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500CPU05 1MRB150081R1/E | reliable automation | P7LA HNEF105323R0002

Model :500CPU05 1MRB150081R1/E

The AC500-XC provides simple, safe and reliable automation solutions to adapt to new challenges.
Flexible and scalable
Real-time, high-speed data exchange to meet the needs of the control system.
A wide range of high-speed extreme environment cpus offer varying memory, performance, and networking capabilities.

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500CPU05 1MRB150081R1/E | reliable automation | P7LA HNEF105323R0002

Model :500CPU05 1MRB150081R1/E

The AC500-XC provides simple, safe and reliable automation solutions to adapt to new challenges.
Flexible and scalable
Real-time, high-speed data exchange to meet the needs of the control system.
A wide range of high-speed extreme environment cpus offer varying memory, performance, and networking capabilities.

500CPU05 1MRB150081R1/E provides a variety of communication modes through the onboard module and expansion module, and forms a powerful network node through different combinations to achieve different automation solutions.
It is easy to align with previous solutions and can be prepared for current and future solutions.

 

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500CPU05 1MRB150081R1/E can be used in harsh environments:

Operating temperature -40℃~ +70℃.

Vibration reduction (IEC61131-2 / IEC60068-26).

Corrosion-resistant gases (IEC60721-3.3 3C2), such as H2S, SO2/SO3, NOX.

Salt spray resistance (EN60068-2-52/ EN60068-2-11).

High altitude, 4000 m above sea level or up to 620 hPA.

EMC (EN61000-4-4 and EN61000-4-5).

Impact resistance (IEC60068-2-27).

“Onboard module” is a relatively broad concept that usually refers to the function or hardware integrated into the motherboard chip. Onboard is generally used as an adjective, and “integration” means the function or hardware integrated into the motherboard chip, such as on-board graphics card, sound card, network card, etc. 1.

The 500CPU05 1MRB150081R1/E onboard module is mainly to simplify the assembly process of the computer and reduce the overall cost. Since the hardware is soldered directly onto the motherboard, no additional slots or interfaces are required, saving space and improving overall stability. In addition, onboard modules usually have lower power consumption and heat output, which helps to improve the energy efficiency of the computer.

 

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