The refueling and distribution application flowmeter with easy system integration

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Measuring principle
Coriolis
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Product headline
A flowmeter designed for refueling and distribution applications, offering easy system integration and accurate measurement of liquefied petroleum gas (LPG).
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Sensor features
Ensure exceptional operational safety with reliability in extreme ambient conditions. Reduce the number of process measuring points with multivariable measurement capabilities for flow, density, and temperature. Save space with an installation that requires no inlet or outlet runs. Handle flow rates up to 70,000 kg/h (2570 lb/min) and calculate volume flow according to API table 53 standards.
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Transmitter features
Space-saving transmitter – full functionality on the smallest footprint. Fast commissioning – pre-configured devices. Automatic recovery of data for servicing. Robust, compact transmitter housing. Modbus RS485.
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Nominal diameter range
DN 8 to 50 (??? to 2″)
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Wetted materials
Measuring tube: 1.4539 (904L)
Connection: 1.4404 (316/316L) -
Measured variables
Mass flow, density, temperature, volume flow, corrected volume flow, reference density
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Max. measurement error
Mass flow (liquid): ±0.20 %
Volume flow (liquid): ±0.30 % -
Measuring range
0 to 70 000 kg/h (0 to 2570 lb/min)
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Max. process pressure
PN 40, Class 300
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Medium temperature range
–50 to +125 °C (–58 to +257 °F)
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Ambient temperature range
–40 to +60 °C (–40 to +140 °F)
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Sensor housing material
1.4301 (304), corrosion resistant
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Transmitter housing material
AlSi10Mg, coated
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Degree of protection
IP66/67, type 4X enclosure
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Display/Operation
No local operation
Configuration via operating tools possible -
Outputs
None
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Inputs
None
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Digital communication
Modbus RS485
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Power supply
DC 20 to 30 V
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Hazardous area approvals
ATEX, IECEx, cCSAus, NEPSI, INMETRO
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Product safety
CE, C-Tick
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Metrological approvals and certificates
Calibration performed on accredited calibration facilities (acc. to ISO/IEC 17025)
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Pressure approvals and certificates
PED, CRN
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Material certificates
3.1‐Material





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