High-Performance Coolant Circulation Pump for Automotive Intercooler Cooling
Designed primarily for automotive intercooler cooling coolant circulation, the OWP-B93-300 pump is a reliable solution for enhancing heat dissipation efficiency in vehicle systems. Beyond its core application in turbocharger intercooler cooling, it also excels in EV motor cooling, EV motor controller cooling, EV battery thermal management, and other scenarios like battery energy storage cooling, fuel cell cooling, and large-scale GPU cooling, meeting diverse thermal management needs.
Key Advantages
Superior Efficiency: Professional electromagnetic theory design verification boosts the pump motor’s efficiency by 3-5% compared to competitors. Meanwhile, simulation calculation of hydraulic design via professional software ensures optimal matching between the impeller and volute, delivering higher hydraulic efficiency.
Extreme Durability: Adopting automotive-grade electronic components, the pump can withstand harsh operating environments. Its high-efficiency brushless DC motor not only reduces power consumption but also extends the service life to over 20,000 hours.
Comprehensive Protection: Equipped with reverse polarity protection, dry running protection, over-voltage/over-current protection, and overload/over-temperature protection, it ensures safe and stable operation.
Wide Temperature Adaptability: It operates smoothly in a medium temperature range of -40℃ to +85℃ (-40°F to +185°F), suitable for various climate conditions.
Specification Parameters Table
Parameter
Details
Model No.
OWP-B93-300
Power Input
12V
Rated Power
100W
Rated Flow Rate
1800L/H @ H=8.8M
Max Flow
3000L/H
Max Lift Head
11M
Medium
Glycol(50-60%)+water, dielectric oil, Electronic fluorinated solution
Nozzle Diameter
20mm
Speed Control
Constant Speed
IP Grade
IP68
Service Life
>20000hours
Weight
1.1kg
Connector Model
AMP282106-1(matched Plug AMP282088-1)
System Pressure
-0.2 to 2.5 bar (100℃ (212°F))
Performance Curve

PWM Speed Regulation & Fault Feedback



Overall Size

