Reluctance Electric Motor

Reluctance Electric Motor

Reluctance Electric Motor is a high-efficiency and energy-saving motor that does not require permanent magnets. As a professional Reluctance Motor Manufacturer, AURIC Electromechanical focuses on the research and development and customization of high-performance reluctance motors, and is committed to providing customers with cost-effective solutions that can replace permanent magnet motors.
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Description
Technical Parameters

Product Overview

 

As a professional reluctance motor manufacturer, AURIC's Reluctance Electric Motor utilizes high-silicon steel laminations and an optimized magnetic circuit design, achieving an operating efficiency of up to 92%. Even under continuous full-load operation, the temperature rise can be stably controlled at ≤75K.

Compared to induction motors, its energy consumption can be reduced by 10%–15%, saving over 500–800 kWh of energy over a year of continuous operation (taking the 2.2kW model as an example).

 

Consistency and Quality Control: Every Unit Withstands Testing

 

All our Reluctance Electric Motors undergo comprehensive performance curve testing before leaving the factory, including: load torque stability testing, magnetic field uniformity scanning, dynamic balancing and vibration analysis. Test results meet IEC 60034 standards, with noise levels below 60dB and torque fluctuations below 3%. Every motor delivers the same output quality.

 

Customization and Compatibility: Equally Excellent for Different Systems

 

The control system of the Reluctance Electric Motor is designed for compatibility with a variety of control drives, including Switched Reluctance Controllers, FOC drives, PWM controllers, etc.

The following options are available upon request:
Voltage: 24V / 48V / 220V / 380V
Power: 0.5HP – 15HP
Structure: Standard / Axial Flux Reluctance Motor
Mounting Interface: Compatible with IEC standards and NEMA specifications

This compatible design reduces system modification costs for customers, allowing for direct replacement of existing drive units and shortening delivery and commissioning cycles.

 

Performance parameter table

 

Performance Parameter
Type Voltage(VAC) Frequency(Hz) speed (r/min) power (W) Speed Setting Start/Stop Control
ACM-01~~49 110/220 60/50 8000~~40000 500~~1500 Analog signal​ \ RS232 Digital signal \ RS232

 

Cost and Delivery Time: Stable Performance with Controllable Price

 

When evaluating motor solutions, buyers are most concerned with the balance between performance and price.

Reluctance Electric Motors do not require rare-earth permanent magnets, thus reducing production material costs by 20-30% and remaining stable despite fluctuations in rare-earth prices.

In the same power range, the overall operating cost is approximately 18% lower than BLDC motors.

Standard models have a lead time of only 25 days, and customized models can be sampled in 15 days, suitable for projects with tight timelines.

We offer long-term supply agreements and bulk pricing support to help customers lock in cost advantages.

 

Structural Design and Manufacturing Process: Simplified Design and Lower Maintenance Costs

 

This motor employs a three-phase symmetrical magnetic circuit structure and a low-tooth stator design. It has no permanent magnets or wound rotor, resulting in a lighter structure and lower heat loss.

Actual test data shows that its average maintenance cycle is over 20,000 hours, far exceeding that of typical AC asynchronous motors (approximately 8,000 hours).

The rotor's brushless and slip-ring-free design allows the equipment to operate stably for extended periods even in dusty or humid environments.

 

Certification and Compliance: Global Standards Support

 

Our motors meet ISO9001, CE, RoHS, and CCC certification requirements and have passed third-party laboratory efficiency tests, allowing direct export to European, North American, and Middle Eastern markets.

Purchasing our products allows for direct customs clearance and testing without additional testing.

 

Applications and Case Studies

 

Robot Systems: High response, low inertia, suitable for precise control;

Textile Machinery: Stable continuous operation, reducing downtime by 30%;

Industrial Pumps and Fans: 12% energy efficiency improvement, supports variable frequency control;

Electric Vehicles and Hybrid Equipment: Excellent high-temperature resistance, no risk of demagnetization;

CNC Equipment and Servo Platforms: Stable dynamic torque, extremely low noise.

