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ALLEN-BRADLEY MPL-B320P-MJ24AA MP-Series MPL 480V AC Rotary Servo Motor

ALLEN-BRADLEY MPL-B320P-MJ24AA MP-Series MPL 480V AC Rotary Servo Motor

  • ALLEN-BRADLEY MPL-B320P-MJ24AA MP-Series MPL 480V AC Rotary Servo Motor
  • ALLEN-BRADLEY MPL-B320P-MJ24AA MP-Series MPL 480V AC Rotary Servo Motor
  • ALLEN-BRADLEY MPL-B320P-MJ24AA MP-Series MPL 480V AC Rotary Servo Motor
ALLEN-BRADLEY MPL-B320P-MJ24AA MP-Series MPL 480V AC Rotary Servo Motor
Product Details:
Place of Origin: America
Brand Name: ALLEN-BRADLEY
Certification: CE
Model Number: MPL-B320P-MJ24AA
Payment & Shipping Terms:
Minimum Order Quantity: 50
Price: Negotiation
Packaging Details: new packing
Delivery Time: 3-5days
Payment Terms: TT
Supply Ability: 1
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Detailed Product Description

Product Description:MPL-B320P-MJ24AA

  1. High Torque and Efficiency:

    • The MPL-B320P-MJ24AA motor is engineered to deliver high torque output while maintaining efficiency. This makes it ideal for demanding motion control applications that require consistent performance over time.
    • Its permanent magnet design provides superior torque density, meaning it can generate more torque for the same physical size compared to standard induction motors.
  2. Precision Control:

    • The motor is typically used in conjunction with Allen-Bradley Kinetix or PowerFlex drives, which allows for precise speed, torque, and position control. This is critical in applications like robotics, material handling, and packaging where precision is a top priority.
  3. Integrated Encoder:

    • Many MPL motors, including the B320P-MJ24AA, come with an integrated encoder. This provides real-time feedback to the drive system, ensuring precise motor control. The encoder enables the system to monitor speed, position, and direction, improving accuracy in motion applications.
  4. Compact and Robust Design:

    • The MPL Series motors are designed to be compact yet powerful. This makes them suitable for use in space-constrained environments or in applications where motor weight and size are factors.
    • These motors are built to withstand industrial conditions and are durable enough to handle continuous operation in demanding environments.
  5. Wide Range of Applications:

    • Industrial Robotics: The motor’s high precision and torque capabilities make it ideal for robotics applications, where exact movement control is critical.
    • Conveyors and Material Handling: The motor is often used in conveyor systems, packaging machines, and other material handling systems that require high-performance motion control.
    • Automated Manufacturing: Its precision and reliability make it well-suited for high-speed automated production lines, CNC machines, and assembly systems.
  6. Voltage and Power:

    • The MPL-B320P-MJ24AA motor is designed to operate on a three-phase AC power supply. Voltage ranges can vary but generally fall within 200V to 480V, depending on the specific configuration of the motor.
    • It is part of the high-performance motor class in the Allen-Bradley catalog, optimized for use in systems where minimizing downtime and maximizing throughput are crucial.
  7. Customization Options:

    • The MJ24AA part of the model number likely indicates a specific configuration, which may include options like shaft type, mounting configuration, and other customizations. These allow the motor to be tailored for particular needs within different machine designs.

The Allen-Bradley MPL-B320P-MJ24AA motor is typically found in:

  • Robotic arms and automation systems
  • CNC machinery
  • Packaging and labeling systems
  • Material handling systems
  • Automated guided vehicles (AGVs)
  • Conveyor belts in production lines
  • High Efficiency: Permanent magnet design reduces energy consumption compared to traditional motors.
  • Compact Design: Ideal for installations where space is limited.
  • Precision Feedback: Ensures that systems operate smoothly and accurately, minimizing errors.
  • Durability: Built for industrial environments, ensuring long operational lifespans.
  • Seamless Integration: Works well with Allen-Bradley drives and control systems, making it easy to integrate into existing automation setups.
 

Features:MPL-B320P-MJ24AA

  • Permanent Magnet Synchronous Motor (PMSM) Technology:

    • High Torque Density: Utilizes permanent magnets to produce high torque for the size of the motor, enabling better performance in compact form factors.
    • Improved Efficiency: PMSM motors are generally more efficient than traditional induction motors, reducing energy consumption and heat generation.
    • High Power-to-Weight Ratio: Provides a high output relative to its size, ideal for space-constrained or lightweight applications.
  • Integrated Encoder for Precision Feedback:

    • Position and Speed Control: The motor includes an integrated encoder that provides feedback on the motor's position, speed, and direction of rotation.
    • High Precision: This enables precise control over motion, ensuring accurate positioning in applications like robotics, conveyors, and automated machines.
    • Closed-Loop Control: Works seamlessly with Allen-Bradley Kinetix or PowerFlex drives, enabling high-precision, closed-loop control systems.
  • Compact and Robust Design:

