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Global Metal Fabrication Equipment Market By Type, By Application, By Regional Outlook, Industry Analysis Report and Forecast, 2021 – 2027

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New York, Jan. 25, 2022 (GLOBE NEWSWIRE) — Reportlinker.com announces the release of the report “Global Metal Fabrication Equipment Market By Type, By Application, By Regional Outlook, Industry Analysis Report and Forecast, 2021 – 2027” – https://www.reportlinker.com/p06222256/?utm_source=GNW
This equipment is widely utilized in different business segments, wherein the development of metal components plays a crucial role. In addition, metal fabrication equipment provides enhanced outcomes than traditional equipment due to the various technological enhancements that took place in the industry. This would further augment the growth of the metal fabrication market over the forecast period.

There are many engineers and architects who prefer the utilization of steel and fabricated steel products. These fabricators are used to make different steel parts like handrails, girders, steel beams, ladders, and platforms that are utilized to develop the basic structure for warehouses, bridges, buildings, and every type of megastructures. Nowadays, it is not even possible to think about the construction industry without metal fabrication.

Welding includes joining two or more pieces of metal by using pressure and heat. For this purpose, metal fabrication equipment is used to make any shape or size of the metals. Companies using metal fabrication equipment can develop any kind of products from metals like copper, aluminum, iron, and others through numerous kinds of welding processes from Metal Inert Gas (MIG) Welding, Tungsten Inert Gas (TIG) Welding, and Stick or Arc Welding.

Companies opt for Gas Tungsten Arc Welding or TIG Welding, particularly for complicated projects in the case of heavy metal fabrication. Advanced welding tools and equipment like TIG welders or tungsten electrode rods are used by the welders to make short arcs on heavy metals. These kinds of welding machines produce low welding fumes since they utilize shielding gas. This procedure utilizes solid wire electrodes to carry out welding constantly and quicker along with shielding the metal from reacting to external aspects.

COVID-19 Impact Analysis

The outbreak of the COVID-19 pandemic has negatively impacted the metal fabrication equipment market. The imposition of various regulations like complete lockdown, social distancing norms, and the ban on imports & exports has disrupted the supply chain of raw materials across borders.

The demand for various healthcare equipment, beds, and other products has compelled governments to allow the production of these products with a restricted labor workforce, which has supported the demand for metal fabrication equipment in the market. However, as things are getting back on track and governments have withdrawn restrictions from the manufacturing units, the demand for metal fabrication equipment would surge in the coming years.

Market Growth Factors

Expansion of industrial sector across the world

There is a high growth observed in the industrial sector of the world since the world is moving to capitalism. Several manufacturers are opting for key strategies like reskilling their workforce or recasting their employment to gain and retain talent. In addition, manufacturers are improving the supply chain through the adoption of various advanced solutions to get a competitive advantage in the market. The availability of numerous latest technologies is helping companies and manufacturers to boost the efficiency of the production units.

Customization of metal fabrication equipment can reduce the wastage

There are many manufacturers of metal fabrication equipment that offer customization of the equipment as per the requirements of the customers. Different companies have different requirements that are based on the raw material they use for manufacturing their end products and the kind of environment they deal in. Many companies deal in delicate raw materials that need to be handled with care and thus, the machine used in the fabrication of such materials should also adapt to it.

Market Restraining Factors

Chances of mechanical failures

Any kind of machine, equipment, and tools used across the manufacturing units have high chances of mechanical as well as technical failure. To obtain a high efficiency from such equipment, companies need to make sure that they work in their proper conditions. These machineries need to be maintained and regularly inspected to ensure their high efficiency and better outcomes.

Type Outlook

Based on type, the metal fabrication equipment market is segmented into cutting, machining, welding, bending, and others. The metal cutting equipment acquired the maximum revenue share in the metal fabrication equipment market in 2020 and is anticipated to display a promising growth rate during the forecast period. It is owing to the rising demand from end-use industries like automotive and the ever-growing industrial sector across emerging nations.

Application Outlook

Based on application, the metal fabrication equipment market is segmented into job shops, automotive, aerospace & defense, mechanical application, and others. The job shop segment is estimated to acquire the maximum share in the metal fabrication market over the forecast period. A job shop refers to a kind of manufacturing process, wherein small sets of a range of custom products are manufactured. In addition, job shops move from one consignment to another very frequently, and thus, it requires high-precision equipment in the making of different metal products.

