Expert in Water Quality Measurement and Water Treatment Project Since 2007
Product Overview
- Model DDG-1.0 industrial online conductivity sensor designed for continuous (online) measurement of conductivity in pure/ultra‑pure water and water‑treatment environments.
- Electrode constant: 1.0; measuring range: 0–2000 µS/cm. Materials/options: SS316L or titanium alloy construction. Working pressure: 0.3 MPa. Connections: 1/2" NPT or 3/4" NPT.
Product Features
- Double‑cylinder structure with titanium alloy option that forms a passive oxide layer for strong chemical resistance.
- Anti‑infiltration conductive surface resistant to most liquids (except hydrofluoric acid).
- Large‑area platinum electrodes available (K = 10 or 30 variants) for resistance to strong acids/alkalis and improved anti‑fouling.
- Multiple temperature compensation options selectable by the user (examples listed: NTC 2.25K, 2K, 10K, 20K, 30K, Pt100, Pt1000).
- Built for continuous online operation with industrial reliability.
Product Value
- Provides stable, reliable conductivity monitoring for process control and water quality assurance.
- Durable materials and corrosion‑resistant electrodes reduce maintenance and extend service life, lowering total cost of ownership.
- Flexible temperature compensation and mounting options make it adaptable to varied systems and instruments.
- Marketed as a cost‑effective (“best value”) option with industrial‑grade performance.
Product Advantages
- Robust material choices (titanium alloy or SS316L) and platinum electrode options for exceptional chemical resistance and longevity.
- Anti‑pollution electrode design and anti‑infiltration surface to maintain measurement accuracy in demanding conditions.
- Compact, field‑ready connections (1/2" or 3/4" NPT) for straightforward installation.
- Backed by a manufacturer with R&D, production and service capabilities, and commitment to quality and standards.
Application Scenarios
- Industrial online monitoring in water treatment plants and thermal power plant boiler/feedwater systems.
- Measurement in pure and ultra‑pure water applications (e.g., RO/DI systems).
- Sewage treatment and seawater purification industries (note: verify measuring range suitability for high‑salinity seawater applications).
- Food and power industry process monitoring.
- Hobbyist or commercial aquaria monitoring for freshwater or low‑salinity systems—confirm the 0–2000 µS/cm range fits the specific aquarium salinity before use.