The PolyScience Recirculating Cooler Model 3370 with a positive displacement pump is an economical solution for applications where the cooling fluid temperature is higher than ambient and precise temperature control is not required. This liquid-to-air cooler offers quiet operation and is equipped with a built-in low liquid level indicator to safeguard the reservoir and pumping system.
This recirculating cooler is ideal for laboratory applications requiring efficient heat removal without the need for precise temperature control. Its compact design saves space, and the cleanable air and fluid filters ensure easy maintenance.
It is an economical solution for applications where the cooling fluid temperature is higher than ambient and precise temperature control is not required. This liquid-to-air cooler offers quiet operation and is equipped with a built-in low liquid level indicator to safeguard the reservoir and pumping system.
Yes. It is designed for laboratory applications requiring efficient heat removal without the need for precise tem, and offers a cooling capacity of up to 4000 watts based on 11°C ΔT (water) and a pump type of 1/3 HP Positive Displacement Pump to support this kind of work.
It has a cooling capacity of up to 4000 watts based on 11°C ΔT (water), a pump type of 1/3 HP Positive Displacement Pump and a flow rate of 7.6 L/min at 50 Hz, and is supplied under manufacturer part number 3370P9A12E.
It offers ambient +5°C to 70°C, an economical cooling solution for applications where cooling fluid temperature is higher than ambient and temperature control is not required, quiet liquid-to-air cooling and positive displacement or turbine pump.
For laboratory applications requiring efficient heat removal without the need for precise tem, the PolyScience model is the better choice, offering a cooling capacity of up to 4000 watts based on 11°C ΔT (water), a pump type of 1/3 HP Positive Displacement Pump and a flow rate of 7.6 L/min at 50 Hz. The Julabo model offers a cooling capacity of 1.2 kW at 20°C, a temperature stability of ±0.5°C and a bath volume of 12 to 17 L as an alternative, while the PolyScience model's ambient +5°C to 70°C and an economical cooling solution for applications where cooling fluid temperature is higher than ambient and temperature control is not required help make it a strong fit for laboratory applications requiring efficient heat removal without the need for precise tem.
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