Panasonic ZUEP5585D CPU Board for Industrial Control Systems
The Panasonic CPU ZUEP5585D Board is a critical component for advanced industrial control systems, designed for seamless integration and superior performance.
The Panasonic CPU ZUEP5585D Board is a critical component for advanced industrial control systems, designed for seamless integration and superior performance.
Processor Type:Advanced ARM-based
Memory Size:128MB DDR3
Flash Memory:64MB
Operating System:RTOS
Communication Protocols:Ethernet (TCP/IP), CANopen, Profinet
Power Supply:DC 24V, 50W
Dimensions:142x100x25mm
Temperature Range:-10°C to 55°C
Operating Humidity:5% to 95% non-condensing
Integrating cutting-edge technology, the Panasonic ZUEP5585D CPU Board is a powerhouse designed to revolutionize industrial automation systems. Its robust architecture ensures smooth operation in demanding environments, making it an ideal choice for complex machinery and manufacturing processes.
Featuring a high-speed 1 GHz processor, this board delivers unparalleled performance, enabling quick response times and efficient data processing. With 2 GB DDR3 RAM, it can handle multiple tasks simultaneously without compromising on speed or accuracy.
Equipped with versatile communication interfaces including Ethernet, USB, and CAN, this CPU Board seamlessly connects to a wide range of industrial devices, facilitating easy integration into existing systems and promoting seamless communication across various components.
Adapting to a broad temperature range from -20°C to 60°C, the Panasonic ZUEP5585D ensures reliable operation in extreme conditions, making it suitable for diverse industrial settings, from cold storage facilities to hot production lines.
Efficient power management with a low 10W consumption contributes to cost-effective operation and sustainable energy use, aligning with the latest industry trends towards environmental responsibility.
The Panasonic CPU ZUEP5585D Board is a critical component for advanced industrial control systems, designed for seamless integration and superior performance.