E&H Oxymax COS61-A2F0 Optical Dissolved Oxygen Sensor 0-20 mg/l Range with 15m Cable
Endress+Hauser Oxymax COS61-A2F0 optical dissolved oxygen sensor provides fast, accurate 0-20 mg/l measurement with drift-free performance. Features chemical-free operation, long-term stability, and compatibility with COS31 sensors. Ideal for wastewater treatment, environmental monitoring, and industrial process control with minimal maintenance requirements.
High-performance optical oxygen sensor for precise dissolved oxygen measurement in water treatment, environmental monitoring, and industrial processes.
| Manufacturer | Endress+Hauser |
|---|---|
| Product Number | COS61-A2F0 |
| Measuring Range | 0.0-20 mg/l, 0-200% SAT, 0-400 hPa |
| Compatible Sensor | COS31 (digital) |
| Cable Length | 15 m |
| Shipping Weight | 3 kg |
| Measurement Range | 0 mg/l ... 20 mg/l 0% SAT ... 200% SAT 0 ... 400 hPa |
|---|---|
| Process Temperature | -5°C ... 60°C (23 - 140°F) |
| Process Pressure | Maximum 10 bar (145 psi) |
- Minimum maintenance requirements with maximum system availability
- Fast, drift-free measurement for precise aeration control and process monitoring
- Long-term stability for increased process safety and reliability
- High performance in all aeration processes including SBR and Anamox
- Chemical-free operation with no electrolyte handling required
- Easy measuring point changeover with optical technology compatibility
- Oxygen control in aeration basins
- Process water treatment and monitoring
- Status monitoring of drinking water (oxygen enrichment, corrosion protection)
- Water quality monitoring in rivers, lakes, and seas
- Oxygen control in biological treatment processes
- Process water treatment and monitoring across various industries
- Oxygen control for optimum fish growth conditions in fish farming
The Oxymax COS61 utilizes advanced optical fluorescence technology with an exclusive oxygen-selective fluorescence layer that ensures interference-free measurements. This optical sensor provides long-term stable performance without the maintenance requirements of traditional electrochemical sensors.