Design World

  • Home
  • Technologies
    • 3D CAD
    • Electronics • electrical
    • Fastening & Joining
    • Factory automation
    • Linear Motion
    • Motion Control
    • Test & Measurement
    • Sensors
    • 流体动力
  • Learn
    • Ebooks / Tech Tips
    • Engineering Week
    • Future of Design Engineering
    • MC² Motion Control Classrooms
    • Podcasts
    • Videos
    • Webinars
  • LEAP AWARDS
  • Leadership
    • 2022 Voting
    • 2021 Winners
  • Design Guide Library
  • Resources
    • 3D Cad Models
      • PARTsolutions
      • TraceParts
    • Digital Issues
      • Design World
      • EE World
    • Women in Engineering
  • Supplier Listings

What are common applications for hybrid stepper motor linear actuators?

ByDanielle Collins|November 15, 2021

Share
hybrid stepper linear actuator
The hybrid stepper motor linear actuator provides good force and speed capabilities with high positioning accuracy.
Image credit: ElectroCraft

When it comes to electromechanical linear actuators, integrated designs offer space savings, reduced complexity, and lower total cost of ownership with fewer parts required for repair or replacement. One such design that’s found multiple uses in medical, 3D printing, and assembly applications is the hybrid stepper motor linear actuator, which combines a ball or lead screw with a hybrid stepper motor.


Don’t confuse hybrid stepper motor linear actuators withcan stack stepper motor linear actuators. The force vs. speed characteristics, efficiencies, and cost differences between actuators that incorporate hybrid stepper motors and those that use can stack stepper motors can be substantial, although each technology has unique strengths and best-fit applications.

thrust-force-vs-linear-speed
Stepper motor linear actuators can be driven by hybrid motors or by can stack motors. While their performance characteristics are different, each one has best-fit applications.
Image credit: Haydon Kerk

Hybrid stepper motor linear actuators — also referred to as linear hybrid stepper actuators and stepper linear actuators — offer a wide variety of options, not only in features such as custom machining and materials, but also in their basic design and operation. Case in point: There are three main types, of hybrid stepper actuators — captive, non-captive, and external (also referred to as a motorized lead screw) — with some manufacturers offering additional variations for more specific uses. Below is a quick summary of each type, and for a more in-depth explanation, check outthis article, which details the construction and operation of various integrated motor-screw designs.

  • Captive:In this design, the lead screw nut is integrated directly into the motor. The screw is connected to asplineshaft, so when the motor turns, the screw is prevented from rotating, and linear motion is produced, allowing the screw to extend and retract from one end of the assembly.

    hybrid stepper motor linear actuator captive
    Image credit: Nanotec
  • Non-captive:In this type type of actuator, the ball or lead screw nut is integrated into the motor (or mounted to the face of the motor) and doesn’t travel along the screw. Instead, the screw must be prevented from rotating (typically by the attached load), and when the motor and nut turn, the screw travels linearly, back-and-forth “through” the motor-nut combination. Alternatively, if the screw is fixed so that it doesn’t travel, the assembly essentially becomes adriven nutdesign, where the motor’s rotation causes the motor-nut assembly to travel back-and-forth along the stationary screw.

    hybrid stepper motor linear actuator non-captive
    Image credit: Nanotec
  • External:These actuators use a motor with a hollow shaft and integrate one end of the screw directly into the motor, so the nut remains external to the motor. Like a traditional screw-motor setup, the motor’s rotation causes the screw to turn, which advances the nut (and the load) along the length of the screw shaft. In this design, the opposite end of the screw (not attached to the motor) is unsupported, which is acceptable for light loads and short stroke lengths. However, many applications will require support for the free end of the screw, along with a linear guide to support anyradial loads.

    hybrid stepper motor linear actuator external
    Image credit: Nanotec

Like the stepper motors on which they’re based, hybrid stepper linear actuators are sized according to theNEMA ICS 16-2001standard, which specifies the motor mounting dimensions, such as flange size and bolt circle diameter. The most common sizes for hybrid stepper actuators in general motion applications are NEMA 17 and 23, although some manufacturers offer sizes ranging from NEMA 8 up to NEMA 34.

Because the NEMA standard doesn’t address the length of the motor, manufacturers can offer several torque ranges for the same NEMA frame size by increasing the stack length of the motor — in other words, multiple rotors and stators can be “stacked” in the same motor housing. The result is a motor with the same frame dimensions (albeit slightly longer) that has higher torque and force capability. However, it’s important to note that inmultiple-stack stepper motors,torque productionfalls off more quickly as motor speed increases than in single-stack designs.

