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Category Archives: Automation

Autonomous Everything: The Workforce and The Future of Automated Port Terminals – OODA Loop

Posted: September 11, 2022 at 2:13 pm

In a series of posts entitled Autonomous Everything, we are exploring automation in all its technological forms, including legacy working assumptions about the term itself. We began the series in June at the bleeding edge of autonomous vehicles, with a description of the first autonomous ship to cross the Atlantic Ocean. But autonomy is not just for the future of the car and personal mobility but includes a broad autonomous future in areas such as Security Automation, Automation and the Workforce, Automation or Augmentation of the workforce, and Automation of AI/Machine Learning Training Models and Industry Standardization.

We now tack to the familiar heavy industrial history of automation and global shipping port terminal operations, which have been the frontline in the tensions between labor, industry, and automation in the U.S. for decades. Port automation is also prescient in the context of the recent pandemic-induced supply chain bottlenecks, which strained port operations globally: Terminal automation has helped to relieve severe supply chain congestion at the Ports of Los Angeles and Long Beach by substantially accelerating cargo handling and expanding terminal capacity while generating longshore work significantly faster than conventional terminals, according to a groundbreaking new study on port automation. (1)

The study analyzes new public and previously unpublished data [and] was commissioned by the Pacific Maritime Association (PMA) during the Covid-19 pandemic when a surge of Asian imports exposed severe shortcomings in the U.S. supply chain. The ports of Los Angeles and Long Beach, which process 40% of containerized imports from Asia, bore the brunt of this influx. They handled record levels of cargo, but backlogs at times more than 100 ships anchored offshore awaiting berths underscored the need for the countrys largest port complex to enhance terminal efficiency and productivity to accommodate growing container volumes and stanch the diversion of cargo to East Coast and Gulf Coast ports. (3) The study analyzed automated terminals at the ports of Los Angeles and Long Beach the two busiest in the nation and found that cargo handling was accelerated, terminal capacity was expanded and longshore work was generated significantly faster there than at conventional terminals. (2)

Over the last 100 years, labor has always operated on the assumption that automation would contribute to the elimination of jobs and the number of (generally unionized) highly skilled, high-wage laborers working in port terminal operations. Authors Dr. Michael Nacht, Professor of Public Policy at the University of California, Berkeley, and former Assistant Secretary of Defense, and Larry Henry, Founder of ContainerTrac, Inc. in the report, Terminal Automation in Southern California, place automation in a broad context based on the attention automation has garnered recently, while also dispelling historical assumptions about the role of automation in job elimination and capturing some of the motivations behind OODA Loop research and analysis on the topic:

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Autonomous Everything: The Workforce and The Future of Automated Port Terminals - OODA Loop

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Global Logistics Automation Market Report 2022: Need to Ensure Workforce Safety and Reduce Laborious Work Driving Growth – ResearchAndMarkets.com -…

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DUBLIN--(BUSINESS WIRE)--The "Logistics Automation Market Research Report by Component (Transportation Management and Warehouse & Storage Management), Verticals, Region (Americas, Asia-Pacific, and Europe, Middle East & Africa) - Global Forecast to 2027 - Cumulative Impact of COVID-19" report has been added to ResearchAndMarkets.com's offering.

The Global Logistics Automation Market size was estimated at USD 54.57 billion in 2021, USD 59.91 billion in 2022, and is projected to grow at a CAGR 9.95% to reach USD 96.47 billion by 2027.

Market Statistics:

The report provides market sizing and forecast across 7 major currencies - USD, EUR, JPY, GBP, AUD, CAD, and CHF. It helps organization leaders make better decisions when currency exchange data is readily available. In this report, the years 2019 and 2020 are considered as historical years, 2021 as the base year, 2022 as the estimated year, and years from 2023 to 2027 are considered as the forecast period.

Market Segmentation & Coverage:

This research report categorizes the Logistics Automation to forecast the revenues and analyze the trends in each of the following sub-markets:

Competitive Strategic Window:

The Competitive Strategic Window analyses the competitive landscape in terms of markets, applications, and geographies to help the vendor define an alignment or fit between their capabilities and opportunities for future growth prospects. It describes the optimal or favorable fit for the vendors to adopt successive merger and acquisition strategies, geography expansion, research & development, and new product introduction strategies to execute further business expansion and growth during a forecast period.

FPNV Positioning Matrix:

The FPNV Positioning Matrix evaluates and categorizes the vendors in the Logistics Automation Market based on Business Strategy (Business Growth, Industry Coverage, Financial Viability, and Channel Support) and Product Satisfaction (Value for Money, Ease of Use, Product Features, and Customer Support) that aids businesses in better decision making and understanding the competitive landscape.

Market Share Analysis:

The Market Share Analysis offers the analysis of vendors considering their contribution to the overall market. It provides the idea of its revenue generation into the overall market compared to other vendors in the space. It provides insights into how vendors are performing in terms of revenue generation and customer base compared to others. Knowing market share offers an idea of the size and competitiveness of the vendors for the base year. It reveals the market characteristics in terms of accumulation, fragmentation, dominance, and amalgamation traits.

