cable)

medium (using dedicated electrode cable)

Air traffic control detection

installation must meet the following restrictions regarding the use of the ATC detection function:

  • medium ≥ 20 μS/cm
  • split
  • and requires a dedicated cable.

note on the MAG 1100 specifications DN 2 and DN 3:

  • does not provide the function of ATC detection
  • medium must be ≥ 30 μS/cm

Note about MAG 5000/6000 CT:

  • does not provide the function of ATC detection