+86-13636393801
High-Speed and Low-Speed Permanent Magnet Motors from China Suppliers and Factory - Optimized Performance and Precision Control
R&D advantages
Advanced Control Technology:
Utilizing advanced control technology enables precise control of the motor's operating status. This advanced technology results in a faster motor response, improving control accuracy and stability. Furthermore, the advanced control technology optimizes motor efficiency, further enhancing energy savings.
Product Advantages
High efficiency
The product utilizes high-magnetic-induction, low-iron-loss silicon steel and customized control technology, resulting in improved average motor efficiency and significant energy savings. This high efficiency and energy-saving feature allows the motor to operate efficiently across a wide range of applications.
High quality and stable
Production is controlled using MES and ERP systems, 4000-hour internal durability testing ensures stability. (Design for Product) verifies the impact of the environment.
High reliability
The windings are monitored in real time, and fault information is fed back through the controller if the product is abnormal; the motor adopts external water cooling and internal oil cooling, which has a better cooling effect and a smaller size compared to air-cooled motors of the same power; the overall G1 dynamic balancing reduces the response caused by unbalanced mass.
Motor specifications
06 Air bearing high-speed motor
| Model type | Motor Power (KW) | Rotational speed (RPM) | Voltage (V) | Electric current (A) | Power Factor | EFF | B-EMF (VAC) |
|---|---|---|---|---|---|---|---|
| LZ115-F54011F | 5 | 39000 | 540VDC/380VAC | 8.44 | 0.973 | 0.925 | 340 |
| LZ115-F54021F | 7.5 | 34000 | 540VDC/380VAC | 12.52 | 0.977 | 0.931 | 328 |
| LZ90-F54011A | 18 | 110000 | 540VDC/380VAC | 29.72 | 0.968 | 0.948 | 322 |
| LZ100-F54021A | 25 | 80000 | 540VDC/380VAC | 40.84 | 0.9768 | 0.952 | 315 |
| LZ200-F54021D | 45 | 48000 | 540VDC/380VAC | 73.5 | 0.956 | 0.962 | 305 |
| LZ200-F54031D | 75 | 39000 | 540VDC/380VAC | 122.53 | 0.9607 | 0.968 | 295 |
06 Ceramic ball bearing high-speed motor
| Model type | Motor Power (KW) | Rotational speed (RPM) | Voltage (V) | Electric current (A) | Power Factor | EFF | B-EMF (VAC) |
|---|---|---|---|---|---|---|---|
| LZ110-F54011B | 5 | 26000 | 540VDC/380VAC | 9.58 | 0.943 | 0.925 | 338 |
| LZ110-F54021B | 7.5 | 24000 | 540VDC/380VAC | 12.87 | 0.951 | 0.931 | 328 |
| LZ110-F54031B | 9 | 20000 | 540VDC/380VAC | 15.52 | 0.941 | 0.936 | 322 |
| LZ160-F54041B | 11 | 20000 | 540VDC/380VAC | 18.91 | 0.932 | 0.948 | 315 |
| LZ160-F54051B | 15 | 20000 | 540VDC/380VAC | 25.44 | 0.941 | 0.952 | 305 |
| LZ160-F54061B | 25 | 20000 | 540VDC/380VAC | 41.51 | 0.957 | 0.956 | 295 |
| LZ160-F54071B | 35 | 18000 | 540VDC/380VAC | 57.22 | 0.967 | 0.961 | 290 |
| LZ160-F54081B | 40 | 15000 | 540VDC/380VAC | 66.78 | 0.945 | 0.963 | 290 |
| LZ160-F54091B | 45 | 15000 | 540VDC/380VAC | 74.81 | 0.947 | 0.965 | 290 |
| LZ160-F54101B | 55 | 17000 | 540VDC/380VAC | 92.13 | 0.938 | 0.967 | 285 |
06 Low Speed Motor
| Model type | Motor Power (KW) | Rotational speed (RPM) | Voltage (V) | Electric current (A) | Power Factor | EFF |
|---|---|---|---|---|---|---|
| LZ-1500-55 | 1.5 | 55 | 540VDC/380VAC | 2.9 | 0.95 | 0.81 |
| LZ-750-80 | 0.75 | 80 | 540VDC/220VAC | 2.9 | 0.95 | 0.81 |
| LZ-450-100 | 0.45 | 100 | 540VDC/220VAC | 1.3 | 0.95 | 0.82 |
| LZ-250-120 | 0.25 | 120 | 540VDC/220VAC | 1.3 | 0.95 | 0.82 |
Frequently Asked Questions
What are the main advantages of your Advanced Control Technology?
Advanced control technology enables precise management of the motor's operating status. This leads to a faster motor response, improved control accuracy, heightened stability, and optimized motor efficiency for increased energy savings.
How do the motors achieve high efficiency and energy savings?
Our motors utilize high-magnetic-induction, low-iron-loss silicon steel along with customized control technology. This combination improves the average motor efficiency and ensures significant energy savings across a wide range of applications.
What quality control standards are used during production?
Production is rigorously monitored using MES and ERP systems. Additionally, the motors undergo a 4000-hour internal durability testing process to guarantee long-term stability, while Design for Product (DFP) verifies environmental adaptability.
What cooling systems are used to ensure high motor reliability?
The motors feature a dual-cooling design combining external water cooling and internal oil cooling. This provides superior heat dissipation and allows the motors to remain compact compared to air-cooled motors of the same power.
How does the motor system handle electrical or mass imbalances?
Winding activity is monitored in real-time, feeding back fault data immediately through the controller if abnormalities arise. Furthermore, overall G1 dynamic balancing is applied to minimize vibrations and responses caused by mass imbalance.
What types of high-speed motors are available in your product line?
Our lineup includes Air Bearing High-Speed Motors (speeds up to 110,000 RPM), Ceramic Ball Bearing High-Speed Motors (speeds up to 26,000 RPM), and efficient Low-Speed Motors for specialized configurations.





