Home > Electrical & Electronics > Electrical Control System > Honewell 2MLR-CPUHT Redundant CPU Module

Honewell 2MLR-CPUHT Redundant CPU Module

Honewell 2MLR-CPUHT Redundant CPU Module photo-1
Honewell 2MLR-CPUHT Redundant CPU Module photo-2
Honewell 2MLR-CPUHT Redundant CPU Module photo-3
Negotiable MOQ: 1 Unit (Price negotiable depending on order volume and customization)
Key Specifications
Get Latest Price
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
power supply 24V DC
Operating Temperature -0℃ to +55℃
Humidity 0%-95% (non-condensing)

I. Product Overview


Honeywell 2MLR-CPUHT is a central processing unit (CPU) module specially designed for the Master Logic-200 programmable logic controller (PLC) system. As the core brain of the entire PLC system, it plays a pivotal role in the process of industrial automation, undertaking the key tasks of executing control programs, managing data, and communicating efficiently with other devices. Relying on Honeywell's profound technical accumulation and rich experience in the field of industrial automation, 2MLR-CPUHT, with its excellent performance, has become an ideal choice for many industrial enterprises to build reliable and efficient automation control systems. Whether in the complex control system of large industrial production lines or in the basic automation scenarios of small industrial facilities, this module can be accurately adapted, providing solid support for enterprises to improve production efficiency, optimize operating costs, and ensure production safety.


2MLR-CPUHT (3)


II. Technical Parameters


(I) Processor Performance

  • High-Speed Computing Capability: Equipped with a high-performance processor, it has an extremely fast computing speed and can easily handle complex control tasks and large-scale data processing requirements. Its instruction execution speed can reach [X] nanoseconds per step (the specific value needs to be determined according to the actual situation of the product). This high-speed processing capability is of great significance for industrial automation control systems with high real-time requirements. For example, in an automated assembly line, when the state of production equipment changes rapidly, 2MLR-CPUHT can quickly capture and process relevant signals, make accurate control decisions in a timely manner, ensure the efficient and stable operation of the production line, and avoid production stagnation or product quality problems caused by processing delays.

  • Powerful Task Processing Capability: It can handle multiple complex tasks at the same time, realizing multi-task parallel execution. This feature enables it to simultaneously take care of equipment status monitoring, data collection and analysis, control command output and other tasks in industrial automation systems without interfering with each other, greatly improving the overall operating efficiency of the system. For example, in the chemical production process, it is necessary to monitor parameters such as temperature and pressure in the reactor in real time, and control the opening and closing of various valves and the speed of motors according to these parameters. The powerful task processing capability of 2MLR-CPUHT can ensure that these complex tasks are completed in an orderly and efficient manner, ensuring the stability and safety of the chemical production process.


(II) Memory Configuration

  • Large-Capacity Program Memory: It has a 7MB program memory space, providing sufficient guarantee for storing complex and large control programs. In industrial automation systems, control programs often need to cover various aspects such as equipment operation logic, process control, fault diagnosis and handling, so the program scale is relatively large. The large-capacity program memory of 2MLR-CPUHT can meet the storage needs of these complex programs, ensuring that the control program can be loaded and executed completely and stably during system operation, and avoiding program operation abnormalities or function limitations caused by insufficient memory.

  • High-Speed Data Storage: 16MB of flash memory is used for data storage, with high-speed read and write characteristics. In the industrial production process, a large amount of real-time data needs to be stored and read in a timely manner, such as equipment operating parameters, production process data, fault records, etc. The high-speed flash memory of 2MLR-CPUHT can quickly respond to data storage and read requests, ensuring the timeliness and integrity of data. At the same time, the non-volatile feature of flash memory ensures that important data will not be lost after the system is powered off, providing strong support for the reliable operation of industrial automation systems.


(III) Communication Capability

  • Support for Rich Communication Protocols: It supports a variety of mainstream industrial communication protocols, including Ethernet, Modbus, and CANopen. This feature enables 2MLR-CPUHT to achieve seamless communication connections with devices and systems of different brands and types. For example, in a PLC-based industrial automation production line, through the Ethernet protocol, it can perform high-speed and stable data interaction with the upper computer control system to realize remote monitoring and control command issuance; using the Modbus protocol, it can communicate with various sensors, actuators and other devices to realize data collection and control output; with the help of the CANopen protocol, it can communicate efficiently with fieldbus devices to build a stable industrial field network. The support for rich communication protocols has greatly improved the flexibility and openness of system integration, meeting diversified industrial application needs.

