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Rod Antenna Radar Level Gauge Low Dielectric Constant Foam / Steam Interference Resistant

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Rod Antenna Radar Level Gauge Low Dielectric Constant Foam / Steam Interference Resistant

Material : Stainless Steel+PTFE+Quartz glass

Measuring Frequency : 80GHz

Explosion Proof Grade : Exia llC T6 Gb

Precision : <0.1%

Material Of Wetted Parts : Stainless steel 316L

Temperature Range : -40℃~+120℃

Brand Name : QINWEIYB

Model Number : QWRD80G613

Certification : Explosion-proof certificate ,Safety certificate

Place of Origin : China

MOQ : 1Set

Price : Negotiable

Payment Terms : L/C,D/A,D/P,T/T

Supply Ability : 100PCS/Month

Delivery Time : 5-8 work days

Packaging Details : Carton

After Service : Twelve months

Enclosure Protection : IP67 or IP68

Output Signal : 4-20 mA, HART, Modbus

Output : RS485/MODBUS; 4…20mA/HART

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Low Dielectric Constant Foam And Steam Interference Resistant Rod Antenna Radar Level Gauge

The rod antenna radar level gauge, also a variant of the "cable" or "guided wave radar" (but note that the principles are different), has the most notable feature that it uses a metal rod as the antenna and/or wave propagation conductor.

The prominent advantages and applicable scenarios of rod antenna radar
  • 1. Small diameter installation / narrow space

    Scenario: Small reaction vessels, metering tanks, bypass pipes, ship cabins, and other containers with very small installation openings.

    Advantage: A thin rod (such as Φ16mm, Φ24mm) can easily be inserted into a small diameter flange, while horn antennas require a larger installation space.

  • 2. Anti-adhesion and self-cleaning

    Scenario: Media prone to crystallization, condensation, and high viscosity (such as asphalt, molten salt, syrup, polymers).

    Advantage: The smooth metal rod surface is less likely to accumulate material. Even if there is a small amount of adhesion, its impact on rod-type (especially guided wave) measurements is much smaller than that on horn antenna signals.

  • 3. Measuring low dielectric constant media

    Scenario: Liquids with very low dielectric constants such as liquefied petroleum gas (LPG), and certain solvents.

    Advantage (especially guided wave type): Electromagnetic waves propagate along the rod in a directional manner, with concentrated energy, effectively guiding weak liquid surface reflection signals back, making it the preferred solution for measuring low dielectric constant media.

  • 4. Strong turbulence, foam, and steam

    Scenario: Boiling liquids, vigorously stirred reactors, and conditions with thick foam.

    Advantage (especially guided wave type): The rod directly passes through the foam and steam layers, guiding the wave directly to the true liquid surface, with minimal interference from the gas phase, ensuring very stable measurements.

  • 5. Precise interface measurement

    Scenario: Oil-water interfaces, stratification measurement of two immiscible liquids.

    Advantage (guided wave type): Multiple echoes from different dielectric constant interfaces can be clearly detected, enabling reliable interface measurement.

Comparison Summary with Horn Antenna Radar
Characteristics Rod Antenna Radar (mainly guided wave type) Horn Antenna Radar
Measurement Principle Time-domain reflection / can also be non-contact radar Non-contact FMCW or pulse radar
Contact with Medium Yes (guided wave type) / No (non-contact type) No
Signal Propagation Propagates along the rod, energy concentrated Free propagation in space
Low Dielectric Constant Medium Excellent, preferred solution Difficult, requires high frequency and large antenna
Resistance to Foam/Vapor Interference Very strong Strong (higher frequency radar is better)
Installation Space Requirements Small Larger (considering the size of the horn)
Interface Measurement Possible Difficult
Typical Applications LPG, light oil products, chemical solvents, reaction vessels, viscous media Large storage tanks, cement silos, water treatment, most general liquid level measurements

When you encounter challenges such as small openings, easy adhesion, low dielectric constant, strong foam, or the need for interface measurement, it is the most worthy choice to consider. It sacrifices the convenience of complete non-contact, but in return, it offers unparalleled measurement reliability and stability under harsh conditions. Correctly understanding its principle and applicable boundaries is the key to successful application.


Product Tags:

Rod Antenna Radar Level Gauge

      

Radar Level Gauge Low Dielectric Constant

      

Rod Antenna Radar Level Transmitter

      
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