Endress + Hauser Radar-Füllstandmessung Time-of-Flight Micropilot FMR20

Drucktransmitter für die Industrie
September 11, 2025
Brief: Discover the Endress + Hauser Micropilot FMR20, a cutting-edge radar level measurement device using Time-of-Flight technology. Ideal for liquids and solids, it offers non-contact, high-accuracy measurements in harsh environments. Learn about its features, applications, and benefits in this detailed overview.
Related Product Features:
  • Non-contact radar level measurement using Time-of-Flight (ToF) principle for accurate and reliable results.
  • Funktioniert mit einer Frequenz von 26 GHz für eine bessere Auflösung und kleinere Strahlbreiten.
  • Suitable for liquids and simpler solids with a measurement range up to 20 meters.
  • High accuracy: ±2 mm for liquids and ±5 mm for solids under typical conditions.
  • Robust construction with PVDF housing and PBT parts, designed for harsh environments.
  • IP66-, IP68- und NEMA-4X-Zertifizierungen gewährleisten Haltbarkeit und Schutz vor Feuchtigkeit und Staub.
  • 2-wire output with HART communication and optional Bluetooth for easy configuration.
  • Ideal for water & wastewater, mining, and general industry applications.
FAQs:
  • What is Time-of-Flight radar level measurement?
    Time-of-Flight (ToF) radar level measurement is a non-contact method that emits microwave pulses to measure the distance to a material's surface. The round-trip time of the pulse is used to calculate the level, offering high accuracy and reliability.
  • What are the main applications of the Micropilot FMR20?
    The Micropilot FMR20 is used for continuous level measurement of liquids and simpler solids, as well as flow measurement in open channels and weirs. It is widely used in water & wastewater, mining, and general industry.
  • Was sind die Einschränkungen des Micropiloten FMR20?
    Das Gerät hat eine tote Zone in der Nähe des Sensors, wo die Messungen unzuverlässig sind. Es erfordert auch eine klare Sichtlinie und kann durch Hindernisse, Turbulenzen oder starken Staub beeinflusst werden.Genauigkeitsrückgänge bei Materialien mit geringer Reflektivität.