Guided Wave Radar Level Transmitter 4-20mA HART Signal Output
Product Details
| Name: | Guided Wave Radar Level Transmitter | Application Fields: | Mining And Metallurgy Indusrial |
|---|---|---|---|
| Resolution: | 1mm | Material Of Sensor: | PVC Or PTFE |
| Model: | DTS-RD-85-A | After Service: | Twelve Months |
| Frequency: | 6 GHz To 26 GHz | Application: | Liquid |
| Color: | Made To Order | Applications: | Liquid Level Measurement In Tanks, Silos, And Vessels |
| Highlight |
Guided Wave Radar Level Transmitter,Guided Wave Radar Type Level Transmitter,Guided Wave Radar Level Sensor |
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Product Description
Guided Wave Radar Level Transmitter for Reliable Measurement in Difficult Media
Foam, turbulence, low-dielectric liquids, dust and changing product properties defeat many level instruments, but a guided wave radar follows the signal down a probe, measuring the surface directly and reliably. The QWRD80G606 guided wave radar level transmitter brings this proven technology, with 1mm resolution and 4-20 mA HART output, to mining, metallurgy and general industrial service.
Why Do You Need a Guided Wave Radar Level Transmitter?
Many industrial media are simply difficult to measure with free-space instruments. Foam on the surface absorbs and scatters ultrasonic and non-contact radar signals. Liquids with low dielectric constants reflect microwave energy weakly. Turbulence, vapors and changing product composition confuse echo evaluation. Guided wave radar solves these problems by sending the signal along a probe that extends into the medium: the signal travels down the probe, reflects at the product surface, and returns along the same path, giving a strong, unambiguous echo regardless of foam, vapor or dielectric properties. For mining slurries, metallurgical process tanks, chemical vessels and storage tanks where other technologies fail, a guided wave radar delivers dependable level measurement with minimal maintenance.
Working Principle: Time-Domain Reflectometry Along a Probe
The QWRD80G606 operates on the guided wave (time-domain reflectometry) principle. The transmitter launches a low-energy microwave pulse along a probe, typically a rod or cable, that extends into the vessel. When the pulse reaches the product surface, part of its energy is reflected back because of the change in dielectric constant between the vapor space and the medium. The electronics measure the time between transmission and reflection, which is directly proportional to the distance to the surface, giving a level measurement with 1mm resolution. Because the signal is guided by the probe, it is not affected by foam, dust, turbulence or low product dielectric constants. The transmitter operates in the 6-26GHz range, offers PVC or PTFE sensor options for corrosion resistance, and outputs 4-20 mA with HART communication.
Structural Advantages of the QWRD80G606
- Guided wave technology: reliable in foam, dust, turbulence and low-dielectric media.
- 1mm resolution: precise level measurement for control and inventory.
- Strong, unambiguous echo: signal guided by probe, not weakened by surface conditions.
- PVC/PTFE sensor options: corrosion resistance for aggressive media.
- 4-20 mA with HART: standard integration with configuration capability.
- 6-26 GHz frequency range: versatile performance across applications.
- Proven in mining and metallurgy: rugged design for demanding service.
- 12-month service support: manufacturer-backed reliability.
Pain Point Analysis: 2 Challenging Working Conditions
| Working Condition | Typical Failure | Why Free-Space Instruments Fail | QWRD80G606 Solution |
|---|---|---|---|
| Foam and vapor above the surface | Signal loss, false readings | Foam absorbs/scatters signals | Guided signal reaches surface through foam |
| Low-dielectric and changing media | Weak or no reflection | Weak echo from low-dielectric products | Probe-guided signal gives strong reflection |
Application Cases
Case 1 - Mining Slurry Tank
Industry: Mining and mineral processing
Application: Level measurement of slurry and thickener tanks
Measured Medium: Ore slurries, thickener underflow
Range: 0-15 m
Process Temperature: 5-60 °C
Output Signal: 4-20 mA + HART to process control
Key Challenge: Abrasive slurry, foam and changing density
Configuration: QWRD80G606 with PTFE-coated probe
Installation: Top-mounted probe in tank
Performance Result: Reliable level through slurry and foam
Customer Benefit: Stable process control and reduced overflow risk
Case 2 - Metallurgical Process Tank
Industry: Metallurgy
Application: Level monitoring of electrolyte and process solution tanks
Measured Medium: Electrolyte solutions, process liquors
Range: 0-8 m
Process Temperature: 20-80 °C
Output Signal: 4-20 mA to tank monitoring system
Key Challenge: Corrosive solutions and vapor atmosphere
Configuration: QWRD80G606 with PVC sensor
Installation: Top-mounted in stilling well
Performance Result: Accurate levels in corrosive service
Customer Benefit: Consistent process quality and safe operation
Product Advantages
- Guided wave radar works where free-space instruments fail
- 1mm measurement resolution
- Reliable in foam, dust and turbulence
- Measures low-dielectric media reliably
- PVC and PTFE corrosion-resistant sensors
- 4-20 mA with HART communication
- 6-26 GHz versatile frequency range
- Proven in mining and metallurgy service
Technical Parameters
| Parameter | Specification |
|---|---|
| Technology | Guided wave radar (TDR) |
| Resolution | 1 mm |
| Frequency | 6-26 GHz |
| Output Signal | 4-20 mA + HART |
| Sensor Material | PVC / PTFE |
| Application | Mining / metallurgy / industrial tanks |
| Service Support | 12 months |
| Warranty | 12 months |
SEO FAQ
Q1: What is the difference between guided wave and non-contact radar?
