KLINGER CMF V Series Manuale utente

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Klinger CMF
Instruction Manual Page 1
Coriolis Massflowmeter
Klinger CMF type V and U
Instruction Manual

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Klinger CMF
Instruction Manual Page 2
Safety Related Symbol Description
The following symbols are used for security related content in this guide. Statements marked
with security symbols are important contents, please be sure to follow.
An error occurring in the use of the described content may be
dangerous and may result in personal injury or death.
An error occurring in the use of the content may be dangerous and
may result in a person with mild or moderate damage or damage to
the device. But, the symbol is a matter of attention; major accidents
may be caused due to the different circumstances.
Certain matters do not belong to the scope of “Danger”, “Caution”,
however, the matters users needing to comply with are also marked
in the relevant section.
Prohibited matters, if not complying with, it may affect the use
performance or safety performance of the instrument.

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Instruction Manual Page 3
Priorities
open-package inspection
Do not use the mass flow meter with damaged or missing
parts.
There is a risk of internal injuries.
wiring
Please confirm that the power is off before wiring.
There is a risk of electric shock, fire or explosion.
Please make the power supply is consistent with the
transmitter.
There is a risk of injury fire or explosion.
Site voltage and insulation test is forbidden!
It may cause damages to such devices as
semiconductors, capacitors and coils.
Application
Please do not use it in direct sunlight places.
There is a risk of aging cable, damaging LCD panel.
It is inconvenient to observe the display contents of the
LCD panel.
Please read this guide carefully before use.
There is a risk of damage to the instrument.

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Klinger CMF
Instruction Manual Page 4
Content
Chapter I Introduction Page 5
Chapter II Installation Page 7
Chapter III Wiring Page 21
Chapter IV Initial Start-up Page 25
Chapter V Software Operation Guide Page 27
Chapter VI Communication Page 48
Chapter VII Troubleshooting Page 61
Chapter VIII Daily Care and Maintenance Page 68

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Instruction Manual Page 5
Chapter Introduction
1.1 Profile
The Klinger mass flowmeter is composed of two parts, the sensor and the transmitter. The
Klinger mass flow meter is equipped with a digital transfer device, which is based on a digital
signal processor (DSP), integrated with digital close-loop vibration controlling (DLC) signal
processing, calculating and diagnostic functions of sensor, and provides high measuring accuracy,
wide range ability and excellent reliability for you. Online node-configuration, faults diagnosis
and data recording can be carried out directly through communication with a communicator by
HART or by PC through Modbus.
The flow meter will not only calculate process volume flow rate, accumulated volume and
component proportion. The TS Series flowmeter can also provide mass flow rate, density
and temperature online and in real-time.
The Klinger mass flowmeter sensor is divided into two series: US and VS.
Figure 1-12 US series integral mass flowmeter, with T1, T2 and T3 transmitters
Figure 1-13 US series remote mass flowmeter sensor, with T1, T2 and T3 transmitters

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Figure 1-14 remote mass flowmeter transmitter, T1, T2 and T3
1.3.1.3 Flowmeter sensor, DN1-DN5
See figure 1-15
Figure 1-15 US series remote mass flowmeter sensor, DN1-DN5
1.4 VS series
New generation of product with twinned micro bend flow tubes.
1.4.1 Figure
See figure 1-18, 1-19, and 1-20
Figure 1-18 VS series integral mass flowmeter
Figure 1-19 VS series remote mass flowmeter sensor
Figure 1-14 remote mass flowmeter transmitter

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Instruction Manual Page 7
Chapter Installation
2.1 Preparation before installation
2.1.1 Environmental consideration
The SCM must be appropriately configured for its installation environment. Exposing the CMF
to an unapproved environment can reduce the lifespan of the instrument, void warranty
and/or liability statements, and is dangerous. To confirm that the CMF is configured for the
installation environment:
2.1.1.1 Ensure the explosion-proof certification marks on the nameplates meet or exceed the
required rating of the relevant installation environment.
2.1.1.2 Ensure that the enclosure rating indicated on the nameplates meet the requirements of
the installation environment.
2.1.1.3 Ensure that the ambient and process temperature ranges indicated on the nameplates
meet the application requirements.
See details in Figure 2-1
Figure 2-1 mass flowmeter temperature range
2.1.2 Mechanical Factors
The location and orientation of the SCM can have a large impact on its accuracy, ease of use,
and ease of maintenance.
2.1.2.1 Enough Installation Space
Meet the needs of installation, maintenance and observation.
2.1.3 Product Status
2.1.3.1 Integrated product has no wiring of sensor and transmitter.
2.1.3.2 Special cable for Walsn mass flow meter allocated for Remote product (Ensure length to
meet the installation and use requirements).
2.1.4 Installation location
2.1.4.1 Sensor
Ideal installation location will get the best product performance
Consider the following criteria when choosing the location of the
SCM 2.1.4.1.1 Away from sources of electromagnetic interference