Regional Outlook

Region-wise, the metal fabrication equipment market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The Asia Pacific emerged as the leading region with the highest share in the metal fabrication equipment market in 2020 and is estimated to maintain this dominance over the forecast period. The presence of various emerging nations like China and India along with the highly industrialized nations like South Korea and Japan that have the largest manufacturing sector would surge the demand for metal fabrication equipment in this region.

The major strategies followed by the market participants are Product Launches. Based on the Analysis presented in the Cardinal matrix; TRUMPF GmbH + Co. KG, Amanda Holdings Co. Ltd., Bystronic Laser AG and IPG Photonics Corporation are the forerunners in the Metal Fabrication Equipment Market. Companies such as OMAX Corporation, Jenoptik AG, Colfax Corporation, Messer Cutting Systems GmbH are some of the key innovators in the Market.

The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Bystronic Laser AG, IPG Photonics Corporation, Colfax Corporation, TRUMPF GmbH + Co. KG, Amanda Holdings Co. Ltd., Jenoptik AG, Jet Edge International, OMAX Corporation (Hypertherm), and Messer Cutting Systems GmbH.

Recent strategies deployed in Metal Fabrication Equipment Market

Partnerships, Collaborations and Agreements:

Sep-2021: TRUMPF entered into a partnership with Starmatik, the Italian expert for robot automation of sheet metal processing machines. This partnership aimed to increase the supply of particular modular solutions for Trumpf’s Smart Factory resolutions which consider the general trend toward automation. Through this partnership, customers can get the advantages of a significant process acceleration.

Sep-2021: AMADA extended its partnership with TotalEnergies, a French transnational unified oil, and gas company. This partnership aimed to provide original equipment oils and lubricants to Amada Europe’s factories plus an array of Amada’s proprietary lubricants.

Dec-2020: Trumpf formed a partnership with Jungheinrich, a German corporation dealing in the warehousing, material handling equipment, and material flow engineering industries. In this partnership, TRUMPF would provide TruTops, a production-control software, which assists producers to make their logistics effective and efficient. In addition, Jungheinrich would supply autonomously transport sheet metal components among several storage positions and machine instruments.

Aug-2020: Trumpf partnered with Fraunhofer IPA, a prestigious research organization. This partnership aimed to launch artificial intelligence (AI) resolutions for interconnected production on an industrial magnitude. In addition, the companies would extend AI leadership in sheet-metal fabrication.

Acquisitions and Mergers:

Nov-2021: Bystronic acquired Antil, an automation expert and an advanced technology company. Through this acquisition, Bystronic would expand its product portfolio in their significant domain and would henceforth be capable of catering to consumer demands efficiently.

Mar-2021: Trumpf took over Lantek, a U.S.-based software company. This acquisition focused on efficiency and interconnected sheet-metal manufacturing whilst fulfilling the Smart Factory solution portfolio. Under this acquisition, Lantek would assist Trumpf in systematically addressing the sheet metal process chain, regardless of machines from different producers.

Apr-2020: Amada acquired MacGregor Welding Systems, a market leader in micro-welding technology. Through this acquisition, Amada would grow through the efficient cooperation of teams of both the companies and to additionally formulate novel various welding products and resistance welding which meet the needs of modern industrial consumers globally.

Jan-2020: AMADA acquired LKI Käldman, a producer of resolutions for FMS & intralogistics solutions and sheet-metal handling automation. Through this acquisition, AMADA would meet the growing demand for the integration of automation equipment and fiber laser cutting machines which would also cater to the automation requirements of the European consumers.

Product Launches and Product Expansions:

Oct-2021: TRUMF unveiled TruLaser Weld 1000, an entry-level machine for computerized laser soldering. The product would help sheet-metal fabricators to shift to automated laser welding. It allows small enterprises to make use of the advantages of automated laser welding and bridges a gap in the welding market by enabling them to increase their efficiency of production and obtain an upper hand in the market.