    • Space-Saving: The compact design allows for integration into tight spaces, making it ideal for applications where motor size and weight are important factors.
    • Durable Construction: Built to withstand harsh industrial environments, including heavy use, vibrations, and temperature fluctuations.
  • Wide Voltage Range:

    • The MPL-B320P-MJ24AA can typically operate across a range of voltages (e.g., 200V to 480V AC), making it versatile for use in different industrial power supply environments.
  • High-Speed Performance:

    • The motor can operate at high speeds (typically in the range of 1500 to 3000 RPM), providing rapid response in dynamic applications where speed and precision are critical.
  • High-Performance Motion Control:

    • When used with Allen-Bradley Kinetix or PowerFlex drives, the motor offers high levels of performance control, such as torque control, speed control, and positioning.
    • Provides low cogging, smooth motion, and fast response time, making it ideal for applications that require precise movements.
  • Customizable Features (MJ24AA Variant):

    • The MJ24AA part of the model number suggests specific options and configurations that can be customized based on the motor’s application needs, such as shaft type, mounting configuration, or other mechanical features tailored to specific machinery.
  • Suitable for High-Demand Applications:

    • Robotics: Ideal for robotic arms, automated guided vehicles (AGVs), and other precision-driven robotic systems.
    • Material Handling and Conveyors: Perfect for high-precision conveyor systems in manufacturing, packaging, and assembly lines.
    • CNC Machines and Precision Equipment: Well-suited for applications where high speed, low backlash, and high accuracy are essential.
  • Seamless Integration with Control Systems:

    • The motor is designed to integrate easily with Allen-Bradley’s Kinetix motion control systems, PowerFlex variable frequency drives (VFDs), and Studio 5000 software. This makes setup and tuning simpler and more efficient.
    • Ensures compatibility with the Rockwell Automation ecosystem, simplifying control and monitoring for industrial applications.
  • Low Maintenance:

  • The permanent magnet design reduces wear and tear on the motor’s internal components, resulting in less frequent maintenance and longer operational life.
  • High Overload Capacity:
  • The motor is capable of handling temporary overloads without damage, making it ideal for applications where occasional spikes in load may occur.
  • Environmentally Friendly:
  • Due to its high efficiency and low energy consumption, the MPL-B320P-MJ24AA motor can help reduce overall system energy usage, contributing to more sustainable and cost-effective industrial operations.
 

Technical Parameters:MPL-B320P-MJ24AA

Motor Type:

  • Motor Type: Permanent Magnet Synchronous Motor (PMSM)
  • Series: MPL Series

2. Electrical Ratings:

  • Nominal Voltage: Typically operates between 200V to 480V AC (Three-phase power supply)
  • Rated Current: Varies based on voltage and load, but typically around 5-20 A for motors of this class.
  • Frequency: Typically 50/60 Hz, depending on the region and application.
  • Power Factor: High power factor due to the permanent magnet design (often >0.95).

3. Speed and Torque:

  • Rated Speed: Varies by configuration, but generally 1500 to 3000 RPM.
  • Rated Torque: Torque ratings are specific to the motor configuration and load, but generally designed for high torque density, meaning a significant amount of torque is available in a compact motor.
  • Peak Torque: Typically around 1.5 to 2 times rated torque, depending on the motor’s performance profile and application.

4. Mechanical Specifications:

  • Frame Size: This motor typically comes in a compact frame design suitable for integration in space-constrained environments.
  • Mounting Type: The motor may be configured for either flange mount or foot mount options.
  • Shaft Type: The MJ24AA configuration often suggests a keyed shaft design, though the exact shaft type and dimensions will depend on the specific motor model.
  • Shaft Diameter: Typically between 25mm to 40mm, but this can vary depending on the motor variant.

5. Environmental Parameters:

  • Operating Temperature Range: Typically -10°C to +40°C (for optimal operation). The motor can tolerate extreme conditions, but cooling methods may need to be adjusted in higher temperature environments.
  • Storage Temperature: Typically -20°C to +70°C.
  • IP Rating: Often IP65 or better (dust-tight and protected against water jets). This makes it suitable for industrial environments with dust, moisture, or mild washdown conditions.

6. Performance:

  • Efficiency: Typically between 85-95%, depending on load and speed conditions. The motor’s high efficiency contributes to reduced energy consumption.
  • Cogging: Low cogging due to the permanent magnet design, which results in smoother motion and minimal vibration.
  • Rotor Type: The motor uses a surface permanent magnet rotor, enhancing efficiency and performance in dynamic motion applications.
  • Inertia: The inertia of the rotor is typically low, allowing for fast acceleration and deceleration.

