Customization: | Available |
---|---|
Material: | Aluminum |
Usage: | Ahu/FFU/Retrofitting Fan/Air Conditioning |
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Voltage Type
|
AC
|
Motor Type
|
EC Brushless External Rotor Motor
|
Impeller Diameter
|
630mm
|
Impeller Material
|
Aluminum
|
Direction of Rotation
|
Clockwise, seen on rotor
|
Speed Control
|
0-10VDC
|
Type of Protection
|
IP54
|
Bearing
|
Maintenance-free ball bearings
|
Frequency
|
50/60Hz
|
Insulation Class
|
F
|
Operation Temperature
|
- 25 ºC ~ +60 ºC
|
Motor Protection
|
Locked-Rotor Protection, Reverse Polarity Protection, Thermal Protection, Soft Start
|
The Achelous Series EC Fan represents the next generation of energy-efficient centrifugal fans, designed to meet the growing demand for sustainable, high-performance ventilation solutions. Built for energy saving and reliability, these fans combine advanced EC motor technology with innovative aerodynamic design to deliver superior performance while minimizing energy consumption.
With a focus on high efficiency, low noise operation, and precise control, the Archelous Series is ideal for a wide range of appliaciton, including New Generation AHU to AHU refurbishment. The series meets international quality and safety standards, ensuring consistent reliability across applications.
Engineered for flexibility, the Achelous Series EC Fan offers various impeller sizes, ranging from 310mm to 630mm, capable of achieving a maximum airflow of 25,000 m³/h and a static pressure of up to 2,300 Pa. It also supports configurations such as fan walls for higher airflow demands. Customizable options include C5 corrosion protection, IP56 protection rating, and operation at temperatures as low as -40°C. Additionally, the series provides a choice of motor types-EC, DC, or AC-to match specific power and efficiency requirements. Upgrade to the Achelous EC Fan for enhanced efficiency, reduced maintenance, and a future-ready approach to ventilation technology.
Product Features
High Static Pressure
The centrifugal fan's three-dimensional blades are optimized by using the outlet boundary layer thickness as the optimization target, allowing the impeller to effectivelygenerate high static pressure at high rotational speeds.The impact on the blade leading edge and the separation at the blade trailing edge are both reduced to varying degrees, thereby decreasing internal flow losses within the impeller and improving efficiency. The reduced blade count design helps maintain good flow separation under high flow conditions, further minimizing flow losses.
Low Noise
The impeller is made of high-strength aluminum magnesium alloy, ensuring minimal axial and radial runout, reducing imbalance, and effectively controlling vibration. The optimized conical-arc-shaped collector effectively enhances intake efficiency by adjusting the expansion and contraction angles. At the same time, the integrated installation ensures the optimal position of the collector's invasion into the impeller front plate, reducing vortex noise.
Energy Efficiency
Advanced electromagnetic design: Using the electromagnetic simulation software Ansoft Maxwell and the electromagnetic system is designed and developed through a forward design process.The fully insulated motor shaft solution ensures no electromagnetic corrosion.
High efficiency: We adopt advanced EC technology, enabling the motor to maintain high efficiency under various operating conditions, significantly reducing energy consumption and helping users save on long-term operating costs.
Fast response: The motor has excellent speed control capabilities, allowing it to quickly adapt to load changes and ensure stable operation in different working environments.
Precise control: The precise control algorithms enable the motor to maintain consistent performance in constant airflow and constant speed applications, enhancing overall system reliability.
Strict quality control: We implement rigorous quality control s standards throughout the production process, from raw material selection to final product testing, ensuring that each motor meets high-performance and quality standards.
Durability design: The motor is designed with hightemperature and corrosion-resistant materials, ensuring stable operation even in harsh environments extending its service life.
Long-term performance validation: Through multiple rounds of durability testing and practical application verification, the long-term stability of the motor is fully ensured, reducing maintenance frequency.
Flexible and Percise Control
0.1V control accuracy: Using Altium Designer for control system development, the vector control method is employed. By decomposing current into excitation and torque components through coordinate transformation, excellent control precision and response speed are achieved. The sensorless full-speed range control solution for fans ensures stable control even in harsh environments. Additionally, it features MODBUS/VSP speed control, allowing precise fan control and feedback via the RS485 protocol, and can be directly integrated with centralized controllers or BMS systems.
Nine circuit protection: Nine circuit protection measures are in place to prevent potential risks. For AHU duct negative pressure leading to fan reverse rotation, reverse airflow startup is also supported.
Product Applications
AHU Refurbishment
The energy loss, high maintenance costs, and potential stability issues commonly associated with traditional belt-driven fans in Air Handling Units (AHUs) are significant concerns for many facility managers. Our innovative fan wall retrofit solution addresses these issues effectively, offering a more reliable and energy-efficient alternative. By replacing conventional forward-curved belt-driven fans with modern EC fans configured in a fan wall system, we can achieve remarkable improvements in performance. This upgrade not only enhances energy efficiency by 20% to 50%but also reduces noise levels, simplifies maintenance, and extends the lifespan of the equipment. It's a cost-effective and sustainable solution for AHU optimization.
Air Conditioning Equipment
AHU: With a maximum static pressure of 2300 Pa, the fan satisfies the high-resistance demands of AHU applications. A single fan can deliver up to 6 kW of power and a maximum airflow of 23,000 m³/h. Additionally, for industrial applications, a fan wall combination option is available, providing flexible solutions to meet diverse application requirements
Rectangular Duct Fan: EC fans are ideal for rectangular duct fans, offering high energy efficiency, precise speed control, and low noise operation. Their compact design and long lifespan make them perfect for tight spaces, ensuring reliable performance and reduced energy consumption.
FFU: For FFU (Fan Filter Unit) applications, which require high efficiency, low noise, and stable group control in medium to low static pressure environments, two highly efficient fan models have been specifically developed. This two fans are tailored to meet the unique demands of FFU systems, ensuring optimal performance in such scenarios.