RGeasy DCCF1 Residual Chlorine Sensor Launches with Dual Advantages of Maintenance-Free Operation and High Performance

In the field of water quality safety management, residual chlorine monitoring serves as the "critical line of defense" for safeguarding water health. Today, we are proud to introduce a groundbreaking solution that is set to redefine the industry — the RGeasy DCCF1 Residual Chlorine Sensor! This innovative product, leveraging the technical expertise of Germany's Reiss, not only breaks through traditional limitations with advanced technology but also sets a new standard for residual chlorine monitoring with its core advantages of "zero maintenance, high stability, and strong adaptability".
I. Technological Innovation: Bid Farewell to Traditional Pain Points and Usher in the Maintenance-Free Era
Traditional residual chlorine sensors often struggle with "frequent electrolyte replacement" and "easily worn membrane caps", leading to issues such as "frequent maintenance and shutdown false alarms". However, the RGeasy DCCF1 Residual Chlorine Sensor achieves a technological breakthrough:
Core Technology Upgrade: Equipped with a three-electrode constant amperometry detection technology, it significantly enhances detection accuracy and anti-interference capabilities, marking a new milestone in water quality monitoring technology.
Revolutionary Design: It completely eliminates the electrolyte and membrane cap structure, fundamentally solving the maintenance problems of traditional products. There is no need for regular consumable replacement, and the sensor can operate stably once installed, truly realizing "zero maintenance" and reducing labor and time costs by 90%.
Ultra-Simplified Operation: No complex debugging is required. The sensor can be quickly put into use after installation, with no threshold for new users, greatly shortening the project implementation cycle.
II. 7 Core Advantages: Fully Adapt to Water Quality Monitoring Needs

The strength of the RGeasy DCCF1 Residual Chlorine Sensor lies in every performance detail tailored to real scenarios. Its 7 core advantages cover all-dimensional needs from operation to working conditions:
Extremely Simple Operation: It can be activated immediately after installation, requiring no professional debugging, and seamlessly integrates into existing monitoring systems.
Superior Stability: Even in a chlorine-free environment (zero residual chlorine concentration), it maintains excellent signal output, eliminating false alarms and system interruptions.
Rapid Response: It captures changes in residual chlorine in water in real time, with no delay in data feedback, enabling early detection of emergencies.
Quick Adaptation: It has a short running-in time and quickly enters a stable working state after startup, without long waiting periods.
High-Pressure Resistance: It can withstand a maximum working pressure of 8 bar, making it suitable for various high-pressure water treatment scenarios.
Strong Anti-Interference: It has good tolerance to surfactants and remains accurate even in complex water quality environments.
Zero Maintenance: No consumable wear and no regular maintenance requirements, ensuring worry-free long-term operation.
III. Application Scenarios & Conditions: Precise Adaptation for Stable Operation
Core Application Fields
Developed specifically for residual chlorine monitoring in key scenarios such as swimming pool water and drinking water, it can be widely used in:
Water quality management of various public and private swimming pools
Monitoring in municipal drinking water plants and secondary water supply stations
Centralized water supply systems in hotels, schools, and enterprises
Other water treatment sites requiring precise residual chlorine monitoring
Applicable Operating Conditions
To ensure the long-term stable operation of the sensor, the following usage environment requirements must be met:
pH Value: A stable pH environment
Temperature: Operating temperature not exceeding 45°C
Pressure: Maximum working pressure of 8 bar (consistent with the pressure resistance)
Conductivity: Applicable water conductivity range of 0.2-10 mS/cm
Real-Time Monitoring with DABECO's W510 Instrument

The DCCF1 is responsible for accurately measuring the residual chlorine concentration, while the W510 undertakes data processing, display, and control functions. The two work in synergy to achieve automated management and control of the disinfection process.
IV. Behind the Choice: Technical Strength and Service Commitment
The launch of the RGeasy DCCF1 Residual Chlorine Sensor is not only another breakthrough in water quality monitoring technology but also embodies our unwavering commitment to "providing customers with more reliable and convenient solutions". From technology research and development to scenario adaptation, every detail is designed to solve practical pain points, transforming water quality monitoring from "cumbersome maintenance" to "efficient and worry-free".
If you want to obtain detailed product parameters, customize an exclusive monitoring solution, or apply for a sample trial, please feel free to contact us directly.