Name one type of automation technology commonly used in manufacturing.

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Multiple Choice

Name one type of automation technology commonly used in manufacturing.

Explanation:
Programmable Logic Controllers (PLCs) are a fundamental component of automation technology in manufacturing. They are specialized computer systems designed to control machinery, processes, or equipment in various settings, including manufacturing plants. PLCs are highly versatile and are used to automate specific functions within production lines, which helps in enhancing efficiency, reliability, and flexibility of manufacturing operations. They operate by receiving input from sensors and devices, processing that information, and then executing control commands to actuators and other devices. This allows for precise control over complex processes, including timing, sequencing, and input/output control. PLCs have become essential in modern manufacturing due to their robustness, ease of programming, and ability to be integrated with other technologies, such as Human-Machine Interfaces (HMIs) and supervisory control systems. In contrast, Robotics Processing Units (RPUs) are still an emerging concept, and while they may play a role in automation, they are less established than PLCs. Computer Numerical Control (CNC) pertains specifically to machine tool control rather than broader automation applications. Automated Material Handling Systems (AMHS) focus on movement and storage of materials but don't encompass the full range of control capabilities that PLCs provide. This makes PLCs a prevalent choice in the automation

Programmable Logic Controllers (PLCs) are a fundamental component of automation technology in manufacturing. They are specialized computer systems designed to control machinery, processes, or equipment in various settings, including manufacturing plants.

PLCs are highly versatile and are used to automate specific functions within production lines, which helps in enhancing efficiency, reliability, and flexibility of manufacturing operations. They operate by receiving input from sensors and devices, processing that information, and then executing control commands to actuators and other devices. This allows for precise control over complex processes, including timing, sequencing, and input/output control.

PLCs have become essential in modern manufacturing due to their robustness, ease of programming, and ability to be integrated with other technologies, such as Human-Machine Interfaces (HMIs) and supervisory control systems.

In contrast, Robotics Processing Units (RPUs) are still an emerging concept, and while they may play a role in automation, they are less established than PLCs. Computer Numerical Control (CNC) pertains specifically to machine tool control rather than broader automation applications. Automated Material Handling Systems (AMHS) focus on movement and storage of materials but don't encompass the full range of control capabilities that PLCs provide. This makes PLCs a prevalent choice in the automation

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