#Global Small Programmable Logic Controllers PLC Market report
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sweatybelieverfun · 11 days ago
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Energy & Power Quality Meters Market Drivers Include Grid Modernization, Industrial Automation, and Rising Energy Efficiency Needs
The energy & power quality meters market is witnessing substantial growth, propelled by several dynamic and interconnected drivers that span industries and geographies. As energy systems become more complex and demand for uninterrupted, clean, and efficient power grows, the role of power quality meters becomes increasingly critical. These meters help monitor, manage, and optimize power usage while detecting anomalies that could affect system performance. The market’s expansion is being driven by technological, regulatory, economic, and environmental factors, positioning these meters as indispensable components in modern energy infrastructure.
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One of the primary market drivers is grid modernization and the growing need for smart energy management. Power grids across the world are undergoing transformative upgrades to meet the rising demand for renewable integration, distributed generation, and energy storage systems. Power quality meters play a vital role in these smart grid initiatives by providing real-time data on power parameters such as voltage, current, harmonics, and frequency. Utilities rely on this information to detect and address power quality issues, reduce energy losses, and ensure consistent delivery across aging and overloaded infrastructure.
In parallel, the rise of industrial automation and digitization is significantly fueling market demand. Manufacturing plants, data centers, and commercial complexes are deploying advanced power quality meters to enhance process reliability and protect sensitive equipment. Automated systems, including robotics and programmable logic controllers (PLCs), require stable and clean power to function optimally. Even small voltage sags or surges can lead to downtime or equipment damage. Energy and power quality meters provide visibility into power anomalies and trends, allowing timely corrective actions and reducing costly disruptions.
Another critical driver is the increased emphasis on energy efficiency and sustainability. Organizations across sectors are actively seeking ways to optimize their energy usage to lower operational costs and reduce carbon emissions. Power quality meters support these initiatives by offering precise consumption insights, load profiling, and demand tracking. This enables facility managers and energy consultants to identify inefficiencies, correct poor power factor issues, and implement targeted energy-saving strategies. The global push for carbon neutrality and green building certifications further accelerates the deployment of these monitoring tools.
Regulatory mandates and government policies are also pivotal in driving the market forward. Countries across North America, Europe, and Asia-Pacific have implemented standards and incentives that require or encourage the use of energy monitoring systems. These include mandates for energy audits, minimum energy performance standards, and grid compliance requirements. By helping companies meet these regulations and improve energy reporting, power quality meters not only support compliance but also enhance transparency and accountability.
In the commercial and residential sectors, the demand for uninterrupted and quality power is at an all-time high due to the widespread use of electronic devices, HVAC systems, and smart home technologies. As power quality disturbances can damage appliances and reduce energy efficiency, residential and commercial buildings are increasingly integrating power monitoring solutions. This trend is especially noticeable in high-density urban environments and commercial hubs, where energy usage is intense and continuous.
The expansion of renewable energy systems is another major force shaping the market. Solar and wind installations, both on-grid and off-grid, require precise energy flow monitoring to ensure compatibility with the main grid and avoid voltage fluctuations. Power quality meters enable renewable energy developers and operators to manage bidirectional energy flows, maintain grid stability, and optimize output. As renewable energy becomes more mainstream, these meters will play a central role in enabling a smooth and efficient energy transition.
Technological advancements are amplifying these drivers by making power quality meters more intelligent, compact, and affordable. Modern meters now come with features like remote monitoring, cloud integration, wireless communication, and AI-driven analytics. These innovations make it easier for companies of all sizes to deploy and maintain monitoring systems, even across large or distributed operations. The rising adoption of Internet of Things (IoT) platforms in energy management also complements power quality meters by creating interconnected networks for real-time performance visualization and automation.
Lastly, the increasing frequency of power outages, voltage disturbances, and blackouts due to climate change and grid stress is raising awareness of power quality issues. Businesses and utilities alike are prioritizing investments in power quality monitoring to enhance system resilience, ensure continuity, and protect infrastructure. As power becomes more decentralized and digital, the importance of maintaining quality and reliability cannot be overstated.
In conclusion, the drivers behind the energy & power quality meters market are diverse and deeply rooted in the evolving energy landscape. From smart grids and industrial automation to sustainability goals and regulatory compliance, these forces collectively push the market toward rapid innovation and widespread adoption. As the demand for clean, efficient, and stable power grows, power quality meters will remain central to achieving these energy goals.
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businessindustry · 1 year ago
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Integrated Automation System (IAS) Market, Industry Recent Developments and Latest Technology 2032| Reports and Insights
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The Reports and Insights, a leading market research company, has recently releases report titled “Integrated Automation System (IAS) Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Integrated Automation System (IAS) Market Research, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Integrated Automation System (IAS) Market?
The integrated automation system (IAS) market is expected to grow at a CAGR of 5.6% during the forecast period of 2024 to 2032.
What are Integrated Automation System (IAS)?
An Integrated Automation System (IAS) is an advanced technological solution engineered to unify and enhance diverse industrial processes within a single integrated framework. Through the integration of control systems, sensors, actuators, and software applications, IAS enables smooth communication and coordination among various components and subsystems, facilitating efficient monitoring, management, and control of activities such as production, logistics, and quality assurance. With its capacity to consolidate data, offer real-time insights, and automate repetitive tasks, IAS boosts productivity, lowers operational expenses, and enhances overall efficiency across a broad spectrum of industrial operations.
Request for a sample copy with detail analysis: https://www.reportsandinsights.com/sample-request/1880
What are the growth prospects and trends in the Integrated Automation System (IAS) industry?
The integrated automation system (IAS) market growth is driven by various factors. The market for Integrated Automation Systems (IAS) is experiencing swift expansion, fueled by the growing demand for efficient industrial automation and streamlined operational workflows. With businesses increasingly prioritizing enhanced productivity and cost-effectiveness, IAS solutions have become indispensable across diverse sectors such as manufacturing, energy, automotive, and healthcare. These systems offer seamless integration of control mechanisms, sensors, and software applications, facilitating optimized production, logistics, and quality control processes. Moreover, the increasing adoption of Industry 4.0 principles and the Internet of Things (IoT) further accelerates the IAS market growth, as organizations acknowledge the benefits of centralized data management, real-time monitoring, and predictive maintenance capabilities provided by these sophisticated automation systems. Hence, all these factors contribute to integrated automation system (IAS) market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
By Component:
Hardware
Software
Services
Type:
Distributed Control System (DCS)
Programmable Logic Controller (PLC)
Supervisory Control and Data Acquisition (SCADA)
Human Machine Interface (HMI)
Others
Industry Vertical:
Manufacturing
Oil and Gas
Energy and Utilities
Automotive
Aerospace and Defense
Chemicals
Pharmaceutical and Healthcare
Food and Beverage
Others
End User:
Small and Medium Enterprises (SMEs)
Large Enterprises
Application:
Process Automation
Discrete Automation
Connectivity:
Wired
Wireless
Functionality:
Plant Automation
Machine Automation
Deployment:
On-premises
Cloud-based
End-Use:
Industrial
Commercial
Solution:
Control Systems
Robotics
MES (Manufacturing Execution System)
Industrial IoT (Internet of Things)
Others
Service:
Consulting
Integration and Implementation
Maintenance and Support
Industry 4.0 Enabler:
Big Data Analytics
Artificial Intelligence
Industrial Cybersecurity
Cloud Computing
Segmentation By Region:
North America:
United States
Canada
Europe:
Germany
The U.K.
France
Spain
Italy
Russia
Poland
BENELUX
NORDIC
Rest of Europe
Asia Pacific:
China
India
Japan
South Korea
Australia
New Zealand
ASEAN
Rest of Asia Pacific
Latin America:
Brazil
Mexico
Argentina
Rest of Latin America
Middle East & Africa:
Saudi Arabia
United Arab Emirates
South Africa
Egypt
Israel
Rest of MEA.
Who are the key players operating in the industry?
The report covers the major market players including:
Siemens AG
Schneider Electric SE
Emerson Electric Co.
Honeywell International Inc.
Rockwell Automation Inc.
Mitsubishi Electric Corporation
Yokogawa Electric Corporation
Omron Corporation
Bosch Rexroth AG
General Electric Company
Johnson Controls International plc
Fanuc Corporation
Schneider Electric SE
Hitachi Ltd.
