Description
- Schneider LSH-050-2-45-320/T1.1R | Traceable Automation Asset
Unboxing & Physical Snapshot
- Model & Brand: Schneider Electric LSH-050-2-45-320/T1.1R
- Product Type: AC Brushless Servo Motor
- Application: Schneider Electric / ELAU PacDrive motion systems. The LSH series is a synchronous servo motor family designed for precision automation applications including packaging and machine motion systems. (abi.nl)
- Motor Series: LSH-050
- Approximate Physical Dimensions (W × H × D):
- Frame size: approximately 50 mm class servo motor
- Overall dimensions depend on encoder, brake, and shaft configuration.
- Estimated Shipping Weight: Approximately 1.0–1.5 kg including protective packaging. The LSH-050-2-45-320 motor variant is listed at approximately 0.92 kg in technical documentation. (abi.nl)
- What’s in the Box:
- Schneider LSH-050-2-45-320/T1.1R servo motor
- Motor shaft assembly
- Feedback/encoder interface
- Connector assembly (configuration dependent)
- Protective packaging
- Documentation when supplied with controlled inventory
Product Introduction
The LSH-050-2-45-320/T1.1R installs as the mechanical motion element within a PacDrive servo control architecture. It converts electrical commands from the servo drive into controlled rotary movement for automated machinery. The motor is designed for applications requiring accurate positioning, repeatable acceleration, and controlled dynamic response (which is essential in synchronized production equipment).
Treat this motor as a precision electromechanical asset. Inspect the shaft, flange surface, connector pins, feedback interface, and bearings before installation. Storage damage is not always visible externally; corrosion on bearings or contamination inside connectors can appear only after commissioning.
Core Technical Specifications
| Parameter | Value |
|---|---|
| Manufacturer | Schneider Electric / ELAU |
| Model Number | LSH-050-2-45-320/T1.1R |
| Product Family | LSH Servo Motor |
| Motor Type | AC Brushless Synchronous Servo Motor |
| Frame Size | 050 |
| Rotor Inertia | Approximately 0.000008 kg·m² |
| Motor Weight | Approximately 0.92 kg |
| Rated Voltage | 24 V brake supply (brake option dependent) |
| Maximum Speed | Up to 10,000 rpm (series dependent) |
| Feedback System | Encoder/resolver feedback (variant dependent) |
| Brake | T1.1R brake option configuration |
| Protection Design | Industrial servo motor enclosure |
| Cooling Method | Natural convection |
| Mounting Method | Flange mounting |
| Shaft Type | Precision motor shaft |
| Processor | None |
| Memory | None |
| Firmware | None |
| Power Consumption | Determined by servo drive output |
| Heat Dissipation | Motor losses during operation |

Schneider LSH-050-2-45-320/T1.1R
(abi.nl)
Global Compliance & Industry Certifications
Expected compliance considerations for the Schneider /T1.1R include:
- CE Mark
- RoHS compliance
- EMC compliance when installed with the approved servo drive system
- UL/cUL recognition may apply depending on the complete machine assembly
- ATEX/IECEx generally not applicable unless integrated into a certified hazardous-area machine
- Marine approvals such as DNV GL generally not applicable for standard industrial servo applications
CE compliance is important because servo motors operate with high-speed switching drives that can introduce electromagnetic interference. Proper installation, grounding, and cable shielding maintain system compliance.
Verify specific lot certifications with OEM.
Long-Term Storage & Asset Preservation Guide
- Store the motor in a dry, temperature-controlled area. Keep the shaft protected from corrosion using the original packaging and protective covers.
- Maintain warehouse humidity below 60% RH to reduce bearing corrosion risk and prevent connector oxidation.
- Rotate the motor shaft periodically during very long storage periods when recommended by maintenance procedures. This helps distribute lubricant inside the bearing system.
Check the feedback connector before installation.
Avoid storing motors directly on concrete floors. Temperature changes can create condensation inside mechanical assemblies.
Physical Installation Prerequisites
- Install using the correct PacDrive mechanical mounting arrangement.
- Verify flange alignment before coupling the motor shaft to the machine load.
- Confirm motor-to-drive compatibility before applying power.
- Connect protective earth grounding according to machine electrical standards.
- Route encoder cables separately from motor power cables.
- Maintain cabinet airflow around the associated servo drive.
- Leave approximately 50 mm clearance around drive cooling areas where applicable.
- Inspect shaft coupling, retaining hardware, and connector locking mechanisms before startup.
Buyer’s FAQ (Logistics & Compliance Focus)
Q: What HS Tariff Code is commonly reviewed for the Schneider /T1.1R?
A: Servo motors are commonly classified under HS 8501 categories for electric motors. Final classification depends on motor specifications, output rating, and destination-country customs interpretation.
Q: Why does Country of Origin (COO) documentation matter for this servo motor?
A: COO supports customs clearance, machine-builder documentation, and maintenance traceability. Match COO details with the commercial invoice, packing list, and motor identification label.
Q: Is shipping insurance recommended for this motor?
A: Yes. Precision servo motors contain bearings, feedback components, and machined mechanical surfaces that can be damaged during transport. Use shock protection, dry packaging, and declared-value insurance.
Q: Does the /T1.1R include firmware pre-loaded?
A: No. The motor itself does not contain application firmware or user memory. Motion parameters and control functions are handled by the connected Schneider Electric / PacDrive servo drive and controller system.



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