For applications that can benefit from even further integration, with reduced complexity, assembly time, and cost, some manufacturers offer hybrid stepper linear actuators with drive electronics and controller functions integrated into the motor. And recall that hybrid stepper motors can operate withmicrosteppingcontrol for even higher resolution and inclosed-loop modewhen position feedback is required.


With their wide range of designs and options, it’s not surprising that hybrid stepper motor linear actuators are used in all types of industries and applications. Here are a few examples of applications where these actuators excel, thanks to their compact size, precise positioning, and good speed-force characteristics.

Precision metering and dosing pumps

Whether for the medical, semiconductor, or assembly industries, hybrid stepper actuators are an ideal solution for driving small, precise pumps, thanks to their extremely compact footprint and ability to move at high speeds with high precision.

Hybrid Stepper Linear Actuator Pumps
Image credit: Thomson

XY tables

One of the key design principles for an XY table is to keep the footprint as compact as possible, and hybrid stepper linear actuators contribute to this goal by keeping the drive system small while providing high thrust forces and positioning accuracy.

Hybrid Stepper Linear Actuator XY Stage
Image credit: Oriental Motor

CNC machines and 3D printers

Although one takes material off (CNC machines) and the other adds material (3D printers), both applications require very high positioning accuracy and reliability — two performance areas where hybrid stepper motor actuators excel, especially when used with microstepping control in a closed-loop system.

Hybrid Stepper Linear Actuator 3D Printing
Image credit: Thomson

Diverting and Sorting

In conveyor applications, there are often stations that require diverting or sorting products for quality issues or manufacturing flow. In these applications, hybrid stepper linear actuators provide fast extension and retraction with good thrust force and simple controls.

Hybrid Stepper Linear Actuator Pushing
Image credit: Oriental Motor

Filed Under:Linear Motion Tips


Related ArticlesRead More >

Five ways to drive ROI from personnel and cobot investments
Screw handedness: When do you need a left-handed screw?
What is torque ripple and how does it affect linear motion applications?
New LMHB linear ball bushing can press fit into assemblies

DESIGN GUIDE LIBRARY

“motion

不可或缺报名

Motion Control Classroom

Design World Digital Edition

cover

Browse the most current issueof Design World and back issues in an easy to use high quality format. Clip, share and download with the leading design engineering magazine today.

EDABoard the Forum for Electronics

Top global problem solving EE forum covering Microcontrollers, DSP, Networking, Analog and Digital Design, RF, Power Electronics, PCB Routing and much more

EDABoard: Forum for electronics

Sponsored Content

  • Case study: How a 3D-printed tool saved thousands of hours and dollars
  • WAGO smartDESIGNER在线提供无缝的掠夺ression for Projects
  • Stop over-designing: How to save time and money with a light-duty ring
  • Five Reasons: The 2065 Connector is a Reliable Alternative to Manual Soldering
  • Disaster recovery in industrial automation starts with source control
  • HELUAKBEL – Your Source for IE Cable Solutions

Design World Podcasts

February 14, 2022
3D printing: the “duct tape” for the supply chain?
See More >
Engineering Exchange

The Engineering Exchange is a global educational networking community for engineers.

Connect, share, and learn today »

Design World
  • Advertising
  • About us
  • Contact
  • Manage your Design World Subscription
  • Subscribe
  • Design World Digital Network
  • Engineering White Papers
  • LEAP AWARDS

Copyright © 2022 WTWH Media LLC. All Rights Reserved. The material on this site may not be reproduced, distributed, transmitted, cached or otherwise used, except with the prior written permission of WTWH Media
Privacy Policy|Advertising|About Us

Search Design World

  • Home
  • Technologies
    • 3D CAD
    • Electronics • electrical
    • Fastening & Joining
    • Factory automation
    • Linear Motion
    • Motion Control
    • Test & Measurement
    • Sensors
    • 流体动力
  • Learn
    • Ebooks / Tech Tips
    • Engineering Week
    • Future of Design Engineering
    • MC² Motion Control Classrooms
    • Podcasts
    • Videos
    • Webinars
  • LEAP AWARDS
  • Leadership
    • 2022 Voting
    • 2021 Winners
  • Design Guide Library
  • Resources
    • 3D Cad Models
      • PARTsolutions
      • TraceParts
    • Digital Issues
      • Design World
      • EE World
    • Women in Engineering
  • Supplier Listings
We use cookies to personalize content and ads, to provide social media features and to analyze our traffic. We also share information about your use of our site with our social media, advertising and analytics partners who may combine it with other information that you’ve provided to them or that they’ve collected from your use of their services. You consent to our cookies if you continue to use this website. OkNoRead more