Błąd pomiaruRod probe :+/- 2 mm (0.08 in) Rope probe <= 15 m (49 ft): +/- 2 mm (0.08 in) Rope probe > 15 m (49 ft): +/- 10 mm (0.39 in) Coaxial probe: +/- 2 mm (0.08 in)
Temperatura procesu-50...+200 °C (-58...+392 °F)
Absolutne ciśnienie medium / Wartość graniczna nadciśnieniaVacuum...40 bar (Vacuum...580 psi)
Maks. odległość pomiarowaRod: 10 m (33 ft) Min DK>1.6 Rope: 25 m...30 m (82ft...98 ft) Min DK>1.6; 30m...45 m (98ft...148 ft) Min DK>1,9 Coaxial probe: 6 m (20 ft) Min DK>1.4
Główne części wchodzące w kontakt z mediumRod probe: 316L, Alloy C, Ceramic Rope probe: 316, 316L, Alloy C, Ceramic Coaxial probe: 316L, Alloy C, Ceramic, PFA
Błąd pomiaruRod probe: +/- 2 mm (0.08 in) Rope probe <= 15 m (49 ft): +/- 2 mm (0.08 in) Rope probe > 15 m (49 ft): +/- 10 mm (0.39 in) Coaxial probe: +/- 2 mm (0.08 in)
Temperatura procesuXT: -196...+280 °C (-321...+536 °F) HT: -196...+450 °C (-321...+842 °F)
Absolutne ciśnienie medium / Wartość graniczna nadciśnieniaVacuum...400 bar (Vacuum...5800 psi)
Maks. odległość pomiarowaRod: 10 m (33 ft) Min DK>1.6 Rope: 25 m...30 m (82 ft...98 ft) Min DK>1.6; 30 m...45 m (98 ft...148 ft) Min DK >1,9 Coaxial probe: 6 m (20 ft) Min DK>1.4
Główne części wchodzące w kontakt z mediumRod probe: 304, 316L, Alloy C, Ceramic Rope probe: 304, 316, 316L, Alloy C, Ceramic Coaxial probe: 304, 316L, Alloy C, Ceramic
Błąd pomiaruRod probe: +/- 2 mm (0.08 in) Rope probe <= 15 m (49ft): +/- 2 mm (0.08 in) Rope probe > 15 m (49ft): +/- 10 mm (0,39 in)
Temperatura procesu-40...+150 °C (-40...+302 °F)
Absolutne ciśnienie medium / Wartość graniczna nadciśnieniaVacuum...16 bar (Vacuum...232 psi)
Maks. odległość pomiarowaRod: 4 m (13 ft) Min DK>1.4 Rope: 20 m...25 m (66 ft...82 ft) Min DK >1.4; 25 m...30 m (82ft...98 ft) Min DK >1.6; 30 m...45 m (98ft...148 ft) Min DK>1,9
Główne części wchodzące w kontakt z mediumRod probe: 316Ti, 316L, PEEK, PPS Rope probe: 304, 316, 316Ti, 316L, PEEK, PPS, PA
Guided radar level measurement
Our product finder helps you to search for suitable measuring devices, software or system components via product characteristics. Applicator leads you through an individual product selection via application parameters.
Guided radar level measurement with top-down installation of a Levelflex sensor offers perfect application fit in all industries. Guided radar with simple commissioning, trouble-free operation saves time and money. For usage in a wide range of applications - be it in simple storage tanks, in corrosive or aggressive media or heavy duty applications. Check out the broad range of Levelflex devices for guided wave radar applications and click on the button below.
Guided radar level measurement is well suited to liquids and bulk solids. The surface condition of the medium is of minor importance due to the safe guidance of the reflected waves. Turbulent liquid surfaces or foam formation as well as different angled surfaces or outflow funnels, as the occur in bulk solids, do not influence the measurement. Guided radar is also the first choice for interface measurement.
Guided radar measurement: Measuring Principle
Levelflex works with high-frequency radar pulses which are emitted and guided along the probe. As the pulse meets the medium surface, part of the emitted pulse is reflected due to a change of the dc value (relative dielectric constant). The Time-of-Flight between pulse launching and receiving is measured and analyzed by the instrument and constitutes a direct measure for the distance between the process connection and the product surface.
Benefits
Reliable measurement: Unaffected by medium surfaces and tank obstacles or baffles
Additional measuring safety through End-of-Probe (EoP) evaluation
Safe measurement also during filling
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