View Full Report: https://www.reportsandinsights.com/report/Integrated Automation System (IAS)-market
If you require any specific information that is not covered currently within the scope of the report, we will provide the same as a part of the customization.
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aimarketresearch · 1 year ago
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Micro and Nano Programmable Logic Controller Market Size, Share, Trends, Opportunities, Key Drivers and Growth Prospectus
Micro and Nano PLC Market report is an important manuscript for every market enthusiast, policymaker, investor, and market player. The industry report gives an arrangement regarding the market’s components, by pinpointing a couple of edges including limitations, regard chain, utilization foundation, and client affirmation. This market report also involves the drivers and restraints for the Micro and Nano PLC market that are derived from SWOT analysis, and also shows what all the recent developments, product launches, joint ventures, mergers and acquisitions by the several key players and brands that are driving the market are by systemic company profiles.
Global Micro and Nano PLC market research report is based on a customer intelligence and competitive study of the market. Moreover, the report endows with deep insights into demand forecasts, market trends, and micro and macro indicators in the market. This market report deals with the analysis of the up-and-coming trends along with major drivers, restraints, challenges and opportunities in the market for Micro and Nano PLC industry. Also, factors that are driving and restraining the market are highlighted in the study. Micro and Nano PLC is an in-depth business intelligence report based on qualitative and quantitative parameters of the market.
Access Full 350 Pages PDF Report @
Programmable logic controllers (PLCs) have greatly improved over recent years in terms of capability, usability, communications, and programming flexibility. Because of the advancements in the sector, conventional measurements such controller size, type, and input/output count are now only a distant secondary consideration when selecting a PLC. Today's medium- and small-sized PLCs have features that were unheard of just a few years ago. These smaller PLC units are also far less expensive than standard-sized PLCs, and they are widely used in various specialized applications, such as small machines with a focus on basic serial connections.
Global micro and nano programmable logic controller (PLC) market was valued at USD 8.15 million in 2021 and is expected to reach USD 14.54 million by 2029, registering a CAGR of 7.50% during the forecast period of 2022-2029. In addition to the market insights such as market value, growth rate, market segments, geographical coverage, market players, and market scenario, the market report curated by the Data Bridge Market Research team includes in-depth expert analysis, import/export analysis, pricing analysis, production consumption analysis, and pestle analysis.
The Micro and Nano PLC market research report displays a comprehensive study on production capacity, consumption, import and export for all the major regions across the globe. The target audience considered for this market study mainly consists of Key consulting companies & advisors, Large, medium, and small-sized enterprises, Venture capitalists, Value-added resellers (VARs), Third-party knowledge providers, Investment bankers, and Investors. This global market analysis report is the believable source for gaining the market research that will exponentially accelerate the business growth. The top notch Micro and Nano PLC market report is the best option to acquire a professional in-depth study on the current state for the market.
Table of Contents: Micro and Nano PLC Market
1 Introduction
2 Global Micro and Nano PLC Market Segmentation
3 Executive Summary
4 Premium Insight
5 Market Overview
6 Micro and Nano PLC Market, by Product Type
7 Micro and Nano PLC Market, by Modality
8 Micro and Nano PLC Market, by Type
9 Micro and Nano PLC Market, by Mode
10 Micro and Nano PLC Market, by End User
12 Micro and Nano PLC Market, by Geography
12 Micro and Nano PLC Market, Company Landscape
13 Swot Analysis
14 Company Profiles
Countries Studied:
North America (Argentina, Brazil, Canada, Chile, Colombia, Mexico, Peru, United States, Rest of Americas)
Europe (Austria, Belgium, Denmark, Finland, France, Germany, Italy, Netherlands, Norway, Poland, Russia, Spain, Sweden, Switzerland, United Kingdom, Rest of Europe)
Middle-East and Africa (Egypt, Israel, Qatar, Saudi Arabia, South Africa, United Arab Emirates, Rest of MEA)
Asia-Pacific (Australia, Bangladesh, China, India, Indonesia, Japan, Malaysia, Philippines, Singapore, South Korea, Sri Lanka, Thailand, Taiwan, Rest of Asia-Pacific)
Some of the major players operating in the micro and nano programmable logic controller (PLC) market are
ABB (Switzerland)
Fujitsu (Japan)
Toshiba Corporation (Japan)
Texas Instruments Incorporated (U.S.)
Cree LED (U.S.)
Aixtron (Germany)
Mitsubishi Chemical Corporation (Japan)
Eaton (Ireland)
Siemens (Germany)
Belkin International, Inc (U.S.)
Aukey (China)
Gizmochina  (China)
VisIC Technologies (Israel)
Koninklijke Philips N.V. (Netherlands)
VINA International Holdings LTD. (U.S.)
GaN Systems Inc. (Canada)
Epigan NV (Belgium)
Navitas Semiconductor Ltd.(U.S.)
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messungauto · 2 years ago
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Getting Started with XM PRO 10: A Comprehensive Guide
In the ever-evolving landscape of industrial automation, staying ahead of the curve is essential for businesses striving for efficiency, productivity, and growth. One company that has consistently delivered cutting-edge solutions in this field is Messung. With a legacy spanning over three decades, Messung has established itself as a trusted partner for industries seeking automation excellence. In this comprehensive guide, we will delve into XM PRO 10, a powerful tool in Messung's arsenal, and explore how it can transform your automation journey.
An Introduction to Messung
Before we dive into the intricacies of XM PRO 10, let's take a moment to understand the process of Messung in the realm of Industrial Automation. Founded in 1981, Messung began its journey as a pioneer in indigenous PLC (Programmable Logic Controller) manufacturing in India. Over the years, it has evolved into a global automation solutions provider with a commitment to innovation and customer satisfaction.
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Welcome to XM PRO 10 
XM PRO 10 is the latest offering from Messung's extensive portfolio. It is a comprehensive IIoT (Industrial Internet of Things) platform that empowers businesses to harness the power of data and automation for smarter decision-making. Whether you're an industrial automation novice or a seasoned pro, XM PRO 10 has something to offer.
The Key Features of XM PRO 10
XM PRO 10 boasts a range of features designed to make industrial automation accessible and efficient:
a) Intuitive User Interface: One of the standout features of XM PRO 10 is its user-friendly interface. Even those with limited technical knowledge can navigate the platform effortlessly. This means that business owners and managers can actively participate in the automation process without being bogged down by technical jargon.
b) Scalability: No two businesses are identical, and XM PRO 10 acknowledges this fact. It is a scalable solution, which means it can adapt to the unique needs of your organization. Whether you're a small manufacturer or a large-scale industrial complex, XM PRO 10 can be tailored to fit your requirements.
c) Real-time Monitoring: With XM PRO 10, you gain access to real-time data from your machines and processes. This enables you to make informed decisions promptly, thereby minimizing downtime and optimizing resource allocation.
d) Analytics and Reporting: The platform's robust analytics and reporting tools help you uncover hidden insights within your data. This leads to more informed strategies for process improvement and cost reduction.
Getting Started with XM PRO 10
Now that you have a glimpse of XM PRO 10's capabilities, let's explore how you can get started with this powerful tool:
a) Consultation with Messung Experts: The first step is to reach out to Messung's team of experts. They will work closely with you to understand your specific automation needs and challenges. This consultation is invaluable in tailoring XM PRO 10 to your requirements.
b) Installation and Configuration: Once the initial assessment is complete, Messung's team will assist you in the installation and configuration of XM PRO 10. They will ensure that the platform is seamlessly integrated into your existing infrastructure.
c) Training and Support: Messung doesn't just provide you with the tools; they equip you with the knowledge to make the most of them. You and your team will receive comprehensive training to navigate XM PRO 10 effectively. Furthermore, Messung's support team is available round the clock to address any queries or issues you may encounter.
The Messung Advantage
While there are several industrial automation solutions on the market, choosing Messung brings certain advantages that set it apart:
a) Proven Track Record: With over three decades of experience, Messung has a proven track record of delivering results. Their solutions have consistently empowered businesses to achieve operational excellence.
b) Customization: Messung understands that every industry and business is unique. They excel in customizing solutions to fit your specific needs, ensuring you get the most value out of your investment.
c) Future-Proof Solutions: Automation technology is constantly evolving. Messung's commitment to innovation means that their solutions are designed to adapt to emerging trends and technologies, keeping your business ahead of the curve.
