Allen-Bradley Kinetix 6000 AB 2094-AM02 Axis Module – High Performance, Efficient Motion Control Solution
The Allen-Bradley Kinetix 6000 2094-AM02 Axis Module is a high-performance motion control solution designed for industrial automation systems, offering exceptional reliability and efficiency in managing complex mechanical operations.
Detailed content
Brand:Allen-Bradley
Series:Kinetix 6000
Product Type:Axis Module
Model Number:2094-AM02
Voltage:480 V AC
Current:30 A
Frequency:50/60 Hz
Bandwidth Velocity Loop:500 Hz
Fault Status Indicators:7-segment
Connectors:[“SERCOS Receive”,”SERCOS Transmit”,”Motor Resistive Brake”,”Auxiliary Feedback”,”Motor Feedback”,”I/O Connector”]
Power Output:24 V DC, 8 A
Wattage:15 kW
Efficiency:98%
Short-Circuit Current Rating:200,000 A (rms)
Engineered for seamless integration with Kinetix 6000 drive families, the 2094-AM02 Axis Module stands out with its robust design and advanced capabilities. It features high-frequency response for precise motion control, ensuring smooth and accurate operation across a wide range of applications.
Equipped with a modular architecture, this axis module supports flexible configurations to cater to diverse industrial needs. It boasts high efficiency and power density, enabling optimal performance in energy-intensive tasks.
With its compact footprint and intuitive interface, the 2094-AM02 is designed for ease of installation and maintenance. The integrated Safe Torque-Off feature enhances safety protocols, making it suitable for critical machinery operations.
The module supports multiple connectivity options, including SERCOS for high-speed data transfer, facilitating seamless communication between the drive and various control systems. This interoperability ensures efficient control over complex machinery setups.
Made from high-grade materials, the 2094-AM02 is built to withstand harsh industrial environments, ensuring long-lasting reliability and minimal downtime. Its durable construction and efficient cooling mechanisms guarantee consistent performance over extended periods.