Kollmorgen H32NCHA‑LNN‑NS‑00

Product Name

H‑Series Hybrid Stepper Motor (NEMA34 frame)

Product Overview

High‑performance two‑phase hybrid stepper motor under Kollmorgen H‑series, compatible with NEMA34 standard mounting dimensions, designed for closed‑loop or open‑loop positioning applications, realizes high holding torque with low rotor inertia for fast dynamic response.

Category:
Description

Technical Specifications

Frame size NEMA34; Winding configuration N‑series; Connector type MS circular connector (C‑code); No holding brake; Standard hall‑sensor commutation; Optional incremental encoder interface; Insulation class B; Typical holding torque 5.5 Nm; Operating temperature ‑20 °C ~ +70 °C; Protection grade IP40 standard, IP65 available with shaft seal option; Weight 4.2 kg.

Functional Features

NEMA34 mechanical interchangeability for direct stepper‑motor system upgrade; Rare‑earth permanent magnet rotor for high torque density; Low rotor inertia for fast acceleration‑deceleration; Multiple feedback configuration options; Robust housing against industrial vibration; Multiple winding options for different drive voltage and current; Support micro‑stepping drive operation.

Application Scenarios

Automated production equipment, CNC positioning axes, pick‑and‑place machinery, packaging automation, textile machinery, 3‑axis motion platforms, material handling actuators.

Performance Parameters

Two‑phase bipolar excitation; High‑speed torque retention capability; Low‑cogging mechanical design; Vibration‑suppression characteristics under micro‑stepping; Allow continuous cyclic positioning duty; Suitable for open‑loop stepper drive or closed‑loop servo drive control mode.

Material Composition

Cast‑aluminum motor housing; High‑energy rare‑earth permanent‑magnet rotor; Laminated silicon‑steel stator core; Steel output shaft; Ball bearing assemblies; Polyimide‑insulated stator windings; Metal MS‑type circular connector shell.

Structural Characteristics

Square NEMA34 flange mounting face; Key‑way output shaft; Rear‑end hall‑sensor feedback assembly; Rear‑side MS circular power‑feedback combined connector; Internal rotor‑stator hybrid stepper magnetic‑circuit structure; Double‑ended bearing support for rotor shaft.

Working Principle

Hybrid stepper motor combines permanent‑magnet rotor and variable‑reluctance stator‑tooth structure. Sequential phase‑current excitation creates rotating magnetic field, magnetically pulling rotor to discrete step positions, achieving precise angular positioning; Hall‑sensor signals provide commutation reference for closed‑loop operation.

Installation Requirements

Mount via NEMA34 standard flange mounting holes; Ensure mounting‑surface flatness; Apply concentric coupling for shaft connection; Separate power cable and signal feedback cable with minimum 20 cm clearance; Motor casing must be reliably earthed; Keep adequate ventilation space for heat dissipation; Avoid excessive radial and axial shaft load beyond allowable specification.

Usage Notes

Use matched stepper or closed‑loop servo drive; Do not rotate shaft at high speed without drive connection, otherwise induced voltage may damage peripheral equipment; Prevent water and oil ingress without IP65 shaft‑seal configuration; Strictly follow rated drive current parameters; Perform grounding and EMC shielding for feedback cables.

Reviews (0)

Reviews

There are no reviews yet.

Be the first to review “Kollmorgen H32NCHA‑LNN‑NS‑00”

Your email address will not be published. Required fields are marked *

Shipping and Delivery

MAECENAS IACULIS

Vestibulum curae torquent diam diam commodo parturient penatibus nunc dui adipiscing convallis bulum parturient suspendisse parturient a.Parturient in parturient scelerisque nibh lectus quam a natoque adipiscing a vestibulum hendrerit et pharetra fames nunc natoque dui.

ADIPISCING CONVALLIS BULUM

  • Vestibulum penatibus nunc dui adipiscing convallis bulum parturient suspendisse.
  • Abitur parturient praesent lectus quam a natoque adipiscing a vestibulum hendre.
  • Diam parturient dictumst parturient scelerisque nibh lectus.

Scelerisque adipiscing bibendum sem vestibulum et in a a a purus lectus faucibus lobortis tincidunt purus lectus nisl class eros.Condimentum a et ullamcorper dictumst mus et tristique elementum nam inceptos hac parturient scelerisque vestibulum amet elit ut volutpat.