Market Dynamics

Drivers

Restraints

Opportunities

Challenges

Key Topics Covered:

1. Preface

2. Research Methodology

3. Executive Summary

4. Market Overview

5. Market Insights

6. Logistics Automation Market, by Component

7. Logistics Automation Market, by Verticals

8. Americas Logistics Automation Market

9. Asia-Pacific Logistics Automation Market

10. Europe, Middle East & Africa Logistics Automation Market

11. Competitive Landscape

12. Company Usability Profiles

13. Appendix

Companies Mentioned

For more information about this report visit https://www.researchandmarkets.com/r/zemaky

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Global Logistics Automation Market Report 2022: Need to Ensure Workforce Safety and Reduce Laborious Work Driving Growth - ResearchAndMarkets.com -...

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NGS Library Preparation Automation Market – A Global and Regional Analysis: Focus on Sequencing Type, Product, Application, End User, and Region -…

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ReportLinker

Global NGS Library Preparation Automation Market to Reach $3,803. 3 Million by 2029. Global Library Preparation Automation Market Industry Overview

New York, Sept. 08, 2022 (GLOBE NEWSWIRE) -- Reportlinker.com announces the release of the report "NGS Library Preparation Automation Market - A Global and Regional Analysis: Focus on Sequencing Type, Product, Application, End User, and Region - Analysis and Forecast, 2022-2029" - https://www.reportlinker.com/p06318644/?utm_source=GNW In 2021, the global NGS library preparation automation market was valued at $1,273.2 million, and it is expected to reach $3,803.3 million by 2029, growing at a CAGR of 14.85% during the forecast period 2022-2029. The growth in the global NGS library preparation automation market is expected to be driven by increasing demand for next-generation sequencing, as there is no human error when the system is fully automated. Additionally, it saves time and money.

Market Lifecycle Stage

Automated NGS library preparation methods can address the issue like chances of human error during library preparation, as they require low amounts of hands-on time, thereby lowering manual error risk.Fully automated NGS library preparation solutions provide good library preparation quality, and at the same time, transform the efficiency of the workflow.

Thus, NGS library preparation automation is extremely beneficial as it helps increase the labs efficiency and generates more consistent results.Automation can help one maintain turnaround time and expand sample workload.

Leading automation companies like Agilent Technologies, Inc., Hamilton Company, and Tecan Trading AG provide various methods for adopting NGS library preparation automation according to ones needs. These fully automated instruments can address the laboratorys throughput needs.

Impact

The presence of major instrument providers of NGS library preparation automation has a major impact on the market. For instance, in March 2021, Integrated DNA Technologies, Inc., a subsidiary of Danaher., acquired Swift Biosciences. Swift Biosciences is the pioneer in NGS library preparation genomics kit development for academic, translational, and clinical research. With the help of this acquisition, Integrated DNA Technologies, Inc. aspires to grow its library preparation automation base and increase its existing product line. Companies such as Agilent Technologies, Inc. partnered with Element Biosciences Inc. in February 2022 and developed new and disruptive DNA sequencing platforms through this partnership. Element Biosciences Inc.s AVITI System was integrated with Agilent Technologies Inc.s SureSelect target enrichment panels, through which this technology can be accessed by a larger number of customers. SureSelect is a DNA library Preparation Automation kit launched by Agilent Technologies, Inc. in 2013.

Impact of COVID-19

In March 2019, the world was hit by the Sars-CoV-2 virus, which led to the entire world shut down and everybody getting tested for the virus.As the amount of testing increased, it became important to increase the pace of testing as well.

To do this, automated library preparation systems were set up at many clinical and diagnostic centers to decrease hands-on time and increase the pace of testing.

Steps performed in this process include extracting RNA sample from the patients, which is then reverse transcribed to cDNA, and then amplified using PCR.However, before the PCR step, a sample library needs to be prepared, which is the most time-consuming step of the entire process.

With the help of instruments like the Hamilton NGS STAR 96, the entire NGS library preparation automation protocol can be performed hands-free on the instrument itself. Therefore, with the emergence of COVID-19, the popularity of NGS library preparation automation systems has increased.

Market Segmentation:Segmentation 1: by Sequencing Type DNA Sequencing RNA Sequencing

The global NGS library preparation automation market in the sequencing segment is expected to be dominated by DNA sequencing technology. This is due to the expansion of therapeutic and diagnostic uses for DNA sequencing as well as the decreasing cost of genomic sequencing globally.

Segmentation 2: by Product Library Preparation Automated Kits and Consumables Automated Instruments

The global NGS library preparation automation market is dominated by library preparation automated kits and consumables. This is owing to the availability of several library preparation kit types, falling sequencing costs, expanding use of NGS in a variety of industries, including drug development, diagnostics, and animal research, as well as the availability of research grants.

Segmentation 3: by Application Research Diagnostics

The research application dominated the market. The growth of the research segment is primarily attributed to the identification of novel oncology targets, a growing understanding of cancer, and the expanding demand for the development of novel therapeutic approaches in oncology.

Segmentation 4: by End User Pharmaceutical and Biotechnology Companies Clinical and Diagnostic Laboratories Academic and Research Institutions Other End Users (Reference laboratories, Sequencing Laboratories, and Others)

Academic and research institutions dominated the end user segment in the market. The growth of this segment is primarily attributed to the growth in financing for genomic R&D and the persistent rise in demand for affordable NGS tools and supplies.