Why Choose Messung's XM PRO 10?
In conclusion, embracing industrial automation is no longer a choice but a necessity for businesses striving for competitiveness and growth. XM PRO 10 from Messung is your gateway to a world of possibilities. Whether you're just starting your automation journey or looking to enhance your existing processes, XM PRO 10's user-friendly interface, scalability, real-time monitoring, and analytics capabilities make it an invaluable tool.
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esgdatainrate · 2 years ago
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Filling Equipment Know in Detail about the Global 5G Communication Market Analysis, Forecasts, and Overview and Market Development
Filling Equipment Market Outlook — 2027
The global filling equipment market size is expected to reach $23,499.4 million in 2027, from $17,820.5 million in 2019, growing at a CAGR of 3.9% from 2020 to 2027. Filling equipment are the machines used for filling solid, semi-solid and liquid form of products in the holding containers such as box, bag, pouch or bottle. Filling equipment is convenient for large scale filling of the containers at high speed and with accurate measurement. A large scale production of any material or substance generally takes a lot of time to be filled in the containers. However, filling machines make this work easy, fast and with greater accuracy.
Growth in demand for fast moving consumer goods (FMCG) and pharmaceutical products have led the manufacturing companies to increase the speed of their lines. Hence, there is an increase in demand for the filling equipment, which enables rapid filling of the material while maintaining the accuracy of volume and weight in the containers such as box, bag, pouch, and bottle. Therefore growing need for increased production output is expected to drive the growth of the market. However, the high cost of filling equipment is anticipated to impede the filling equipment market growth. The high cost is mainly due to atomization of the equipment using programmable logic controller (PLC), feedback systems, and use of software increases the cost. Further, some of the food and beverages require aseptic filling equipment that is expensive. However, growing focus of governments on development of small and medium enterprises is expected to provide the filling equipment market opportunity to grow in future.
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the filling equipment market is divided into new machinery and spare parts. In 2019, the new machinery segment dominated the filling equipment market, in terms of revenue, and the spare parts segment is expected to grow at a higher CAGR during the forecast period. By process type, it is categorized into manual, semi-automatic and automatic. The automatic segment dominated the market and automatics segment is expected to witness highest growth during the forecast period. By product type, it is divided into solid, semi-solid and liquid. The liquid segment dominated the filling equipment market, in terms of revenue, and semi-solid segment is expected to grow at the higher CAGR during the forecast period. By end-user industry, it is classified into food, beverage, pharmaceutical, personal care, chemical and others. The beverage segment dominated the filling equipment market, in terms of revenue, and pharmaceuticals segment is expected to grow at a higher CAGR during the forecast period. By region, the filling equipment market is analyzed across North America, Europe, Asia-Pacific, and LAMEA. In 2019, Asia-Pacific contributed the highest filling equipment market share and is anticipated to secure the leading position during the forecast period, due to rise in manufacturing, filling and packaging of FMCG, pharmaceutical and other consumable products.
Competition Analysis
The filling equipment market analysis by profiles of the major players, such as Accutek Packaging Equipment Companies, Inc., Coesia S.p.A, GEA Group Aktiengesellschaft, JBT, Krones AG, Ronchi Mario S.p.A, Salzgitter AG (KHS Group), Scholle IPN, Syntegon Technology GmbH and Tetra Laval International S.A. are provided in this report. The key strategies adopted by the key players from 2017 to 2019 include product launches, acquisitions, and business expansions. For instance, in October 2018, Krones AG, acquired W.M. Sprinkman Corporation, Wisconsin, U.S. manufacturer of food and beverage processing equipments especially in the brewing and dairy industries. This acquisition is expected to enhance the product portfolio of Krones AG in North America. Similarly, in December 2017, GEA launched an aseptic filling machine called Fillstar CX EVO. This multi-functioning system provides the beverage industry a capacity to easily change between different types of products, from aseptic beverages to carbonated and vice-versa.
Full Report With TOC:-https://www.alliedmarketresearch.com/filling-equipment-market
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sdmr123 · 5 years ago
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GMD predicts the global aggregated revenue of small PLC systems will reach $98.37 billion during 2018-2025 owing to a growing adoption and upgrade of nano and micro PLC systems & controls in various industry verticals. Highlighted with 61 tables and 74 figures, this 171-page report “Global Small Programmable Logic Controllers (PLC) Market by Architecture, Product (Nano and Micro), Industry Vertical and Region 2014-2025: Growth Opportunity and Business Strategy” is based on a comprehensive research of worldwide small-size PLC solutions market by analyzing the entire global market and all its sub-segments through extensively detailed classifications. Profound analysis and assessment are generated from premium primary and secondary information sources with inputs derived from industry professionals across the value chain. The report provides historical market data for 2014-2016, revenue estimates for 2017, and forecasts from 2018 till 2025. In-depth qualitative analyses include identification and investigation of the following aspects:
To get a free sample report:https://www.supplydemandmarketresearch.com/home/contact/572916?ref=Sample-and-Brochure&toccode=SDMRTE572916
To get a detailed report:https://www.supplydemandmarketresearch.com/global-small-programmable-logic-controllers-plc-market-572916
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withastolenlantern · 6 years ago
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Santomas sat on a formed plastic bench before an enormous control console, not dissimilar from the one in his office in Wales. “This is the main control center,” the engineer explained as he powered on the terminal and the various holos flickered to life. “The various sub-systems are routed to the main process PLCs here, and then up to the comms array on the roof. I can supervise the entire production queue from this terminal, manually interface with individual machines, et cetera. It’s really fascinating when you think about it, how the automation protocols have advanced in the last thirty years...” 
“While the facility tour has been highly interesting,” Chatham interrupted, “I might remind you that we’re here to investigate a possible crime.”.
“Right, right, we’re getting to it.” He keyed several commands into the console, and a process flow diagram appeared on the holoscreen. 
The detective wasn’t sure what she was looking at. “Help me understand what I’m seeing here.”
“Well, for starters, clearly the status link is working.”
“I could see that the moment we walked in,” she countered.
“Right, but that’s the thing. The external command status for this entire fab is set to shutdown. It basically terminated all line operations and told all the machinery to power down. Nothing’s supposed to be running, which is why we were seeing the red flag back in my office. But somehow the production queue got restarted; I don’t know… how... but the lines are obviously running. And, well,” Santomas scratched at the back of his head, a sheepish look on his face. “We never really planned for a conflict like this.”
“How so?”
“Just because I can control things from this terminal doesn’t mean we ever intended to. The status flag fed back to the office is strictly report-only. Once the line starts up it closes the contact on an output relay which sends the status signal out. So there’s a conflict: the last external value was set for shutdown, which its reporting. But I don’t think anyone ever anticipated a scenario where the fab would still also be running production, so we’re getting both statuses. The system didn’t know what to report, so it just reported everything.” 
Chatham closed in behind him, her hand resting on his shoulder, as she lowered her face in towards the holo. “I thought you said the batch files-”
“Recipes.”
“Right, the recipes, are only uploaded over your secure link,” she finished.
The engineer nodded in assent. “Correct.”
“Well can you determine who uploaded this particular recipe file?” Chatham asked.
“Should be able to. Hold on,” Santomas said, typing furiously at the terminal. The holo flashed as he cycled through the screens and windows. He frowned, flipping his glasses up onto his forehead as he narrowed his eyes at the projection. “Okay, now, that’s real weird.”
“Don’t keep me in suspense Mister Santomas,” the detective demanded.
“So, I can’t figure out who ran this recipe,” he said. Chatham’s eyebrows raised in concern, but he waved her off. “That’s not even the weirdest part.”
She cocked her head slightly in frustration, rolling her eyes as she motioned him on. 
“I’m looking at the execution instructions for this recipe and it’s missing the authorization code.” 
“English, please,” she pleaded. “We haven’t all day here.”
He pointed toward the holo. “You see here, at the top of this recipe file? This is the program header: it’s not really any different from your average code file, where the programmer will put a bunch of identifying information. Revision number, code author, notes, etc. Well, in the case of our recipe files, there’s also supposed to be an authorization code - when the recipe goes into execution, the first thing the PLCs are supposed to do is confirm the authorization code. We, by which I mean, The Consortium, add it to every recipe. It’s part of our regulatory review process, and it also prevents user recipes from running without our knowledge.” 
