What is About Integrated Robotics and Advanced Motion Control?
Knowledge

What is About Integrated Robotics and Advanced Motion Control?

Information is power. Information can not only adjust decision-making but also help discover market opportunities. Use advanced motion control technology to optimize the performance of automated machines.
Published: Apr 25, 2023
What is About Integrated Robotics and Advanced Motion Control?

In the information age, health-conscious consumers can easily obtain nutrition information, and consumers have an increasing demand for a variety of healthy, fast, and convenient foods. To meet the needs of consumers, machinery manufacturers and manufacturers must invest in technologies that are conducive to the realization of the factory of the future.

It is well known that machinery manufacturers are under tremendous pressure to provide equipment that can meet flexible manufacturing needs. Consumers have many diversified demands for their favorite packaging products in terms of taste, packaging size, and multiple packaging, which poses a challenge to the current order-to-order production.

The challenge faced by manufacturers of consumer-packaged products (CPG) is to come up with designs that can adapt to future developments, adjust the current conversion to the best state, and quickly add unexpected new inventory units. Until recently, machinery manufacturers had little choice in how to transport equipment to the factory area. Any CPG manufacturing or packaging application is composed of a series of independent machines, and the integration of these machines is a complete packaging line. Many factory areas are still using this old equipment today.

These packaging lines have the following characteristics: use static mechanical parts, friction-type conveying, and are full of different additional equipment. Therefore, although these packaging lines use fixed variables to process the same product to achieve amazing yields, they usually must sacrifice mechanical flexibility. Complicated mechanical adjustments and equipment synchronization processing take a lot of time, but time is very precious to any factory area, especially when the product is released, which requires a lot of production.

Advanced technology

Due to technological advancements, OEMs now have better ways to meet manufacturers' demands for more flexibility. Specifically, three key electromechanical technologies are changing the balance between OEMs and their customers.

First, the use of robots in CPG applications is far more extensive than in the past. Robots are very flexible, because they can fully operate in three-dimensional space, can determine the appropriate path without re-planning complex mechanical paths, and can ultimately handle a variety of product shapes and sizes.

Second, linear motor technology, especially independent cart technology (ICT), can improve the response of machinery to a diverse product portfolio. Different from traditional transportation, traditional transportation allows products to move at a fixed speed on a pre-set path, while ICT will move the products in a smart way when the job is completed.

Finally, automatic conversion can minimize the need for manual intervention, and improve the mechanical settings of new products or packaging configurations through the human-machine interface. The new servo drive function makes this method more cost-effective. Advances in motor control technology can assist manufacturers to meet consumer demand for more product types and packaging sizes.

Integrated robot

Integrated robots are not just the hottest topic. This term can be defined as a single production line or unit controller that controls the robot, which can reduce the number of dedicated robot controllers and related hardware components such as servo motors, drives, teach pendants, and I/O. Demand. This method can use a single controller to control multiple robots and can simplify integration and improve work efficiency.

With the increasing popularity of smart factory systems, the industrial robot market has encountered huge demands in the past ten years, and robots play a pivotal role in it. Research estimates that the global smart factory market is expected to reach 388.68 billion U.S. dollars by 2024, which can provide insights into the overall end-user industrial automation of industrial robots.

The global smart factory market is expected to reach 388.68 billion U.S. dollars by 2024

To meet the needs of a small and diverse flexible production environment, more and more original equipment manufacturers (OEMs) are abandoning fixed mechanical systems and developing innovative methods to integrate robotics and advanced motion technologies. For OEMs, the key question is not just which technology is most suitable for the application, but also the best practices for integrating these technologies into the machinery and plant architecture.

Not long ago, machinery manufacturers had no choice. Advanced technology from third-party suppliers, usually equipped with a proprietary control system. Therefore, mechanical coordination relies on the challenging integration of multiple different systems. For OEMs, this situation will increase the complexity of each stage of the machinery life cycle.

If employees must specialize in multiple systems, it will be difficult to achieve design efficiency, and customer support will be more challenging. If communication is delayed and synchronization will be an obstacle, performance will be difficult to improve. Fortunately, advances in programmable safety controllers (PACs) overcome these obstacles. The latest PAC can provide faster processor speeds and higher performance, which means that machine manufacturers can adopt general methods for machine control. Advanced technologies such as robotics, ICT, and automatic conversion systems can now be implemented on the standard PAC that implements the rest of the machinery.

Single system solution

General mechanical control allows OEMs to integrate, control, and coordinate advanced technologies more easily. It can also simplify the operation and maintenance of the machine for the end-user. The end-user only needs to understand and support one system.

