Place of Origin: | America |
Brand Name: | ALLEN-BRADLEY |
Certification: | CE |
Model Number: | MPL-A310P-HK22AA |
Minimum Order Quantity: | 50 |
---|---|
Price: | Negotiation |
Packaging Details: | new packing |
Delivery Time: | 3-5days |
Payment Terms: | TT |
Supply Ability: | 1 |
Highlight: | MPL-A310P-HK22AA,MP-Series Rotary Servo Motor,240V AC Rotary Servo Motor |
---|
High-Performance Design:
The motor is built for continuous operation with high power output, making it ideal for applications that demand long-term reliability and maximum efficiency.
Precision Motion Control:
Equipped with feedback systems (such as encoders or resolvers) for accurate position and speed feedback, the motor ensures low backlash and smooth operation for applications requiring fine motion control.
High Torque Density:
This servo motor delivers significant torque in a compact form factor, offering high torque-to-weight ratio, making it efficient for applications where space or weight is a concern.
Energy Efficiency:
Designed for low energy consumption, the 1326AB-C2E-11-3396D motor is efficient, helping to reduce the overall operational costs by minimizing energy wastage.
Robust and Durable:
The motor is built to withstand harsh industrial environments, providing high reliability and long-lasting performance even in high-vibration or dust-prone environments.
Versatile Mounting:
It offers flange mount or other customizable mounting options for easy integration into existing machinery and automation systems.
Closed-Loop Control:
When paired with Allen-Bradley 1326 or Kinetix servo drives, the motor operates in a closed-loop system, ensuring precise and efficient control of position, speed, and torque.
This servo motor is highly versatile and can be used in various industrial applications, including but not limited to:
Robotics: Used in robotic arms, pick-and-place systems, and assembly lines, where high-precision motion control is required.
CNC Machinery: Perfect for CNC milling, turning, grinding, and cutting systems where accuracy, high-speed operation, and smooth movement are critical.
Automated Material Handling: Ideal for conveyor systems, sorting machines, and automated packaging systems that require consistent, reliable performance over long durations.
Aerospace: Can be used in aerospace manufacturing and robotic testing applications that require precision and durability.
Semiconductor Manufacturing: Frequently used in wafer handling, robotic assembly, and other high-precision tasks within semiconductor production.
Medical Devices: Well-suited for robotic surgery systems, medical imaging, and other high-precision medical equipment that demands precision motion and reliability.
High Torque and Power Output
Precision and Performance
Durability and Reliability
Flexible Mounting Options
Energy Efficient Design
Voltage Rating:
Current:
Insulation Class:
Power Rating:
Frame Size:
Mounting Type:
Shaft Type:
Weight:
Shaft Diameter:
Rated Speed:
Maximum Speed:
Rated Torque:
Peak Torque:
Efficiency:
Robotics: Ideal for robotic arms and other automation systems that need precise, repeatable motion for tasks like assembly, welding, painting, pick-and-place, and material handling.
CNC Machines: The motor is often used in CNC milling, turning, grinding, and cutting machines where high precision and speed control are critical.
Automated Material Handling: Commonly integrated into conveyor systems, automated packaging systems, and sorting systems where continuous, high-speed motion and precise torque control are essential.
Aerospace: Used in aerospace manufacturing, including robotic assembly and precise movement systems for tasks that require high accuracy.
Medical Equipment: The motor is suitable for medical imaging systems, robotic surgery, and other precision medical applications.
Semiconductor Manufacturing: The 1326AB-C2E-11-3396D motor can be used in wafer handling, robotic testing, and other high-precision applications in semiconductor fabrication.
Voltage Rating:
The motor's voltage rating can be tailored to suit various industrial power supply configurations. While the standard model operates at 208-230 VAC (three-phase), other voltages may be available depending on the specific requirements of the application, such as 380V, 400V, or 575V.
Current Rating:
The motor can be customized to handle specific current ratings based on the desired power and torque outputs. This ensures that the motor performs optimally under varying load conditions, avoiding excessive current draw and preventing overheating.
Power Rating:
Depending on the needs of the application, the power rating of the motor can be adjusted, typically within the 2-5 kW range, to meet specific load requirements.