Segmentation 5: by Region North America Europe Asia-Pacific Latin America Rest-of-the-World

In 2021, the North America region dominated the global market, and it is expected to hold its dominance throughout the forecast period 2022-2029. However, the Asia-Pacific (APAC) region, constituting several emerging economies, is expected to register the highest CAGR of 15.87% during the forecast period 2022-2029.

Recent Developments in Global NGS Library Preparation Automation Market

In March 2022, Beckman Coulter, Inc. launched CellMekSPS, which is a fully automated sample preparation system that is used for clinical flow cytometry. This fully automated system offers an on-demand multitude of sample types processing that can help laboratories expand testing capabilities. In June 2022, Bio-Rad Laboratories, Inc. launched its SEQuoia Express Stranded RNA Library Prep Kit at the AGBT 2022. This kit is highly efficient for optimal RNA Sequencing Library Preparation and can be used for comprehensive transcriptome profiling. In April 2022, OPENTRONS launched four new OT-2 workstations for all types of applications, including NGS, PCR, and protein purification. Its NGS workstation automates multiple steps of the pre-sequencing, including library preparations. This expansion is expected to increase the accessibility of automation products to customers. In June 2022, PerkinElmer, Inc. launched its BioQule NGS System, which was an automated NGS solution for library preparation for up to eight samples. BioQule NGS System enabled researchers to produce high-quality NGS libraries through its optical quantification and robust liquid handling technology.

Demand Drivers and Limitations

Following are the demand drivers for the global NGS library preparation automation market: Rising Demand for Next-Generation Sequencing (NGS) Fully Automated Systems Help in Avoiding Human Error Automated Instruments Can Save Money Library Preparation is the Most Time-Consuming Step and Automation is Promising a Significant Reduction in Time

The market is expected to face some limitations too due to the following challenges: Complex Handling of NGS Library Preparation Automation Systems High Initial Cost of NGS Library Preparation Automation Instruments

How can this report add value to an organization?

Product/Innovation Strategy: The report considers both the instruments and kits-based companies.Most companies provide kits and consumables compatible with instruments of the key companies providing instruments.

The compatibility of different kits with different instruments has also been discussed in detail.

Growth/Marketing Strategy: The key components in NGS library preparation automation are the instrument and kit manufacturers.The cost of instruments is very high, even though the technologys market share is very small.

Thus, the main market revenue is generated from the instruments. The entire workflow is well explained in the report, along with pricing analysis considering the key companies involved in the production.

Competitive Strategy: The key players in the global NGS library preparation automation market have been analyzed and profiled in the study, consisting of both kits and consumables-based and instrument-based companies, as well as a few emerging companies.Moreover, a detailed competitive benchmarking of the players operating in the global NGS library preparation automation market has been done to help the reader understand how players stack against each other, presenting a clear market landscape.

Additionally, comprehensive competitive strategies such as partnerships, agreements, and collaborations will aid the reader in understanding the untapped revenue pockets in the market.

Key Market Players and Competition Synopsis

The companies that are profiled have been selected based on inputs gathered from primary experts, analyzing company coverage, product portfolio, and market penetration.

Some of the prominent names established in this market are: Agilent Technologies, Inc. Aurora Biomed Inc. BGI Group Bio-Rad Laboratories, Inc. Danaher. Endress+Hauser Group Services AG Eppendorf SE F. Hoffmann-La Roche Ltd Hamilton Company. Hologic Inc. Illumina, Inc. New England Biolabs OPENTRONS Oxford Nanopore Technologies plc. PerkinElmer Inc. Promega Corporation QIAGEN N.V. Takara Bio Inc. Tecan Trading AG Thermo Fisher Scientific, Inc.

Countries Covered North America U.S. Canada Europe Germany Italy France U.K. Spain Rest-of-Europe Asia-Pacific China Japan India Australia South Korea Rest-of-Asia-Pacific Latin America Brazil Mexico Rest-of-Latin America Rest-of-the-World (RoW)Read the full report: https://www.reportlinker.com/p06318644/?utm_source=GNW

About ReportlinkerReportLinker is an award-winning market research solution. Reportlinker finds and organizes the latest industry data so you get all the market research you need - instantly, in one place.

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The State of Big Data Collection and Analysis – Automation World

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Welcome to Automation Worlds Technology Matters.Im David Greenfield, Director of Content, and today Im going to share some insights we gathered recently from research into industrys use of Big Data collection and analytics technologies.

Though the name Big Data sounds really trendy, its really just the name thats new. Companies have been collecting time series data from assets for decades now. And while plant managers and maintenance workers have, of course, been using this data for operations improvements, they were rarely, if ever, analyzed with wide business transformation in mind. And thats what Big Data is really all aboutcapturing increasing amounts of data by deploying more sensors and other data gathering technologies andmost importantlyanalyzing the data for specific business improvement insightsnot just capturing it to let it sit there for some possible use to be identified later.

So for this research project, in which we surveyed both end users and system integrators, we focused on the use of a variety of data collection and analysis technologies, ranging from data acquisition systems, historians, and computerized maintenance management systems to edge and cloud computing, and advanced analytics software.

