2CP210.60-1

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The 2CP210.60-1 is a CPU module with power consumption of 22.5 W and requires 2 slots on the CPU base plate module (BP300). Designed by B & R Automation for the System 2010 Controllers, it features an integrated CAN bus interface. Additionally, it supports 128 KByte DPR memory and includes an integrated MMU and FPU.

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Product Description:

The 2CP210.60-1 CPU Module is made for precision control. It belongs to the System 2010 Controllers family. This B & R Automation unit provides consistent performance across different industrial automation environments.

The 2CP210.60-1 CPU module is specifically designed to work seamlessly within the B&R 2010 automation system and it will physically and functionally fit with other modules in that system family. This module MMU features allows the processor to handle advanced memory management tasks and its FPU feature enables efficient processing of complex mathematical calculations which makes it suitable for control tasks that involve heavy computation or precise algorithms. This control system is designed to occupy 2 slots in the system. The module serial communication interface allows the controller to communicate with external devices using the RS485 or RS422 standards which are robust and widely used for industrial communication, especially over long distances or in noisy environments. It comes with 6 megabytes of system RAM, which is used for executing programs, buffering data and to manage runtime operations. It can communicate internally with other modules and components using a system bus which is essential for data flow and synchronization in modular systems.

This 2CP210.60-1 CPU module processor takes 0.125 µsec time to execute a basic command cycle which indicates high performance due to which it can react quickly to events and run control loops with high precision. It also has a dual port memory of 128 Kbyte which allows two devices to access the memory simultaneously without interfering with each other which is useful for efficient data exchange between the CPU and other modules such as I/O or communication cards. The module consumes 22.5 watts of power.

CAN Bus Interface
Integrated
Command Cycle Time
0.125 µs
Dual-Port Memory
128 KByte
Module Type
2010 CPU Module for B&R 2010 systems
Power Consumption
22.5 W
Processor Features
Integrated MMU and FPU
Serial Interface
RS485/RS422
Slot Requirement
2 slots on BP300 base plate
Storage Temperature
-20 °C to +60 °C
System RAM
6 MByte

Frequently Asked Questions about 2CP210.60-1:

Q: How does the dual-port memory improve data handling in 2CP210.60-1 CPU Module?

A: Dual-port memory enables simultaneous access by two devices, reducing latency. This ensures faster and more efficient data exchange between CPU and other system modules.

Q: Why is the system bus crucial in the 2CP210.60-1 CPU Module?

A: The system bus supports real-time data synchronization between modules. This results in streamlined control and communication within the modular System 2010 architecture.

Q: What role does the integrated CAN bus interface play in this CPU module?

A: The CAN interface allows real-time communication across distributed devices. It enhances fault tolerance and reduces wiring complexity in industrial networks.

Q: Why does the 2CP210.60-1 CPU Module require separate application memory?

A: Ordering application memory separately allows customization based on project needs. This flexibility lets users optimize memory size for specific applications.

Q: How does the FPU in 2CP210.60-1 assist with real-time control processes?

A: The Floating Point Unit enables rapid computation of mathematical models. This is essential for high-precision automation processes and complex algorithm execution.


Internal Product Review

  • ‘‘The 2CP210.60-1 CPU Module delivers high-speed command execution with its 0.125 µsec cycle time. Its 6 MB system RAM, dual-port memory, and MMU/FPU integration enable complex, real-time processing. Designed for B&R 2010 systems, it offers robust RS485/RS422 communication and modular system compatibility.’’

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