He paused, as if for dramatic effect, and gestured for him to continue with a stern glare.
“Each activation code is tied to a specific Consortium user, so it would ID who approved it.”
The detective digested this for a moment, following his logic to its inevitable conclusion. “So you’re telling me that not only do you know why the facility is running, but also who started it?”
“Evidently not,” Santomas replied through clenched teeth, one hand resting on his temple as he continued to stare into the holographic interface. 
“Is it possible the recipe was somehow executed from here in this command station, overriding the authorization?” Chatham posited.
“Nope. Has to be over the remote link. Otherwise anybody could break in here, hard as it might be, and run whatever they wanted. I’d say that’s mainly for security reasons but honestly the higher-ups wanted it to make sure the maintenance guys couldn’t run some kind of black market operations without anyone knowing,” he explained.
“And that link protocol is…”
“Uncrackable, yes. Or at least, so we thought.” Santomas slid back into the bench in defeat. “I just… this shouldn’t be possible.”  
“Alright, well,” Chatham said, mustering as much reassurance as she could manner, “we don’t know who is doing this, or how. Can we at least find out what they’re up to?”
The engineer perked back up slightly. “That, madame detective, we can do. Let me pull up the production orders.” 
He toggled the holo back to the process flow diagram they had seen earlier, and after some additional keystrokes and a few seconds of loading, an exploded view of several manufacturing assemblies replaced it. The images that appeared was instantly recognizable, and Santomas slid his glasses back down onto his nose as he leaned in. “Well, that’s… fuck.”
Before them stood schematics for a veritable armory’s worth of equipment- assault rifles, attack drones, launch tubes for explosives, and body armor.  
They both paused, taking in the enormity of the discovery, until Santomas let out a low whistle to break the tension. “I guess we know why we couldn’t find the activation code.”
“Quite.” Chatham leaned in close, grasping the back of the bench in her hands as she surveyed the plans. “But what’s that?” she said, pointing towards what appeared to be a chemical formula quietly tucked into the corner of the display.
The engineer enlarged that particular schematic, a sequence of lines and symbols stacked upon each other in a gridlike arrangement. “It’s… some kind of MEMS device, I think?”
“I’m not familiar.”
“Right, okay. MEMS is an acronym. Micro-electromechanical systems. They’re like... “ he paused, searching for an analogy. “Tiny robots, I guess? Think like, incredibly small simple machines. On the order of microns, or smaller. They’re typically used in stuff like electronics. I don’t really know what this one is, though. I’m not a materials guy. I’d have to ask one of the manufacturing engineers back in the office.”
The detective took out her mobile and enabled the video capture feed from her glasses. She wanted a record of what they were looking at, both to further the investigation, and to convince the Earl that something was indeed going on within the Consortium. “I plan to do just that. But these items are actively in production, are they not? Can we perhaps go take a look at the finished products?”
“Yes ma’am. The final products are shunted down to the lower level where the Logistics freighters pull up.” He shut down the interface to the console and stood from the bench, beckoning her to follow him.
They descended from the control tower back down onto the main production floor. Chatham passed drone trolleys carrying semi-finished assemblies that now, with the benefit of hindsight, she clearly recognized as components for various weapons: machined barrels, molded hand grips, polymer-ceramic plates for body armor. The automatons labored on, blissfully unaware of the dangerous repercussions their efforts implied; in this age of great upheaval in the global economy when an under-employed populace had little room for moral judgment with regard to their job prospects, some might still think twice about contributing toward a runaway military industrial complex. These automated foundries, freed from the constraints of ethical consideration, had no compunctions or considerations toward the fruits of their labors. They couldn’t be bargained with, or reasoned with; they felt not pity, not remorse, nor fear, and they absolutely would not stop, ever, until their jobs were complete or they were commanded otherwise.
As they wound their way through the fab, Chatham wondered what it would be like to have such a drive, independent of any ethics or human hesitancies. She sometimes felt almost mechanical in her hunt for justice, as if some command line deep inside her been hacked that adolescent evening, over-writing any other directives she might have grown to contemplate. But even then a choice had been made, whether by her own volition or not. She was not a form bound to its function, like these mindless machines, never deviating from their pre-programmed routines. She too had her governance, but within those constraints she was still free to act with some personal will; free to pursue her justice her own way, in direct contravention of orders if and when required, much to her superiors’ irritation. It was a comforting thought, here in this enormous monument to man’s drive to commercial advancement; the almighty pound sterling might still reign supreme, but the detective still got to decide how to spend hers. For now, at least.
Davis broke her from her reverie as he opened a large freight elevator that carried them down to the lower level. “This is a lot to take in, huh?” he asked as they descended. “I don’t know about you, but I’m really worried about what’s happening here.”
Chatham smiled reassuringly. “I’m afraid I don’t have the luxury of anxiety, Mister Santomas,” she lied. “Only a dangerous mix of curiosity and determination.”
The elevator doors parted, and they exited out into a loading dock. It was piled high with crates, each emblazoned with the Ross logo. The detective hunched down below one, prying futilely at the top, but it was nailed shut tight. Davis appeared behind her with a crowbar, and with a concerted effort they lifted the lid off, sending it crashing to the floor with a loud clang.
“What the hell was that?” a voice called from somewhere down the dock.
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research--blog · 2 years ago
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Industrial Automation Software Market Worth $59.5 Billion by 2029 at a CAGR of 7.4%
Industrial Automation Software Market by Product (SCADA, DCS, MES, HMI, PLC, IT and Software Environment Integration Solutions, Production Process Test Systems), Deployment Type, End User, and Geography – Global Forecast to 2029″, the industrial automation software market is expected to register a CAGR of 7.4% from 2022 to 2029 to reach $59.5 billion by 2029.
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An increase in demand for automation for qualitative & reliable manufacturing, the growing need for mass production with reduced operation costs, and the emergence of Industry 4.0 & enabling technologies are the key factors driving the growth of the global industrial automation software market. The emerging automation-driven industries in developing countries provide significant growth opportunities for players operating in this market.
The Impact of COVID-19 on the Global Industrial Automation Software Market
The outbreak of the COVID-19 pandemic has led to a widespread economic downturn as several countries imposed strict lockdowns to contain the infection. These lockdowns have affected diverse industries, primarily due to the impact on manufacturing operations. There has been a significant impact on supply chains globally. Manufacturing & processing companies faced huge losses in the first and second quarters of 2020 due to disrupted supply chains and delayed production schedules. The rapid spread of the coronavirus in the U.S., Europe, and Asian countries resulted in nationwide lockdowns and a temporary halting of production facilities to prevent further spread.
The COVID-19 pandemic led to the downsizing of various businesses and negatively impacted the growth of the industrial automation software market. Various small- and medium-sized enterprises cannot afford the large investment needed for deploying automation for processes.
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Based on product, the global industrial automation software market is segmented into supervisory control and data acquisition (SCADA), distributed control system (DCS), manufacturing execution system (MES), human machine interface (HMI), programmable logic controller (PLC), IT & software environment integration solutions, production process test systems, automated material handling systems, coordinated data management systems, and automatic storage & retrieval systems. In 2022, the supervisory control and data acquisition (SCADA) segment is expected to account for the largest share of the industrial automation software market. SCADA controls and monitors automation processes that are important for data analysis and takes decisions for optimization. In addition, the rising demand for industrial automation solutions among organizations is expected to boost the growth of the segment. However, the human machine interface (HMI) segment is expected to grow at the highest CAGR during the forecast period.
Based on deployment type, the global industrial automation software market is segmented into on-premise and cloud-based. In 2022, the on-premise segment is expected to account for the largest share of the industrial automation software market. Industries run on-premise servers to gain full control over security. However, the cloud-based segment is expected to grow at the highest CAGR during the forecast period.
