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Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW

    Buy cheap Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW from wholesalers
     
    Buy cheap Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW from wholesalers
    • Buy cheap Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW from wholesalers

    Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW

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    Brand Name : ENN
    Model Number : PMM
    Certification : CE
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    Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW

    5-3MW Energy Saving Permanent Magnet AC Motor


    Energy Efficiency Standards
    comply with GB30253-1 grade
    Work Mode
    S1
    Altitude
    below 1000m
    Environmental Temperature
    -15~+40℃
    Installation Dimensions
    comply with IEC standard
    Control Mode
    variable frequency vector control
    Power Range
    5.5 〜3000kw
    Install Type
    IMB3 IMB5 IMB35
    Cooling Way
    IC411 or IC416
    Rated Efficiency
    50,75,125,150Hz(customized as per requirement)
    Insulation Class
    F(H)
    Optional Parts
    Encoder, spiral transformer, PTC, PT100
    Protection Grade
    IP54(IP23 customizable)
    Wiring Type
    junction box (aviation plug can be customized as per requirement)
    Installation
    IMB3 IMB5 IMB35
    Rated Voltage
    380V±10%,660V±10%

    Required Environment
    below 1000m altitude
    temperature -15〜45°C
    relative humidity below 90%


    What Is The Permanent Magnet Synchronous Motor?


    The PERMANENT MAGNET SYNCHRONOUS MOTOR is mainly composed of the stator, rotor, chassis, front-rear cover, bearings, etc. The structure of the stator is basically the same as that of ordinary asynchronous motors, and the main difference between the permanent magnet synchronous motor and other kinds of motors is its rotor.


    The permanent magnet material with pre-magnetized (magnetic charged) magnetic on the surface or inside the permanent magnet of the motor, provides the necessary air gap magnetic field for the motor. This rotor structure can effectively reduce the motor volume, reduce loss and improve efficiency.


    How Do The Permanent Magnet Motor Work?


    The defining feature of PMACMs – the permanent magnets within their rotor – are acted upon by the rotating magnetic field (RMF) of the stator windings, and are repelled into rotational motion. This is a deviation from other rotors, where the magnetic force must be induced or generated in the rotor housing, requiring more current. This means that PMACMs are generally more efficient than induction motors, as the rotor’s magnetic field is permanent and does not need a source of power to be used for its generation. This also means that they require a variable frequency drive (VFD, or PM drive) to operate, which is a control system that smooths out the torque produced by these motors. By switching the current on and off to the stator windings at certain stages of rotor rotation, the PM drive simultaneously controls torque and current and uses this data to calculate rotor position, and therefore the speed of the shaft output. They are synchronous machines, as their rotational speed matches the speed of the RMF. These machines are relatively new and are still being optimized, so the specific operation of any one PMACM is, for now, essentially unique to each design.


    Detailed pictures
    Permanent Magnet AC Energy Saving Motor Closed Loop 5-3MW

    Benefits of PMSM motors:

    High efficiency
    This is particularly true at lower speeds. The permanent magnet motor does not require current to be supplied to its rotor to generate the rotor field, therefore eliminating the rotor losses almost completely. When compared to induction or reluctance motors it also requires lower currents on the stator and has a bigger power factor, leading to smaller current ratings on the controller, and increasing the overall drive system efficiency.

    Driving lower speeds at higher efficiency than an induction motor might delete the requirement of a speed-reduction transmission, taking the complexity out of the mechanical arrangement.


    Constant torque
    This type of motor can generate constant torque and maintain full torque at low speeds.


    Size
    The smaller size, lighter weight, and less coil provide a higher power density.


    Cost-effective
    With the absence of brushes, there are reduced maintenance costs.


    Minimal heat
    In PMSM the heat is generated on the stator coils and there are no brushes and only minimal heat generated on the rotor, facilitating the cooling of the motor. As they run cooler than induction motors, the motor's reliability and lifespan are increased.


    Speed range
    This type of motor can have a wide speed range with the use of Field Weakening and can adopt the maximum torque/current (MTPA) control strategy during constant torque operation.


    Permanent magnet AC (PMAC) motors have a wide range of applications including:


    Industrial Machinery: PMAC motors are used in a variety of industrial machinery applications, such as pumps, compressors, fans, and machine tools. They offer high efficiency, high power density, and precise control, making them ideal for these applications.


