According to this latest study, In 2022 the growth of Electric Reciprocating Saw Market is projected to reach Multimillion USD by 2028, In comparison to 2021, Over the next Seven years the Electric Reciprocating Saw Market will register a spectacular spike in CAGR in terms of revenue, In this study, 2021 has been considered as the base year and 2022 to 2028 as the forecast period to estimate the market size for Electric Reciprocating Saw.
“Electric Reciprocating Saw Market” Insights 2022 By Types, Applications, Regions and Forecast to 2028. The global Electric Reciprocating Saw market size is projected to Reach Multimillion USD by 2028, in comparison to 2022, with unexpected CAGR during the forecast period, the Electric Reciprocating Saw Market Report Contains Full TOC, Tables and Figures, and Chart with In-depth Analysis Pre and Post COVID-19 Market Outbreak Impact Analysis and Situation by Region.
We have been tracking the direct impact of COVID-19 on this market, as well as the indirect impact from other industries. This report analyzes the impact of the pandemic on the Electric Reciprocating Saw market from a Global and Regional perspective. The report outlines the market size, market characteristics, and market growth for Electric Reciprocating Saw industry, categorized by type, application, and consumer sector. In addition, it provides a comprehensive analysis of aspects involved in market development before and after the Covid-19 pandemic. Report also conducted a PESTEL analysis in the industry to study key influencers and barriers to entry.
Final Report will add the analysis of the impact of COVID-19 on this industry.
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It also provides accurate information and cutting-edge analysis that is necessary to formulate an ideal business plan, and to define the right path for rapid growth for all involved industry players. With this information, stakeholders will be more capable of developing new strategies, which focus on market opportunities that will benefit them, making their business endeavours profitable in the process.
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This Electric Reciprocating Saw Market report offers detailed analysis supported by reliable statistics on sale and revenue by players for the period 2017-2022. The report also includes company description, major business, Electric Reciprocating Saw product introduction, recent developments and Electric Reciprocating Saw sales by region, type, application and by sales channel.
The major players covered in the Electric Reciprocating Saw market report are:
Short Summery About Electric Reciprocating Saw Market :
The Global Electric Reciprocating Saw market is anticipated to rise at a considerable rate during the forecast period, between 2022 and 2028. In 2021, the market is growing at a steady rate and with the rising adoption of strategies by key players, the market is expected to rise over the projected horizon.
The global Electric Reciprocating Saw market is projected to reach USD million by 2028 from an estimated USD million in 2022, at a magnificent CAGR during 2023 and 2028.
North American market for Electric Reciprocating Saw is estimated to increase from USD million in 2022 to reach USD million by 2028, at a Impressive CAGR during the forecast period of 2023 through 2028.
Asia-Pacific market for Electric Reciprocating Saw is estimated to increase from USD million in 2022 to reach USD million by 2028, at a magnificent CAGR during the forecast period of 2022 through 2028.
The global market for Electric Reciprocating Saw in Wired Telephone Network System is estimated to increase from USD million in 2022 to USD million by 2028, at a Impressive CAGR during the forecast period of 2022 through 2028.
Considering the economic change due to COVID-19 and Russia-Ukraine War Influence, Electric Reciprocating Saw, which accounted for % of the global market of Electric Reciprocating Saw in 2021, is expected to reach million USD by 2028, growing at a revised CAGR of % from 2022 to 2028.
This report aims to provide a comprehensive presentation of the global market for Electric Reciprocating Saw, with both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding Electric Reciprocating Saw.
The Electric Reciprocating Saw market size, estimations, and forecasts are provided in terms of output/shipments (K Units) and revenue (USD millions), considering 2021 as the base year, with history and forecast data for the period from 2017 to 2028. This report segments the global Electric Reciprocating Saw market comprehensively. Regional market sizes, concerning products by types, by application, and by players, are also provided. The influence of COVID-19 and the Russia-Ukraine War were considered while estimating market sizes.
For a more in-depth understanding of the market, the report provides profiles of the competitive landscape, key competitors, and their respective market ranks. The report also discusses technological trends and new product developments.
The report will help the Electric Reciprocating Saw manufacturers, new entrants, and industry chain related companies in this market with information on the revenues, production, and average price for the overall market and the sub-segments across the different segments, by company, product type, application, and regions.