So heres a little sampling of what we found. While most end user respondents86 percentindicate that they collect data from equipment and devices specifically for production improvement initiatives, most only started doing this within the past five years. Only 27 percent of respondents indicate that theyve been collecting data for such purposes for more than six years.

An interesting point among the end user responses is that 98 percent plan to gather even more data from their production systems in the next two years. But only 30 percent plan to do so for specific operational improvements.

Now, this could indicate that, of those who have been collecting and analyzing data for a few years, many may have already discovered numerous ways of improving their production operations and could be looking to leverage the data they collect now for other, more strategic business purposes.

Another interesting finding in the survey was that end users and integrators agreed on the the top three business drivers for data collection and analysis. Those drivers are: the improvement of specific line or equipment operations, improving maintenance operations, and being part of the companys overall Industry 4.0 or digital transformation initiative.

With regard to specific technologies used for Big Data collection and analysis, we found it interesting, though not too surprising, that most manufacturers still rely on data collection and analysis technologies that existed long before the development of the technologies receiving most of the Big Data attention today.

Thats not to say newer collection and analysis technologies are going unusedthats definitely not the case. Edge and cloud technologies, for example, are being used widely across industry. Even so, there remains a lot of headroom left for their growth. Only 29 percent of system integrator clients use hybrid cloud and edge technology and just 14 percent use stand-alone cloud systems.

According to the survey results, most manufacturers rely on three principal methods of data collection and analysisand one of those is handwritten data collection. System integrator respondents say that 57% of their clients still rely on handwritten data collection thats then entered into spreadsheet software. But only 29% of end users say they use handwritten methods of data collection. Even if you split the difference between integrator and end user responses here, thats still a lot of companies relying on handwritten data collection and that really cant support a true Big Data initiative.

The other two principal methods used are historians and computerized maintenance management systemsboth of which have long histories of use across industry.

The results of this study will be featured in our October 2022 issue, so keep an eye out for the full report to be published online and in print.

So I hope you enjoyed this Technology Matters episode. Keeping watching this space for regular updates on advances in and applications of industrial automation technology.

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Mesh Payments Announces $60 Million in New Funding to Accelerate Automation and Control for Finance Teams – PR Newswire

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New backing follows a surge in customer demand and triple revenue growth for 1H 2022

1,000+ companies and close to $1B annualized payment volume (TPV) flow through the Mesh platform

NEW YORK, Sept. 7, 2022 /PRNewswire/ --Mesh Payments, the insight-driven finance automation platform, today announced $60 million in new financing, bringing the total amount raised to $123 million. Alpha Wave leads the equity round with participation from existing investors, including Tiger Global, TLV Partners, Entre Capital, and Meron Capital. The funding will enable Mesh to expand its GTM efforts and further accelerate product innovation as it captures a growing share of the $100T+ B2B payments market.

Mesh brings efficiencies and innovation to the entire CFO tech stack so companies can operate more nimbly against changing market conditions. The 1,000 mid-market companies using Mesh today are 5X more efficient, in aggregate, saving their finance teams, on average, three days a month. Mesh powers some of the world's fastest-growing brands, including Monday.com, Hippo Insurance, Sezzle, Riskified, and Snyk.

Amidst a surge in customer demand and a dramatic shift from companies hyper-focusing on growth to cutting spend and costs, Mesh continues to enhance its platform to help finance teams automate, control, and optimize their corporate spend from travel and expense (T&E) to SaaS subscriptions. Powerful integrations, including the category's most robust integration with NetSuite, bring additional efficiencies and reduce time spent on manual data entry and work.

"Since day one, Mesh has focused on giving CFOs the automation and insights they need tomore effectively manage their day-to-day operations," said Oded Zehavi, co-founder & CEO, Mesh Payments."And as companies operationalize distributed and remote workforce models, holistic visibility over company spend is even more critical. The confidence in Mesh from investors and customers, even in a turbulent market, reinforces that our finance automation platform is what companies want to help them navigate a cost-cutting environment.

"The best CFOs are looking to get the most out of every dollar and hour, particularly during times of economic turbulence. With its strategic partnerships and best-in-class finance automation platform, Mesh Payment delivers exceptional value to its customers," said Rick Gerson, co-founder chairman, and chief investment officer, Alpha Wave Global. "Mesh Payments represents the type of innovative, customer-focused company that we look for, that gives customers a clear and lasting benefit. The number of companies that are open to finding new and better ways to spend less and save more is pretty large and the Mesh team brings a best-in-class solution that is continually improving."

Mesh makes legacy corporate cards obsolete with its insight-driven automation platform that gives finance managers more granular control and leverage over their corporate spend. A focus on contextual payment models including SaaS subscription management and other models to innovations including the industry's only numberless VISA physical card that syncs with virtual cards for added flexibility and control are key differentiators that appeal to busy finance teams. Mesh continues to disrupt the CFO tech stack by bringing innovation and automation to every corner of finance operations to free up finance teams to focus on better managing day-to-day financial operations

Earlier this year, Mesh announced a strategic partnership with global payroll provider Papaya Global to remove friction from employee expense management. Mesh is set to announce additional strategic partnerships with global payments infrastructure providers in the near future.

