Blogs
Allient Linear Motors
Allient Linear Motors Allient ironless brushless linear motors deliver best-in-class precision, power density, quality, and performance. Allient has three standard motor profiles customized for Original Equipment Manufacturers worldwide. Our engineers can help select the best Allient linear motor for the most demanding applications including Electronic Assembly and Test, Metrology, Semiconductor Processing, Precision Machining, Life Sciences,…
Read MoreWhat is a Torque Motor?
What is a Torque Motor? LS Series Torque Motor Torque motor is a term that has been created to describe a motor that will be used mainly for torque control in a precision system. Many of these systems move in very small increments and limited angles of rotation and the motor could be holding position…
Read MoreDirect Drive – An Engineer’s Guide
Direct Drive – An Engineer’s Guide Direct Drive has seen a rebirth in awareness and new applications over the past 20 years. Driving a shaft directly is really nothing new and has been done for over 100 years. What has changed is the types of motors used for the application and the types of motor…
Read MoreWhy Sensor Resolution Matters More Than You Think in Vibration Control
Why Sensor Resolution Matters More Than You Think in Vibration Control In high-precision motion control systems like those used in semiconductor lithography, optical inspection, or precision manufacturing, the terms “sensor resolution” and “servo bandwidth” are often tossed around interchangeably, sometimes even confused as being functionally synonymous. But they’re not. And understanding the difference between the…
Read MorePrecision On Your Terms – The Case for Customer-Driven Motion Solutions
Precision On Your Terms – The Case for Customer-Driven Motion Solutions A Case Study of Customer Driven Precision By Mark D. Holcomb, Director of Product Management In precision motion control, the industry has often fallen into a familiar trap, assuming that more precision is always the answer. Nanometer-level accuracy? Great — but not every application needs it.…
Read MoreWhy Motion Profiles Matter More Than You Think
Why Motion Profiles Matter More Than You Think When engineers evaluate precision motion systems, the first instinct is often to examine datasheets for the biggest and boldest numbers like maximum acceleration, peak velocity, and top-end travel distances. At first glance, these numbers appear to offer a clear performance picture. But hidden beneath the surface is…
Read MoreHow Allient Enables Faster More Accurate 3D Printing
How Allient Enables Faster More Accurate 3D Printing In the area of additive manufacturing (AM), where innovation thrives on speed, precision, and reliability, the unsung heroes of every machine are the motion control systems. These are the mechanisms that quite literally move the AM industry forward. And no one understands this better than Allient. While…
Read MoreAllient’s Latest Motor Innovations at Robotics Summit & Expo
Allient’s Latest Motor Innovations at Robotics Summit & Expo Allient is excited to participate in the upcoming Robotics Summit & Expo on April 30 – May 1 at the Boston Convention Center. If you are attending, be sure to stop by our booth #517 to explore our new product lines and learn how they can…
Read MoreDriving Innovation in Digital Pathology with Precision Motion Control Systems
Driving Innovation in Digital Pathology with Precision Motion Control Systems The world of pathology is undergoing a seismic shift. Traditionally, pathologists have relied on physical glass slides, manually inspecting tissue samples under a microscope — a process that is time-intensive, highly specialized, and geographically limited. However, digital pathology is changing the game. By digitizing tissue…
Read MorePrecision Built for You: Allient’s Coordinated Motion Systems for Laser Processing in Photonics
Precision Built for You: Allient’s Coordinated Motion Systems for Laser Processing in Photonics In advanced photonics applications, precision isn’t a luxury; it’s the baseline. Whether you’re fabricating optical waveguides, writing micro-structures into photonic chips, or producing diffractive elements, laser processing relies on tight coordination between motion and beam activation. This coordination is not trivial, it’s a multidimensional challenge that demands intelligent, customizable, and…
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