NYRD 701 Guided Wave Radar Level Transmitter SS304 SS316 Rod probe -20~80 °C

Radar Level Transmitter
August 12, 2025
Category Connection: Radar Level Transmitter
Brief: Discover the NYRD 702 Guided Wave Radar Level Transmitter, a high-accuracy 6m contactable device designed for precise level measurement in various industrial applications. Featuring advanced microwave technology and robust construction, it ensures reliable performance in high-temperature and high-pressure environments.
Related Product Features:
  • Advanced microwave processing technology for high measurement accuracy.
  • Contact measurement with Echo Discovery Echo processing technology.
  • Suitable for high-temperature, high-pressure, and low dielectric constant media.
  • Pulse working mode with low emission power, safe for humans and the environment.
  • Multiple process connection modes and detection module types for versatile applications.
  • Measuring range up to 6m with 0.05% to 0.1% F.S accuracy.
  • Available in various antenna materials like PTFE, SS304, and SS316.
  • Customizable according to specific user requirements.
Faqs:
  • What is the working principle of the NYRD 702 Guided Wave Radar Level Transmitter?
    The transmitter emits high-frequency microwave pulses along a steel cable or rod probe. When the pulse encounters the measured medium, it reflects back due to a change in dielectric constant. The time interval between the transmitted and reflected pulses is proportional to the distance of the medium.
  • What are the typical applications for the NYRD 702 Guided Wave Radar Level Transmitter?
    It is used for measuring liquids (including low dielectric media), dust (like fly ash and limestone powder), and solids (such as grain and gravel) in various industrial settings.
  • What are the available process temperature and pressure ranges for the NYRD 702?
    The NYRD 702 can operate in process temperatures ranging from -40°C to +500°C and process pressures from -0.1MPa to 4.0MPa, making it suitable for extreme industrial conditions.