For more information, visitwww.meshpayments.com or follow on LinkedIn.

SOURCE Mesh Payments

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Rapidly Increasing Industrial Automation to Fuel Demand for Self-Powered Sensors: Fact.MR Report – GlobeNewswire

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United States, Rockville MD, Sept. 08, 2022 (GLOBE NEWSWIRE) -- The global self-powered sensors market is worth US$ 560.3 million and is forecasted to surge ahead at a CAGR of 14.6% through 2032, as per a new report by Fact.MR, a market research and competitive intelligence provider. The market is backed to grow along with the robust growth of advanced technological accessories.

Self-powered sensors are used in diverse end-use industries that continuously gather data and send it to a cloud-based dashboard. Artificial intelligence (AI) software always looks for patterns and potential to be used with various technological accessories. With practical knowledge gathered by the software, it quickly puts the analysis into practice, which gets fed back into the process, thus making operations swift without the need for any external energy source.

The use of self-powered systems have increased significantly in agriculture for monitoring and optimizing crops. In 2021, valuation of the self-powered sensor agriculture sector stood at US$ 41.9 million. Additionally, self-powered sensors are also a crucial piece of equipment in wearable & healthcare devices.

A point to be noted is that market penetration of self-powered sensors is directly proportional to advancements in end-use industries. It is expected that technological advancements in several end-use sectors will fuel market growth over the coming years.

Get Sample PDF of This Research Report with Detailed Table of Content:

https://www.factmr.com/connectus/sample?flag=S&rep_id=7685

Key Takeaways from Market Study

Technological advancements in agriculture & healthcare sectors will drive the growth of the market for self-powered sensors, says a Fact.MR analyst.

Market Development

The business environment in the market for self-powered sensors continues to reflect the boom within the industry despite difficult economic conditions. To establish a firm position in the market, key manufacturers are resorting to strategies such as acquisitions and collaborations.

Moreover, market players are striving to expand their customer base by targeting different end users and geographies. Additionally, market players are focusing on expanding their product offerings through R&D investments to deliver advanced and smart self-powered sensor products.

Speak to Analyst:

https://www.factmr.com/connectus/sample?flag=AE&rep_id=7685

Category-wise Insights

Integration of technology in self-powered sensors has witnessed significant growth at14.6%CAGR and has reached a market valuation ofUS$ 560.3 millionin 2022.

These two types of power sources have many limitations. The vibration power source (piezoelectric energy harvesting) has certain limits that can stop the device from gaining power. It is very easy to gain power in self-powered sensors by using the vibration power source. As such, the vibration power source is widely used in self-powered sensors. These self-powered sensors have increased in prominence in recent years, reaching a market valuation ofUS$ 207 millionat the end of 2021.

Competitive Landscape

Prominent self-powered sensor manufacturers are 8power, Aeinnova, Ambetronics Engineers Private Limited, Bigbelly Solar LLC, Clarity Movement Co., Edyza Sensors, EnOcean, Everactive, Fludia, Intertraffic, Kando, Lightricity Ltd, MesoScribe Technologies, ONIO AS, Parker Hannifin Corp, Rentricity, Sensor-Works, and Wiliot.

Global manufacturers of self-powered sensors are trying to adopt newer technologies to stay on the top of the competition. Key manufacturers are focusing on inventing new solutions for vehicles with wireless charging, enhancement of safety & comfort, and creativity in their products.

Strategic alliances, product launches, partnership agreements, capacity expansion, and other related strategies are being resorted to by industry participants.

In January 2022,ROHM Co Ltdannounced the development of an automotive wireless charging solution integrated with NFC communication. It comes with key features such as Foreign Object Detection (FOD), which will help detect metallic objects and NFC will enable infotainment operations via device authentication.

Fact.MR has provided detailed information about the price points of key manufacturers of self-powered sensors positioned across regions, sales growth, production capacity, and speculative technological expansion, in the recently published report.

Quick Buy Self-Powered Sensors Market:

https://www.factmr.com/checkout/7685

Segmentation of Self-Powered Sensors Market Research

More Valuable Insights on Offer

Fact.MR, in its new offering, presents an unbiased analysis of the global self-powered sensors market, presenting historical market data (2017-2021) and forecast statistics for the period of 2022-2032.

The study reveals essential insights on the basis of sensor type (temperature sensors, humidity / moisture sensors, pressure sensor motion & position sensors, light sensors, others), power source (vibrations (piezoelectric energy harvesting), temperature gradients (thermoelectric energy harvesting), radio waves (RF energy harvesting)), and end use (aerospace & defense, agriculture, automotive & transportation, building automation, healthcare devices, industrial devices, retail & e-Commerce, wearable devices, others), across major regions of the world (North America, Latin America, Europe, East Asia, South Asia & Oceania, and the Middle East & Africa).

Check out more related studies published by Fact.MR Research:

Portable Audio Amplifier Market - North America is one of the leading consumer of portable audio amplifier. Especially U.S. is the prominent manufacture and consumer in this region and hold the convenient market share. North America is poised to dominate the demand of global audio amplifier market during the assessment period. Since rapid urbanization has witnessed considerable demand from the consumers end.