Key Companies and Market Share Insights
In this section, the readers will gain an understanding of the key players competing. This report has studied the key growth strategies, such as innovative trends and developments, intensification of product portfolio, mergers and acquisitions, collaborations, new product innovation, and geographical expansion, undertaken by these participants to maintain their presence. Apart from business strategies, the study includes current developments and key financials. The readers will also get access to the data related to global revenue, price, and sales by manufacturers for the period 2017-2022. This all-inclusive report will certainly serve the clients to stay updated and make effective decisions in their businesses.
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Report further studies the market development status and future Electric Reciprocating Saw Market trend across the world. Also, it splits Electric Reciprocating Saw market Segmentation by Type and by Applications to fully and deeply research and reveal market profile and prospects.
On the basis of product type this report displays the production, revenue, price, market share and growth rate of each type, primarily split into:
On the basis of the end users/applications this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate for each application, including:
Electric Reciprocating Saw Market – Regional Analysis:
Geographically, this report is segmented into several key regions, with sales, revenue, market share and growth Rate of Electric Reciprocating Saw in these regions, from 2015 to 2027, covering
Some of the key questions answered in this report:
Our research analysts will help you to get customized details for your report, which can be modified in terms of a specific region, application or any statistical details. In addition, we are always willing to comply with the study, which triangulated with your own data to make the market research more comprehensive in your perspective.
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1 Electric Reciprocating Saw Market Overview
1.1 Product Overview and Scope of Electric Reciprocating Saw
1.2 Electric Reciprocating Saw Segment by Type
1.2.1 Global Electric Reciprocating Saw Market Size Growth Rate Analysis by Type 2022 VS 2028
1.3 Electric Reciprocating Saw Segment by Application
1.3.1 Global Electric Reciprocating Saw Consumption Comparison by Application: 2022 VS 2028
1.4 Global Market Growth Prospects
1.4.1 Global Electric Reciprocating Saw Revenue Estimates and Forecasts (2017-2028)
1.4.2 Global Electric Reciprocating Saw Production Capacity Estimates and Forecasts (2017-2028)
1.4.3 Global Electric Reciprocating Saw Production Estimates and Forecasts (2017-2028)
1.5 Global Market Size by Region
1.5.1 Global Electric Reciprocating Saw Market Size Estimates and Forecasts by Region: 2017 VS 2021 VS 2028
1.5.2 North America Electric Reciprocating Saw Estimates and Forecasts (2017-2028)
1.5.3 Europe Electric Reciprocating Saw Estimates and Forecasts (2017-2028)
1.5.4 China Electric Reciprocating Saw Estimates and Forecasts (2017-2028)
1.5.5 Japan Electric Reciprocating Saw Estimates and Forecasts (2017-2028)
2 Market Competition by Manufacturers
2.1 Global Electric Reciprocating Saw Production Capacity Market Share by Manufacturers (2017-2022)
2.2 Global Electric Reciprocating Saw Revenue Market Share by Manufacturers (2017-2022)
2.3 Electric Reciprocating Saw Market Share by Company Type (Tier 1, Tier 2 and Tier 3)
2.4 Global Electric Reciprocating Saw Average Price by Manufacturers (2017-2022)
2.5 Manufacturers Electric Reciprocating Saw Production Sites, Area Served, Product Types
2.6 Electric Reciprocating Saw Market Competitive Situation and Trends
2.6.1 Electric Reciprocating Saw Market Concentration Rate
2.6.2 Global 5 and 10 Largest Electric Reciprocating Saw Players Market Share by Revenue
2.6.3 Mergers and Acquisitions, Expansion
3 Production Capacity by Region
3.1 Global Production Capacity of Electric Reciprocating Saw Market Share by Region (2017-2022)
3.2 Global Electric Reciprocating Saw Revenue Market Share by Region (2017-2022)
3.3 Global Electric Reciprocating Saw Production Capacity, Revenue, Price and Gross Margin (2017-2022)
3.4 North America Electric Reciprocating Saw Production
