Product Short Description
Technical Specifications
- Processor: Dual Inb 386EX 32-bit microprocessors with clock synchronization, each operating at a clock frequency of 25 MHz.
- Memory Configuration: Each processor is equipped with 1 MB of Flash-EPROM for the operating system and 1 MB of Flash-EPROM for user programs; the total data SRAM is 1 MB.
- Safety Ratings: Complies with SIL 3 safety integrity level specified in the IEC 61508 standard, and meets PL e Cat.4 safety level as per the ISO 13849 standard.
- Communication Interfaces: Equipped with 2 electrically isolated RS485 serial interfaces; supports Ethernet connection, including safety Ethernet and Modbus TCP, which requires matching with the F8627X communication module.
- Power Supply Requirements: The power supply voltage is 5V DC/2A, provided by the backplane bus; the typical power consumption is about 10 W.
- Environmental Adaptability: The operating temperature range is from -20°C to +60°C; the storage temperature range is from -40°C to +85°C; the humidity range is 5% to 95% under non-condensing conditions.
Description
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- Diagnostic Display: Equipped with a 4-digit alphanumeric display, along with two LED lights dedicated to error indication.
- Watchdog Function: Features a safety-related watchdog with a 24V output, which can bear a maximum load of 500 mA and is equipped with short-circuit protection.
- Functional Features
- Dual Redundant Reliability: The two clock-synchronized 32-bit microprocessors are equipped with independent program and data storage spaces, and are supplemented by testable hardware comparators. When one processor malfunctions, the other can immediately take over the work, which avoids system downtime caused by single-point faults and ensures the continuity of the system’s safe operation.
- Comprehensive Diagnostic Capabilities: The alphanumeric display and LED indicators on the module can directly output detailed diagnostic information and error codes. When used with engineering tools such as ELOP II TCP, maintenance personnel can quickly locate fault points, greatly reducing the time spent on troubleshooting and improving the overall availability of the system.
- Flexible Configuration and Expansion: It supports programmable configuration to meet the personalized needs of different industrial scenarios. By exchanging data with relevant communication modules through the RS485 interface, it can flexibly build system architectures. It also supports the expansion of various I/O modules, enabling smooth integration with existing industrial control systems without large-scale modifications to the original equipment.
- Stable Safety Guarantee: The built-in safety-related watchdog with short-circuit protection can promptly respond to abnormal system operations. Its compliance with high safety level standards enables it to effectively prevent safety accidents in high-risk industrial processes and provide a stable safety barrier for industrial production.
- Application Scenarios
- Oil and Gas Industry: It acts as the core controller in emergency shutdown systems, fire and gas systems, high-integrity pressure protection systems and pipeline management systems. It can promptly respond to abnormal pressure, gas leakage and other dangerous situations to avoid major safety accidents such as explosions and leaks.
- Chemical and Petrochemical Fields: It is applied to the safety interlock and protection systems in the production process of hazardous chemicals. It monitors key parameters such as temperature, pressure and flow in real time during chemical reactions and material transportation, and triggers corresponding protective actions once the parameters exceed the safety threshold.
- Power Industry: It is used in the safety control systems of power generation units. When abnormalities such as overload and short circuit occur in the power generation equipment, it can quickly execute the safe shutdown procedure to protect the power generation units from damage and prevent large-scale power outages.
- Mechanical Manufacturing Industry: It is widely used in the safety protection of robot workstations, two-hand operation control of large stamping equipment and safety interlocking of automated production lines. It can effectively avoid equipment damage and personal injury caused by misoperation or equipment failure during the production process.
- Other Industrial Fields: It is also applied in process control and safety protection systems in industries such as pulp and paper making and textiles, helping these industries achieve stable operation of automated production and reduce potential safety risks in the production process.
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