Quick Buy – “Industrial Automation Software Market by Product (SCADA, DCS, MES, HMI, PLC, IT and Software Environment Integration Solutions, Production Process Test Systems), Deployment Type, End User, and Geography – Global Forecast to 2029” Research Report: https://www.meticulousresearch.com/Checkout/64951317
Based on end user, the global industrial automation software market is segmented into oil & gas, chemicals & materials, paper & pulp, pharmaceuticals & biotech, mining & metals, food & beverage, power, consumer goods, automotive, machines & tools, semiconductors & electronics, aerospace & defense, and other end users. In 2022, the oil & gas segment is expected to account for the largest share of the industrial automation software market. Some of the major areas highly influenced by automation in the oil & gas sector include drilling operations, diagnostics & inspections, pipeline monitoring systems, weather monitoring systems, and pressure & flow systems. Drilling is one of the major areas that require automation due to its high costs and safety risks.
However, the chemicals & materials segment is expected to grow at the highest CAGR during the forecast period due to the increasing implementation of IoT and process automation solutions. The chemical industry is witnessing intense global competition and low product differentiation, making cost control necessary. In such an environment, automation solutions offer dual benefits of innovation in the areas that matter to consumers and improved cost efficiency throughout optimized production. The chemicals & materials industry also needs to control raw material & energy costs, which can be achieved using IIoT and automation technologies, which is further expected to create opportunities for the market’s growth.
To gain more insights into the market with a detailed table of content and figures, click here: https://www.meticulousresearch.com/product/industrial-automation-software-market-5279
Based on geography, the global industrial automation software market is segmented into North America, Asia-Pacific, Europe, Latin America, and the Middle East & Africa. In 2022, Asia-Pacific is expected to hold the largest share of the industrial automation market, followed by Europe and North America. Government initiatives and policies supporting the digitization of manufacturing plants and investments in the IIoT are major factors boosting the adoption of industrial automation software in the region.
Some of the key players operating in the global industrial automation software market are Emerson Electric Co. (U.S.), ABB Ltd (Sweden), Siemens AG (Germany), General Electric Company (U.S.), Schneider Electric SE (France), Honeywell International Inc. (U.S.), Rockwell Automation Inc. (U.S.), HCL Technologies Ltd.(India), Parsec Automation Corporation (U.S.), SAP SE (Germany), Tata Consultancy Services Limited (India), Hitachi, Ltd. (Japan), OMRON Corporation (Japan), Aegis Industrial Software Corporation (U.S.) and IBM Corporation (U.S.).
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sudeepkedar · 2 years ago
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SCADA Market 2030: Top Vendors Analysis, Growth Drivers and Geographical Analysis
As per a recent research report, Global SCADA Market share is likely to surpass USD 85 billion valuation by 2030
The global SCADA market is slated to register promising growth over 2030. SCADA (Supervisory Control and Data Acquisition) have gained popularity since the advent of technology-based trends such as digitization and virtualization of different manufacturing operations. As industries transition from labor-intensive to tech-centric activities, advanced control systems like SCADA are being rapidly deployed.
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The technology is faster and easier to operate unlike some of the complex hardware systems existing today. SCADA systems can effectively and accurately operate multiple pieces of hardware setups with the help of user-friendly HMI software. These technologies also allow manufacturers to cut costs through automation and reduced training needs.
SCADA system companies are focusing on launching new software programs and tools to address the growing demand for automated technologies. In March 2021, Mitsubishi Electric extended its portfolio of SCADA products in EMEA with the launch of two new software solutions under the series name GENESIS64. The tools will each cater to small production lines and large-scale monitoring needs of utility sectors, factories, and buildings.
Energy transition has further accelerated investments and acquisitions of SCADA providers. For instance, in April 2022, SCADA International announced an investment from Magnesium Capital LLP, a London-based energy transition investor. The acquisition will enable both companies to provide next-generation SCADA and control solutions for the renewable sector.
The SCADA industry is segregated into component, application, and region.
Based on component, the market is fragmented into remote terminal units (RTUs), human-machine interface (HMI), programmable logic controller (PLC), and others. In 2021, the remote terminal units (RTUs) segment accounted for more than 41% revenue share of the SCADA industry.
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RTUs are extensively incorporated to produce a communication protocol that can supply information into SCADA systems by converting the electronic signals generated by field instrumentation. These components offer a wide variety of benefits including advanced data processing capabilities and modular architecture that enables flexible functions.
In terms of application, the industry is categorized into food & beverage, transportation, chemical & pharmaceutical, water & sewage, oil & gas, utility, and manufacturing. Among these, the SCADA market revenue share from transportation applications is poised to reach over USD 1 billion by 2030.
Middle East & Africa SCADA market size is projected to register over 4.4% CAGR between 2022-2030 driven by the large-scale deployment of these systems in the oil and gas sector. The adoption of SCADA solutions by utility distribution and wastewater management companies in MEA has also picked up the pace. For instance, the National Water Company (NWC) of Saudi Arabia has extensively deployed PLC-based SCADA systems across several water & wastewater treatment plants situated in residential areas.
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sanjay-chem · 3 years ago
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Cleaning In Place Market Market by Size, Share, Demand & Trends by 2032
Cleaning In Place Market forecasted to registering 8.5% CAGR during the forecast period (2022-2032) and projected to reach US$ 16,496.1 Million by 2032. Cleaning In Place (CIP) involves cleaning manufacturing equipment used in the food and beverage industry without dismantling the complete machinery set. This system has significant importance in the food and beverage industry. This is due to its capability to help maintain hygiene and keep machinery equipment clean and safe from bacteria.
Some parts of the machinery such as pipelines, heat exchangers, mixing tanks, fillers, bends and others used in processing food items often contain food residue which provides a nutritional base for bacteria to thrive, and this will affect the quality of the next food item to be produced and also increases the chances of microbial contamination.
Hence, there is need for Cleaning In Place as it’s the only way which food items can be Other benefits attributed to the used of cleaning in place system in the food processing industry include; maintenance of labor, it saves time as it doesn’t require the dismantling of entire machinery before cleaning can be done, its economical since the solution used in cleaning and rising water can be recycled.
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Cleaning In Place can be carried out manually operated system or fully automated system depending on the nature of soil and film that needs to be removed from the machinery. The fully automated system includes;  Programmable Logic Controller panels (PLC), sensors and data acquisition, and its advantageous over the manually operated system owing to the fact cleaning can be done within few hours, it is economical and improves production process
Cleaning In Place Market Driven by Growing Consumers’ Demand for Convenience Food
These days, there has been an inclination to demand convenience food items due to consumers’ busy lifestyles and inability to cook. The rise in demand for convenience food affects the cleaning-in-place market because the food and beverage industry will have to meet up with the convenience food supply, which is often processed in machinery, and the machinery needs to be cleaned regularly to prevent microbial contamination. Hence, an increase in demand for convenience food is tantamount to an increase in demand for cleaning in place system and vice versa. Also, with the increasing preference for Food hygiene and maintenance, key players in the food processing industry are adhering to strict Cleaning In Place practice after every production shift.
Furthermore, increasing disposable income in developing nations is a major factor slated to accelerate the growth of the global cleaning in place market over the forecast period. Countries like China, India, and Japan have raised the per capita income of workers, and this will help fuel the growth of the cleaning in place market since there will be an increase in demand for ready-to-eat-meal.
Cleaning In Place Market: Region-wise Analysis
North America and Europe are the largest markets for the global Cleaning In Place market due to the rise in demand for food products free of contaminants. Consumers’ within these regions are conscious of their health and are ready to spend on food products free of microorganisms. These regions are expected to remain in dominance over the forecast period. Both regions are also slated to record a healthy CAGR during the forecast period. Other regions are small made for the cleaning in place market, so they are expected to witness moderate growth over the foreseeable period.
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ananya5400 · 3 years ago
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Food Robotics Market Projected to Garner Significant Revenues by 2026
 According to MarketsandMarkets, The global food robotics market size is estimated to be valued at USD 1.9 billion in 2020 and projected to reach USD 4.0 billion by 2026, recording a CAGR of 13.1% during the forecast period. The demand for food robotics is increasing significantly owing to surging demand for food with increasing population and increasing demand for enhanced productivity in food processing. Additionally, increasing investments in automation in the food industry is projected to provide growth opportunities for the food robotics market.
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Opportunities: Increasing functionality of robots
Traditionally, the functionality and use of robots was limited to heavy payload in transportation equipment manufacturing. However, with the increasing functionality of robots more industries, such as the food processing industry are adopting automation with mainly low payload robots. Sections such as dairy and bakery in the food & beverage industry are minimizing human contact in the production process in order to comply with health authority standards. There is an opportunity for the food robotics market to grow with the increase in functionality of robots to include packaging, repackaging, and palletizing.