    Robotics: PMAC motors are used in robotics and automation applications, where they offer high torque density, precise control, and high efficiency. They are often used in robotic arms, grippers, and other motion control systems.


    HVAC Systems: PMAC motors are used in heating, ventilation, and air conditioning (HVAC) systems, where they offer high efficiency, precise control, and low noise levels. They are often used in fans and pumps in these systems.


    Permanent magnet synchronous motors with internal magnets: Maximum energy efficiency


    The permanent magnet synchronous motor with internal magnets (IPMSM) is the ideal motor for traction applications where the maximum torque does not occur at maximum speed. This type of motor is used in applications that require high dynamics and overload capacity. And it is also the perfect choice if you want to operate fans or pumps in the IE4 and IE5 range. The high purchase costs are usually recouped through energy savings over the run time, provided that you operate it with the right variable frequency drive.


    Our motor-mounted variable frequency drives use an integrated control strategy based on MTPA (Maximum Torque per Ampere). This allows you to operate your permanent magnet synchronous motors with maximum energy efficiency. The overload of 200 %, the excellent starting torque, and the extended speed control range also allow you to fully exploit the motor rating. For fast recovery of costs and the most efficient control processes.


    IPM (Interior Permanent Magnet) Motor Features:


    High torque and high efficiency
    High torque and high output is achieved by using reluctance torque in addition to magnetic torque.


    Energy- saving operation
    It consumes up to 30% less power compared to conventional SPM motors.


    High- speed rotation
    It can respond to high-speed motor rotation by controlling the two types of torque using vector control.


    Safety
    Since the permanent magnet is embedded, mechanical safety is improved as, unlike in an SPM, the magnet will not detach due to centrifugal force.


    Permanent magnet synchronous motors with external magnets for classic servo applications

    Permanent magnet synchronous motors with external magnets (SPMSM) are ideal motors when you need high overloads and rapid acceleration, for example in classic servo applications. The elongated design also results in low mass inertia and can be optimally installed. However, one disadvantage of the system consisting of SPMSM and variable frequency drive is the costs associated with it, as expensive plug technology and high-quality encoders are often used.


    Renewable Energy Systems: PMAC motors are used in renewable energy systems, such as wind turbines and solar trackers, where they offer high efficiency, high power density, and precise control. They are often used in the generators and tracking systems in these systems.


    Medical Equipment: PMAC motors are used in medical equipment, such as MRI machines, where they offer high torque density, precise control, and low noise levels. They are often used in the motors that drive the moving parts in these machines.


    What applications use PMSM motors?

    Industries that use PMSM motors include Metallurgical, Ceramic, Rubber, Petroleum, Textiles, and many others. PMSM motors can be designed to operate at synchronous speed from a supply of constant voltage and frequency as well as Variable Speed Drive (VSD) applications. Widely used in electric vehicles (EVs) due to high efficiency and power and torque densities, they are generally a superior choice in high torque applications such as mixers, grinders, pumps, fans, blowers, conveyors, and industrial applications where traditionally induction motors are found.


    FAQ:
    1. What is the heat resistance rating of permanent magnets? What will cause demagnetization?
    The permanent magnets commonly used in our company are neodymium-boron-iron materials, and their maximum operating temperature is different depending on the grades used. For example, N38EH, the maximum working temperature of its material can reach 200℃, but we redesign it according to 180℃ as the limit.
    To put it simply, our products are designed with sufficient margin, and there will be no demagnetization due to high temperature during use. As long as there is no high current impact, the permanent magnets of the motor will not demagnetize, and the use of inverters can avoid the occurrence of high currents.
    2. What is the usual noise of the motor running?
    Motor noise varies greatly depending on the specifications of the motor. Permanent magnet motors running below 200 rpm usually have a noise below 80dab. The noise of permanent magnet motors with operating speeds above 750 rpm is generally around 85dab.
    Meet the relevant regulations of GB100693.-2008 "Rotating Electric Machine Noise Measurement Method and Limits".
    3. What are the contents of operation and maintenance?
    The motor basically has no operating costs and only requires routine maintenance. If the environment is poor, the motor with the external fan and the attachments of the external fan need to be cleaned regularly to avoid additional power loss.
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