3.4.1 North America Electric Reciprocating Saw Production Growth Rate (2017-2022)
3.4.2 North America Electric Reciprocating Saw Production Capacity, Revenue, Price and Gross Margin (2017-2022)
3.5 Europe Electric Reciprocating Saw Production
3.5.1 Europe Electric Reciprocating Saw Production Growth Rate (2017-2022)
3.5.2 Europe Electric Reciprocating Saw Production Capacity, Revenue, Price and Gross Margin (2017-2022)
3.6 China Electric Reciprocating Saw Production
3.6.1 China Electric Reciprocating Saw Production Growth Rate (2017-2022)
3.6.2 China Electric Reciprocating Saw Production Capacity, Revenue, Price and Gross Margin (2017-2022)
3.7 Japan Electric Reciprocating Saw Production
3.7.1 Japan Electric Reciprocating Saw Production Growth Rate (2017-2022)
3.7.2 Japan Electric Reciprocating Saw Production Capacity, Revenue, Price and Gross Margin (2017-2022)
4 Global Electric Reciprocating Saw Consumption by Region
4.1 Global Electric Reciprocating Saw Consumption by Region
4.1.1 Global Electric Reciprocating Saw Consumption by Region
4.1.2 Global Electric Reciprocating Saw Consumption Market Share by Region
4.2 North America
4.2.1 North America Electric Reciprocating Saw Consumption by Country
4.2.2 United States
4.3.1 Europe Electric Reciprocating Saw Consumption by Country
4.4 Asia Pacific
4.4.1 Asia Pacific Electric Reciprocating Saw Consumption by Region
4.4.4 South Korea
4.4.5 China Taiwan
4.4.6 Southeast Asia
4.5 Latin America
4.5.1 Latin America Electric Reciprocating Saw Consumption by Country
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5 Segment by Type
5.1 Global Electric Reciprocating Saw Production Market Share by Type (2017-2022)
5.2 Global Electric Reciprocating Saw Revenue Market Share by Type (2017-2022)
5.3 Global Electric Reciprocating Saw Price by Type (2017-2022)
6 Segment by Application
6.1 Global Electric Reciprocating Saw Production Market Share by Application (2017-2022)
6.2 Global Electric Reciprocating Saw Revenue Market Share by Application (2017-2022)
6.3 Global Electric Reciprocating Saw Price by Application (2017-2022)
7 Key Companies Profiled
7.1.1 Electric Reciprocating Saw Corporation Information
7.1.2 Electric Reciprocating Saw Product Portfolio
7.1. CElectric Reciprocating Saw Production Capacity, Revenue, Price and Gross Margin (2017-2022)
7.1.4 Company’s Main Business and Markets Served
7.1.5 Company’s recent Developments/Updates
8 Electric Reciprocating Saw Manufacturing Cost Analysis
8.1 Electric Reciprocating Saw Key Raw Materials Analysis
8.1.1 Key Raw Materials
8.1.2 Key Suppliers of Raw Materials
8.2 Proportion of Manufacturing Cost Structure
8.3 Manufacturing Process Analysis of Electric Reciprocating Saw
8.4 Electric Reciprocating Saw Industrial Chain Analysis
9 Marketing Channel, Distributors and Customers
9.1 Marketing Channel
9.2 Electric Reciprocating Saw Distributors List
9.3 Electric Reciprocating Saw Customers
10 Market Dynamics
10.1 Electric Reciprocating Saw Industry Trends
10.2 Electric Reciprocating Saw Market Drivers
10.3 Electric Reciprocating Saw Market Challenges
10.4 Electric Reciprocating Saw Market Restraints
11 Production and Supply Forecast
11.1 Global Forecasted Production of Electric Reciprocating Saw by Region (2023-2028)
11.2 North America Electric Reciprocating Saw Production, Revenue Forecast (2023-2028)
11.3 Europe Electric Reciprocating Saw Production, Revenue Forecast (2023-2028)
11.4 China Electric Reciprocating Saw Production, Revenue Forecast (2023-2028)
11.5 Japan Electric Reciprocating Saw Production, Revenue Forecast (2023-2028)
12 Consumption and Demand Forecast
12.1 Global Forecasted Demand Analysis of Electric Reciprocating Saw
12.2 North America Forecasted Consumption of Electric Reciprocating Saw by Country
12.3 Europe Market Forecasted Consumption of Electric Reciprocating Saw by Country
12.4 Asia Pacific Market Forecasted Consumption of Electric Reciprocating Saw by Region
12.5 Latin America Forecasted Consumption of Electric Reciprocating Saw by Country
13 Forecast by Type and by Application (2023-2028)
13.1 Global Production, Revenue and Price Forecast by Type (2023-2028)
13.1.1 Global Forecasted Production of Electric Reciprocating Saw by Type (2023-2028)
13.1.2 Global Forecasted Revenue of Electric Reciprocating Saw by Type (2023-2028)
13.1.3 Global Forecasted Price of Electric Reciprocating Saw by Type (2023-2028)