Challenges: High installation cost of robotic system
Most food manufacturers are reluctant to adopt automated processes due to the installation cost over and above the price of the robot. The added cost to turn the individual robots into a comprehensive robotic system, peripheral equipment such as safety barriers, sensors, programmable logic controllers (PLC), human machine interface (HMI), and safety systems is a challenge for market growth. Additionally there are engineering costs for programming, installation, and commissioning. These additional costs pose a challenge for the growth of the food robotics market. Small- and medium-scale manufacturers are reluctant to incur high initial costs of installation as it could extend the period to achieve the break-even point.
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The European region dominates the food robotics market with the largest share in 2020.
The European food robotics market is driven by high investment in research & development with regard to technology, along with the rise in demand for packed, ready-to-cook, and high-quality food products. The European Robotics Association started monitoring in European Union activities, policies, and funding in the new robot technology to strengthen the international market for food & beverage manufacturing, which is likely to impact the adoption of food robotics positively.
This report includes a study on the marketing and development strategies, along with the product portfolios of leading companies. It consists of profiles of leading companies, including ABB Group (Switzerland), KUKA AG (Germany), Fanuc Corporation (Japan), Kawasaki Heavy Industries Ltd. (Japan), Rockwell Automation Inc. (U.S.), Mitsubishi Electric Corporation (Japan), Yasakawa Electric Corporation (Japan), Denso Corporation (Japan), Nachi-Fujikoshi Corporation (Japan), OMRON Corporation (Japan), Universal Robots A/S (Denmark), Staubli International AG (Switzerland), Bastian Solutions LLC (U.S.), Schunk GmbH (Germany), Asic Robotics AG (Switzerland), Mayekawa Mfg. Co. Ltd. (Japan), Apex Automation & Robotics (Australia), Aurotek Corporation (Taiwan), Ellison Technologies Inc. (U.S.), Fuji Robotics (Japan), and Moley Robotics (U.K.).
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harshnews · 8 months ago
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Micro and Nano Programmable Logic Controller (PLC) Market Size, Share, Key Drivers, Trends, Challenges and Competitive Analysis
"Global Micro and Nano Programmable Logic Controller (PLC) Market – Industry Trends and Forecast to 2029
Global Micro and Nano Programmable Logic Controller (PLC) Market, By Type (Micro PLC, Nano PLC), Offering (Hardware, Software, Services), Architecture (Fixed PLC, Modular PLC), Industry (Automotive Industry, Chemicals and Fertilizers Industry, Food and Beverages Industry, Home and Building Automation Industry, Metals and Mining Industry, Oil and Gas, Pharmaceutical Industry, Pulp and Paper Industry, Power, Water and Wastewater Industry) – Industry Trends and Forecast to 2029
Access Full 350 Pages PDF Report @
**Segments**
- **Type**: The Micro and Nano PLC market can be segmented by type, with micro PLCs being designed for simpler control systems with fewer I/O points and nano PLCs being even smaller and more cost-effective, ideal for applications with extremely limited space and basic functions.
- **End-User**: Another important segmentation is by end-user industry, where micro PLCs are commonly used in industries such as automotive, packaging, and material handling, while nano PLCs find applications in home automation, lighting control, and other small-scale operations.
- **Region**: Geographically, the market can be segmented into regions such as North America, Europe, Asia-Pacific, Middle East, and Africa. Each region may have different adoption rates and preferences for micro and nano PLCs based on their industrial landscape and technological advancements.
**Market Players**
- **Siemens AG**: A prominent player in the Micro and Nano PLC market, Siemens offers a wide range of PLC products catering to various industries. With a strong global presence and a focus on innovation, Siemens continues to be a key player in the market.
- **Rockwell Automation, Inc.**: Another major market player, Rockwell Automation specializes in industrial automation and control systems, including micro and nano PLCs. The company's technological expertise and established customer base position it as a significant competitor in the market.
- **Mitsubishi Electric Corporation**: Known for its advanced automation solutions, Mitsubishi Electric is a key player in the micro and nano PLC market. The company's high-quality products and comprehensive range of offerings make it a preferred choice for many industries.
- **Schneider Electric SE**: Schneider Electric is a leading provider of energy management and automation solutions, including micro and nano PLCs. With a focus on sustainability and efficiency, the company continues to expand its presence in the market.
- **ABB Ltd.**: ABB is a multinational company known for its expertise in robotics, power, and automation technologies. The company'sSiemens AG, one of the key players in the Micro and Nano PLC market, has maintained its strong position through a combination of technological innovation, industry expertise, and global reach. The company's diverse product portfolio caters to a wide range of industries, allowing it to capture numerous market segments effectively. Siemens' continuous investment in research and development ensures that its PLC products remain at the forefront of technology, offering customers cutting-edge solutions for their automation needs. Additionally, Siemens' focus on sustainability and energy efficiency aligns well with the growing industry trends, further solidifying its position in the market.
Rockwell Automation, Inc. is another significant player in the Micro and Nano PLC market, renowned for its industrial automation solutions and expertise. The company's established reputation for delivering reliable and high-performance control systems has made it a preferred choice for many industries worldwide. Rockwell Automation's commitment to technological advancement and customer-centric approach has enabled it to stay competitive in a rapidly evolving market landscape. By offering a comprehensive range of PLC products tailored to different application needs, Rockwell Automation continues to attract a diverse customer base and expand its market presence.
Mitsubishi Electric Corporation's presence in the micro and nano PLC market is characterized by its focus on advanced automation solutions and product quality. The company's reputation for providing robust and reliable PLCs has earned it a strong position in the market, especially in industries that demand precision control and high performance. Mitsubishi Electric's commitment to innovation and continuous improvement ensures that its PLC products meet the evolving needs of customers across various sectors. By emphasizing user-friendly interfaces, scalability, and flexibility in its offerings, Mitsubishi Electric remains competitive in a competitive market landscape.
Schneider Electric SE, a leading provider of energy management and automation solutions, has established itself as a significant player in the Micro and Nano PLC market. The company's comprehensive product portfolio, which includes a range of PLCs suited for different applications, enables it to address diverse customer requirements effectively. Schneider Electric's focus on sustainability and efficiency aligns well**Segments:**
- **Type**: The Micro and Nano PLC market can be segmented by type into micro PLCs and nano PLCs. Micro PLCs are designed for simpler control systems with fewer I/O points, while nano PLCs are even smaller and more cost-effective, ideal for applications with limited space and basic functions.
- **End-User**: Another important segmentation is by end-user industry, where micro PLCs are commonly used in industries such as automotive, packaging, and material handling. On the other hand, nano PLCs find applications in home automation, lighting control, and other small-scale operations.
- **Region**: Geographically, the market can be segmented into regions such as North America, Europe, Asia-Pacific, Middle East, and Africa. Each region may have different adoption rates and preferences for micro and nano PLCs based on their industrial landscape and technological advancements.
**Market Players:**
Siemens AG, Rockwell Automation, Inc., Mitsubishi Electric Corporation, Schneider Electric SE, and ABB Ltd. are key players in the Micro and Nano PLC market. These companies offer a wide range of PLC products catering to various industries and have established a strong global presence in the market.
**Global Micro and Nano Programmable Logic Controller (PLC) Market:**
- **Type**: The market is segmented into Micro PLC and Nano PLC categories. - **Offering**: Includes hardware, software, and services. - **Architecture**: Divided into fixed PLC and modular PLC. -
Table of Content:
Part 01: Executive Summary
Part 02: Scope of the Report
Part 03: Global Micro and Nano Programmable Logic Controller (PLC) Market Landscape
Part 04: Global Micro and Nano Programmable Logic Controller (PLC) Market Sizing
Part 05: Global Micro and Nano Programmable Logic Controller (PLC) Market Segmentation By Product
Part 06: Five Forces Analysis
Part 07: Customer Landscape
Part 08: Geographic Landscape
Part 09: Decision Framework
Part 10: Drivers and Challenges
Part 11: Market Trends
Part 12: Vendor Landscape
Part 13: Vendor Analysis
Core Objective of Micro and Nano Programmable Logic Controller (PLC) Market:
Every firm in the Micro and Nano Programmable Logic Controller (PLC) Market has objectives but this market research report focus on the crucial objectives, so you can analysis about competition, future market, new products, and informative data that can raise your sales volume exponentially.
