The Eco Sensors UV Ozone Analyzer is a high-performance instrument designed to measure ozone concentrations from 0 to 900 ppm with precision. Utilizing ultraviolet absorption technology, it provides accurate, real-time ozone monitoring in industrial hygiene, environmental studies, and ozone system diagnostics.
Product Features
- Measurement range of 0 to 900 ppm for high-level ozone detection
- Automatically covers three ranges: 0 to 1, 0 to 10, and 0 to 900 ppm
- UV absorption technology using a mercury lamp filtered at 254 nm
- Accurate enough for lab use and rugged enough for industrial environments
- Real-time digital LCD display with time and date stamp for data logging
- Autoranging with fast response time for dynamic applications
- Compact and portable design with durable construction
- Multiple data outputs: serial port, USB, 0–2.5 VDC, and 4–20 mA
- Internal datalogger stores and transfers approximately 4 days of data
- LED indicators for power status, recalibration, and filter replacement
- Panel LED warns when ozone concentration exceeds 0.1 ppm
- Pre-calibrated and easy to recalibrate via user interface
- Optional datalogger allows download to PC via RS-232 for continuous monitoring
- Graphical display on PC includes max, min, average, and zoom capabilities
- Graph outputs can be labeled and exported to other applications
- Optional datalogger powered by 9 V alkaline battery (not included)
Benefits
- Ideal for high-concentration ozone monitoring in various environments
- Accurate, stable, and fast measurements with real-time data output
- Compact footprint and rugged housing for portability and durability
- Ensures safety and compliance in ozone-based systems and diagnostics
- Flexible data handling with multiple output and recording options
Why Choose the Eco Sensors 0 to 900 ppm?
The Eco Sensors is the trusted choice for professionals needing accurate, high-range ozone monitoring. Its UV-based sensing and user-friendly features make it ideal for industrial, environmental, and lab applications requiring precise ozone analysis.