13.2 Global Forecasted Consumption of Electric Reciprocating Saw by Application (2023-2028)
13.2.1 Global Forecasted Production of Electric Reciprocating Saw by Application (2023-2028)
13.2.2 Global Forecasted Revenue of Electric Reciprocating Saw by Application (2023-2028)
13.2.3 Global Forecasted Price of Electric Reciprocating Saw by Application (2023-2028)
14 Research Finding and Conclusion
15 Methodology and Data Source
15.1 Methodology/Research Approach
15.1.1 Research Programs/Design
15.1.2 Market Size Estimation
15.1.3 Market Breakdown and Data Triangulation
15.2 Data Source
15.2.1 Secondary Sources
15.2.2 Primary Sources
15.3 Author List
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Hitachi Energy just launched wireless Spark Prevention Unit indicators that help prevent wildfires by enabling remote monitoring.
According to the US Department of Energy, approximately 10% of wildfire ignitions are sparked by faults on electrical infrastructure or electric equipment failure. Hitachi Energy’s new Wireless SPU Indicators allow utilities to monitor the grid remotely, in real time, with automated visual inspection rounds.
The SPU monitors the current and thermal load of surge arresters – which protect equipment from surges in the power system – installed in wildfire risk areas.
If there’s a thermal overload in the grid, the SPU interrupts the current flow and disconnects the surge arrester, thus preventing any arcing – which is when a circuit becomes overloaded and overheats – sparking, or ejection of hot particles that could potentially start a wildfire.
A visual indicator on the SPU lets the utility field crew know that it needs to be replaced. Hundreds of thousands of SPUs installed in some of the world’s most wildfire-prone areas, such as in the United States and Australia, have had a real impact in preventing wildfires. Being able to monitor them remotely is only going to Strengthen wildfire prevention.
Read more: How the US can achieve resilient power grids and support EV deployment
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New Jersey, United States, Nov 10, 2022 /DigitalJournal/ The GDPR Solutions Market research report provides all the information related to the industry. It gives the markets outlook by giving authentic data to its client which helps to make essential decisions. It gives an overview of the market which includes its definition, applications and developments, and manufacturing technology. This GDPR Solutions market research report tracks all the recent developments and innovations in the market. It gives the data regarding the obstacles while establishing the business and guides to overcome the upcoming challenges and obstacles.
The purpose of the GDPR is to provide a standardized set of data protection laws across all member countries. This should make it easier for EU citizens to understand how their data is being used and also to make complaints, even if they are not in the country where it is. The growing need for organizations to comply with the GDPR implemented by the EU represents the major driver of market growth. Additionally, the continuous generation of large amounts of data has heightened the need for improved data security and privacy. This, in conjunction with the widespread prevalence of cybersecurity attacks across the globe, is catalyzing the demand for GDPR services.
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This GDPR Solutions research report throws light on the major market players thriving in the market; it tracks their business strategies, financial status, and upcoming products.
Some of the Top companies Influencing this Market include:AWS, Proofpoint, Hitachi Systems Security, Nymity, Talend, SAP, Microsoft, Smarsh, OneTrust, Protegrity, Oracle, Veritas, Absolute Software, SAS, Capgemini, Varonis, Informatica, Mimecast, Snow Software, Swascan, MetricStream, TrustArc, Trustwave, BWise, Symantec, IBM
Firstly, this GDPR Solutions research report introduces the market by providing an overview that includes definitions, applications, product launches, developments, challenges, and regions. The market is forecasted to reveal strong development by driven consumption in various markets. An analysis of the current market designs and other basic characteristics is provided in the GDPR Solutions report.