Size of the Micro and Nano Programmable Logic Controller (PLC) Market and growth rate factors.
Important changes in the future Micro and Nano Programmable Logic Controller (PLC) Market.
Top worldwide competitors of the Market.
Scope and product outlook of Micro and Nano Programmable Logic Controller (PLC) Market.
Developing regions with potential growth in the future.
Tough Challenges and risk faced in Market.
Global Micro and Nano Programmable Logic Controller (PLC) top manufacturers profile and sales statistics.
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anitakumarigrewal · 4 years ago
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Growth in Advancements in Sensor Technology Expected to Drive North America Smart Factory Market: Ken Research
Smart factory is an advanced factory that has different cyber-physical frameworks where materials can be moved proficiently across the factory floor. It has integrated computing codes that provides a number of automation solution. Smart factory provides different data models and factory- specific & manufacturing execution systems (MES) templates for rapid use. It boosts productivity along with cutting down the operational costs in comparison with traditional production systems.
As per analysis, “North America Smart Factory Market 2020-2026 by Component, Product (Industrial 3D Printing, Sensors, Machine Vision, Industrial Robots, Industrial Network, Control Devices), Technology, End User, and Country: Trend Forecast and Growth Opportunity” some of the key manufacturers operating in the North America smart factory market include Fanuc Corp., Adept Technology Inc., Danaher Corporation, FLIR Systems Inc., Honeywell International Inc., Genmark Automation, Inc., Bharat Heavy Electrical Ltd, ABB Ltd., ATOS SE, Cisco Systems, Inc., Daihen Corp., Comau S.p.A, Ellison Technologies Inc., Cognex Corporation, Emerson Electric Co., Fanuc Corp., Hitachi, Ltd., General Electric Co., Epson Robotics, Mitsubishi Electric Corp., Kawasaki Robotics Inc., NovaTech Process Solutions LLC, Nachi Fujikoshi Corp., Metso Corporation, Konux Inc., Johnson Controls Inc, Kuka Aktiengesellschaft, Nextnine Ltd, Panasonic Corporation (Activelink), Omron Corporation, Rethink Robotics, Inc., Oracle Corporation, Pari Robotics, Staubli International AG, Samsung Electronics, Rethink Robotics, Inc., Rockwell Automation Inc., Schneider Electric SE, Robert Bosch GmbH, Toshiba Machine Co., Ltd., Yamaha Robotics, Yokogawa Electric Corporation, Universal Robots, Siemens AG, Yaskawa Electric Corp., Wipro Limited, Schneider Electric SE, Yokogawa Electric Corporation and among others.
On the basis of component, North America smart factory market is bifurcated into software, hardware and services. On the basis of product, market is bifurcated into sensors, industrial 3D printing, industrial robots, machine vision, control devices and industrial network. Industrial robots are further sub-segmented as cylindrical robots, collaborative robots, SCARA robots, delta/parallel robots and other industrial robots. Machine vision is further sub-segmented as cameras, enclosures, processors, frame grabbers, lighting, integration services, and other machine vision systems. Control devices segment is further sub-segmented as relays & switches and servo motors & drives. Additionally, industrial network is further sub-segmented a wired network, wireless network and RFIS system. On the basis of technology, market is bifurcated as Supervisory Control and Data Acquisition (SCADA), Product Life Cycle Management (PLM), Programmable Logic Controller (PLC), Manufacturing Execution System (MES), Plant Asset Management (PAM), Human-Machine Interface (HMI), Distributed Control System (DCS), Enterprise Resource Planning (ERP) and other technologies. In addition, on the basis of end-user, market is bifurcated as metals & mining, chemical & petrochemical, oil & gas, aerospace & defense, food & beverage, automotive, pharmaceutical, semiconductor & electronics and other end-users.
The North America smart factory market is driven by growth in advancements in sensor technology, followed by rise in adoption of robots in industries, increase in emphasis on real-time data analysis and growth in need for improving efficiency and energy saving in the manufacturing process. However, requirement of a significant amount of capital investments and risk associated with security of cyber-physical system may impact the market. Moreover, growth in advancements in 3D printing technology is a key opportunity for market. Furthermore, lack of awareness in small & medium-sized businesses is a major challenge for market.
By regional analysis, the North-America region is bifurcated as Mexico, Canada and U.S. It is projected that future of the North America smart factory market will be bright as a result of rise in adoption in the automotive segment during the forecast period.
For More Information, click on the link below:-
North America Smart Factory Market Research Report
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Global Smart Factory Market 2020-2026 by Component, Product (Industrial 3D Printing, Sensors, Machine Vision, Industrial Robots, Industrial Network, Control Devices), Technology, End User, and Region: Trend Forecast and Growth Opportunity
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esgdatainrate · 2 years ago
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Filling Equipment Forecast to 2031 with Key Companies Profile, Supply, Demand and SWOT Analysis
Filling Equipment Market Outlook — 2027
The global filling equipment market size is expected to reach $23,499.4 million in 2027, from $17,820.5 million in 2019, growing at a CAGR of 3.9% from 2020 to 2027. Filling equipment are the machines used for filling solid, semi-solid and liquid form of products in the holding containers such as box, bag, pouch or bottle. Filling equipment is convenient for large scale filling of the containers at high speed and with accurate measurement. A large scale production of any material or substance generally takes a lot of time to be filled in the containers. However, filling machines make this work easy, fast and with greater accuracy.
Growth in demand for fast moving consumer goods (FMCG) and pharmaceutical products have led the manufacturing companies to increase the speed of their lines. Hence, there is an increase in demand for the filling equipment, which enables rapid filling of the material while maintaining the accuracy of volume and weight in the containers such as box, bag, pouch, and bottle. Therefore growing need for increased production output is expected to drive the growth of the market. However, the high cost of filling equipment is anticipated to impede the filling equipment market growth. The high cost is mainly due to atomization of the equipment using programmable logic controller (PLC), feedback systems, and use of software increases the cost. Further, some of the food and beverages require aseptic filling equipment that is expensive. However, growing focus of governments on development of small and medium enterprises is expected to provide the filling equipment market opportunity to grow in future.
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By sales type, the filling equipment market is divided into new machinery and spare parts. In 2019, the new machinery segment dominated the filling equipment market, in terms of revenue, and the spare parts segment is expected to grow at a higher CAGR during the forecast period. By process type, it is categorized into manual, semi-automatic and automatic. The automatic segment dominated the market and automatics segment is expected to witness highest growth during the forecast period. By product type, it is divided into solid, semi-solid and liquid. The liquid segment dominated the filling equipment market, in terms of revenue, and semi-solid segment is expected to grow at the higher CAGR during the forecast period. By end-user industry, it is classified into food, beverage, pharmaceutical, personal care, chemical and others. The beverage segment dominated the filling equipment market, in terms of revenue, and pharmaceuticals segment is expected to grow at a higher CAGR during the forecast period. By region, the filling equipment market is analyzed across North America, Europe, Asia-Pacific, and LAMEA. In 2019, Asia-Pacific contributed the highest filling equipment market share and is anticipated to secure the leading position during the forecast period, due to rise in manufacturing, filling and packaging of FMCG, pharmaceutical and other consumable products.
Competition Analysis
The filling equipment market analysis by profiles of the major players, such as Accutek Packaging Equipment Companies, Inc., Coesia S.p.A, GEA Group Aktiengesellschaft, JBT, Krones AG, Ronchi Mario S.p.A, Salzgitter AG (KHS Group), Scholle IPN, Syntegon Technology GmbH and Tetra Laval International S.A. are provided in this report. The key strategies adopted by the key players from 2017 to 2019 include product launches, acquisitions, and business expansions. For instance, in October 2018, Krones AG, acquired W.M. Sprinkman Corporation, Wisconsin, U.S. manufacturer of food and beverage processing equipments especially in the brewing and dairy industries. This acquisition is expected to enhance the product portfolio of Krones AG in North America. Similarly, in December 2017, GEA launched an aseptic filling machine called Fillstar CX EVO. This multi-functioning system provides the beverage industry a capacity to easily change between different types of products, from aseptic beverages to carbonated and vice-versa.
