logo
Welcome to Changzhou Bextreme Shell Motor Technology Co.,Ltd
+86 18152874275

High Efficiency Charging Pile Liquid-Cooled Pump With a MAX Head Pressure of 600Kpa for Liquid-Cooeld EV Super-Fast Charging Station.

Basic Properties
Place of Origin: China
Brand Name: Bextreme Shell
Certification: CE
Model Number: OWP-BL60H-D2-1
Trading Properties
Minimum Order Quantity: 1
Price: Negotiable
Payment Terms: T/T,Western Union
Supply Ability: 10000pcs/month
Product Summary
High-efficiency 60W liquid-cooled pump for EV charging stations. Delivers 3L/min flow, 60m head, IP67 protection, and 20,000h lifespan. Energy-saving design with speed control for optimal cooling performance.

Product Details

Highlight:

liquid-cooled EV charging pump

,

high efficiency coolant pump 600Kpa

,

DC fast charging station pump

Product Name: Electric Coolant Pump
Operaitng Voltage: DC 24V
Power: 60 Watts
Protection Level: IP 68
Service -Life: 20000h
Performance: Q=2L/min @H=30m
Product Description
High Efficiency Charging Pile Liquid-Cooled Pump
Model: OWP-BL60H-D2-1
This energy-efficient cooling component is specifically designed for new energy vehicle liquid-cooled charging piles, optimizing coolant circulation to enhance charging efficiency while minimizing power consumption. Engineered for high performance with low energy use, this pump offers a cost-effective solution for modern charging infrastructure.
Technical Specifications
Model OWP-BL60H-D2-1
Input Voltage 24VDC (16-32V wide range)
Rated Power 60W
Maximum Flow 3L/minute
Maximum Head 60 meters
Rated Performance Q=2L/min, H≥30m
Medium Compatibility 50%-60% ethylene glycol + water, insulating oil, fluorinated liquid
Medium Temperature Range -40℃ to +85℃
Inlet/Outlet Diameter 10mm
Speed Control Supported
Error Feedback Supported
Protection Class IP67
Noise Level ≤45 decibels
Service Life >20000 hours (at 36℃ ambient temperature & rated voltage)
Weight 650 grams
System Pressure Resistance -99-600Kpa (at 100℃)
Applications
This high-efficiency pump is designed for the new energy vehicle charging industry, specifically for liquid-cooled charging piles including commercial superchargers, public fast-charging stations, and industrial EV charging systems. It serves as the core component of coolant circulation systems, effectively dissipating heat from charging modules, power units, and cables to maintain optimal operating temperatures, thereby improving charging speed and extending equipment lifespan.
Key Advantages
  • Exceptional energy efficiency with 60W rated motor delivering maximum flow of 3L/min and 60-meter head
  • High hydraulic efficiency minimizes power consumption while meeting cooling demands
  • Reduces operational costs for charging station operators, especially in high-traffic facilities
  • Stable, efficient circulation under standard working conditions (Q=2L/min, H≥30m)
  • IP67 protection class ensures durability in harsh environments
  • Wide temperature range (-40℃ to +85℃) and medium compatibility for reliable operation in diverse climates
  • Speed control and error feedback functions support intelligent energy management
  • Long service life (>20000 hours) with maintenance-free design
  • Perfect balance of performance, energy savings, and reliability for charging piles
Product Documentation
High Efficiency Charging Pile Liquid-Cooled Pump With a MAX Head Pressure of 600Kpa for Liquid-Cooeld EV Super-Fast Charging Station. 0
PWM Speed Control Mode
High Efficiency Charging Pile Liquid-Cooled Pump With a MAX Head Pressure of 600Kpa for Liquid-Cooeld EV Super-Fast Charging Station. 1
Head VS Flow Rate
High Efficiency Charging Pile Liquid-Cooled Pump With a MAX Head Pressure of 600Kpa for Liquid-Cooeld EV Super-Fast Charging Station. 2
Overall Size
High Efficiency Charging Pile Liquid-Cooled Pump With a MAX Head Pressure of 600Kpa for Liquid-Cooeld EV Super-Fast Charging Station. 3
Product Assembly
High Efficiency Charging Pile Liquid-Cooled Pump With a MAX Head Pressure of 600Kpa for Liquid-Cooeld EV Super-Fast Charging Station. 4
Product Details
Related Products

Send An Inquiry