Insulation Class:
Custom insulation options can be selected based on environmental conditions, such as Class H (180°C) for high-temperature environments or Class B (130°C) for lower-temperature applications.
Frame Size and Mounting Options:
The 1326AB-C2E-11-3396D comes with standard flange mounting for easy integration into various systems, but custom mounting configurations (e.g., face mount, foot mount) can be designed for specific installations. You can also select specialized shaft types (keyed or smooth) and shaft lengths to match the coupling system or mechanical interface in use.
Shaft Diameter:
Custom shaft diameters may be available to fit different mechanical couplings, ensuring compatibility with a wide range of automation systems.
Feedback System:
The motor can be customized with different types of encoders or resolvers, depending on the required precision and feedback needs. Options include:
Specialized Bearings:
Depending on the operating environment and load conditions, the motor may be equipped with high-load or low-friction bearings for enhanced longevity and performance.
Speed Rating:
The motor can be customized to offer higher or lower maximum speeds depending on the application’s needs. For example, it can operate at higher RPM for high-speed applications like robotic arms or machine tool spindles, or lower RPM for applications requiring higher torque and precision, such as CNC milling.
Torque Output:
Custom torque ratings can be selected based on the operational requirements. If an application demands a higher peak torque for acceleration or handling sudden load changes, the motor can be tailored to deliver greater peak torque (e.g., up to 20 Nm or more).
Custom Efficiency Requirements:
If the application requires greater efficiency to minimize energy consumption, the motor’s design can be optimized for better performance under continuous-duty conditions while reducing heat dissipation.
Protection Rating (IP):
The standard IP20 protection rating is sufficient for most indoor industrial environments, but if the motor is to be used in harsh conditions (e.g., high dust, moisture, or corrosive environments), higher IP ratings (such as IP65 or IP67) can be specified for better protection against water and dust ingress.
Temperature Range:
If the motor needs to operate in extreme environmental conditions (such as high heat or sub-zero temperatures), custom temperature rating options can be selected, such as expanding the operating temperature range from the typical 0°C to 40°C to suit special environments (e.g., -20°C to +60°C).
Corrosion Resistance:
For applications in corrosive environments (e.g., marine, chemical plants, or food processing), the motor can be customized with corrosion-resistant coatings or stainless steel components to improve durability.
Integration with Other Control Systems:
While the motor is optimized for integration with Allen-Bradley 1326 and Kinetix servo drives, it can be customized to work with other third-party control systems, such as Siemens or Omron drives, by modifying the control interface and communication protocols.
Communication Protocols:
Depending on the specific system architecture, the motor can be customized to support different communication protocols, including Ethernet/IP, Profibus, or CANopen for integration into various control networks.
Brake Options:
For applications requiring holding or dynamic braking, the motor can be equipped with a brake to stop the motor in an emergency or hold its position when powered down.
Low Noise Operation:
For environments where noise reduction is important, the motor can be customized with features designed to reduce vibration and noise during operation, such as vibration-dampening mounts or specialized windings for quieter operation.
Vibration Isolation:
Special motor housings or vibration-isolation pads can be designed to reduce vibration transmitted to the machinery or equipment connected to the motor.
Thermal Monitoring:
Thermal sensors can be added to monitor the motor’s temperature and prevent overheating, providing alerts or automatic shutdown features when the motor exceeds its rated thermal limits.
Seismic Resistance:
If the motor will be used in seismic-prone regions, customization for increased seismic resistance (such as specialized mounting or bracing to withstand high levels of vibration and motion) can be provided.
Rewindable Motors:
For applications requiring high operational longevity, a rewindable version of the motor can be customized. This allows for easier repair or refurbishment of the motor after years of service.
Our Industrial Servo Drives product comes with comprehensive technical support and services to ensure optimal performance and longevity. Our team of experts is available to provide assistance with installation, configuration, and troubleshooting to minimize downtime and maximize productivity. We also offer product training to help users understand the features and capabilities of our Industrial Servo Drives. In addition, we provide repair and maintenance services to keep your equipment in top condition and extend its lifespan. Contact us to learn more about our technical support and services for the Industrial Servo Drives product.
Contact Person: Florence Zhang
Tel: 86-18318060200
Fax: Zhang hefei