Kollmorgen 6SM57M-3.000 high – performance analog input/output module

The Kollmorgen 6SM57M-3.000 is a synchronous servo motor engineered for high precision and efficiency in industrial motion control applications. This model sits within Kollmorgen’s renowned 6SM series, known for compact design paired with robust performance. It serves as a core actuator element within automated platforms, interfacing effortlessly with servo drives and control electronics to execute fine-tuned rotational movements.

Description

The Kollmorgen 6SM57M-3.000 servo motor is widely used in demanding industrial automation environments requiring precise motion control. It finds application in robotic arms, CNC machinery, packaging lines, and semiconductor manufacturing equipment. Industrial engineers rely on this motor for tasks where consistent torque delivery at controlled speeds is critical, such as assembly automation, conveyor systems, and high-speed machining. The durability and accuracy of the Kollmorgen 6SM57M-3.000 make it highly applicable in control systems where operating conditions involve continuous start-stop cycles and frequent load changes.

This servo motor excels in environments like electronics manufacturing, automotive assembly lines, and precision tooling shops, where tight tolerances and repeatability govern production quality. The motor’s design addresses challenges including thermal management, vibration resistance, and electromagnetic interference, ensuring smooth and stable operation even under fluctuating loads. As an integral component of motion control systems, the Kollmorgen 6SM57M-3.000 supports engineers by delivering dependable torque and speed control, which significantly enhances process throughput and reduces downtime.

The Kollmorgen 6SM57M-3.000 is a synchronous servo motor engineered for high precision and efficiency in industrial motion control applications. This model sits within Kollmorgen’s renowned 6SM series, known for compact design paired with robust performance. It serves as a core actuator element within automated platforms, interfacing effortlessly with servo drives and control electronics to execute fine-tuned rotational movements.

Compatible with various control architectures, the Kollmorgen 6SM57M-3.000 integrates seamlessly in systems using digital or analog feedback loops. The device’s ability to maintain consistent torque output and speed at rated power makes it valuable for applications demanding precision positioning, velocity regulation, and dynamic load response. Its compact size and mounting standards align well with modern machine designs, helping systems maintain footprint efficiency without sacrificing power.

For engineers, this motor represents a balance between performance and reliability, especially in applications where servo motors face extended operating hours and exacting control requirements. The Kollmorgen 6SM57M-3.000 is developed to provide long-term service life with minimal maintenance, positioning it as a trusted component in advanced automation solutions.

The Kollmorgen 6SM57M-3.000 delivers powerful technical features that distinguish it in the servo motor category. It produces up to 8.0 Newton meters of torque at a rated speed of 3000 revolutions per minute. Powered by a 24-volt DC supply, this motor operates efficiently with typical current consumption around 4.3 amps, balancing energy use and high torque delivery.

This servo motor’s hardware design prioritizes ruggedness and precision. It includes a high-quality rotor with a moment of inertia optimized for rapid acceleration and deceleration, ideal for responsive control in dynamic process applications. The IP67-rated enclosure protects against dust and moisture ingress, allowing the motor to perform reliably in harsh industrial settings including those susceptible to contaminants.

Compatibility with communication and control protocols enhances the Kollmorgen 6SM57M-3.000’s integration flexibility. It works well with Kollmorgen’s Servostar amplifiers and standard feedback sensors like resolvers, enabling precise position and velocity feedback. The motor’s sealed bearings and efficient thermal dissipation promote long-term reliability, minimizing wear and extending maintenance intervals.

In summary, the Kollmorgen 6SM57M-3.000 combines substantial torque, compact engineering, and environmental protection to provide an agile, long-lasting solution for precision motion control tasks in demanding industrial automation scenarios.

6SM57M-3.000
6SM57M-3.000
Parameter Value
Model Kollmorgen 6SM57M-3.000
Brand Kollmorgen
Type Synchronous Servo Motor
Power Supply 24 V DC
Rated Torque 8.0 Newton meters
Rated Speed 3000 revolutions per minute
Rated Current 4.3 Amps
Protection Rating IP67
Operating Temperature 0°C to 100°C
Dimensions (HxWxD) 140 mm x 160 mm x 165 mm
Weight Approximately 2.5 kg
Rotor Inertia Optimized for rapid response
Mounting Type IEC standard flanged mounting
Certifications CE, UL

Related Kollmorgen products often paired with or similar to the 6SM57M-3.000 include:

6SM57M-3000-G-KR – Higher torque variant with ruggedized components for demanding industrial environments.

6SM37L-4000 – Similar series motor with higher speed rating, suitable for applications requiring faster rotation.

6SM77S-3000 – Enhanced torque capacity variant designed for larger automation systems.

Servostar 603 – Servo amplifier commonly used together with the 6SM series for control and feedback management.

Stober Gear P521SGZ0040ME – Gearbox often paired with this motor for torque multiplication and precise mechanical transmission.

Before installing the Kollmorgen 6SM57M-3.000, it’s crucial to ensure the control panel or machine frame can accommodate its flanged mounting and physical dimensions. Proper alignment with coupled equipment and secure attachment are necessary to prevent mechanical stress and potential damage to bearings. Grounding should be verified to minimize electrical noise, and cable shielding must be maintained to protect feedback signals.

Maintenance best practices include regular inspection of motor connections and checking for signs of wear on bearings and seals. Monitoring thermal conditions is important, as this motor is rated for operation up to 100°C. Utilizing diagnostic tools to verify current draw and performance can help identify early signs of overload or electrical faults. Firmware or controller updates for associated drives can optimize motor response and extend service intervals.