Corrosion-resistant and Wear-resistant Radiator Fan for Neta Vehicles - Direct Replacement Cooling Fan

Corrosion-resistant and Wear-resistant Radiator Fan for Neta Vehicles - Direct Replacement Cooling Fan

Key Attributes

Brand Name:Neta
Place of Origin:China
Payment Terms:T/T

Product Summary

Radiator Fan For Neta offers direct bolt-on replacement with high-quality steel and plastic construction. Features corrosion/wear resistance, 12-month warranty, competitive pricing, and ready-to-ship availability.

Product Details

Dimensions: Varies By Part, Standard OEM Size
Material: High-quality Steel And Plastic
Durability: Corrosion-resistant And Wear-resistant
Installation Type: Direct Replacement, Bolt-on
Compatibility: Neta Vehicles
Product Description
Detailed Specifications & Features
Radiator Fan For Neta

This high-performance radiator fan is specifically engineered for Neta electric vehicles, ensuring optimal cooling efficiency and extended battery life. Designed with precision, it provides reliable thermal management under various operating conditions, from urban driving to high-speed cruising.

Key Features
  • High-efficiency cooling for consistent performance
  • Durable construction with automotive-grade materials
  • Optimized airflow design for maximum heat dissipation
  • Low noise operation enhances driving comfort
  • Precise fit and easy installation for Neta models
  • Energy-efficient design to minimize power consumption
Technical Specifications
Parameter Value
Voltage 12V
Current 8A
Power 96W
Fan Diameter 350mm
Material PA66-GF30 Composite
Operating Temperature -40°C to +120°C
Lifespan >50,000 hours
Noise Level < 60 dB (at max speed)
Compatibility & Application

This radiator fan is specifically designed and rigorously tested for seamless integration with Neta V, Neta U, and Neta S electric vehicle models. It serves as a direct replacement for original equipment, guaranteeing optimal performance and maintaining the vehicle's thermal integrity. Ideal for both new installations and replacement parts in maintenance scenarios.