A machine built with a universal control platform can also provide a universal source of information generated by the machine, and put the OEM in a more advantageous position to provide this information in a meaningful way. General mechanical control can provide an outstanding foundation for visualization, reporting, and analysis solutions, and assist in monitoring important factors that affect performance, efficiency, and quality. It allows OEMs to make smarter equipment, which can be more easily integrated into the facility and provides access to information, so that end users can better respond to the ever-changing market needs.

Robot revolution

Today, robots are an important part of daily life. As the product stock-keeping unit (SKU) of products continues to increase, manufacturing equipment must be more flexible and flexible to adapt to more diversified products, and this speed requires better and higher efficiency.

Machine manufacturers are committed to understanding and improving the advantages of robots and their manufacturing needs, so that machine collaboration technology continues to improve. With the assistance of integrated robots, it seems that it is not so difficult to meet consumers' diversified needs for their favorite packaging products in terms of taste, packaging size, and multi-package products.

Due to the development of the Industrial Internet of Things (IIoT), robots can now provide real-time information that helps make business decisions. Through the cloud connection, the robot can be monitored, managed, and maintained remotely. Therefore, suppliers can support the Robot as a Service (RaaS) model.

Smart machines and equipment provide real-time data access capabilities, better connectivity, and strong security.

End-users continue to develop enterprise networking, bringing together information technology (IT) and operating technology (OT) systems into the single network architecture. Smart machines and equipment provide real-time data access capabilities, better connectivity, and strong security.

Whether it is a machine manufacturer or an end-user, integrated robots can provide unprecedented flexibility and agility, giving customers the key to more success.

Use advanced motion control technology to optimize the performance of automated machines

Automation has always been an indispensable focus in Taiwan’s manufacturing industry. In the production process, many automated actions that replace manual labor must be integrated through the motion control system. How to overcome the various barriers of motion control and develop a customized motion control system to meet the diverse needs of customers will be a challenge for automated machines.

Under the trend of automation, with the advancement of technology, our work will be more intelligent, but at the same time, we must constantly absorb the latest technology and trends in the market, so that we can maintain the best condition at any time, and have the best combat power at any time every wave of trends.

Published by Apr 25, 2023 Source :smartauto, Source :digitimes

Further reading

You might also be interested in ...