Non-contact radar transmits a microwave signal through the air from an antenna above the tank and receives the reflection from the product surface. Guided wave radar sends the signal along a probe that extends into the product, and the reflection occurs where the probe meets the surface. Because the guided signal travels along the probe, it is much less affected by foam, vapor, dust, turbulence and low product dielectric constants, which weaken or scatter free-space signals. Guided wave radar is therefore preferred for difficult media and for vessels with internal obstructions, while non-contact radar is preferred where probe contact is undesirable, such as hygienic or highly corrosive applications.
Q2: Why is guided wave radar good for mining and metallurgy applications?
Mining and metallurgy involve some of the hardest measurement conditions in industry: abrasive slurries, foam, suspended solids, changing densities, corrosive process liquors and vapor atmospheres. Guided wave radar handles these conditions because the probe-guided signal is not weakened by foam or particles, and the strong reflection at the surface gives a stable reading regardless of the medium's dielectric properties. The PVC and PTFE sensor options resist corrosion and abrasion, and the rugged design withstands the mechanical demands of mineral processing. This combination makes guided wave radar a reliable choice for slurry tanks, thickeners, electrolyte tanks and process liquor vessels.
Q3: What is the resolution of the transmitter?
The QWRD80G606 achieves a measurement resolution of 1mm, meaning it can detect level changes as small as one millimeter. This high resolution is a direct benefit of the time-domain reflectometry principle, where the distance is determined by precisely timing the reflected pulse along the probe. In practical terms, 1mm resolution supports accurate inventory calculation, precise level control and the detection of small changes such as slow leaks or gradual process variations. Combined with the stability of the guided wave measurement, this resolution provides dependable data for both control loops and management reporting.
Q4: How does the transmitter handle corrosive media?
The QWRD80G606 offers sensor options in PVC and PTFE to handle corrosive media. PVC provides good chemical resistance for many industrial solutions at moderate temperatures and is a cost-effective choice. PTFE offers superior chemical resistance across a very wide range of acids, alkalis and solvents, and it withstands higher temperatures, making it the premium choice for aggressive chemical and metallurgical service. The sensor material is selected based on the specific medium, its concentration and temperature, ensuring that the probe resists corrosion and does not contaminate the product. Our engineers will recommend the correct material for your application.
Q5: What support and customization do you offer?
As the manufacturer, we provide direct technical support including probe selection, installation guidance and troubleshooting. Customization options include probe type (rod or cable) and length, sensor material (PVC or PTFE), measurement range, process connection, output configuration, labeling and packaging, plus OEM and ODM programs. With a monthly supply capacity of 100 pieces and delivery within 5-8 working days, we support both single-tank projects and multi-vessel programs. Every unit is factory-calibrated and tested before shipment, and our engineers can advise on the best configuration for your media and vessel.
Why Choose Our Guided Wave Radar Level Transmitter?
When the media is difficult, the guided wave principle keeps measuring: through foam, dust, turbulence and low-dielectric products that defeat free-space instruments. The QWRD80G606 delivers 1mm resolution, corrosion-resistant PVC/PTFE sensors and proven performance in mining and metallurgy, all with standard 4-20 mA HART integration. As the manufacturer, you receive factory calibration, application-matched probe selection and direct engineering support. When your process conditions are tough, choose the guided wave radar that follows the signal all the way to the surface.
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