water potability

Reagent-Free Multi-Parameter Sensor

ATE1200
The Optosky ATE1200 Reagent-Free Multi-Parameter Sensor represents a breakthrough in eco-friendly water quality monitoring technology.
Delivery
FOB
minimum order
1 unit
Country of Origin
Made In China
Quantity
Contact Now
Description
 
The Optosky ATE1200 Reagent-Free Multi-Parameter Sensor represents a breakthrough in eco-friendly water quality monitoring technology. This advanced multi-parameter sensor enables simultaneous measurement of up to seven parameters with high precision. The sensor is designed for real-time, automated, and portable water quality testing, using an open flow cell for in-situ online testing. With its chemical-free technology, the ATE1200 eliminates the need for traditional reagents, reducing maintenance and extending instrument lifespan.
Ideal for various applications in industrial water analysis, environmental monitoring, and wastewater treatment, ATE1200 integrates smart water sensing with RS485 and Modbus RTU communication protocols for reliable data transmission. The ATE1200's innovative design overcomes the limitations of traditional reagent-based photometric colorimeters, offering a data-driven water analysis solution that's both efficient and reliable. By setting a new standard in chemical-free water quality monitoring, the ATE1200 provides a robust and eco-friendly technology for modern water management needs.
 
Features
 
  • 7Parameter Measurement
  • COD Measurement
  • Turbidity Measurement
  • Based on fluorescence measurement for              rapid detection
  • UVLED cold light source for long lifespan
  • Multi-parameter measurement
  • Real-time monitoring with quick response (minutes)
  • No sampling or pre-treatment required
  • Chemical-free
  • RS485 signal output
  • Low maintenance and operational costs
 
Application
 
  • Wastewater Treatment Plants
  • Environmental Monitoring
  • Water Quality Monitoring in Rivers, Lakes, Reservoirs, and Other Natural Water Bodies
  • Aquaculture Water Quality Monitoring
  • Industrial Production Process Control of Surface Water
  • Trend Analysis