The region-wise coverage of the market is mentioned in the report, mainly focusing on the regions:
Segmentation Analysis of the market
The market is segmented based on the type, product, end users, raw materials, etc. the segmentation helps to deliver a precise explanation of the market
Market Segmentation: By Type
Data Management Solution, API Management
Market Segmentation: By Application
SMEs, Large Enterprises
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An assessment of the market attractiveness about the competition that new players and products are likely to present to older ones has been provided in the publication. The research report also mentions the innovations, new developments, marketing strategies, branding techniques, and products of the key participants in the global GDPR Solutions market. To present a clear vision of the market the competitive landscape has been thoroughly analyzed utilizing the value chain analysis. The opportunities and threats present in the future for the key market players have also been emphasized in the publication.
This report aims to provide:
Table of Contents
Global GDPR Solutions Market Research Report 2022 – 2029
Chapter 1 GDPR Solutions Market Overview
Chapter 2 Global Economic Impact on Industry
Chapter 3 Global Market Competition by Manufacturers
Chapter 4 Global Production, Revenue (Value) by Region
Chapter 5 Global Supply (Production), Consumption, Export, Import by Regions
Chapter 6 Global Production, Revenue (Value), Price Trend by Type
Chapter 7 Global Market Analysis by Application
Chapter 8 Manufacturing Cost Analysis
Chapter 9 Industrial Chain, Sourcing Strategy and Downstream Buyers
Chapter 10 Marketing Strategy Analysis, Distributors/Traders
Chapter 11 Market Effect Factors Analysis
Chapter 12 Global GDPR Solutions Market Forecast
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Hitachi Energy has handed over the North Sea Link power interconnector to Statnett, the national power grid operator in Norway, and National Grid, which owns and manages gas and electricity infrastructure in the UK and northeastern United States.
The link, which is the world’s longest subsea power interconnector, is enabled by HVDC Light, Hitachi Energy’s high-voltage direct current (HVDC) technology, interconnects Norway’s and the UK’s power grids, which are separated by the North Sea.
North Sea Link has the capacity to transmit 1400 MW of renewable power through a 720-km HVDC underwater cable, which is enough electricity to supply 1.4 million UK homes. It allows Norway to import wind power from the UK and the UK to import hydropower from Norway. This efficient power exchange will help increase grid resilience in both countries, reduce fossil-fuel power generation in the UK and avoid 23 million tons of carbon emissions by 2030.
“North Sea Link is a cornerstone of Europe’s carbon-neutral energy future, interconnecting national power grids and enabling the flow of electricity across borders and seas,” said Niklas Persson, managing director of Hitachi Energy’s Grid Integration business. “The link increases power supply reliability and security in both countries, accelerates progress toward their sustainability targets, and facilitates power trading and economic growth.”
“This is an exciting day for National Grid and an important step as we look to diversify and decarbonize the UK’s electricity supply. North Sea Link is a truly remarkable feat of engineering,” said Nicola Medalova, managing director for National Grid Interconnectors. “North Sea Link is a great example of two countries working together to maximize their renewable energy resources for mutual benefit.”
Hitachi Energy designed, engineered, supplied and commissioned the enabling technology for the interconnector – two HVDC Light converter stations, one at Blyth in northeast England and the other at Kvilldal, Norway. The stations convert the alternating current power from the grid into direct current for efficient transmission in the subsea cable, then reconvert it back to alternating current for use in the receiving grid.
Hitachi Energy, a global technology leader, has signed a strategic collaboration agreement with oil and gas major Equinor to collaborate within electrification, renewable power generation and low-carbon initiatives worldwide.
The agreement underlines both companies’ commitment to accelerate the energy transition and advance a more sustainable, flexible and secure energy system. It builds on the two companies’ long and successful collaboration over many decades.
During that time, Hitachi Energy has provided Equinor with power grid solutions and pioneering technologies on several projects, such as Dogger Bank A, B and C, the world’s largest offshore wind farm on completion, and Troll A, the world's first HVDC power-from-shore connection.
Areas of focus
Initial areas of focus for the collaboration include developing standardised base designs to be applied for high-voltage direct current (DC) and alternating current (AC) transmission systems to connect offshore wind farms and Equinor production facilities to mainland power grids.
