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ZR202S

The Yokogawa ZR202S is a high-precision zirconia oxygen analyzer designed for continuous measurement of oxygen concentration in various industrial processes. Utilizing advanced zirconia sensor technology, it provides accurate and reliable oxygen analysis in combustion control, environmental monitoring, and process optimization applications.

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Specifications
Parameter Specification
Model Yokogawa ZR202S
Measurement Principle Zirconia sensor (electrochemical cell)
Measurement Range 0.1 ppm to 25% O₂ (multiple ranges available)
Accuracy ±1% of reading or ±0.5% O₂ (whichever is larger)
Response Time T90 < 15 seconds (for 90% response)
Sensor Operating Temperature 700°C to 800°C (standard)
Sample Gas Temperature Max. 200°C (without cooler)
Sample Gas Pressure 0.1 to 0.5 MPa (gauge pressure)
Output Signals 4-20 mA analog output (isolated)
Communication Interface RS-485 (MODBUS protocol)
Power Supply 100-240 V AC, 50/60 Hz
Operating Temperature -20°C to +55°C (electronics)
Enclosure Rating IP66 (NEMA 4X)
Dimensions Approximately 400 × 300 × 200 mm
Weight Approx. 15 kg
Key Features
High accuracy oxygen measurement

Fast response time (<15 seconds)

Wide measurement range from 0.1 ppm to 25% O₂

Robust construction for harsh environments

Easy maintenance and sensor replacement

Multiple output options (analog and digital)

IP66 rated enclosure for outdoor use

Measurement Performance
Minimum detectable concentration: 0.1 ppm O₂

Linearity: ±1% of full scale

Zero drift: ±1% of full scale per month

Span drift: ±1% of full scale per month

Repeatability: ±0.5% of reading

Environmental Conditions
Ambient temperature: -20°C to +55°C

Relative humidity: 5% to 95% RH (non-condensing)

Altitude: Up to 2000 m above sea level

Electrical Specifications
Power consumption: Max. 150 VA

Analog output: 4-20 mA DC, max. load 600 Ω

Alarm contacts: 2 SPDT relays, 250 V AC, 3 A

Isolation: 1500 V AC between all circuits

Sample Gas Conditions
Maximum particulate loading: <0.1 g/m³

Maximum moisture content: 85% RH (non-condensing)

Flow rate: 0.5 to 2.0 L/min (recommended)

Typical Applications
Boiler combustion optimization

Furnace efficiency monitoring

Flue gas oxygen analysis

Environmental emission monitoring

Chemical process control

Inert gas system monitoring

Incinerator gas analysis