HIMA F8650X CPU Module for Industrial Control, Advanced Automation Solutions
The HIMA F8650X CPU Module is a state-of-the-art control unit designed for industrial automation applications, ensuring reliability and safety in critical processes.
The HIMA F8650X CPU Module is a state-of-the-art control unit designed for industrial automation applications, ensuring reliability and safety in critical processes.
Brand:HIMA
Model:F8650X
Module Type:CPU Module
Operating Temperature:-20°C to +70°C
Memory Size:2 MB Flash, 1 MB RAM
Power Consumption:≤ 30 W
Communication Interfaces:RS-485, CAN
Input/Output Channels:16 Inputs, 16 Outputs
Certifications:CE, UL, FM
The HIMA F8650X CPU Module is engineered with cutting-edge technology to deliver superior performance in industrial automation tasks. It features a powerful 2 GHz processor, ensuring quick response times and smooth operation even in demanding environments.
Equipped with 1 GB of RAM and 512 MB of Flash memory, this module can efficiently handle complex programming tasks and large data sets without compromising speed or reliability.
The module supports two RS-485 and one CAN communication interfaces, providing versatile connectivity options for integration with various industrial devices and systems.
With an operating temperature range from -20°C to +60°C, the HIMA F8650X is designed to withstand harsh industrial conditions, ensuring consistent performance throughout its operational life.
Efficient power management keeps the power consumption low, making it an eco-friendly solution for industrial applications. Its compact size and lightweight design make it easy to integrate into existing control systems without increasing space requirements.
Designed with user-friendliness in mind, the HIMA F8650X CPU Module comes with comprehensive documentation and support resources, ensuring seamless setup and maintenance for industrial operators.
The HIMA F8650X CPU Module is a state-of-the-art control unit designed for industrial automation applications, ensuring reliability and safety in critical processes.