11RC-300-B1-R
The Danaher 11RC-300-B1-R resolver is a precision feedback device in the Dynapar Resolvers series designed for industrial automation. Manufactured by Danaher, it features a speed rating of 7 and a winding value of 7.5 to deliver reliable rotational position sensing. With a primary function of converting shaft angle into accurately modulated sine and cosine voltages, this resolver is ideal for motion control systems in robotics, manufacturing equipment, and automated machinery. Its robust design ensures consistent performance under demanding conditions, making it a key component for precise position feedback in complex control applications.
This resolver boasts a voltage ratio (vout/vin) of 1.07, a critical parameter that defines its electrical output relative to the excitation input. It achieves a high precision of 4,000 arc-min resolution, enhancing the accuracy of position measurements. The component exhibits a total null of 15, ensuring minimal error at the zero crossing, and a phase shift of -2 degrees, which contributes to signal integrity by reducing phase distortion. With a phasing accuracy of 40.0%, this resolver maintains consistent alignment of excitation and output signals, setting it apart through its precise signal generation and reliable feedback characteristics.
In industrial applications, the 11RC-300-B1-R resolver offers durability and efficiency, backed by its defined electrical and mechanical specifications. The resolver’s performance remains stable across a wide range of operating speeds and environmental conditions, thanks to its optimized winding and precise phasing design. Although no specific certifications are listed, its compliance with standard resolver interfaces ensures compatibility with most servo drives and control systems. Incorporating this resolver into an automation solution enhances system reliability, reduces downtime, and improves overall process accuracy. The Danaher 11RC-300-B1-R is engineered to deliver dependable feedback for high-precision industrial applications, streamlining motion control and elevating operational efficiency.