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Allen-Bradley 81001-340-71-R High-Performance PLC Module

Allen-Bradley 81001-340-71-R High-Performance PLC Module photo-1
Allen-Bradley 81001-340-71-R High-Performance PLC Module photo-2
Negotiable MOQ: 1 Unit (Price negotiable depending on order volume and customization)
Key Specifications
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Material:
Other, Global universal model
Condition:
Other, Global universal model
Task:
Other, Global universal model
Payment & Shipping
Payment Methods:
Port of Shipment:
China
Delivery Detail:
Delivery time depends on order quantity.
Material Other, Global universal model
Condition Other, Global universal model
Task Other, Global universal model
Mathematical Model Other, Global universal model
Signal Other, Global universal model
Customized Non-Customized
Structure Other, Global universal model
Operating temperature -40°C to +70°C
Humidity 5% - 95% (non - condensing)

I. Product Overview


81001-340-71-R is an outstanding product that holds an important position in the field of industrial automation control. From the perspective of the model code, 81001 represents its Belonging series, demonstrating the product's family attribute in Rockwell's product line, which means it follows unified R&D standards and quality control systems; 340 indicates the input voltage level, which can adapt to specific industrial power supply environments and provide a basic guarantee for the stable operation of the equipment; 71 indicates the module type, with a unique functional architecture to meet diversified industrial needs; and the final "R" represents the redundancy feature. This design greatly improves the reliability of the product in key industrial scenarios. Even if some components fail, the entire system can still maintain normal operation, avoiding production interruption caused by single-point failures, and ensuring the continuity and stability of industrial production.


Essentially, 81001-340-71-R is a converter valve cooling system used for cooling power electronic equipment. In industrial production, power electronic equipment generates a large amount of heat during operation. If the heat is not dissipated in time, it will seriously affect the performance and service life of the equipment, and even cause failures. This product is designed to solve this key problem, and it safeguards various industrial automation and control systems with its own characteristics.


81001-340-71-R (1)


II. Technical Parameters


(1) Electrical Parameters


  • Input Voltage: Corresponding to "340" in the model, its rated input voltage accurately matches the common 340V level in industry, and can be stably connected to most industrial power supply networks, adapting to the power supply environments of different regions and factories. Whether it is a standard industrial plant or a production workshop with special power supply requirements, it can ensure stable power input, providing a solid foundation for the subsequent operation of the equipment.

  • Current Carrying Capacity: When dealing with complex working conditions of power electronic equipment, 81001-340-71-R shows strong current carrying capacity, which can withstand high-load current impacts. It ensures stable power transmission during different stages such as equipment startup and operation peak, guarantees the normal operation of the equipment, and meets the power demand of various high-power power electronic equipment.


(2) Cooling Performance Parameters


  • Heat Dissipation Efficiency: As a cooling system, heat dissipation efficiency is a core indicator. The product adopts advanced heat dissipation structure design and high-efficiency heat dissipation materials, which can quickly and effectively Export and dissipate the heat generated by power electronic equipment into the surrounding environment. Its heat dissipation efficiency is much higher than that of similar products, which can ensure the equipment runs stably for a long time in high-temperature environments, effectively reducing the failure rate of the equipment due to overheating and improving the overall service life of the equipment.

  • Cooling Medium Parameters: High-quality cooling medium is selected, which has good thermal conductivity and chemical stability. The flow rate and temperature of the cooling medium can be intelligently adjusted according to the operating status of the equipment. When the equipment load is low and heat generation is small, the flow rate of the cooling medium is appropriately reduced to save energy; when the equipment load increases and heat generation increases, the flow rate and refrigeration capacity of the cooling medium are quickly increased to ensure that the equipment temperature is always maintained in a safe and stable working range.


(3) Control-Related Parameters


  • Control Accuracy: Equipped with advanced microprocessors and precision sensors, it realizes high-precision control of various parameters of the cooling system, such as the flow rate and temperature of the cooling medium, and the operating temperature of the equipment. The temperature control accuracy can reach ±1℃, and the flow control accuracy can reach ±2%. This precise control ability ensures that the equipment can obtain the most suitable cooling conditions under various working conditions, ensuring the stability and reliability of the equipment operation.

  • Response Time: In the face of sudden changes in equipment operating status and rapid changes in ambient temperature, 81001-340-71-R shows an extremely short response time, which can make adjustments within milliseconds, quickly change the cooling strategy, adapt to the real-time needs of the equipment, and avoid overheating damage to the equipment due to slow response.


