Processor Speed:Up to 1 GHz
Memory Capacity:256 KB program memory, 1 MB data memory
Input/Output Channels:32 digital inputs, 32 digital outputs
Analog Inputs:4 channels
Analog Outputs:2 channels
High Counters:6 high-speed counters
High-Speed Outputs:4 high-speed outputs for PTO/PWM/frequency control
Communication Interface:Profinet IRT with 2-port switch, 48-bit performance NS
Power Supply:24 V DC industrial power supply
Operating Temperature:-25°C to +60°C
Dimensions:84 mm x 100 mm x 90 mm
Connectors:Front insert connectors
Engineered for robust performance, the Siemens 6ES7 313-6BE01-0AB0 Compact CPU is designed to handle demanding industrial control tasks with ease. Its compact size makes it ideal for space-constrained environments, while its comprehensive set of features ensures high reliability and efficiency.
This CPU module boasts an impressive array of inputs and outputs, facilitating versatile connectivity and control across diverse industrial processes. Its integration with PROFINET IRT ensures seamless communication within complex automation networks, enhancing system interoperability.
Featuring advanced memory capabilities, the CPU provides ample storage for programming and data management, enabling users to optimize their automation strategies and streamline operations. The inclusion of a front insert connector simplifies installation and maintenance procedures, ensuring minimal downtime and enhanced operational efficiency.
With a 48-bit performance NS and support for high-speed outputs, this CPU is capable of delivering precise control and accurate response times, making it suitable for applications requiring high precision and reliability. The requirement for a SIMATIC memory card ensures secure and efficient data handling, further enhancing the overall system performance.
Ideal for integration into a wide range of industrial applications, from manufacturing and production lines to process control and monitoring systems, the Siemens 6ES7 313-6BE01-0AB0 Compact CPU is a reliable choice for any automation project seeking optimal control and efficiency.
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