Full Report With TOC:-https://www.alliedmarketresearch.com/filling-equipment-market
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waaaiz · 4 years ago
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Cold Chain Market Research Report
Growth opportunities in the cold chain market look promising over the next six years. This is mainly due to the growing need for temperature control to prevent health risks, technological developments in the packaging and storage of various products and increasing government support.
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Cold Chain Market Dynamics (including market size, share, trends, forecast, growth, forecast, and industry analysis)
Key Drivers
The surging demand for perishable food items, increasing requirement of temperature control to protect various health hazards, and growing sustainability of convenience food led by modernization are the major drivers responsible for the growth of the global cold chain market. Also, a boost in the international trade of perishable goods owing to trade liberalization policy, enlargement of organized food retail industry, and technological developments will raise the market demand. The growing initiatives by the government to decrease the post-harvest and processed food wastage for infrastructural expansion across developing nations will strengthen the market share. The upliftment in the disposable income of individuals coupled with the fast urbanization will promote the market share. However, increasing environmental concerns relating to greenhouse gas emissions and huge operational value may restrain the market growth.
Type
Segment Drivers
Based on the type, Refrigerated Storage is anticipated to lead the market during the forecast period owing to their accelerating capacities primarily in the Asia-Pacific region and augmenting inclination preference for packaged food. Moreover, the switch in the storage of food products from cold storage warehouses to the provision of value-added services to customers will further fuel the growth of the industry.
Application Segment Drivers
On the basis of application, Dairy & Frozen Desserts are expected to dominate the market during the forecast period. This is because of the economic growth, increasing urban population, and alteration in the dietary patterns of the consumer. On the other edge, Bakery & Confectionery products are projected to grow at a higher CAGR over the forecast period, led by intensifying disposable income and varying food habits.
Regional Drivers
Based on the regional coverage, Europe is projected to witness a faster CAGR over the forecast period due to the propelling demand for cold chains and rising consumption of high-quality perishable commodities across the globe. On the other hand, Asia-Pacific is predicted to increase at a higher CAGR over the forecast period owing to the surging consciousness awareness towards the prohibition of wastage of food before consumption, and increasing demand for perishable food among consumers, and favorable initiatives by the government.
Cold Chain Market’s leading Manufacturers:
·        Tippmann Group
·        Burris Logistics, Inc.
·        Kloosterboer Group B.V.
·        Swire Group
·        Lineage Logistics Holdings, LLC
·        Henningsen Cold Storage Company
·        Interstate Cold Storage, Inc.
·        Agro Merchants Group
·        Nichirei Corporation,
·        Americold Logistics LLC
 Cold Chain Market Segmentation:
Segmentation by Type:
·        Refrigerated Storage
·        Refrigerated Transport
Segmentation by Temperature Type:
·        Chilled
·        Frozen
Segmentation by Application:
·        Dairy & Frozen Desserts
·        Fish, Meat and Seafood Products
·        Fruits & Vegetables
·        Bakery & Confectionery Products
·        Others
Segmentation by Technology:
·        Blast Freezing
·        Vapor Compression
·        Programmable Logic Controller (PLC)
·        Evaporating Cooling
·        Cryogenic Systems
·        Others
Segmentation by Region:
·        North America
o   United States of America
o   Canada
·        Asia Pacific
o   China
o   Japan
o   India
o   Rest of APAC
·        Europe
o   United Kingdom
o   Germany
o   France
o   Spain
o   Rest of Europe
·        RoW
o   Brazil
o   South Africa
o   Saudi Arabia
o   UAE
o   Rest of the world (remaining countries of the LAMEA region)
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research--blog · 2 years ago
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Industrial Automation Software Market Worth $59.5 Billion by 2029
According to a new market research report titled, “Industrial Automation Software Market by Product (SCADA, DCS, MES, HMI, PLC, IT and Software Environment Integration Solutions, Production Process Test Systems), Deployment Type, End User, and Geography - Global Forecast to 2029”, the industrial automation software market is expected to register a CAGR of 7.4% from 2022 to 2029 to reach $59.5 billion by 2029.
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An increase in demand for automation for qualitative & reliable manufacturing, the growing need for mass production with reduced operation costs, and the emergence of Industry 4.0 & enabling technologies are the key factors driving the growth of the global industrial automation software market. The emerging automation-driven industries in developing countries provide significant growth opportunities for players operating in this market.
The Impact of COVID-19 on the Global Industrial Automation Software Market
The outbreak of the COVID-19 pandemic has led to a widespread economic downturn as several countries imposed strict lockdowns to contain the infection. These lockdowns have affected diverse industries, primarily due to the impact on manufacturing operations. There has been a significant impact on supply chains globally. Manufacturing & processing companies faced huge losses in the first and second quarters of 2020 due to disrupted supply chains and delayed production schedules. The rapid spread of the coronavirus in the U.S., Europe, and Asian countries resulted in nationwide lockdowns and a temporary halting of production facilities to prevent further spread.
The COVID-19 pandemic led to the downsizing of various businesses and negatively impacted the growth of the industrial automation software market. Various small- and medium-sized enterprises cannot afford the large investment needed for deploying automation for processes.
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Based on product, the global industrial automation software market is segmented into supervisory control and data acquisition (SCADA), distributed control system (DCS), manufacturing execution system (MES), human machine interface (HMI), programmable logic controller (PLC), IT & software environment integration solutions, production process test systems, automated material handling systems, coordinated data management systems, and automatic storage & retrieval systems. In 2022, the supervisory control and data acquisition (SCADA) segment is expected to account for the largest share of the industrial automation software market. SCADA controls and monitors automation processes that are important for data analysis and takes decisions for optimization. In addition, the rising demand for industrial automation solutions among organizations is expected to boost the growth of the segment. However, the human machine interface (HMI) segment is expected to grow at the highest CAGR during the forecast period.
Based on deployment type, the global industrial automation software market is segmented into on-premise and cloud-based. In 2022, the on-premise segment is expected to account for the largest share of the industrial automation software market. Industries run on-premise servers to gain full control over security. However, the cloud-based segment is expected to grow at the highest CAGR during the forecast period.
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Based on end user, the global industrial automation software market is segmented into oil & gas, chemicals & materials, paper & pulp, pharmaceuticals & biotech, mining & metals, food & beverage, power, consumer goods, automotive, machines & tools, semiconductors & electronics, aerospace & defense, and other end users. In 2022, the oil & gas segment is expected to account for the largest share of the industrial automation software market. Some of the major areas highly influenced by automation in the oil & gas sector include drilling operations, diagnostics & inspections, pipeline monitoring systems, weather monitoring systems, and pressure & flow systems. Drilling is one of the major areas that require automation due to its high costs and safety risks.
However, the chemicals & materials segment is expected to grow at the highest CAGR during the forecast period due to the increasing implementation of IoT and process automation solutions. The chemical industry is witnessing intense global competition and low product differentiation, making cost control necessary. In such an environment, automation solutions offer dual benefits of innovation in the areas that matter to consumers and improved cost efficiency throughout optimized production. The chemicals & materials industry also needs to control raw material & energy costs, which can be achieved using IIoT and automation technologies, which is further expected to create opportunities for the market’s growth.
Based on geography, the global industrial automation software market is segmented into North America, Asia-Pacific, Europe, Latin America, and the Middle East & Africa. In 2022, Asia-Pacific is expected to hold the largest share of the industrial automation market, followed by Europe and North America. Government initiatives and policies supporting the digitization of manufacturing plants and investments in the IIoT are major factors boosting the adoption of industrial automation software in the region.
Some of the key players operating in the global industrial automation software market are Emerson Electric Co. (U.S.), ABB Ltd (Sweden), Siemens AG (Germany), General Electric Company (U.S.), Schneider Electric SE (France), Honeywell International Inc. (U.S.), Rockwell Automation Inc. (U.S.), HCL Technologies Ltd.(India), Parsec Automation Corporation (U.S.), SAP SE (Germany), Tata Consultancy Services Limited (India), Hitachi, Ltd. (Japan), OMRON Corporation (Japan), Aegis Industrial Software Corporation (U.S.) and IBM Corporation (U.S.).
To gain more insights into the market with a detailed table of content and figures, click here: https://www.meticulousresearch.com/product/industrial-automation-software-market-5279
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