KOLLMORGEN Seidel DBL5N01700-03S-000-S40 Servo Motor
KOLLMORGEN Seidel DBL5N01700-03S-000-S40 Servo Motor
Introduction
The KOLLMORGEN Seidel DBL5N01700-03S-000-S40 is a high-performance, brushless synchronous servo motor engineered for demanding industrial automation applications. Built with high-grade neodymium-iron-boron (NdFeB) permanent magnets, this motor delivers exceptional dynamic performance, precise positioning, and a compact footprint.
Designed historically under the trusted Seidel name and fully integrated into Kollmorgen’s high-torque legacy portfolios, the DBL series is optimized for low-inertia, high-acceleration tasks. Its robust design ensures structural longevity and seamless integration with digital servo drives, making it a reliable cornerstone for high-speed automated machinery.
Technical Parameter Table
| Parameter | Specification / Value |
| Manufacturer | KOLLMORGEN (Seidel Series) |
| Model Number | DBL5N01700-03S-000-S40 |
| Motor Type | Brushless AC Synchronous Servo Motor |
| Magnet Material | Neodymium-Iron-Boron (NdFeB) |
| Stator Length / Frame Size | 5N Series |
| Nominal Speed | 1,700 RPM (indicated by 01700) |
| Feedback System | Resolver / Encoder (S40 variant dependent) |
| Holding Brake | Optional / Model-specific config (000 default) |
| Enclosure Rating | IP64 / IP65 (Standard industrial sealing) |
| Cooling Method | Natural Convection (Totally Enclosed, Non-Ventilated) |
| Insulation Class | Class F |
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The KOLLMORGEN Seidel DBL5N01700-03S-000-S40 represents a pinnacle in precision-engineered motion control technology. This industrial-grade servo motor utilizes advanced brushless design architectures to minimize mechanical wear while maximizing operational throughput. Featuring high-energy permanent magnets, the unit excels at managing rapid velocity profiles and sudden duty-cycle shifts without experiencing thermal degradation or torque fading.
As part of the highly reliable DBL line, the DBL5N01700-03S-000-S40 is particularly sought after in factory automation ecosystems where downtime is cost-prohibitive. Its standardized multi-pin connector interface ensures backward compatibility and straightforward drop-in replacement during plant maintenance overhauls. By maintaining a balance between high rotor acceleration and stable thermal dissipation, this motor provides uninterrupted operational efficiency for complex multi-axis motion control loops.
Product Advantages and Features
High Dynamic Acceleration: Utilizing rare-earth NdFeB magnets, the motor offers an outstanding torque-to-inertia ratio for quick start-stop cycles.
Maintenance-Free Operation: Brushless construction removes the risk of carbon dust contamination and mechanical brush wear, extending the system's operational lifetime.
Robust Structural Integrity: Built with a rugged, fully sealed frame capable of tolerating harsh factory environments, moisture, and fine particulate matter.
Optimized Thermal Performance: Advanced stator winding design ensures rapid heat dissipation, allowing the motor to run cool even during continuous peak-torque demands.
Precise Feedback Integration: Equipped with integrated feedback mechanisms that talk directly to digital servo amplifiers for highly accurate velocity and position loops.
Application Cases
CNC Machine Tools: Provides the exact axes positioning and feed-rate reliability required for high-tolerance milling, turning, and cutting processes.
Packaging Machinery: Drives high-speed labeling, sorting, and wrapping mechanisms where precise synchronization and variable speed profiles are critical.
Robotic Arms & Manipulators: Acts as the joint-drive solution for articulated industrial robots executing assembly, welding, or pick-and-place maneuvers.
Textile Automation: Manages material tensioning and high-speed winding axes, preventing material deformity through smooth, cog-free torque delivery.
Material Handling Systems: Powers precision conveyors and automated storage/retrieval systems (ASRS) requiring rapid, repeatable positioning.
Installation and Maintenance
Installation Guidelines
Mechanical Alignment: Ensure the motor shaft is perfectly aligned with the driven load. Misalignment can lead to premature bearing wear or shaft breakage. Use flexible couplings where appropriate.
Mounting: Securely bolt the motor to a metallic, heat-conductive surface to facilitate natural convection cooling.
Wiring: Ensure all power and feedback cables are shielded and routed away from high-voltage EMI sources to eliminate signal noise interference.
Maintenance Recommendations
Routine Inspections: Regularly check the motor exterior for accumulation of dust, oil, or debris that might impede natural cooling.
Bearing Checks: Listen for unusual mechanical noises or vibration profiles, which may indicate the end of bearing service life.
Cable Integrity: Inspect connection boots and cables periodically for stress fractures, cuts, or
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