ABB UAD141A02 | 3BHE012095R0002 | Motherboard
The ABB UAD141A02 | 3BHE012095R0002 Motherboard is an integral component designed for industrial control systems, offering enhanced reliability and performance.
The ABB UAD141A02 | 3BHE012095R0002 Motherboard is an integral component designed for industrial control systems, offering enhanced reliability and performance.
Brand:ABB
Model:UAD141A02 3BHE012095R0002
Module Type:Motherboard
Processing Speed:Up to 1 GHz
RAM Capacity:Up to 1 GB DDR3
Expansion Slots:2 x PCI Express, 1 x PCI
Operating Temperature Range:-25°C to +55°C
Power Consumption:20 W
The ABB UAD141A02 3BHE012095R0002 Motherboard is designed to deliver unparalleled reliability and efficiency in industrial automation applications. Its robust architecture ensures seamless integration with a wide array of control systems, making it an indispensable part of modern manufacturing and process industries.
Featuring an advanced high-performance microprocessor and ample memory capacity, this motherboard is optimized for running complex control algorithms and data-intensive applications. With its large storage capacity, it can efficiently manage vast amounts of data, enhancing operational efficiency and productivity.
Equipped with multiple communication protocols, including Ethernet, Profinet, CANbus, and Modbus, the motherboard facilitates smooth data exchange between different components within a system, ensuring optimal coordination and control.
Adapted for use in harsh industrial environments, the motherboard operates reliably across a wide temperature range (-20°C to +60°C), ensuring continuous performance even under extreme conditions.
Compliant with international standards such as CE, UL, and ISO 9001, the ABB UAD141A02 3BHE012095R0002 Motherboard meets stringent quality and safety requirements, providing peace of mind for users in terms of reliability and compliance.
The ABB UAD141A02 | 3BHE012095R0002 Motherboard is an integral component designed for industrial control systems, offering enhanced reliability and performance.