  • Efficient Data Transmission Rate: It has high-speed data transmission capability and can achieve fast and stable data transmission under different communication protocols. Taking Ethernet communication as an example, its data transmission rate can reach [X] Mbps (the specific value needs to be determined according to the actual situation of the product). This high-speed data transmission capability can ensure that a large amount of real-time data can be transmitted between various devices and systems in a timely and accurate manner in industrial automation systems, avoiding control delays or untimely system responses caused by data transmission delays, and ensuring the efficient and precise operation of the industrial production process.


2MLR-CPUHT (2)


(IV) I/O Control Capability

  • Distributed I/O Control: It adopts a distributed I/O control method, which can flexibly connect various types of I/O modules to realize accurate collection and control output of various actual physical signals. Through this distributed architecture, I/O modules can be deployed close to on-site equipment, reducing signal transmission distance and interference, and improving the accuracy and reliability of signal collection and control. In large industrial production workshops, equipment is widely distributed. With distributed I/O control, I/O modules in different areas can be effectively connected to 2MLR-CPUHT to realize comprehensive and precise control of the entire workshop equipment.

  • Support for Large-Scale I/O Points: It can support up to 128,000 network/remote I/O points, meeting the needs of large-scale industrial automation systems for processing a large number of I/O signals. In some complex industrial projects, such as automated production lines in large factories and integrated control systems in smart buildings, it is necessary to monitor and control the operating status of many devices, involving a large number of digital input/output signals and analog input/output signals. The strong I/O point support capability of 2MLR-CPUHT makes the construction of these complex systems possible, providing a solid foundation for industrial enterprises to realize large-scale and efficient automated production.


(V) Physical Characteristics

  • Compact Design: The overall design adopts a compact concept, with an exquisite appearance size, which is convenient for installation and deployment. Its installation dimensions follow industry universal standards and can be conveniently installed in various industrial control cabinets or equipment without occupying too much valuable space. In industrial sites with limited space, this compact design enables 2MLR-CPUHT to coexist harmoniously with other equipment, with a reasonable layout, improving the integration and space utilization of the industrial automation system.

  • Lightweight: The module is relatively light in weight, approximately [X] kg (the specific weight needs to be determined according to the actual situation of the product). The lightweight design not only facilitates transportation and handling, reducing costs and risks during transportation, but also reduces the bearing pressure on the installation structure, ensuring that the stability of the module installation is not affected during long-term operation. For industrial application scenarios that require frequent equipment maintenance, upgrades or replacements, the lightweight 2MLR-CPUHT makes related operations more convenient and improves equipment maintenance efficiency.


(VI) Environmental Adaptability

  • Wide Temperature Operating Range: It has a wide temperature adaptation range and can operate stably in an ambient temperature of 0°C to 55°C (the specific temperature range needs to be determined according to the actual situation of the product). Whether in hot summer or cold winter, as long as the ambient temperature is within this range, 2MLR-CPUHT can work continuously and stably, maintaining a normal operating state. This feature strongly ensures the continuity of industrial production under different seasons and different ambient temperature conditions, avoids equipment failures affecting production due to temperature problems, and saves industrial enterprises a lot of economic losses caused by equipment shutdown.

  • Good Anti-Interference Capability: In industrial sites, there are a large number of electromagnetic interference sources, such as strong electromagnetic interference generated by frequency converters, electric welders and other equipment. 2MLR-CPUHT can effectively resist these interferences through internal advanced anti-interference designs, including electromagnetic shielding, filter circuits and other technical means, ensuring the stability of its own work and the accuracy of data transmission. In complex electromagnetic environments, it can still reliably execute control programs, ensure the normal operation of the industrial automation system, and provide a stable and reliable control core for industrial production.


2MLR-CPUHT (1)


III. Functional Features


(I) Flexible Program Execution Modes

  • Cyclic Scanning Execution: Supports cyclic scanning program execution mode, which samples input signals, executes user programs, and refreshes output signals in a fixed order. This execution mode is suitable for most industrial automation control scenarios and can ensure the continuity of real-time monitoring and control of equipment status by the system. In automated production lines, through the cyclic scanning execution mode, 2MLR-CPUHT can continuously obtain the operating status information of equipment and control the equipment according to the preset control logic, ensuring the continuous and stable operation of the production line.

  • Time-Driven Interrupt Execution: It has a time-driven interrupt function, which can trigger an interrupt according to the time interval set by the user to execute specific program tasks. This function is particularly important in some industrial applications with high time accuracy requirements. For example, in the pharmaceutical industry, some process links in the drug production process need to control time accurately. Through the time-driven interrupt execution mode, 2MLR-CPUHT can accurately execute corresponding control operations according to preset time points, ensuring the stability and consistency of drug production quality.

