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Endress+Hauser Liquiphant FTL64 - Environmental Factors and Process Limits; Mechanical Load, Pollution, and EMC; Process Temperature, Thermal Shock, and Pressure Range

Endress+Hauser Liquiphant FTL64
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Liquiphant FTL64 HART Technical data
Endress+Hauser 59
g
n
: standard acceleration of gravity
15.3.9 Mechanical load
Support the device in the event of severe dynamic load. Maximum lateral loading capacity
of the pipe extensions and sensors: 75 Nm (55 lbf ft).
A
  For more details, see the "Supporting the device" section.
15.3.10 Pollution degree
Pollution level 2
15.3.11 Electromagnetic compatibility (EMC)
Electromagnetic compatibility as per EN 61326 series and NAMUR recommendation
EMC (NE21)
With regard to the safety function (SIL), the requirements of EN 61326-3-x are satisfied
Maximum deviation under disturbance: < 0.5% of span
 For more details, refer to the EU Declaration of Conformity.
15.4 Process
15.4.1 Process temperature range
–60 to +230 °C (–76 to +446 °F)
–60 to +280 °C (–76 to +536 °F)/to 300 °C (572 °F) for max. 50 h on cumulative basis
–50 to +230 °C (–58 to +446 °F) with PFA coating (conductive)
The device can be ordered for use in very aggressive media with a highly corrosion-
resistant PFA coating. At medium temperatures up to ≥ 150 °C (302 °F), pay attention to
the chemical durability and the increasing risk of damage to the coating from diffusion.
Observe pressure and temperature dependency,
A
see the "Process pressure range of the
sensors" section.
15.4.2 Thermal shock
Without restrictions within the process temperature range.
With PFA coating (conductive): ≤ 120 K/s
15.4.3 Process pressure range
L
WARNING
The maximum pressure for the device depends on the lowest-rated element, with
regard to pressure, of the selected component. This means that it is necessary to pay
attention to the process connection as well as the sensor.
For pressure specifications, see the "Mechanical construction" section.
Only operate the device within the specified limits!
The Pressure Equipment Directive (2014/68/EU) uses the abbreviation "PS". The
abbreviation "PS" corresponds to the MWP (maximum working pressure) of the device.

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