Allen Bradley 810-A16C Inverse Time Current Relays Coil Current 100A
Electrical Time-Delay Relays The Allen Bradley 810-A16C Inverse Time Current Relay is an essential component designed to enhance the safety and reliability of electrical systems. With its precision-engineered features, this relay is ideal for various industrial automation applications where time-delay functionality is critical.
Key Features • Coil Current Rating: 100A – This high current rating ensures optimum performance in demanding environments. • Inverse Time Characteristic: Designed for applications requiring a time delay based on the inverse of the current, enabling adaptive response to overload conditions. • Compact Design: Space-efficient design allows for easy integration into existing control panels without compromising functionality. • Durability: Constructed to withstand harsh industrial conditions, ensuring long-term reliability and reduced maintenance needs. • Versatile Compatibility: Suitable for use with a wide range of Allen Bradley and other compatible automation systems, enhancing its applicability in various setups.
Applications • Industrial Automation: Perfect for controlling motors and machinery, ensuring operational safety through effective overload protection. • Electrical Panels: Ideal for installation in electrical control panels, enhancing the overall safety and functionality of electrical distribution systems. • Manufacturing Processes: Used in various manufacturing scenarios where precise control and timing are essential for process efficiency.
Benefits • Enhanced Safety: Provides critical overload protection, minimizing the risk of equipment damage and ensuring safe operation. • Operational Efficiency: The relay's inverse time delay feature improves response times during overload conditions, contributing to smoother operational flow. • Reliability: Allen Bradley's commitment to quality ensures that this relay will perform consistently over time, reducing downtime and maintenance costs. --- *Product information compiled with AI assistance for reference purposes.*