CPU Type:313C-2 DP
Operating System:Siemens Control Technology
Memory Capacity:128 KB RAM, 128 KB ROM
Processing Speed:Up to 2 MHz
I/O Interfaces:8 x Digital Inputs, 6 x Digital Outputs
Communication Protocols:MPI, PROFINET, EtherCAT
Operating Temperature Range:-25°C to +60°C
Power Consumption:Typically 3 W
Dimensions:115 mm x 120 mm x 103 mm
The Siemens 6ES7 313-6CG04-0AB CPU 313C-2 DP Processor Module is an integral part of Siemens’ comprehensive range of programmable logic controllers (PLCs), specifically tailored for demanding industrial environments. This compact yet powerful module offers unparalleled performance with its high-speed processor, ensuring quick response times and reliable operation in complex automation setups.
With support for Distributed Processing (DP), this CPU facilitates seamless integration within a networked control system, allowing for efficient data exchange between multiple control units. Its robust communication capabilities, including MPI (Multiprotocol Interface) and DP interfaces, make it compatible with a wide array of Siemens and third-party devices, enhancing system flexibility and interoperability.
Featuring a compact design measuring just 96 x 96 x 32 mm, this module optimizes space utilization without compromising on functionality. It boasts a memory capacity of 2 KB RAM and 16 KB ROM, providing ample storage for program code and data. The 8 MHz processor speed ensures swift execution of tasks, making it ideal for fast-paced industrial processes.
The module’s ability to handle up to 14 input/output points enables flexible configuration to suit various automation requirements. With inputs capable of operating at 24V DC and outputs rated at 1 A per channel, it can effectively control a broad spectrum of industrial equipment. This versatility, combined with its rugged design and wide temperature range (-20°C to 60°C), makes it suitable for harsh industrial environments.
Equipped with a RS-485/422 connectivity option, the Siemens 6ES7 313-6CG04-0AB CPU 313C-2 DP Processor Module ensures reliable communication over longer distances, minimizing signal degradation. Its power consumption of max. 5.5W ensures energy efficiency, contributing to lower operational costs and environmental sustainability.
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