Operating Voltage:DC 24V
Output Power:100W
Communication Interface:EtherCAT
Current Range:1-5A
Speed Resolution:0.1μs
Max Load Capacity:5kgf.cm
Motor Compatibility:Geared, AC, DC Motors
Ambient Operating Temperature:-10°C to +60°C
IP Rating:IP20
Dimensions (WxDxH):100mm x 60mm x 40mm
Engineered for efficiency and reliability, the Fanuc A06B-6096-H207 GE Servo Module is at the forefront of modern industrial automation solutions. Its compact design ensures minimal space consumption while its advanced technology delivers unparalleled performance. This module is specifically tailored for environments demanding high-speed response times and exceptional torque control.
Featuring an EtherCAT communication interface, the module ensures seamless data transfer, making it compatible with a wide range of control systems. It’s equipped with robust components that can withstand harsh industrial conditions, ensuring continuous operation even under extreme temperatures. This makes it ideal for applications in manufacturing, robotics, and process control industries.
With its ability to handle up to 30A of current, the A06B-6096-H207 can power even the most demanding servo motors, enhancing productivity and reducing downtime. The precise control over voltage and current ensures that every movement is executed with accuracy, leading to improved product quality and efficiency.
Moreover, the module boasts a fast response time, enabling it to adapt swiftly to changing conditions or commands. This responsiveness is crucial in dynamic industrial processes where timing can significantly impact output quality and throughput. Additionally, the operating temperature range from -20°C to +70°C ensures its reliability across various geographical locations and seasonal changes.
In summary, the Fanuc A06B-6096-H207 GE Servo Module is a powerhouse in the realm of industrial automation, combining cutting-edge technology with practical durability. It is designed to enhance the operational capabilities of machinery, contributing to increased efficiency, reduced maintenance costs, and overall improved performance in industrial settings.
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