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2.1.4.1.1.1 The installation position of the sensor and transmitter should be far away from
industrial sources of electromagnetic interference, such as high power motors,
transformers, etc., otherwise, the simple harmonic vibration of the flow tube of
sensor will be subject to interference, a weak signal detected by the coil may be
submerged in the noise of electromagnetic interference. Sensor and transmitter
should maintain a sufficient distance with the transformer, motor, etc., specific
details please consult the manufacturer or local dealer.
2.1.4.1.1.2 Electromagnetic interference (EMI) from sources such as high power motors,
transformers, etc. can interfere with the precision coils that drive the SCM and the
signal generated by the EMI. Sensors, transmitters, and their cables should be
installed at least 5m away from large sources of EMI.
2.1.4.1.2 Away from sources of vibration
2.1.4.1.2.1 Sensor installation location should maintain enough distance with the interference
source of mechanical vibration in process pipeline (i.e. pump), specific details
please consult the manufacturer or local dealer.
2.1.4.1.2.2 If multiple sensors are used in series on the same process pipeline, the cross
influence by resonance must be prevented, by ensuring the distance between each
sensor is at least 3 times the size of the flange face to face.
2.1.4.1.3 Away from expansion joints
Compressive or tensile loads on the sensor can interfere with the CMF’s accuracy. The
SCM should be located away from any point where longitudinal forces are likely to act
on the sensor (e.g. due to thermal expansion & contraction).
2.1.4.2 Transmitter
2.1.4.2.1 Environmental requirements
Relative humidity: 5%RH-95%RH
Temperature: see figure 2-1
2.1.4.2.2 Power Supply
Ensure that the power available at the transmitter’s installation location is
compatible with the power supply indicated on the transmitter’s nameplate.
DC: 18 VDC-36VDC
AC: 85 VAC-265VAC, 50/60Hz
Self switching: 18VDC-36VDC or 85VAC-265VAC, 50/60Hz
2.1.4.2.3 Powerconsumption≤20W
2.1.4.2.4 Remote cable length: 5m-100m.
For remote mount transmitters, the transmitter must be connected to the sensor
on-site. Ensure that there is adequate cable length to safely and tidily route the cable
from the sensor location to the desired transmitter location. Use only cable provided
by Walsn.
2.1.4.2.5 Visible
The transmitter should be placed such that the LCD is in a position and orientation
that is easy to observe.
2.1.4.2.6 Maintainable
There should be enough space for transmitter cover removing & wiring.
2.2 Installation

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2.2.1.3 US series
2.2.1.3.1 Integral mass flowmeter with T0 transmitter
See figure 2-14, 2-15
Figure 2-14 Figure 2-15
2.2.1.3.1.1 Imperial size, in
See table 2-9
Table 2-9
Specification Line Size L H HA DS DT
SCM-US-010N 3/8 7-7/8 6-11/16 16-7/16 2-3/8 9-7/16
SCM-US-015N 1/2 10-1/16 8-11/16 19-1/16 2-9/16 9-7/16
SCM-US-025N 1 12 12-3/16 21-5/8 2-13/16 9-7/16
SCM-US-040N 1-1/2 22-5/8 20-9/16 30-9/16 4-3/4 9-7/16
SCM-US-040H 1-1/2 24-1/2 21-3/8 31-15/32 4-3/4 9-7/16
SCM-US-050N 2 24-1/2 21-3/8 31-15/32 4-3/4 9-7/16
SCM-US-050H 2 27-21/32 25-15/16 36-5/32 5-29/32 9-7/16
SCM-US-080N 3 30-1/16 26-11/16 37-7/16 5-29/32 9-7/16
Dimensions
2.2.1.1.2 T1, T2 and T3 transmitters size, in(mm)
See figure 2-4, 2-5
Figure 2-4 Figure 2-5

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SCM-US-080H 3 33-7/16 33-7/8 45-5/8 7-23/32 9-7/16
SCM-US-100N 4 32-1/4 28-29/32 40-7/16 5-29/32 9-7/16
SCM-US-100H 4 41-29/32 45-9/32 57-31/32 11-29/32 9-7/16
SCM-US-150N 6 45-11/16 39-1/8 51-11/16 9-21/32 9-7/16
SCM-US-150H 6 40-5/16 49-1/2 63-3/8 12-27/32 9-7/16
SCM-US-200N 8 49-15/16 49-1/2 64-15/16 12-27/32 9-7/16
SCM-US-250N 10 69-5/16 68-15/16 84-5/8 17-1/8 9-7/16
2.2.1.3.1.2 Metric size, mm
See table 2-10
Table 2-10
Specification Line Size L H HA DS DT
SCM-US-010N 10 200 170 418 95 240
SCM-US-015N 15 256 220 485 115 240
SCM-US-025N 25 304 310 550 135 240
SCM-US-040N 40 574 522 776 121 240
SCM-US-040H 40 622 542 799 121 240
SCM-US-050N 50 622 542 799 121 240
SCM-US-050H 50 702 658 918 150 240
SCM-US-080N 80 763 678 951 150 240
SCM-US-080H 80 850 861 1159 196 240
SCM-US-100N 100 822 733 1027 150 240
SCM-US-100H 100 1064 1150 1472 302 240
SCM-US-150N 150 1160 994 1313 245 240
SCM-US-150H 150 1240 1257 1609 326 240
SCM-US-200N 200 1268 1257 1609 326 240
SCM-US-250N 250 1760 1751 2150 435 240
2.2.1.3.2 Integral mass flowmeter with T1, T2 and T3 transmitters
See table 2-16, 2-17
Figure 2-16 Figure 2-17
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