GMR3340-27-02401410-348A Glentek DC Servo Motor

$4,321.90

The Glentek GMR3340-27-02401410-348A high-performance, permanent magnet DC brush-type servo motor is engineered for industrial motion control. Utilizing high-energy Neodymium-Iron-Boron (NdFeB) magnets, it provides exceptional torque density and a superior torque-to-inertia ratio for dynamic CNC machinery applications.

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Description

The Glentek GMR3340-27-02401410-348A is a heavy-duty permanent magnet DC brush-type servo motor built specifically to withstand challenging industrial manufacturing environments. Designed with high-energy Neodymium-Iron-Boron (NdFeB) magnets, this model provides high dynamic acceleration and deceleration performance compared to traditional ferrite setups. It offers an efficient, smaller envelope package without sacrificing positional accuracy or continuous performance.

Integrating a precisely skewed armature configuration, this servo motor ensures ultra-smooth velocity regulation with reduced cogging torque across all operational speeds. The Totally Enclosed Non-Ventilated (TENV) housing features an IP54 environmental protection rating, housing ruggedized internal ball bearings capable of managing high axial and radial shaft loads. This precise specific configuration lacks an internal shaft seal and a mechanical braking assembly, minimizing rotational drag.

Technical Specifications

  • Series: Glentek GMR
  • Model no.: GMR3340-27-02401410-348A
  • Motor Type: Permanent Magnet DC brush-type servo motor
  • Maximum Speed: 3,300 RPM
  • Frame Size: 3.3-inch diameter NEMA compatible housing
  • Torque:
    • Continuous Stall: 16 lb-in (1.81 Nm) @ 7.1 Amps
    • Peak Stall: 80 lb-in (9.05 Nm) @ 35.5 Amps
  • Voltage: 120 VDC
  • Feedback: 1,000 count encoder
  • Brake: No brake
  • Flange: Square flange
  • Connector: 14-Pin connector
  • Shaft Seal: No shaft seal

Interchangeability & Drop-In Compatibility Guide

This motion control component serves as a direct engineering-approved alternative for obsolete industrial legacy hardware. Specifically, it operates as a high-performance, drop-in replacement for the legacy Baldor MTE-3363-BLBCN DC servo motor.

When replacing older ferrite-magnet variants with this Neodymium-based motor, our technical staff can help you cross-verify drive amplifier configuration settings. Because of its low-inertia armature design, it achieves rapid dynamic responses, requiring slight adjustments to the servo loop tuning parameters (proportional, integral, and derivative gains) on your CNC controller or drive chassis to prevent mechanical oscillation.

Additional information

Speed (RPM)

Model Series

Manufacturer

Glentek

Voltage (V)

Part Number (MPN)

GMR3340-27, GMR3340-27-02401410-348A

Condition

New

Frequently Asked Questions

How do I substitute a legacy Baldor MTE-3363-BLBCN motor with this Glentek unit?

The GMR3340-27-02401410-348A functions as a physical drop-in physical replacement, matching the critical mounting footprint and pilot diameter dimensions. However, because its Neodymium magnets yield higher torque-to-inertia parameters than the legacy Baldor ferrite design, you must perform a fresh PID auto-tune sequence on your drive amplifier to match the new dynamic profile and eliminate axis vibration.

Does this motor configuration support wet machining or direct coolant spray?

No. This unit features an IP54-rated TENV enclosure but is explicitly manufactured without a front shaft seal. Operating it in fields exposed to heavy moisture, oil mist, or direct coolant spray will lead to liquid entering the front bearing assembly and flowing into the brush track, destroying the motor. For wet applications, an upgraded IP65 configuration equipped with viton shaft seals must be used.

What are the correct terminal pinning specifications for the integrated 14-pin connector?

The 14-pin MS-style circular connector combines internal armature power leads and low-voltage encoder lines into one interface. Always match your current drive interconnect schematic against the official Glentek GMR wiring pinout diagram before firing up the system. Miswiring feedback channels directly into high-voltage armature inputs will cause immediate, irreversible damage to the optical encoder module.

Mechanical and Electrical Fault Diagnosis

When executing field diagnostics on an unstable axis, technical personnel must systematically isolate mechanical drag from electrical degradation. Because the GMR3340 series features high-coercivity rare-earth magnets, traditional symptoms of brush failure can often present as intermittent servo amplifier faults or erratic positioning errors before total component shutdown occurs. Utilizing the diagnostic breakdown below allows maintenance engineers to evaluate active telemetry data, verify winding integrity, and pinpoint precise root causes within the servo loop.

Brush Wear and Commutator Pit Marks

Over extended operation, carbon brushes undergo natural mechanical erosion. Inspect brush lengths every 2,000 operational hours; carbon dust build-up can short-circuit the commutator bars, destabilizing the velocity feedback loop.

Demagnetization via Thermal Overload

NdFeB rare-earth magnets are vulnerable to structural degradation if continuous temperatures breach Class H thresholds ($180^\circ\text{C}$). Ensure operating duty cycles match peak current guidelines.

Feedback Signal Degradation

Contaminant ingress into the unsealed rear housing can fog or scratch the internal 1,000-count optical encoder disc. This causes tracking discrepancies, positioning drift, or axis faults on the host CNC machine tool.

Technical Troubleshooting Support

If your axis is experiencing persistent runaway conditions, tracking errors, or thermal faults, contact our engineering support desk. Our technical specialists can walk you through phase alignment verification, encoder signal testing, and drive tuning adjustments to restore nominal system performance.

Glentek GMR3340-27 DC Servo MotorGMR3340-27-02401410-348A Glentek DC Servo Motor
$4,321.90

In stock