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Omron 3G2 3G2A5-CPU11-E2V1

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3G2A5-CPU11-E2V1

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The 3G2A5-CPU11-E2V1 CPU module from Omron is engineered for efficient performance in automation systems. Weighing 0.63 kg (1.39 lbs), it supports panel mounting and is programmed using ladder diagrams.

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Technical specifications for 3G2A5-CPU11-E2V1

ManufacturerOmron
Product Line3G2
Part Number3G2A5-CPU11-E2V1
Weight12.00 lbs (5.44 kg)
Name of ModuleCPU Module
MountingPanel Mount
Programming MethodLadder Diagram
CompatibilitySysmac C500
Instruction Length1 address/instruction (1 to 4 words/instruction)
Number of Instructions71 (12 basic instructions + 59 special instructions)
Memory Capacity24k words
Execution Time3 to 8 µs (basic instructions); 22 to 504 µs (special instructions)
Battery Life4 years at 25 °C
Self-Diagnostic FunctionsCPU failure (watchdog timer), battery failure, cycle time error, memory failure, I/O bus failure, etc.

Omron's 3G2A5-CPU11-E2V1 serves as a crucial component in controlling automation processes. Designed as a CPU module, it offers a mounting solution that is compatible with panel installations. The programming for this unit is accomplished through ladder diagram logic, making it user-friendly for programmers familiar with this method. The module is specifically compatible with Sysmac C500 systems, integrating seamlessly into existing setups.

With a total instruction set of 71, incorporating both basic instructions and specialized operations, this module delivers versatility in handling various tasks. The architecture allows for 1 address per instruction, supporting from 1 to 4 words per instruction, offering flexibility in programming.

This CPU module has a memory capacity of 24k words, providing ample space for processing tasks. Its execution times for instructions vary, with basic instructions processed in 3 to 8 microseconds and special instructions in a range of 22 to 504 microseconds.

A critical feature is the longevity of its battery, which can last up to 4 years when operated at 25 °C, ensuring reliable operation over extended periods. The module incorporates self-diagnostic functions that monitor several conditions, such as CPU failure indicated by a watchdog timer, battery status, cycle time errors, memory integrity, and I/O bus performance. These features work together to enhance the reliability and stability of automation applications.