Silicon Tuners Market - Despite the fact that the market is still considered as an ocean of untapped potential. Growing competition in the silicon tuner market appears to be lucrative for inventive growth and increased value addition. Players from all over the world are putting their resources into delivering top-notch, reliable products to end users in order to build a loyal customer base.

Communication Repeater Market - The surging telecommunication industry across the globe is an evident sign for the global market and likely to emphasize on-demand over the next decade. Further heightening investment in smart cities and installation of NGN (Next Generation Networks) is presumed to supplement the growth curve of the market.

PCI-E Connectors Market - Adoption of PCI-E is increasingly growing in storage, server, and general-purpose graphics processing unit architectures due to their low pin-to-pin latency and high reliability. Vendors are focusing on development of advanced PCI-E connectors that offers high-speed operational capability.

Multilayer Varistor Market - The multilayer varistor are basically used to protect electronics circuit used in mobile phone, scanner, motherboard, handheld device, and I/O Port such as VGA, USB, PS2 and RS232. Owing to significant advantages offered by multilayer varistors, its demand is expected to increase in the coming period.

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Insights on the Automation Testing Global Market to 2032 – by Component, Endpoint Interface, Vertical, Organization Size and Region -…

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DUBLIN--(BUSINESS WIRE)--The "Global Automation Testing Market Outlook to 2032" report has been added to ResearchAndMarkets.com's offering.

This report on Automation Testing offers a global industry analysis for 2015-2021 and opportunity assessment for 2022-2032. The study offers a comprehensive assessment of the most important market dynamics.

After conducting thorough research on the historical and current growth parameters, the growth prospects of the market are obtained with maximum precision.

Companies Mentioned

Market Segmentation

The global Automation Testing Market is segmented in detail to cover every aspect of the market and present a complete source of market intelligence to readers.

Automation Testing by Component

Automation Testing by Endpoint Interface

Automation Testing by Vertical

Automation Testing by Organization Size

Automation Testing by Region

For more information about this report visit https://www.researchandmarkets.com/r/op2fhw

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Automakers and suppliers explore automated purchasing – Automotive News

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A spokesman for a large Tier 1 supplier who asked not to be identified given the sensitive nature of the topic said that all of the Detroit 3 are either moving to automate some buying procedures, or discussing such a move.

He said his own company is also moving toward automated processes "whenever possible."

"We are focused on automation of some repetitive steps in our sourcing process, where customers extend a program life and we, in turn, need to extend the contractual obligation to our supply base," the spokesman said.

The Tier 1 supplier is also developing a tool for members of its purchasing team to ask questions, find resources online or launch an IT request for access to data, he said.

The initial moves may be small, but they appear to be the beginning of a trend.

Volkswagen's Von Seelen said it is a case where the auto industry is catching up to other sectors.

"Other industries are more advanced," she noted. "We need to be more transparent from the supply base, but also from the automaker side."

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In 2023, Mechanical Engineering Education Will Take A New Turn As Automation And Robotics Combine – Inventiva

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In 2023, mechanical engineering education will take a new turn as automation and robotics combine

The field of mechanical engineering became more established as a means of creating, managing, and maintaining equipment throughout the first two industrial revolutions. In general, its core field of knowledge expanded to encompass manufacturing, materials, mechanics, thermodynamics, fluid mechanics, and machine design. It is both the forerunner and the recipient of other engineering forms. They will keep enriching it by coming up with, designing, constructing, and operating increasingly advanced gear with increased complexity, flexibility, connectedness, and automation.

In comparison to prior industrial revolutions, the fourth industrial revolution is currently significantly increasing the multidisciplinary nature of this corpus of knowledge. These revolutions core technologies include AI and ML, IoT, Robots and Cobots, Big Data, 5G, Augmented and Virtual Reality, and 3D and 4D printing, among others.

A portion of the boring, risky, and unclean activities are taken over by machines, which also assist in increasing productivity and service levels. They simplify or change our job, but they also develop new types of experiences, surroundings, enterprises, and even societal structures, which grow and change our culture. Machines have been a part of numerous civilisations from the beginning of time. Without the aid of various tools and equipment, their monuments, textiles, and handicrafts would not have been feasible. One of the sixty-four acknowledged art forms in prehistoric India was the understanding of tools and machines. China was undoubtedly the world leader in manufacturing machines up to the fourteenth century.

Since prehistoric times, machines have been equipped with automation systems. The first self-operating devices were possibly traps used to catch games. Some examples of early autonomous devices are the Chinese south-pointing chariot, Persian windmill, and Egyptian water clock. In Alexandria, active teaching and research projects focused on automatic devices from the third century BC. Heros Pneumatics, which had various inventive design descriptions, became a key source for the creation of automated machines.

During the Middle Ages, the Arab world produced several treatises on machine design, building on this basis. The Chinese and the Japanese created some fascinating self-operating devices more than a thousand years ago for entertainment and other uses. These machines were created to automatically carry out a sequence of actions.

In the fifteenth century, the machine renaissance began in Italy and quickly expanded throughout the rest of Europe. The printing press made several publications on machine design widely available. The evolution of hydraulics was amazing. Numerous inventive residential appliances, such as fountains and fanning mechanisms, as well as commercial appliances, including saws, wineries, fabric washing, and wheat mills, were also created. Steam energy, the machine tool industry, and mechanized industries defined the first industrial revolution, which began in the UK in the eighteenth century.

