The High-Temperature Water Temperature Control Unit is a specialized industrial system built to handle extreme thermal demands, offering stable temperature regulation from inlet water temperature +25℃ up to 180℃ (depending on the model). Featuring an indirect cooling design and high-performance components, it is tailored for industries requiring precise high-temperature management.
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This unit addresses the challenges of high-temperature process control, enabling consistent heat transfer in demanding applications. By maintaining accurate temperatures even at 180℃, it supports complex manufacturing processes, enhances production efficiency, and ensures compliance with strict industry standards.

Available in two temperature ranges (25℃-150℃ for AEWH series and 25℃-180℃ for AEWT series), the High-Temperature Water Temperature Control Unit meets diverse high-heat requirements across industries.
The indirect cooling method prevents direct contact between cooling media and heat transfer circuits, reducing corrosion risks and extending equipment lifespan, even in high-temperature operations.
Equipped with comprehensive alarms (pump reversal, water shortage, overheating, overloading, high pressure), the unit provides 360° safety coverage, minimizing operational risks and equipment damage.
With pump heads up to 120m and flow rates reaching 235 L/min (AEWT-30 model), it ensures efficient heat distribution even in large-scale or complex piping systems.
Built with high-temperature resistant materials and a reinforced frame, the unit withstands extreme operating conditions, delivering consistent performance in heavy-duty industrial settings.
ITEM | UNIT | MODEL | ||||
AEWH-10 | AEWH-20 | AEWT-10 | AEWT-20 | AEWT-30 | ||
Temp control range | ℃ | Inlet water temperature +25℃-150℃ | Inlet water temperature +25℃-180℃ | |||
Temp control accuracy | ℃ | PID±1℃ | ||||
Power supply | AC3P 380/400V 50Hz(3phase+Earth) | |||||
Heat transfer medium | Water | |||||
Cooling method | Indirect Cooling | |||||
Heating capacity | kW | 9 | 12 | 9 | 12 | 24 |
Motor power | kW | 0.75 | 1.5 | 0.75 | 1.5 | 2.2 |
Pump flow | L/min | 40 | 60 | 95 | 153 | 235 |
Pump head | m | 60 | 60 | 120 | 120 | 120 |
Max. power consumption | kW | 9.75 | 13.5 | 9.75 | 13.5 | 26.2 |
Alarm function | Pump reversal/Water shortage/Overheating/Overloading/High pressure | |||||
Cooling water pipe | inch | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 |
Circulating water pipe | inch | 3/8*2 | 1 | 3/8*4 | 1 | 1.2 |
Size(L×W×H) | mm | 700*360*780 | 700*360*780 | 700*360*780 | 700*360*780 | 1200*420*1000 |
Ideal for high-temperature reactions, distillation, and sterilization processes, ensuring precise temperature control to maintain product purity and reaction efficiency.
Suitable for plastic injection molding and die-casting molds requiring high temperatures (up to 180℃), improving mold filling and product quality for complex components.
Regulates temperature in battery cell production and solar panel manufacturing. Supporting high-heat processes critical to material performance.
Controls curing temperatures for rubber products and composite materials. Ensuring uniform cross-linking and enhancing product strength and durability.
Capable of maintaining stable temperatures up to 180℃ with ±1℃ accuracy, outperforming standard units in extreme thermal environments.
The indirect cooling system protects internal components from high-temperature corrosion, reducing maintenance costs and extending service life.
The multi-alarm system (including high-pressure and overheating alerts) provides unmatched safety, critical for high-temperature industrial operations.
Available in 5 models with varying heating capacities and flow rates, the unit can be tailored to small-scale labs and large industrial facilities alike.
Install in a well-ventilated area with a minimum clearance of 50cm for heat dissipation.
Use high-temperature resistant pipes (as per specifications) and pressure-resistant connections.
Ensure the power supply meets AC3P 380/400V 50Hz requirements with adequate load capacity.
Fill the system with deionized water to prevent scaling at high temperatures.
Select the appropriate temperature range based on the model (150℃ or 180℃).
Initiate the unit and allow 10-15 minutes for temperature stabilization.
Monitor pressure and temperature displays continuously during operation.
Replace deionized water every 2 months to avoid mineral buildup.
Inspect high-pressure components and seals quarterly for wear.
Conduct a professional calibration and system check every 6 months.
The AEWT series supports up to 180℃, while the AEWH series reaches 150℃, both with PID±1℃ accuracy.
Indirect cooling prevents corrosion and scaling in high-temperature environments, ensuring long-term reliability and performance.
The unit detects abnormal system pressure and triggers an alarm, automatically reducing power to prevent equipment damage.
Yes, our technical team can assist with selecting the right model or modifying parameters to meet your needs—contact us for details.
The Standard Water Temperature Control Unit is a cutting-edge industrial equipment designed for reliable temperature regulation in mid-to-low temperature scenarios. Engineered with advanced PID control technology, it utilizes water as the primary heat transfer medium to maintain stable temperatures between inlet water temperature +25℃ and 100℃, making it an indispensable tool for industries requiring consistent thermal management.
The High-Temperature Water Temperature Control Unit is a specialized industrial system built to handle extreme thermal demands, offering stable temperature regulation from inlet water temperature +25℃ up to 180℃ (depending on the model). Featuring an indirect cooling design and high-performance components, it is tailored for industries requiring precise high-temperature management.
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