7. Control Features:

  • Feedback Type: Integrated Encoder for position, speed, and direction feedback.
  • Control Method: Compatible with Allen-Bradley Kinetix or PowerFlex drives for precise motion control, including torque control, position control, and speed control.
  • Closed-Loop Operation: Fully supported when used with compatible drives for precise, real-time control of motion.

8. Safety & Protection:

  • Overload Capacity: The motor is capable of handling short-term overloads up to 200% of rated torque without damage.
  • Thermal Protection: Often includes thermal sensors to protect the motor from overheating.
  • Short-Circuit Protection: The motor's winding insulation is designed to withstand typical short-circuit conditions, protecting the motor's internal components.

9. Mechanical and Electrical Integration:

  • Bearings: The motor typically features high-quality, sealed ball bearings, designed for extended operational life and reduced maintenance.
  • Vibration Levels: Low vibration operation due to the precise rotor design and permanent magnet motor type.

10. Motor Efficiency and Power Consumption:

  • Motor Efficiency: Depending on load and application, the motor’s efficiency can be between 85% and 95%.
  • Typical Power Consumption: The power consumption will depend on the rated power, load conditions, and operational settings, but motors of this size typically range between 1 kW to 7.5 kW for mid-range configurations.
 

Applications:MPL-B320P-MJ24AA

  • Precision Motion Control: The MPL motor's high torque and integrated encoder make it ideal for robotic arms, automated guided vehicles (AGVs), and pick-and-place systems. It ensures smooth, precise movements required for assembly, welding, packaging, or material handling in robotic applications.
  • High-Speed and Precision: In computer numerical control (CNC) machines, such as milling machines, lathes, and laser cutters, the motor provides precise speed and torque control, essential for high-accuracy machining and tool positioning.
  • Material Handling: The motor is widely used in conveyor belts and automated material handling systems, providing reliable and smooth motion for transporting goods through production lines, packaging, and sorting.
  • Precision Control for Automation: The MPL motor's ability to offer precise position control makes it suitable for packaging machines, labeling, and assembly lines where consistent, repeatable motions are required for tasks like packaging, sorting, and assembly.
  • Movement Control: The motor is often used in AGVs, which are essential in warehouses and manufacturing environments for transporting materials. The motor's precise control ensures AGVs move smoothly and efficiently without errors in positioning.
  • Printing Machines: The motor is used in high-speed printing equipment, providing precise control for printing heads, rollers, and feed systems in applications like label printing, flexible packaging, and digital printing presses.
  • Automated Inspection: In industries where high-precision inspection is required, such as in semiconductor manufacturing, the MPL motor is used for positioning and moving cameras or sensors with high accuracy.
  • Robotic Surgery and Diagnostics: The motor can be used in medical devices where precise motion control is critical, such as in robotic surgery, diagnostic imaging equipment, or other high-precision medical machinery.
  • Smooth and Efficient Movement: The motor is also used in elevator systems, where reliable torque and precise speed control are essential for passenger comfort and energy-efficient operation.
  • Dynamic Load Testing: The motor’s capability to manage precise torque makes it suitable for material testing machines that require controlled movement under load, such as in tensile testing or fatigue testing of materials.
  • Printing Presses and Packaging Machines: The motor can be used to drive rollers, print heads, and other mechanical components in printing presses and packaging machinery where accuracy and high-speed operation are critical.
  • Efficient Power Generation: The MPL motor is also suitable for renewable energy applications, such as small-scale wind turbines or solar tracking systems, where precise control and minimal energy consumption are required.
  • Shaft Type: Depending on the application, the motor's shaft can be customized in terms of diameter, length, and keyed or non-keyed configurations. This helps ensure compatibility with different mechanical systems or drive couplings.
  • Mounting Options: The motor can be tailored to different mounting configurations such as flange mount or foot mount. This makes it adaptable to various space and alignment requirements in automation systems.
  • Enclosure Type: For environments with specific environmental challenges (dust, moisture, etc.), the motor's IP rating can be customized. Options include IP65, IP67, or higher ratings for enhanced protection against dust and water ingress.
  • Motor Size & Frame: While the MPL-B320P-MJ24AA is part of the MPL series, you may be able to choose a motor with a larger or smaller frame size depending on torque, space, and weight constraints.
  • Voltage and Current: The motor can be customized to operate at different voltage levels (e.g., 200V, 400V, 480V) to match the power supply available in the specific application. Custom voltages may be requested for specific international markets or for unique electrical configurations.
  • Winding Configuration: The winding type and number of poles may be customized for specific speed and torque requirements. This allows for optimization of the motor's performance in certain applications, such as high-torque or high-speed systems.
  • Encoder Type: The integrated encoder can be configured for specific resolution, feedback type, or communication protocols (e.g., SSI, EnDat, Absolute, or Incremental). This is especially important for precise motion control applications.
  • Torque and Speed Ratings: The motor's torque characteristics can be adjusted based on application needs, allowing for customization of rated torque, peak torque, and operational speed ranges. This is critical for applications requiring specific speed-torque curves.
  • Increased Overload Capability: If the motor needs to handle frequent or extended overload conditions, it may be customized for enhanced overload tolerance or thermal protection.
  • Efficiency Optimization: Depending on operational requirements, the motor can be customized for high efficiency under a certain load range, potentially reducing energy consumption and operational costs.
  • Cooling Methods: In environments where the motor will experience higher thermal loads, cooling options like forced air or liquid cooling can be customized to improve heat dissipation and ensure optimal performance.
  • Thermal Protection Settings: Customized thermal protection settings can be integrated to safeguard the motor from overheating, ensuring longevity and reliability in harsh conditions.
  • Drive Systems: The MPL motor can be customized for compatibility with a variety of Allen-Bradley or third-party drive systems, ensuring seamless communication and control. The motor can be designed for integration with Kinetix, PowerFlex, or CompactLogix control systems.
  • Custom Control Algorithms: If necessary, the motor can be configured to work with specific motion control algorithms for applications that require advanced control (e.g., PID control, torque mode, speed mode).
  • Feedback Options: You can customize the type of feedback signal provided by the motor's integrated encoder to match specific system requirements (e.g., incremental vs absolute encoders).
  • Communication Protocol: The motor's encoder can be configured for different communication protocols like CANopen, EtherCAT, or Modbus, based on the type of motion controller or industrial network being used.
  • Corrosion Resistance: For applications in corrosive environments, the motor can be customized with corrosion-resistant coatings or stainless-steel parts to extend the motor's lifespan.
  • Explosion-Proof Design: In hazardous environments, the motor can be customized for explosion-proof or flameproof specifications, ensuring safe operation in volatile environments.
 