81001-340-71-R (2)


III. Functional Features


(1) Efficient Cooling Function


  • Active Heat Dissipation Design: Adopts an active heat dissipation method, forming a powerful heat dissipation circulation system through built-in high-performance cooling fans, high-efficiency heat dissipation fins, and circulation pumps. The cooling fan introduces cold air into the heat dissipation fins at a precise speed to accelerate heat exchange, and the circulation pump ensures that the cooling medium continuously and efficiently circulates in the system, quickly taking away the heat generated by the equipment, creating a low-temperature and stable operating environment for power electronic equipment.

  • Intelligent Temperature Regulation: With the help of advanced temperature sensors, it monitors the temperature change of power electronic equipment in real-time. When the temperature exceeds the preset safe range, the system automatically starts the intelligent regulation mechanism, and precisely controls the equipment temperature by adjusting the cooling fan speed and cooling medium flow rate, keeping it in the optimal working temperature range, effectively avoiding equipment performance degradation and failures caused by excessive temperature.


(2) Precise Control Function


  • Advanced Algorithm Support: Using advanced control algorithms, it can dynamically adjust the operating parameters of the cooling system according to multi-dimensional data such as equipment operating status, ambient temperature, and load changes. For example, in the equipment startup stage, according to the startup current and instantaneous heat generation, the cooling strategy is optimized in advance to ensure the smooth startup of the equipment; during the normal operation of the equipment, the cooling capacity is precisely adjusted according to real-time load changes to achieve the dual goals of high efficiency, energy saving and stable operation of the equipment.

  • Remote Monitoring and Control: Supports remote communication function, and can seamlessly connect with upper computers or other control systems through industrial Ethernet, Modbus and other communication protocols. Users can monitor the operating status of the cooling system in real-time on the remote operation terminal, including key parameters such as equipment temperature, cooling medium flow rate and temperature, and can also issue control commands remotely to adjust parameters, start or stop the system, which greatly improves the convenience and intelligence level of equipment operation and maintenance, and is especially suitable for large industrial automation production lines and distributed industrial control systems.


(3) Multiple Safety Protection Functions


  • Electrical Safety Protection: It has a complete electrical safety protection mechanism, integrating overcurrent protection, overvoltage protection, undervoltage protection and leakage protection functions. When abnormal input current, voltage or leakage is detected, the system can cut off the power supply instantly to protect the safety of equipment and operators, and effectively prevent serious accidents such as fires and equipment damage caused by electrical faults.

  • Overheat Protection: In addition to the intelligent temperature regulation function, an independent overheat protection module is also provided. When the equipment temperature rises sharply, exceeds the safety threshold and intelligent regulation cannot effectively cool down in a short time, the overheat protection module starts immediately, forcibly stops the equipment operation, and sends an alarm signal at the same time, reminding maintenance personnel to check and troubleshoot in time to avoid irreversible damage to the equipment due to overheating.

  • Fault Diagnosis and Early Warning: Built-in intelligent fault diagnosis system, which can monitor the operating status of various components of the system in real-time and provide early warning of potential faults. Once an abnormality is detected in a component, such as abnormal cooling fan speed or insufficient circulation pump pressure, the system immediately conducts fault diagnosis and sends detailed fault information to the upper computer through the communication interface, including fault type, fault location, fault occurrence time, etc., helping maintenance personnel quickly locate and solve problems, greatly shortening equipment downtime and improving production efficiency.


(4) High Reliability and Stability


  • Redundancy Design: The "R" in the product model reflects its redundancy feature. Key components such as power modules, control modules, and sensors are redundantly configured. When a component fails, the redundant component can immediately switch to work seamlessly, ensuring the continuous operation of the entire cooling system, maintaining the normal heat dissipation demand of power electronic equipment, greatly improving the reliability of the system in industrial production, and is suitable for key industrial scenarios with high requirements for equipment continuity, such as iron and steel smelting, chemical production, power energy and other industries.

  • High-Quality Components and Processes: In the product manufacturing process, high-quality electronic components, mechanical components and high-quality heat dissipation materials are selected. All components have undergone strict screening and testing to ensure that they can work stably in harsh industrial environments. At the same time, advanced manufacturing processes and strict quality control systems are adopted. Every link from raw material procurement, production and processing, assembly and debugging to finished product inspection is implemented in accordance with high standards to ensure the consistency and stability of the product, laying a solid foundation for long-term reliable operation.

Product Tags: 81001-340-71-R

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Verified Business License
Business Type
Trading Company
Year Established
2014
Factory Size
1,000-3,000 square meters
Product Certifications
SA8000