Behind these performance characteristics lies over a decade of continuous improvement and testing accumulation of reluctance drive technology by AURIC.

 

After-sales and Technical Support: More Than Just Delivery, Long-Term Support

 

All our motors come with a 24-month warranty and comprehensive technical support.

Our engineering team can assist customers with control parameter debugging, electromagnetic analysis, and installation matching.

Original test reports, data curves, and CAD drawings are available to customers worldwide.

 

FAQ

 

1. Can reluctance motors replace permanent magnet motors?

Yes. Their performance is close to or even surpasses that of mid-range permanent magnet motors, while being less expensive, making them suitable for long-term, high-volume use.

2. Do you support OEM and ODM?

Fully supported. We provide complete OEM/ODM services, offering customized voltage, flange interfaces, control solutions, and power specifications.

3. What is the price of the Reluctance Electric Motor?

The starting price for standard models is approximately 15-20% lower than that of BLDC motors of the same power. Further discounts are available for bulk orders.

4. Can you provide Axial Flux Reluctance Motors?

Customization is possible. This product type is smaller and has higher torque density, suitable for robots and mobile equipment.

5. Which brands of control systems are compatible?

Compatible with common brands such as Delta, Siemens, Mitsubishi, and Inovance control systems.

 

Choosing a good Reluctance Electric Motor is more than just buying a motor; it's choosing a drive system that reduces energy consumption, increases productivity, and ensures stable operation.

At Reluctance, we help our customers gain a real cost and performance advantage in a highly competitive market through industrial-grade standards, rapid delivery, and sustainable solutions.

 

ACM Series High-Speed Switched Reluctance Motors​

 

Switched reluctance motors feature a unique rotor structure with no windings or permanent magnets, offering high mechanical strength and low rotational inertia-making them particularly suitable for high-speed operation. In recent years, AURIC has successively developed high-speed switched reluctance motors for small household appliances and power tools.

 

Key Functions

 

The high-speed switched reluctance motor drive system is primarily applied in small household appliances such as food processors and wall breakers. It enables high-speed, stable rotation of devices and supports multi-gear selection functionality.

 

Technical Features

 

  • Simple rotor structure, enabling speeds exceeding 50,000 r/min.
  • Low rotational inertia and fast dynamic response.
  • High mechanical strength, capable of withstanding high stress under high-speed rotation.
  • Wide speed regulation range, supporting more gear functions.
  • Independent phase control of motor windings ensures high stability.
  • Four-quadrant control operation for flexible performance adjustment.

 

Technical Specifications

 

Item

Specification

Power Input

Voltage: AC 220V / 110V
Frequency: 50Hz / 60Hz

Functional Parameters

Rated Power: 500–1500 W
Speed: 8000 r/min, 12,000 r/min, 20,000 r/min, 40,000 r/min
Speed Setting: Analog signal, RS232
Start/Stop Control: Digital signal, RS232
Speed Accuracy: ≤0.1%
Speed Variation Rate: ≤1%
PID: Built-in speed and feedback PID control (adjustable parameters)
Communication Port: RS232
I/O Interfaces: 2 digital inputs, 1 digital output, 1 analog input
Protection Functions: Short-circuit, overcurrent, overload, locked-rotor, overheating, overvoltage, undervoltage, overspeed protection

Operating Environment

Application: Food processors, power tools, etc.
Altitude: ≤1000 m (derating required above 1000 m)
Ambient Temperature: -25°C to +40°C
Relative Humidity: ≤85% RH
Vibration: <5 m/s²

Structure

Cooling Method: Controller-natural cooling; Motor-forced air cooling / self-fan air cooling
Insulation Class: Motor-Class B / F

 

Typical Applications

 

  • Switched reluctance motor drive systems for food processors.
  • Switched reluctance motor drive systems for wall breakers.

 

 

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