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A Comparison of Mechanical Power Transmission Methods

A Comparison of Mechanical Power Transmission Methods

In nearly every machine with motion, a selection of gears, belts, and chains sends power to the final mechanisms and power must be transmitted from the motor to the final load(s) device. Choosing between transmission methods isn’t always simple, but a few key properties can help to make the choices easier.


Comparison of Modbus Over TCP/IP and Profinet

Comparison of Modbus Over TCP/IP and Profinet

Two of the most common protocols are Modbus and Profinet. They are similar in many ways, but there are some crucial differences.


Overview of Motor Contactors and AC Drives

Overview of Motor Contactors and AC Drives

This article discusses motor contractors and how they play an essential role in most robotic cells.


What is Model Predictive Control (MPC)?

What is Model Predictive Control (MPC)?

This article discusses the applications and uses of model predictive control.


PLC Sequencer Logic: An Overview

PLC Sequencer Logic: An Overview

This article discusses PLC Sequencer Logic and the steps needed to accomplish PLC sequencing.


Integral Windup Method in PID Control

Integral Windup Method in PID Control

Integral or Reset Windup is a problem that can occur from these systems, and there are a few possible approaches to minimize the effects.


How to Troubleshoot Encoders with an Oscilloscope

How to Troubleshoot Encoders with an Oscilloscope

In this article, learn the different errors that keep an encoder from working correctly and how to troubleshoot issues using an oscilloscope and other T&M tools.


Soft vs. Direct On-line Motor Starting

Soft vs. Direct On-line Motor Starting

Get to know the hows and whys of choosing the proper start-up method of motors in different applications.


Encoders vs. Resolvers: Applications and Characteristics

Encoders vs. Resolvers: Applications and Characteristics

Learn the general characteristics of encoders and resolvers; these two components may seem to have much in common but are used in very different applications.


Utilizing Exoskeleton Robots for Industrial Applications

Utilizing Exoskeleton Robots for Industrial Applications

Learn all about exoskeletons, a way to fuse robotics and humans in ways that can help the manufacturing process while protecting the human body from excessive strain.


An Introduction to Gray Code for Encoders

An Introduction to Gray Code for Encoders

This article introduces Gray code, a specialized binary arrangement necessary for absolute encoders to communicate with controllers.


An Overview of Visual Servoing for Robot Manipulators

An Overview of Visual Servoing for Robot Manipulators

Robot Manipulators, also known as Robot Arms, are found just about everywhere nowadays seeing as their versatility puts them at the forefront of manufacturing innovation. In this article, learn about Visual Servoing and how it's used for industrial and commercial applications.


A Look Into Rotary Encoder Types: Absolute and Incremental

A Look Into Rotary Encoder Types: Absolute and Incremental

This article looks at rotary encoders, covering the main types, introducing their characteristics, and introducing their key applications in control systems.


Sensor Installation for Control and Automation Systems

Sensor Installation for Control and Automation Systems

Whether it’s a critical machine repair or the installation of a brand new piece of equipment, it’s important to have the knowledge and skill to properly connect sensors to a control system.


The Rise of Electromechanical Actuators

The Rise of Electromechanical Actuators

Recently, there has been an increasing demand for electromechanical actuators as they may be beginning to replace hydraulic and pneumatic actuators. 


Different Types of Motor Encoders Commonly Used in Automation

Different Types of Motor Encoders Commonly Used in Automation

This article discusses different types of motor encoders in automation, specifically linear and rotary encoders and their applications.


Using PID and Feedback Loops for Precise Motion Systems

Using PID and Feedback Loops for Precise Motion Systems

PID controllers are an excellent method of using feedback to turn an otherwise open-loop system into one which can follow a carefully prescribed profile, correcting for inconsistencies caused by the equipment, the environment, and even the products in the manufacturing process.