“We are delighted to deepen our longstanding relationship with one of the world’s leading energy companies and to help Equinor achieve its ambition of becoming net zero by mid-century,” said Niklas Persson, Managing Director of Hitachi Energy’s Grid Integration business. “Together we make a strong team that will support the society to reach the goal of the Paris Agreement and create a sustainable energy future for all.”
“Hitachi Energy has been a reliable supplier to Equinor for many years. This strategic collaboration agreement is a signal of joint ambitions to increase our competitiveness in the ongoing energy transition. Standardisation of technical solutions will be a key to succeed, and we look forward to improving together with Hitachi Energy” said Geir Tungesvik, Executive Vice President for Projects, Drilling and Procurement at Equinor.
The scope of the agreement covers the complete spectrum of Hitachi Energy’s portfolio of power grid technologies and solutions. It includes IdentiQ, Hitachi Energy’s digital twin for high-voltage direct current (HVDC) and power quality solutions, which provides significant benefits throughout the assets’ plan, build, operate and maintain life cycle; Grid-eXpand modular and prefabricated offshore and onshore grid connections that make it faster, simpler and more efficient to connect facilities to the grid; OceaniQ solutions such as transformers and high-voltage products that can operate flawlessly on land, offshore and below the sea surface; and grid automation solutions that keep onshore and offshore electrical assets operating reliably, safely and securely.-- TradeArabia News Service
In application modernization, how does one scale expertise without compromising the quality of products?
IT services provider Hitachi Vantara LLC has an established portfolio of specialized solutions to guide digital transformations across data storage, cloud infrastructure and analytics. And to maintain a quality-over-quantity approach while keeping costs in check, the company looks to a knowledgeable partner ecosystem as an extension of its own sales efforts.
How will this strategy evolve as new partner types emerge across verticals, and how can Hitachi Vantara leverage this ecosystem to signal the technologies that will make the leap from what’s now to what’s next?
“We actually have a utility company in North Carolina whose customers are able to save on their electricity and water bills,” said Radhika Krishnan, chief product officer of Hitachi, in a recent interview with theCUBE, SiliconANGLE Media’s livestreaming studio. “This particular company had to contend with millions of sensors that were constantly streaming data back. That’s where a partnership with [NoSQL database provider] MongoDB really paid off … we were able to leverage Hitachi Pentaho to integrate all of the data and have the data reside on MongoDB.”
During the Dec. 6 “Hitachi Vantara Drives Customer Success With Partners” event, theCUBE analysts will talk with Hitachi Vantara executives about the company’s plans for hyperconverged infrastructures, including its expanding channel strategy and notable product/solution partnerships. (* Disclosure below.)
Under parent company Hitachi Ltd., Hitachi Vantara claims nearly 80% of the Fortune 500 as clients, looking to help organizations unlock new competitive advantages, Strengthen customer experiences and identify novel revenue streams. The company is part of the Hitachi group, an $80B conglomerate with over 60 years of IT experience.
While especially known for its rock-solid block and file storage solutions like VSP, Hitachi Vantara also is a major player for cloud infrastructure and services, converged and hyperconverged solutions, data management and analytics – and content and distributed file solutions.
Recently, the company announced that its Hitachi Content Platform object storage solution is expected to grow at a projected rate of 40% in Q2 2022 compared to the same period in 2021, outstripping the market compound annual growth rate of around 13.6%. This market growth is due mostly to organizations seeking data-driven solutions, according to the company.
“Hitachi’s portfolio has evolved over the years, and the latest Hitachi VSP E Series is very attractive for midmarket customers and departments within large enterprises,” said Pierre Munro, product account executive at Eclipsys Solutions Inc., speaking on Hitachi’s popular flash hybrid storage solution.
“The strength of the Hitachi portfolio is underpinned by its go-to-market approach,” Munro furthered. “Hitachi Vantara is really partner-focused, and they’ve demonstrated more than once that they will go the extra mile to bring value to the customer and support us through the sales cycle.”
Partnerships are the heart of any solutions-based expansion plan, but a balanced approach is critical to the success of the overall ecosystem. To this end, Hitachi Vantara is focused on tight integrations in order to simplify its own points of interaction across products in a world of increasing cloud complexities.
