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JONENG
steam trap are available in threaded and flanged types, with various sizes and pressure ratings. They are high-temperature and corrosion-resistant, offer sensitive opening and closing, and provide stable drainage, making them suitable for steam systems.

This 317 stainless steel thermodynamic wireless monitoring steam trap operates based on the flow rate and pressure difference between steam and condensate. When condensate and air enter the valve body, the valve plate is opened, and the condensate is quickly discharged. When high-temperature steam arrives, it creates a momentary low-pressure zone above the valve plate, causing the valve plate to close quickly and preventing steam leakage. The valve cycles periodically between opening and closing, achieving efficient condensation. The wireless monitoring module can collect data such as temperature and opening/closing status in real time and transmit it remotely for operation monitoring and energy-saving management.

| Body Material | SS304 / SS316L Stainless Steel |
| Connection Type | Clamp / Threaded / Welded |
| Nominal Size | DN15 – DN50 (1/2" – 2") |
| Design Pressure | PN16 / PN25 / PN40 |
| Working Pressure | 16 – 40 bar |
| Working Temperature | 220 – 400°C |
| Applicable Media | Saturated Steam, Condensate |
| Surface Finish | Ra ≤ 0.8 μm |
| Standards | DIN / SMS / ISO / 3A |

Made from SS317 stainless steel, offering superior corrosion resistance and strength for long-term operation in high-temperature and high-pressure steam systems.
Thermodynamic disc design provides rapid response to changes in steam and condensate conditions, ensuring efficient condensate discharge while minimizing live steam loss.
Integrated wireless monitoring enables real-time tracking of temperature, discharge cycles, and operating status for predictive maintenance and energy management.
Compact and rugged structure supports stable performance under fluctuating loads, including superheated steam and intermittent condensate flow conditions.
Simple internal construction with few moving parts reduces wear, eases maintenance, and ensures reliable operation in demanding industrial environments

This steam trap is widely used in food and beverage, pharmaceutical, bioengineering, chemical, and cleanroom piping systems. For example, it is used in pasteurization equipment, reactor jackets, heat exchangers, and steam tracing pipelines to promptly drain condensate, prevent water hammer, improve heating efficiency, and ensure the stability and safety of the production process.

Working Principles

This 317 stainless steel thermodynamic wireless monitoring steam trap operates based on the flow rate and pressure difference between steam and condensate. When condensate and air enter the valve body, the valve plate is opened, and the condensate is quickly discharged. When high-temperature steam arrives, it creates a momentary low-pressure zone above the valve plate, causing the valve plate to close quickly and preventing steam leakage. The valve cycles periodically between opening and closing, achieving efficient condensation. The wireless monitoring module can collect data such as temperature and opening/closing status in real time and transmit it remotely for operation monitoring and energy-saving management.
Feature and Specification

| Body Material | SS304 / SS316L Stainless Steel |
| Connection Type | Clamp / Threaded / Welded |
| Nominal Size | DN15 – DN50 (1/2" – 2") |
| Design Pressure | PN16 / PN25 / PN40 |
| Working Pressure | 16 – 40 bar |
| Working Temperature | 220 – 400°C |
| Applicable Media | Saturated Steam, Condensate |
| Surface Finish | Ra ≤ 0.8 μm |
| Standards | DIN / SMS / ISO / 3A |


Features

Made from SS317 stainless steel, offering superior corrosion resistance and strength for long-term operation in high-temperature and high-pressure steam systems.
Thermodynamic disc design provides rapid response to changes in steam and condensate conditions, ensuring efficient condensate discharge while minimizing live steam loss.
Integrated wireless monitoring enables real-time tracking of temperature, discharge cycles, and operating status for predictive maintenance and energy management.
Compact and rugged structure supports stable performance under fluctuating loads, including superheated steam and intermittent condensate flow conditions.
Simple internal construction with few moving parts reduces wear, eases maintenance, and ensures reliable operation in demanding industrial environments
Application

This steam trap is widely used in food and beverage, pharmaceutical, bioengineering, chemical, and cleanroom piping systems. For example, it is used in pasteurization equipment, reactor jackets, heat exchangers, and steam tracing pipelines to promptly drain condensate, prevent water hammer, improve heating efficiency, and ensure the stability and safety of the production process.