Customization:MPL-B320P-MJ24AA

  • Precision Motion Control: The MPL motor's high torque and integrated encoder make it ideal for robotic arms, automated guided vehicles (AGVs), and pick-and-place systems. It ensures smooth, precise movements required for assembly, welding, packaging, or material handling in robotic applications.
  • High-Speed and Precision: In computer numerical control (CNC) machines, such as milling machines, lathes, and laser cutters, the motor provides precise speed and torque control, essential for high-accuracy machining and tool positioning.
  • Material Handling: The motor is widely used in conveyor belts and automated material handling systems, providing reliable and smooth motion for transporting goods through production lines, packaging, and sorting.
  • Precision Control for Automation: The MPL motor's ability to offer precise position control makes it suitable for packaging machines, labeling, and assembly lines where consistent, repeatable motions are required for tasks like packaging, sorting, and assembly.
  • Movement Control: The motor is often used in AGVs, which are essential in warehouses and manufacturing environments for transporting materials. The motor's precise control ensures AGVs move smoothly and efficiently without errors in positioning.
  • Printing Machines: The motor is used in high-speed printing equipment, providing precise control for printing heads, rollers, and feed systems in applications like label printing, flexible packaging, and digital printing presses.
  • Automated Inspection: In industries where high-precision inspection is required, such as in semiconductor manufacturing, the MPL motor is used for positioning and moving cameras or sensors with high accuracy.
  • Robotic Surgery and Diagnostics: The motor can be used in medical devices where precise motion control is critical, such as in robotic surgery, diagnostic imaging equipment, or other high-precision medical machinery.
  • Smooth and Efficient Movement: The motor is also used in elevator systems, where reliable torque and precise speed control are essential for passenger comfort and energy-efficient operation.
  • Dynamic Load Testing: The motor’s capability to manage precise torque makes it suitable for material testing machines that require controlled movement under load, such as in tensile testing or fatigue testing of materials.
  • Printing Presses and Packaging Machines: The motor can be used to drive rollers, print heads, and other mechanical components in printing presses and packaging machinery where accuracy and high-speed operation are critical.
  • Efficient Power Generation: The MPL motor is also suitable for renewable energy applications, such as small-scale wind turbines or solar tracking systems, where precise control and minimal energy consumption are required.
 

Support and Services:MPL-B320P-MJ24AA

Our Industrial Servo Drives product comes with comprehensive technical support and services to ensure the optimal performance and longevity of your system. Our team of experienced engineers can assist with installation, configuration, and troubleshooting of the servo drives. We also provide training programs to help you and your team understand the capabilities of the product and how to operate it effectively. Additionally, we offer maintenance services to keep your system running smoothly and prevent any potential issues from arising. Contact us for more information on our technical support and services.

Contact Details
Wisdomlong Technology CO.,LTD

Contact Person: Ms. Harper

Tel: 86-13170829968

Fax: 86--25020661

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