The GE 323A4747ETP4B Industrial Control Board is a high-performance component designed for critical applications in manufacturing automation and industrial control systems.
The GE 323A4747ETP4B Industrial Control Board is a high-performance component designed for critical applications in manufacturing automation and industrial control systems.
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Board Type:High-Performance Control Board
Model Number:323A4747ETP4B
Technology:Advanced Microprocessor-Based
Power Consumption:25W
Operating Temperature Range:-20°C to +60°C
Communication Interfaces:RS-485, Ethernet
Memory Capacity:64MB SDRAM, 128MB Flash ROM
Dimensions (mm):178 x 104 x 74
Weight (kg):0.5
The GE 323A4747 ETP4B Industrial Control Board is engineered with cutting-edge technology to provide unparalleled performance in complex industrial settings. Its robust design ensures reliability and longevity in demanding environments.
This board supports multiple communication protocols, including Modbus TCP/IP, enabling seamless integration with a wide range of industrial devices and systems. It is compatible with various interface standards such as RS-232 and RS-485, making it versatile for different applications.
With an operating temperature range from -20°C to +70°C, the GE 323A4747 ETP4B is designed to withstand extreme conditions, ensuring continuous operation even in harsh environments. Its efficient power supply system optimizes energy usage, contributing to cost-effective and sustainable industrial operations.
The compact dimensions (115mm x 115mm x 35mm) and lightweight design (0.25kg) make it easy to integrate into existing machinery without compromising on performance. This board is compatible with various control systems, providing flexible solutions for a multitude of industrial automation needs.
Backed by GE’s commitment to quality and innovation, the GE 323A4747 ETP4B Industrial Control Board comes with comprehensive technical support and a warranty period, ensuring peace of mind for our valued customers. It is an essential upgrade for any industrial automation project seeking enhanced functionality, reliability, and efficiency.