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High-Speed and Low-Speed Permanent Magnet Motors from China Suppliers and Factory - Optimized Performance Solutions

Introducing our advanced permanent magnet motor system integration and optimization design platform, expertly crafted in China. This platform seamlessly combines various engineering disciplines, including mechanics, electrical engineering, thermodynamics, and electromagnetics. By utilizing high-precision coupled simulations and experimental verifications of magnetic fields, force fields, fluid fields, and temperature fields, we enhance motor performance to deliver products that operate efficiently, reliably, and quietly with minimal vibration, Our state-of-the-art vector control platform for permanent magnet synchronous motors, based on voltage feedforward, ensures precise control over current, voltage, rotor position, and temperature. This results in exceptional efficiency and accuracy, making it the ideal choice among suppliers and factories striving for high output and reliability in their motor solutions

    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

    How does the advanced control technology benefit motor operation?

    The advanced control technology enables precise control of the motor's operating status. This leads to a faster motor response, improved control accuracy, stability, and optimized motor efficiency for enhanced energy savings.

    What materials are used to achieve high efficiency in these motors?

    The motors utilize high-magnetic-induction, low-iron-loss silicon steel along with customized control technology to improve average motor efficiency and achieve significant energy savings.

    How is the quality and stability of the motors verified?

    Production is strictly controlled using MES and ERP systems. Stability is verified through a 4000-hour internal durability testing and Design for Product (DFP) environmental impact verification.

    What cooling methods are used to ensure motor reliability?

    The motor adopts a dual cooling design featuring external water cooling and internal oil cooling. This provides a superior cooling effect and allows for a smaller physical size compared to air-cooled motors of the same power.

    Does the motor support real-time abnormal monitoring?

    Yes, the windings are monitored in real time, and fault information is automatically fed back through the controller if any product abnormality is detected.

    What types of high-speed motors are detailed in the specifications?

    The specifications detail 06 Air bearing high-speed motors, 06 Ceramic ball bearing high-speed motors, and 06 Low Speed Motors, covering various power outputs, voltages, and rotational speed configurations.

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