PY803T High Temperature Digital Pressure Gauge
PY803T High Temperature Digital Pressure Gauge is designed for accurate pressure measurement in high-temperature process environments. Featuring a heat dissipation structure, high-temperature pressure sensor and automatic temperature compensation, it delivers stable performance for steam systems, power plants, food processing and industrial process applications.
Technical Specifications
MEASUREMENT PERFORMANCE
FUNCTIONS & DISPLAY
ELECTRICAL & COMMUNICATION
MECHANICAL
ENVIRONMENTAL
Product Overview
PY803T High Temperature Digital Pressure Gauge is specifically engineered for reliable pressure measurement in high-temperature industrial processes. Equipped with a high-temperature pressure sensor and an integrated heat dissipation structure, it ensures long-term measurement stability under demanding operating conditions.
Designed for steam systems, power plants, heat exchangers and industrial process equipment, the PY803T provides high accuracy, automatic temperature compensation and excellent resistance to vibration, shock and corrosion. It is an ideal solution for pressure monitoring, calibration and process control where conventional pressure gauges cannot withstand elevated temperatures.
Key Specifications
- Pressure Type: Gauge Pressure
- Pressure Range: Up to 2500 bar
- Accuracy: Up to 0.02% FS
- Operating Temperature: 150°C,300°C,500°C,1000°C
- Display: 5- or 6-Digit LCD
Typical Applications
- Steam Systems
- Boilers & Heat Exchangers
- Power Generation
- Food & Beverage Processing
- Pharmaceutical Equipment
- Industrial Process Control
- High Temperature Pressure Monitoring
Product Features
- Pressure Range up to 2500 bar
- Accuracy up to 0.02% FS
- High Temperature Resistant Sensor
- Integrated Heat Dissipation Structure
- Automatic Temperature Compensation
- Shock, Vibration & Corrosion Resistant
- Max/Min Peak Recording
- Low Power Consumption
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Custom Manufacturing
When the conventional products can not meet your needs, we can provide you with customized services according to the technical parameters.




