  • Internal Memory Interrupt Execution: Supports internal memory interrupt execution mode. When specific events in the internal memory occur, such as data overflow, data update, etc., an interrupt can be triggered to execute the corresponding interrupt processing program. This execution mode can timely respond to changes in the state of internal memory, process data in a timely manner, and ensure the accuracy and integrity of system data. In industrial automation systems, the accurate storage and timely processing of data are crucial for the control of production processes. The internal memory interrupt execution mode provides strong support for achieving this goal.


(II) Support for Rich Programming Languages

  • Ladder Diagram Programming: Supports ladder diagram programming language, which is a graphical programming language widely used in the field of industrial automation. It has the characteristics of being intuitive and easy to understand, similar to electrical control schematics, and is easy to learn and master for engineers familiar with electrical control. When using 2MLR-CPUHT for system development, engineers can display complex control logic in a graphical form through ladder diagram programming, facilitating program design, debugging and maintenance. For example, when designing a simple motor start-stop control program, the start and stop conditions of the motor and related protection logic can be clearly seen through the ladder diagram, reducing programming difficulty and improving development efficiency.

  • Sequential Function Chart Programming: Provides sequential function chart programming function. This programming language is based on function blocks and designs the control system according to the order of the production process. It can clearly describe the working process of the system, decompose complex production processes into multiple ordered steps, and each step corresponds to a function block. The sequential control of the system is realized through the conversion conditions between function blocks. In some industrial productions with clear process flows, such as food processing production lines and automobile assembly production lines, the sequential function chart programming mode can make the program structure clearer, easy to understand and modify, and improve the maintainability and scalability of the system.

  • Structured Text Programming: Supports structured text programming language, which is a text-based programming language similar to high-level programming languages (such as Pascal, C language), with strong logical expression ability and data processing ability. For some industrial application scenarios that require complex mathematical operations, logical judgments and data processing, structured text programming can give full play to its advantages and realize efficient and precise control algorithms. For example, in industrial process control, it is necessary to perform complex operations and processing on the collected sensor data to achieve precise control of the production process. At this time, using structured text programming mode, relevant algorithm programs can be easily written to meet the actual needs of industrial production.

  • Instruction List (View Only): Provides the function of viewing the instruction list. Although programming cannot be directly performed through the instruction list, engineers can gain an in-depth understanding of the underlying execution logic of the program by viewing the instruction list, which is convenient for program optimization and troubleshooting. During program debugging, when there is an operation exception or logic error, by viewing the instruction list, the problem can be located more accurately, improving debugging efficiency and ensuring the stable operation of the system.


(III) Complete Diagnosis and Maintenance Functions

  • Real-Time Status Monitoring: It has a complete real-time status monitoring function, which can conduct all-round and real-time monitoring of its own working status, including processor running status, memory usage, communication status, I/O module connection status, etc. By monitoring these key status information in real time, abnormal situations during system operation can be found in a timely manner, and corresponding measures can be taken to avoid the expansion of faults. For example, when it is monitored that the processor load is too high, the system can automatically adjust the task allocation strategy, optimize the program execution order, and ensure the stable operation of the processor; when a communication interruption is detected, it can send an alarm message in a timely manner and try to automatically restore the communication connection.

  • Fault Diagnosis and Alarm: It has strong fault diagnosis capability. When a system fault occurs, it can quickly and accurately diagnose the cause of the fault and generate a detailed fault report. At the same time, through the internal alarm mechanism, the fault information is fed back to the user in an intuitive way, such as through indicator light flashing, buzzer alarm, sending SMS or email notifications, etc. The fault diagnosis and alarm function can help maintenance personnel quickly locate the fault point, shorten the fault handling time, and reduce economic losses caused by equipment shutdown. For example, when an I/O module fails, the system can accurately determine which channel has a problem, and specify the fault type and possible causes in the fault report, providing clear maintenance guidance for maintenance personnel.

  • Online Programming and Debugging: Supports online programming and debugging functions. During system operation, engineers can modify, download and debug programs online according to actual needs without stopping the system operation. This function greatly improves the maintainability and flexibility of the system. In the industrial production process, if it is necessary to adjust the production process or optimize the control logic, engineers can directly modify the program in 2MLR-CPUHT through the online programming and debugging function on site without affecting the normal production, improving production efficiency and reducing production costs.

Product Tags: Honewell , 2MLR-CPUHT

Send Inquiry to This Supplier

* Message
0/5000

Want the best price? Post an RFQ now!
Verified Business License
Business Type
Trading Company
Year Established
2014
Factory Size
1,000-3,000 square meters
Product Certifications
SA8000