Communication Technology:EtherNet/IP
Number of Ports:Dual
Power Consumption:Less than 5.1 W
Operating Temperature Range:-40°C to 85°C
Environmental Compliance:UL, CE, CSA
Enclosure Type:IP20
Mounting Type:Panel
Protocol Compatibility:IEEE 802.3
Network Support:IEEE 802.3, IEEE 802.3u
Max Data Transfer Rate:10/100 Mbps
The Allen-Bradley 1756-EN2TRK is a state-of-the-art dual EtherNet/IP bridge module designed to enhance the operational efficiency of industrial automation systems. This high-capacity module is engineered for compatibility with Allen-Bradley ControlLogix platforms, ensuring robust and reliable data transmission across networks.
Featuring advanced Ethernet/IP communication capabilities, this module seamlessly integrates with a wide range of network devices, facilitating streamlined data exchange essential for modern industrial environments. With its open-type enclosure, the 1756-EN2TRK is optimized for diverse operational conditions, ensuring continuous performance under varying environmental challenges.
Equipped with a temperature rating from 0 to 60 DEG C and capable of handling up to 30 G of shock, this module is built to withstand harsh industrial settings. Its 5.1 W power dissipation ensures minimal heat generation, maintaining optimal operational conditions for extended periods.
The inclusion of an open-type enclosure allows for easy installation and maintenance, while the 30 V continuous isolation protects against electrical hazards, ensuring the safety and longevity of the system. Furthermore, its compatibility with 5-95% non-condensing relative humidity environments ensures adaptability across various industrial locations.
With its support for both shielded and unshielded twisted pair cables, the Allen-Bradley 1756-EN2TRK provides flexibility in cabling options, making it a versatile choice for different network configurations. This dual EtherNet/IP bridge module is an indispensable component for optimizing industrial automation processes, enhancing system reliability, and boosting overall productivity.
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