To specify the weaving of patterns and images, the Jacquard loom, developed in 1802, utilised punched cards. The internal combustion engine, electricity, gas, communication technologies, control systems, and factories with assembly lines driven by electricity were all part of the second industrial revolution that occurred in the next century. Innovative mechanisms, a variety of energy sources, and electromechanical devices for automation and industrial process control were used to create several new machines with increased capacity and power.

Microelectronics, digital computers, and automation based on programmable controllers were the catalysts for the third industrial revolution. Mechatronic systems have now begun to develop from machine systems. The machine systems improved in sophistication, efficiency, size, and weight, while the control mechanisms got quicker, more dependable, and more adaptable. Fusions between the physical, cyber, and biological worlds, as well as intelligent automation, are characteristics of the current fourth industrial revolution.

At Ford, the term automation was first used in 1953. Nowadays, the benefits of industrial automation go far beyond the reduction of labour costs and include several advantages like improved designs, simpler capacity expansion, decreased inventory, consistency in quality, improved downtime, decreased setup time and transition costs, improved preventive maintenance, extended equipment life, increased safety, simpler failure detection and rectification, flexible products, lower energy consumption, etc.

Automation engineers employ a variety of technologies to optimize, simplify, and automate manufacturing, mining, power generating, warehousing, and other activities. Robotics and industrial automation are anticipated to be embraced by more than 60% of businesses, according to the World Economic Forums 2020 study on the Future of Jobs.

According to a Global Survey from 2021, automation is being tested by organizations in 70% of the worlds respondents countries. It estimates that $37 trillion will be produced by smart manufacturing by 2025. The Global Warehouse Automation Market is expected to reach more than 64 billion USD by 2030, according to research from 2022 Acumen Research and Consulting.

Process automation and factory automation are two concepts that collectively make up industrial automation. Although the idea of a digital computer managing a production facility first surfaced in 1948, real applications didnt become accessible for another ten years. AI-based dynamic reasoning is mixed with static reasoning in automation software. According to an estimate by Maximize Industry Research, the automated process control market would likely reach or surpass 27 billion USD by 2027.

Tetsuro Mori first used the word mechatronics in 1969, in the early stages of the third industrial revolution. Robots and mechatronic systems have increasingly become necessary parts of automated manufacturing and logistical systems. The robot is a word that originated in Czech and was first used in a play in 1923. Industrial robots can be stationary or mobile. Unimate, the first industrial robot installed by a firm, was created by General Motors in 1961. In 1970, machine vision was also used for the first time in an industrial context. Numerous industrial robots were developed in the 1960s and 1970s.

Robots are employed for greater accuracy and quality work as well as to aid or replace human operators in risky, unpleasant, and boring tasks. Construction, agriculture, defence, healthcare, infrastructure, retail, leisure and entertainment, law enforcement, and other industries are all impacted by the uses of robotics and mechatronics, which reach well beyond the industrial and logistical sectors. According to a forecast from Market Research Future from 2022, the entire robotics market will surpass 214 billion USD by 2030 as a result of the availability of affordable and energy-efficient robots.

The Business Research Company predicted that the market for machine vision will likely surpass 18 billion USD by 2026 in a research from 2022. A Reportlinker analysis from 2022 predicts that by 2028, the worldwide market for AI in manufacturing will exceed 21 billion USD.

The new manufacturing facility is evolving into an intelligent network of technologies that allows for the autonomous management of buildings, equipment, and logistical chains with a minimum of human involvement. The ability to track operations at all levels and collect pertinent data from equipment and assets in real-time, thanks to industrial IoT, makes activities completely transparent across the production chain. Effective insights on preventative maintenance, asset utilization, worker and asset safety, lowering energy and material requirements, lowering downtime, etc., may be produced by a strong data analytics environment.

According to Statista, the Industrial IoT market will reach more than USD 1.1 trillion by 2028. Digital twins are being developed and regularly examined throughout their life cycles using real-time data as well as other sources. By a survey by 2921 Verified Market Research, the digital twin market is anticipated to reach more than 108 billion USD by 2028. A recent report claims that the engineering services outsourcing (ESO) sector has experienced a paradigm shift from core engineering services to embedded engineering solutions that combine automation, robotics, AI, ML, analytics, IoT, etc. The global ESO market is anticipated to reach more than USD 9 trillion in 2030.

This exponential expansion has enormous potential for Indian businesses, which will open up several employment options for our engineering graduates with the necessary skills. Students should learn the concepts and methods of machine design, process control, mechatronics, cyber-physical systems, robotics, and artificial intelligence to be prepared to work in this field. They should also be able to design, implement, and manage automation systems. We cannot change our manufacturing facilities with automation and robots and achieve the goals of Make-in-India, Atma-Nirbhar Bharat, and Developed India.

Both in India and abroad, there will likely be a high need for positions in automation and robots. Numerous significant Indian industrial equipment, machinery, and car manufacturers should quickly take advantage of the rapidly growing worldwide demand for robotics and mechatronic systems to invest heavily in the development and manufacture of automation tools and robots. Interdisciplinarity and systems thinking, along with technical skills, lifelong learning, complex problem solving, critical thinking, interpersonal skills, and the capacity to work in multidisciplinary teams, are critical competencies for engineers, given that Industry 4.0 is about the fusion of various diverse technologies.

