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Xingdong DC Axial Fan 2010 - Suitable for car audio cooling fans

  • Date: 2025.09.11

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  • With the increasing sophistication of automotive electronics, increased power consumption and operating temperatures in audio systems have become common problems. Inadequate heat dissipation not only affects sound quality and stability but can also shorten the lifespan of the device. The Xingdong 2010 DC Axial Fan is specifically designed for automotive applications. Its efficient heat dissipation, low power consumption, and durability make it a preferred solution for automotive audio cooling.

    I. Core Advantages of the Xingdong 2010 DC Axial Fan
    Energy Efficiency: Optimizes energy efficiency and maintains high efficiency even at low speeds. Supports PWM speed regulation, dynamically adjusting airflow based on demand and reducing power consumption.
    Powerful Airflow: A high-speed design with a maximum speed of 18,000 RPM, an air volume of 1.89 CFM, and an air pressure of 7.23 mmH2O. Its supercharged structure enhances airflow penetration, making it suitable for high-load applications such as industrial cooling and equipment cooling.
    Noise Reduction: A fluid dynamics impeller design keeps operating noise below 37.3 dBA, achieving both quiet operation and efficient heat dissipation. Pure Copper Motor: The motor utilizes pure copper coils for excellent conductivity, reducing energy loss and improving durability. It supports long-term continuous operation and offers superior stability compared to ordinary aluminum wire motors.

    Easy Installation: Available in sizes suitable for a variety of devices (such as a 20×20×10mm design), it supports IP68 waterproofing and is compatible with industrial computers, chassis, new energy equipment, and other applications. Its installation interface is standardized. Durable bearings offer a lifespan of up to 80,000 hours and a temperature resistance range of -10°C to +70°C (operating) and -40°C to +70°C (storage). Made of PBT 94V-0, it is impact-resistant and flame-retardant, making it suitable for complex environments.

    II. Xingdong DC Axial Fan 2010 Product Design
    The Xingdong DC Axial Fan 2010 is specifically designed for the cooling needs of car audio systems. Its design integrates functionality, adaptability, and durability, providing reliable support for in-car audio systems from multiple perspectives. Compact and Slim Design:
    Measuring 20×20×10mm, this sophisticated design is based on in-depth research into the internal spatial layout of car audio systems. Car audio systems are compact, with numerous electronic components and circuit boards densely arranged. The Xingdong DC Axial Fan 2010, with its compact design, can be flexibly installed in the tight spaces of audio equipment. Whether it's a built-in speaker or a standalone audio module, it easily fits without taking up excessive space, ensuring perfect compatibility with the original structure and facilitating subsequent installation and maintenance.

    Aerodynamic Design for Efficient Heat Dissipation:
    The carefully designed fan blades feature a special curvature and angle, effectively reducing air resistance and increasing air flow and velocity during fan operation. When the DC motor drives the fan blades at high speed, a strong axial airflow is generated, directly impacting the heating elements within the audio system. This creates efficient forced convection cooling, quickly dissipating heat and reducing the internal temperature, ensuring stable operation of core components at optimal temperatures.

    Optimized Air Path: The fan housing's air duct design has also been meticulously calculated. Its internal flow-guiding structure evenly distributes airflow, preventing energy loss caused by turbulent airflow. This further improves heat dissipation efficiency and ensures that heat from the entire audio system is quickly and smoothly dissipated.

    Reliable and Stable Circuit and Functional Design: Power Adaptation: The operating voltage is set to a common 12V, naturally compatible with automotive electrical systems. No additional power conversion equipment is required, reducing circuit connection complexity and minimizing the risk of failure, ensuring stable fan operation in automotive electrical environments.