Description
The Allen Bradley 1440-DYN02-01RJ is a high-performance dynamic servo module designed to provide excellent motion control for industrial automation systems. As part of Allen Bradley’s comprehensive automation product line, it can seamlessly integrate with the Rockwell Automation ecosystem. It works in conjunction with programmable logic controllers (PLCs), human-machine interfaces (HMIs), and other automation components.
1440-DYN02-01RJ
The main function of Allen Bradley1440-DYN02-01RJis to convert electrical signals into precise mechanical motion. It receives instructions from the control system, processes them, and drives the servo motor with the required speed, torque, and position accuracy. For engineers and system integrators, this module provides great flexibility. It can be easily configured to meet the specific motion control requirements of different applications. Whether it’s simple linear motion tasks or complex multi axis operations, the Allen Bradley 1440-DYN02-01RJ can provide the necessary control capabilities, reducing the complexity of system design and implementation.
1440-DYN02-01RJ
Main features and advantages:
In terms of functional performance, it provides extremely high resolution position control and can achieve micrometer level position accuracy. This precision ensures smooth and accurate movement of connected devices, minimizing vibration and wear to the greatest extent possible. Its dynamic response is also excellent, able to quickly accelerate and decelerate servo motors to meet the constantly changing needs in the production process. This module can run at high speed without sacrificing accuracy, making it suitable for high-throughput manufacturing environments. In terms of hardware design, the Allen Bradley1440-DYN02-01RJ can withstand the harsh conditions of industrial use. It has a sturdy casing that is dustproof, moisture-proof, and resistant to electromagnetic interference. The compact size of the module makes it easy to install in control cabinets, even in environments with limited space. Compatibility is another major advantage of this module, as it supports multiple servo motors and communication protocols such as EtherNet/IP and SERCOS. This enables seamless integration with different types of automation equipment. To ensure long-term reliability, this module has advanced self diagnostic capabilities. These functions can continuously monitor their internal components and operating parameters, detect potential issues in advance, and issue alerts to operators. This proactive approach helps to minimize downtime and ensure the continuous operation of the production line.
1440-DYN02-01RJ
Technical specifications:
Model 1440-DYN02-01RJ
Brand Allen Bradley
Type: Dynamic servo module
Supported communication protocols EtherNet/IP, SERCOS
Installation method: DIN rail
Working temperature -20 ° C to 60 ° C
Certification CE, UL, cUL
Protection level IP20
Contact Us
Phone:+86 16626708626
WeChat/WhatsApp:+86 16626708626
Email: 3772179818@qq.com
1440-DYN02-01RJ
Application areas:
In the field of electronic manufacturing, Allen Bradley1440-DYN02-01RJ plays a crucial role in the assembly process of precision components. It can control the movement of the robotic arm with extremely high precision, achieving the task of placing microchips on circuit boards with sub millimeter level accuracy. This level of accuracy can reduce errors and waste, significantly improving the yield rate of the production line.
In the aerospace industry, even the slightest deviation can have catastrophic consequences, and this servo module is used to control the movement of various components during the aircraft assembly process. It ensures perfect fit of components, enhancing the structural integrity and safety of the aircraft.
In the field of precision machining, Allen Bradley 1440-DYN02-01RJ drives the motors of CNC machine tools, enabling them to manufacture complex and highly accurate parts. It can handle complex motion trajectories, thus enabling the production of parts with strict tolerances and complex geometric shapes.
Related products:
The en Bradley 1394C-SJT05-E is a servo drive designed for medium power applications and can be used in conjunction with the 1440-DYN02-01RJ for multi axis motion control systems, providing additional drive capability.
The Allen Bradley 2098-DSD-075-SE servo drive features enhanced safety features, making it a great choice for applications that prioritize operator safety. It can be integrated with 1440-DYN02-01RJ to create a more comprehensive and secure motion control solution.
Allen Bradley 2094-BMP7-S is a motion controller that coordinates the operation of multiple 1440-DYN02-01RJ modules to achieve complex multi axis motion trajectories for high-precision machining applications.
The Allen Bradley 1326AB-B400E-21-F is a high torque servo motor used in conjunction with the 1440-DYN02-01RJ to provide the necessary mechanical power for heavy-duty motion control tasks.
Allen Bradley 2097-V35PR-FJ is a power module designed specifically for servo systems, ensuring stable power supply to 1440-DYN02-01RJ and other related components, enhancing the overall reliability of motion control systems.
Allen Bradley 2711P-K10C4A8 is a human-machine interface that can be used to configure and monitor the operation of 1440-DYN02-01RJ, providing an intuitive interface for operators to control motion control systems.
Installation and maintenance:
When installing Allen Bradley 1440-DYN02-01RJ, several important steps must be followed. Before installation, carefully confirm that the power supply and module requirements are accurately matched. Any mismatch in voltage or frequency can cause serious damage to the module and interfere with the entire motion control system. If the module is to be installed on a DIN rail, please ensure that the DIN rail is securely installed in the control cabinet and there is enough space to accommodate the module. The correct grounding module is crucial for preventing electrical interference and ensuring system safety.
During maintenance, regularly check the connection cables between the module, servo motor, and other components. Check for signs of wear, damage, or loose connections, as these issues may result in poor performance or system failure. Regularly check the status indicator lights of the module to monitor its operation. If any abnormal indicator lights up, please refer to the user manual for troubleshooting steps. It is also important to keep the firmware of the module updated. New versions of firmware typically include performance improvements, bug fixes, and enhanced compatibility with other automation components, which help keep motion control systems running smoothly and efficiently.
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