Headline
Knowledge
Essential for Precision Machining: A Complete Guide to Tungsten Carbide Center Drills
In modern manufacturing, precision is the core standard by which product quality and performance are measured. From aerospace components to medical devices, even a minor deviation can lead to serious consequences. When it comes to precision drilling, a critical challenge is ensuring that a drill bit can be accurately positioned at the start of a cut while maintaining stability during high-intensity operations. The tungsten carbide center drill is the professional tool engineered specifically to solve this problem.
Headline
Knowledge
From Cavitation Effect to Industrial Applications: The Secrets of Ultrasonic Cleaning
When your glasses, tableware, or electronic components are stained with stubborn dirt, what can you do? Traditional methods often require vigorous scrubbing or even harsh chemical solvents, which are not environmentally friendly and may scratch the item. At this moment, ultrasonic cleaning acts like an “invisible little helper”, reaching deep into grooves and gaps to gently yet effectively remove contaminants.
Headline
Knowledge
The “Spark Magician” of Metalworking
Electrical Discharge Machining (EDM) is a non-traditional machining process that removes metal through electrical sparks. Unlike conventional methods, it is not limited by material hardness and can precisely create deep cavities, micro-holes, and complex structures in hardened steel, tungsten carbide, or superalloys. The three main types of EDM include wire cutting, die-sinking, and hole drilling, which are widely applied in mold making, aerospace, automotive, and medical industries. Although EDM has a slower processing speed, works only with conductive materials, and requires consideration of electrode wear and surface treatment, its advantages in high precision, zero cutting force, and superior surface finish make it an indispensable technology in precision manufacturing. Moreover, it continues to evolve in line with the trend toward smart manufacturing.
Headline
Knowledge
Press Brake vs Shearing Machine: Functional and Technical Comparison of Industrial Processing Equipment
Press Brake and Shearing Machine are two essential types of equipment in the field of machine tools, widely used in the processing of metal, wood, and other materials. They play critical roles in manufacturing, enabling efficient and precise material forming and cutting. This article introduces the definitions, functions, technical features, and applications of folding and cutting machines, offering neutral and practical knowledge sharing.
Headline
Knowledge
Master Chuck Types & Selection: The Essential Guide for Machinists
In the world of precision manufacturing, every minute detail can determine the quality of the final product. The chuck is a critical yet often overlooked component—it's not just a tool for holding a workpiece, but the very heart of ensuring machining accuracy, efficiency, and safety. This article will take you on a deep dive into the diverse universe of chucks, covering their operating principles, design philosophies, common types, and how to select the right jaws and chucks for different needs. Whether you're new to the industry or a seasoned engineer, this guide will unlock the intricate secrets of chucks, helping you master every detail on your path to manufacturing success.
Headline
Knowledge
An Overview of Electrical Discharge Machining (EDM)
Electrical Discharge Machining (EDM) is a non-traditional manufacturing process that utilizes electrical sparks to remove material from a workpiece. Unlike conventional machining methods such as milling or turning, which rely on physical contact between a tool and the material, EDM operates without direct contact, making it ideal for processing hard or brittle materials that are difficult to machine otherwise. The process involves generating a series of rapid electrical discharges between an electrode and the workpiece, submerged in a dielectric fluid, which erodes the material through thermal energy. This technique has revolutionized precision manufacturing by enabling the creation of complex geometries with high accuracy.
Headline
Knowledge
Applications of Machine Tools in the Aerospace Industry
The aerospace industry is a highly specialized and technology-driven sector, encompassing the design, manufacturing, and maintenance of aircraft, spacecraft, satellites, and related equipment. Machine tools play a critical role in this field, enabling the precision machining of complex metal and composite material components. These tools enhance production efficiency while ensuring the accuracy and reliability required to meet the stringent safety and performance standards of aerospace. This document outlines the key applications, technologies, benefits, and future trends of machine tools in the aerospace industry.
Headline
Knowledge
Smart Healthcare Uncovered:How AI Is Transforming Clinical Practice?
With the rapid rise of artificial intelligence (AI), the healthcare industry is undergoing a disruptive transformation. AI is significantly improving diagnostic accuracy and treatment efficiency while profoundly redefining healthcare professionals’ roles and patient experiences. A comprehensive understanding of the core technologies and clinical applications behind this transformation is essential for grasping the future trends and strategic directions of smart healthcare.
Headline
Knowledge
Principle and Applications of Laser Cutting Machines
As the global manufacturing industry advances toward higher precision and efficiency, laser cutting technology has become a key enabler of industrial upgrading. Compared with traditional shearing, stamping, and mechanical cutting, laser cutting offers non-contact processing, higher accuracy, and greater flexibility. It significantly improves productivity while reducing secondary finishing. Today, it is widely adopted in metalworking and increasingly applied in electronics, aerospace, medical, and architectural design industries.
Headline
Knowledge
Why Are High-Quality Cutting Fluids Critical for Machining Quality?
In CNC and metalworking, cutting fluid is no longer just a coolant—it plays a critical role by providing lubrication, chip removal, and corrosion protection. With the right formulation and concentration, it can reduce cutting heat, minimize friction, extend tool life, and maintain workpiece accuracy. High-pressure cooling further enhances efficiency in deep-hole and high-speed machining. The pairing of tool material with the proper cutting fluid is equally crucial; correct selection and maintenance ensure process stability, prolong equipment life, and improve the overall work environment. Cutting fluid has become an indispensable investment in modern precision manufacturing.
Headline
Knowledge
Introduction to Emerging Printing Technologies: Opening New Horizons for the Future of Printing
With rapid technological progress and increasingly diverse market demands, traditional printing techniques are no longer sufficient to meet modern industry’s requirements for precision, efficiency, and sustainability. As a result, emerging technologies such as UV printing, 3D printing, and Nanoimprint Lithography (NIL) have risen to prominence, offering solutions with higher precision, broader applications, and lower production costs. These innovations have already demonstrated value across packaging, advertising, healthcare, semiconductors, and construction. In the following sections, we will explore their technical features and real-world applications, highlighting the advantages and future potential of these cutting-edge printing technologies.
Headline
Knowledge
The Core Standard for Life-Critical Systems: A Complete Guide to IPC Classification
In high-risk fields such as medical, aerospace, and automotive, IPC classifications determine PCB reliability and safety. Class 3 represents the highest standard, requiring zero tolerance for defects, complete via filling, adequate copper annular rings, and rigorous inspections to ensure operation under extreme conditions, while Class 2 suits long-term use in non-critical equipment with minor cosmetic flaws allowed. Class 3’s strict criteria cover component placement, soldering, plating thickness, and environmental testing—adding cost and production time, but far outweighing the risks of failure in life- or safety-critical systems. Thus, defining high-risk equipment as Class 3 during design is essential, making IPC classification a core safeguard rather than an option.
Agree