“The Hitachi culture is unique, the depth and breadth of knowledge and experience the Hitachi engineering team has is something you don’t always see,” said Sachin Soni, co-founder and chief technology officer of Centum Technologies. “That experience makes a big difference when I need to find solutions for my customers.”
One such alliance is with VMware Inc., spanning three major areas: hyperconverged infrastructure solutions, hybrid cloud and digital workspaces. The Hitachi Unified Compute Platform HC, for instance, combines storage, compute and virtualization into one appliance and is powered by VMware vSAN.
Don’t miss theCUBE’s coverage of the “Hitachi Vantara Drives Customer Success With Partners” event on Dec. 6. Plus, you can watch theCUBE’s event coverage on-demand after the live event.
We offer you various ways to watch theCUBE’s coverage of the “Hitachi Vantara Drives Customer Success With Partners” event, including theCUBE’s dedicated website and YouTube channel. You can also get all the coverage from this year’s events on SiliconANGLE.
SiliconANGLE also has podcasts available of archived interview sessions, available on iTunes, Stitcher and Spotify, which you can enjoy while on the go.
SiliconANGLE also has analyst deep dives in our Breaking Analysis podcast, available on iTunes, Stitcher and Spotify.
During the “Hitachi Vantara Drives Customer Success With Partners” event, theCUBE analysts will talk with Hitachi Vantara’s Kimberly King, senior vice president of strategic partners and alliances; Russell Skingsley, chief technology officer and global VP of technical sales; and Tom Christensen, global technology advisor and executive analyst.
(* Disclosure: TheCUBE is a paid media partner for the “Hitachi Vantara Drives Customer Success With Partners” event. Neither Hitachi Vantara LLC, the sponsor for theCUBE’s event coverage, nor other sponsors have editorial control over content on theCUBE or SiliconANGLE.)
Rolling stock manufacturer Hitachi Rail has received an $814m (JPY114bn) contract for the new commuter railway project in the Philippines.
Awarded by The Philippine Government ’s Department of Transportation , the contract will cover electrical and mechanical systems and track works, which includes digital signalling for the new commuter rail from Solis to Malolos.
Scope of the project includes nearly 35.4km and nine stations on the North-South Commuter Railway, as well as a 147km commuter line from Calamba to Clark.
The Japan International Cooperation Agency (JICA) will finance the works.
The project is expected to cut down carbon emissions in the railway sector and promote the use of eco-friendly public transportation over polluting cars.
North South Commuter Railway will feature the European Train Control System (ETCS) Level 2 signalling technology, which will help monitor the train’s movement and speed limit on the track.
By enabling efficient operation of the trains, the ETCS technology will also help lower the energy footprint of the railway.
Furthermore, the technology will allow the automatic activation of train safety functions, including emergency braking.
Hitachi is offering complete turnkey E&M systems of signalling, electrification, telecommunications, depot equipment, fare collection, and trackwork for the railway sector in the Philippines.
Hitachi Japan business deputy head, Asia and Japan initiatives (sales and projects) railway systems business unit head Takuya Yamakawa said: “We are proud to be awarded this contract to bring our digital signalling expertise to the Philippines, following our experiences pioneering the technology and successfully introducing it to countries across Europe and Asia.
“By delivering this project, Hitachi Rail will reduce a major commuter railway’s energy footprint, supporting greener travel.”
Earlier this month, Hitachi Rail won a €368m order for the manufacturing of 46 new metro trains for the Milan metro in Italy.
KNOXVILLE, Tenn. — Gov. Bill Lee, Department of Economic and Community Development Commissioner Stuart McWhorter and Hitachi Zosen Inova USA LLC announced the company is investing $6.6 million to expand operations at its Knoxville headquarters.
Hitachi Zosen Invoa or HZI relocated its North American hub from Georgia to Tennessee in 2020. This expansion will create 90 new jobs in Knox County.
“Tennessee’s business climate and highly skilled workforce offer companies the ideal atmosphere to grow and succeed. I thank HZI USA for its decision to expand in Knox County and create 90 new jobs for East Tennesseans," Lee said.
HZI is the Swiss-based renewable energy arm of Japan's Hitachi Zosen Corporation. The company specializes in converting municipal and agricultural waste into renewable electricity, natural gas and hydrogen.