By including several such intriguing fusions in their engineering courses, certain Indian engineering institutes are successfully adapting to the situation.

Edited by Prakriti Arora

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PREPARING FOR THE FUTURE: Morrison Tech lands grant to launch automation, process control specialization – Clinton Herald

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MORRISON, Ill. When U.S. Congresswoman Cheri Bustos visited the Morrison Institute of Technology five years ago, she was impressed with its engineering technology and network administration programs.

So much so, that when it came time for her current, and what will be her final, Heartland Tour across northwest and central Illinois to present federally funded checks for local projects, Morrison Tech was on her list.

Bustos, a Democrat representing Illinois 17th District, on Wednesday presented school officials with $1.5 million that will help launch a new specialization in its engineering technology program focusing on automation and process control systems.

Providing a grant to Morrison Tech was a top-of-mind goal for Bustos, who during her visit related to school officials the impression the school made on her during her previous tour.

We were so impressed with what youre doing and that you partner with other businesses, she said. This rose to the top. And this is one of the bigger grants. Were really, really happy that we were able to help with this and really, really proud of everything youre doing for the next generation.

The skills learned by students in the automation and process control systems program will support manufacturers who rely on automation or intelligent systems for their operations and will help support companies looking to add this capability.

For manufacturers, obstacles to integrating automated processes include the initial cost of automation, locating the skilled workers needed to design, implement, and maintain automated systems, and the expertise and resources needed to support the transition, school officials said. Providing this workforce development will be key to maintaining and growing local, regional, and statewide manufacturing, they said.

The program will add topics in electricity, hydraulics, programmable logic controllers, and process automation to a core of general studies and engineering coursework. It also will add to the advanced capabilities of the Morrison Institute of Technologys Innovation Center and enhance manufacturing support through expansion of business services, school officials said.

The current economic uncertainty makes this the ideal time to strategically prepare for the future needs of industry, Morrison Tech President Chris Scott said. This is a great opportunity to invest in the future workforce of the region and embrace tomorrows future today.

Students can now enroll for the new specialization, which begins in fall 2023, by visiting the Morrison Tech website at https://www.morrisontech.edu/. The first class will graduate in May 2025.

Morrison Institute of Technologys history goes back to its founding nearly 50 years ago, when in 1973, it acquired the assets of the Institute of Drafting and Technology that had been located in downtown Morrison. Richard Parkinson, Arlinn Rambo, and Dr. Albert Odey were key to the colleges founding and organization.

Since that time, the Morrison Institute of Technology has offered various degrees in engineering technology. The college was first authorized by the state of Illinois to grant an associate in technology degree in 1973; it became a non-profit private college in 1977. In the 1980s, the school added an apartment-style dormitory.

Also at that time, computer-aided design revolutionized drafting and drafting instruction. That computer technology ultimately led to the addition of the network administration program in 2003. In 2007, the college added a new administration wing, an auditorium, and the networking lab space.

The growth of prototyping technologies also impacted instruction heavily in the 2000s and led to the construction of the Innovation Center in 2018.

Expanding lab and student opportunities, applied technical education, and assuming a role as a leader of engineering technology and regional development characterizes the modern Morrison Institute of Technology, said Scott Connelly, Morrison Techs vice president of academic affairs.

He explained that automation has been a watchword in manufacturing for decades, but recent years have seen rapid expansion in this area. The technology has become cost effective, and provides solutions to manufacturing problems in the production of delicate products, those that require a sterile production environment, and helps to maximize a companys labor resources. Over recent years several area manufacturers have expressed interest in a program that addresses automation and process controls, he said.

There is an increasing relevance of automation. Theyve talked about automation for decades, Connelly said. But really the technology has improved to the point, especially the IT technology, the networking technology type of technology, where it is cost effective to implement these things even for small and mid-sized companies.

The $1.5 million grant will go toward the new specializations capital costs.

The equipment and lab space is a big capital cost, he said. Thats one of the roadblocks to why we havent launched previously.

Black Hawk Hills Regional Council and Whiteside County Economic Development officials let the school know about grant funding available for local projects, so they wrote a grant proposal in spring 2021 for Bustos and U.S. Sen. Dick Durbin. The money will come to the school through the Office of Housing and Urban Development.

He also said Morrison Tech will be adding staff members, and is going to be seeking to hire someone with an industry and/or academic background, as well as support staff members as they add to the Innovation Center.

The goal there is to bring the public onto the campus to use the Innovation Center and participate in the Made @ Morrison program, in which they can make a mallet, laser-cut signs or a clock, and other activities.

We have one director who manages and oversees it, and were going to have to add some support for him, he said.

Along with the grant award to Morrison Tech, Bustos also distributed $750,000 to the YMCA of Rock River Valley in Rockford, Illinois; $300,000 to Rosecrance Freeport; and $4.5 million to the Peoria Ag Lab, with funds secured through the Community Project Funding process. This year, The New York Times reported Bustos was the top House Democrat in bringing home federal community project funding for the first year of the process.

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