Measuring range4 dm³/min to 9600 m³/h (1 gal/min to 44 000 gal/min)
Medium temperature rangeLiner material PFA: –20 to +150 °C (–4 to +302 °F) Liner material PFA high-temperature: –20 to +180 °C (–4 to +356 °F) Liner material PTFE: –40 to +130 °C (–40 to +266 °F)
Measuring range0 to 2 200 000 kg/h (0 to 80 840 lb/min)
Medium temperature rangeStandard: –50 to +150 °C (–58 to +302 °F) Option: –50 to +240 °C (–58 to +464 °F) High temperatur option: –50 to +350 °C (–58 to +662 °F) Option: –196 to +150 °C (–320 to +302 °F)
Max. measurement errorVolume flow: ±3% o.r. for DN 15 ±2% o.r. for DN 25 to DN 200 ±2% o.r. above DN 200
Measuring range0 to 15 m/s (0 to 50 ft/s)
Medium temperature rangeDN 15 to 65 (½to 2½"): –40 to +150°C (–40 +302 °F) DN 50 to 4000 (2 to 160"): –40 to +170°C (–40 to +338 °F) DN 50 to 600 (2" to 24"): 150°C to 550°C (+302 to +1022 °F)
Measured variablesVolumetric flow a. c., volume a. c., gas velocity, Speed of sound, optional volume correction via integrated, electronic volume corrector (EVC)
Measuring MediumNatural gas (with up to 30% hydrogen), air, natural gases containing increased levels of CO2, N2, H2S, O2, H2
Nominal pipe size3 ″ ... 56 ″ (DN 80 ... DN 1400), other nominal pipe sizes on request
Measuring range0.5 m3/h to 263000 m3/h (2.5gal/min to 1665 Mgal/d)
Medium temperature rangeLiner material hard rubber: 0 to +80 °C (+32 to +176 °F) Liner material polyurethane: –20 to +50 °C (–4 to +122 °F) Liner material PTFE: –20 to +90 °C (–4 to +194 °F)
Measuring range0.5 m3/h to 263000 m3/h (2.5gal/min to 1665 Mgal/d)
Medium temperature rangeLiner material hard rubber: 0 to +80 °C (+32 to +176 °F) Liner material polyurethane: –20 to +50 °C (–4 to +122 °F) Liner material PTFE: –20 to +90 °C (–4 to +194 °F)
Max. process pressurePN 40, Class 300, 20K
Wetted materialsLiner material hard rubber: 0 to +80 °C (+32 to +176 °F) Liner material polyurethane: –20 to +50 °C (–4 to +122 °F) Liner material PTFE: –20 to +90 °C (–4 to +194 °F) Electrodes: 1.4435 (316L); Alloy C22, 2.4602 (UNS N06022); Tantalum
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About Flow measurement for liquids, gases and steam
Consistent product quality, safety, process optimization and environmental protection – these are only a few reasons why industrial flow measurement is becoming more important all the time. Water, natural gas, steam, mineral oil, chemicals are some of the fluids that have to be measured day in, day out. There is no single, across-the-board technology suitable for all these applications, so you can choose the flowmeter best suited to your process needs from our comprehensive product basket.
Benefits
From the communication-capable single measuring point to the complete solution for higher-level control systems: you can always rely on the fact that we customize our products to your process requirements.
Together with automated process control and state-of-the-art communication interfaces (fieldbus systems), flow metering has advanced into more and more new fields of application in recent years.
You can choose among various measuring principles - electromagnetic measuring of volume flow, mass flow based on either the Coriolis or thermal principle, measuring of volume flow based on the vortex or ultrasonic principle.
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