“HZI USA appreciates the support it has received from the State of Tennessee, Knox County and the City of Knoxville, as well as the chamber’s hard work to help us grow our North American headquarters. The combination of business climate, skilled workforce and quality of life make Knoxville a great investment for our future. HZI USA is excited to deepen Japanese ties to Tennessee and to help reaffirm the State’s worldwide leadership in clean energy," HZI managing director Heath Jones said.
ATM has awarded a 368 million euros framework agreement for the manufacturing of new metro trains for the Milan metro, to Hitachi Rail. The award is part of ATM's massive investment plan to deliver an increasingly sustainable and technologically advanced public transport system.
The investment is made up of a framework agreement for the supply of 46 new metro trains. The first part of this agreement has already been committed for the delivery of 21 trains destined for line M1, worth 168 million euros.
The first metro trains are due to enter service in spring 2024.
The new trains will help further renovate the public transport network of the Lombardy capital city, offering passengers more modern, accessible and comfortable trains.
The state-of-the-art trains will have a new, fully accessible, design with an uninterrupted view from the front to the end of the service and a surveillance system providing real time video to the control room to Strengthen security onboard. The train's lower noise levels will also help provide a comfortable passenger experience.
Each train will be 106.5m long, composed of six aluminum cars and will have the ability to reach a maximum speed of 90 km/h. The trains will also be equipped with integral air conditioning and the external sides have been designed to be especially resistant to vandalism. In line with Hitachi Rail and ATM's commitments to decarbonization and delivering sustainable mobility, the trains have also been designed to meet high levels of recyclability for when they reach the end of their lives.
The new trains will be manufactured in the Italian Hitachi Rail plants in Naples and Reggio Calabria.
Hitachi Rail is a global leader in the design and delivery of metro trains and systems around the world in countries including Italy, Japan, Denmark, Saudi Arabia and the United States.© JCN Newswire
The Hitachi factory in Newton Aycliffe is at the forefront of green technology as new battery-powered train trails are set to start next year.
Engineers at the North East factory are working on replacing a diesel train engine with a battery pack to power an Hitachi train across the Pennines using electricity.
The trials are expected to start in the spring and will mark a key moment for the Newton Aycliffe plant as Hitachi continues its push towards green energy.
Jim Brewin, chief director for Hitachi UK and Ireland, said he was ‘incredibly proud’ of the work being done at the Newton Aycliffe plant.
He said: “Everything we do at Hitachi now is linked to either green technology or digital capabilities.
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“We’ve got a trial that we’re due to start throughout next year which is taking a diesel engine off one of our existing trains already in passenger operation and we will replace that with a battery pack to trial and test.
“That’s going to be done across the Pennines so the exciting thing, the future that we are looking at is really, is about battery trains and green technology, with net zero being the target and energy efficiency being the ambition.
“We’re asking, can we reduce the total energy used on the railway? Which would ultimately save governments and customers money and give passengers a wonderful experience.
“So that’s where our vision is, that’s what we are passionate about and certainly battery technology will be part of our future.”
Mr Brewin admitted that the factory had weathered some difficult times since the Covid pandemic and the current hike in energy prices, but he said the Newton Aycliffe operation is in a healthy place.
He said: “The cost of energy and the impact of Covid on our supply chain has had an impact on our operations, but I think what you can see today is that every area of the factory is fully operational.
“The team are inspirational in my view in what they do, they are very passionate.
“You’ve got trains in weld, paint, assembly, test at the minute and we’re very hopeful that in the next few days the first Avanti West Coast train will actually leave the factory and go for dynamic tests.
“So yes, I think with things going on in the world, it has been a difficult period these last few years but we are certainly working through that as best we possibly can.”
And Mr Brewin highlighted the positive economic contribution the Aycliffe factory has made to the North East region since it officially opened in September 2015.
He said: “Over the last seven years since it opened we have spent £2.2billion in the UK supply chain.
“We have got 960 suppliers locally and 40 per cent of the content that we actually build here comes from the UK supply chain and the majority of that is the North East.
“So it’s important for the region in terms of the jobs it creates, the wider jobs it creates in the local supply chain and what it gives the community.
“It’s extremely important for the local region and we are very proud to be here in County Durham and the North East.”
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