Kollmorgen M.1017.3888 - MMC Module
The Kollmorgen M.1017.3888 stands out as a premier automation product designed to meet the rigorous demands of the power industry, petrochemical sectors, and general automation applications. Engineered with precision, this model offers exceptional input/output capacity and robust performance metrics that ensure reliability and efficiency in the most challenging environments. At the technical core, the Kollmorgen M.1017.3888 delivers a high input/output throughput capability, supporting dynamic control processes and enabling seamless integration with existing automation systems. Its durable construction ensures long operational life, minimizing downtime and maintenance costs. The M.1017.3888 excels with its advanced thermal management, allowing it to operate efficiently under high load conditions typical in power generation plants and petrochemical processing facilities. With a compact footprint and optimized power consumption, it perfectly balances performance and energy efficiency. In real-world applications, the Kollmorgen M.1017.3888 is widely utilized in power industry settings, where precise control of electrical systems is critical. For example, it manages complex motor control tasks within power plants, enabling smooth ramp-up and shut-down sequences while maintaining system stability.
In petrochemical operations, the M.1017.3888’s rugged design withstands harsh chemical environments, reliably controlling pumps, compressors, and valve actuators to ensure safety and process integrity. General automation scenarios also benefit from its adaptive control algorithms and scalability, making it an ideal choice for manufacturing lines requiring consistent high-speed performance and fault tolerance. When compared to other Kollmorgen automation products, the M.1017.3888 offers distinct advantages. Unlike the Kollmorgen M.1302.1118 or M.1302.8583 models, which are optimized for lighter industrial automation tasks, the M.1017.3888 supports higher power ratings and enhanced durability features. Compared to the Kollmorgen M.1016.2540, the M.1017.3888 provides improved thermal handling and expanded input/output channels, making it better suited for complex control architectures. Additionally, the M.1017.3888’s performance surpasses that of the Kollmorgen M.1302.6401 and M.1302.8620 in terms of scalability and integration flexibility, critical for evolving industrial environments.
Alongside the Kollmorgen M.1017.3888, complementary models such as the Kollmorgen AKM42G-PACC2R-00 and AKM24D-CKCN2-00 provide precision servo motor solutions that enhance system responsiveness and accuracy. The Kollmorgen AKD-P00306-NAEC-0000 servo drive pairs seamlessly with the M.1017.3888, delivering coordinated motion control for demanding automation tasks. For sensor integration and monitoring, the Kollmorgen SPECTRARADIOMETER SYSTEM and Kollmorgen PSR4/5A-275-0400 offer advanced detection capabilities that augment system safety and diagnostics. The Kollmorgen BDS4A-110H-204C3 and BDS5A-220-00010-606A-2-031 series provide ruggedized motor designs that complement the M.1017.3888’s control precision in heavy-duty environments. The application of M.1017.3888 in power industry, petrochemical, and general automation settings is reinforced by its ability to withstand extreme operational conditions while maintaining superior control fidelity.
Whether managing high-torque motors in a petrochemical plant or coordinating automated processes in power generation, this model ensures consistent uptime and operational efficiency. In summary, the Kollmorgen M.1017.3888 is a versatile, high-performance solution within the Kollmorgen automation products portfolio. It uniquely combines advanced technical features, durability, and adaptability, making it the preferred choice for complex industrial automation challenges. When paired with other Kollmorgen models like the M.3000.1306, 6SM56-M3000, and AKM21E-BNBN1-00, users achieve a comprehensive automation system capable of meeting the most stringent industry standards and application requirements.