Sep-2021: IPG photonics launched LightWELD 1500 XC, a modern portable laser welder with new functionality for post- and pre-weld cleansing operations. The product enables fabricators to instantly capitalize cost and time-saving benefits versus conventional post- and pre- weld cleaning techniques. Along with that, the product would expand the functionalities and simplicity of use without LightWELD without adding in weight and size.

Jul-2021: Messer Cutting Systems unveiled Element 400 Cutting Machine that consists of the Global Connect onboard controller reconfigured HMI software and unified OmniFab compatibility. The system would help in enhancing real-time transparency on management, downtime status, and production reports that are shared via the controller, through a PC, or tablet.

Jul-2020: IPG Photonics Corporation released YLR-U series near-infrared 1 ?m fiber lasers, the world’s smallest and highest performance kW-class continuous wave ytterbium fiber lasers. The laser has a lightweight & small size along with providing advanced functioning with a record power to volume ratio. These lasers are developed to manage a diversity of drilling applications, welding, and drilling applications.

Feb-2020: Amada launched The ENSIS Ajis, LCG3015AJII & IoT enable process control software. The solution helps in better the beam with the aid of beam modulation. It regulates itself appropriately and therefore provides an improved finish along with the ability to cut thick or thin metal on the same machine.

Geographical Expansions:

Oct-2021: Bystronic announced the expansion of its geographical footprints by establishing its New Headquarters for the Americas. Through this expansion, the company would be able to assemble machines in the U.S. and shrink the requirement of importing them from Europe. This would substantially reduce shipping and delivery costs, which is a valuable competitive edge, considering the worldwide supply chain limitations.

Scope of the Study

Market Segments covered in the Report:

By Type

• Cutting

• Welding

• Bending

• Machining

• Other Types

By Application

• Job Shops

• Automotive

• Aerospace and Defense

• Mechanical Components

• Other Applications

By Geography

• North America

o US

o Canada

o Mexico

o Rest of North America

• Europe

o Germany

o UK

o France

o Russia

o Spain

o Italy

o Rest of Europe

• Asia Pacific

o China

o India

o Japan

o Australia

o South Korea

o Singapore

o Rest of Asia Pacific

• LAMEA

o Brazil

o Argentina

o UAE

o Saudi Arabia

o South Africa

o Nigeria

o Rest of LAMEA

Companies Profiled

• Bystronic Laser AG

• IPG Photonics Corporation

• Colfax Corporation

• TRUMPF GmbH + Co. KG

• Amanda Holdings Co. Ltd.

• Jenoptik AG

• Jet Edge International

• OMAX Corporation (Hypertherm)

• Messer Cutting Systems GmbH

Unique Offerings

• Exhaustive coverage

• Highest number of market tables and figures

• Subscription based model available

• Guaranteed best price

• Assured post sales research support with 10% customization free
Read the full report: https://www.reportlinker.com/p06222256/?utm_source=GNW

About Reportlinker
ReportLinker 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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Artificial Intelligence

HITACHI ACQUIRES MA MICRO AUTOMATION OF GERMANY IN EFFORT TO ACCELERATE GLOBAL EXPANSION OF ROBOTIC SI BUSINESS IN THE MEDICAL AND OTHER FIELDS

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HOLLAND, Mich., April 26, 2024 /PRNewswire/ — Hitachi Ltd. (TSE: 6501, “Hitachi”) has signed a stock purchase agreement on April 26 to acquire all shares of MA micro automation GmbH (“MA micro automation”, headquartered in St. Leon-Rot, Germany) from MAX Management GmbH (a subsidiary of MAX Automation SE). MA micro automation is a leading provider of robotic and automation technology (robotic SI) including high-speed linear handling systems, high-precision assembly lines, and high-speed vision inspection technology for Europe, North America, and Southeast Asia, for EUR 71.5M million. The transaction is expected to close in the second half of 2024, pending completion of the customary regulatory filings. After the acquisition is completed, MA micro automation will join JR Automation Technologies, LLC (“JR Automation”), a market leader in providing advanced automation solutions and digital technologies in the robotic system integration business for North America, Europe, and Southeast Asia as a continued effort to expand the company’s global presence.

MA micro automation is a technology leader for automation solutions within micro-assembly. Through its state-of-the-art proprietary high-speed and high-precision automation know-how, combined with unique optical image inspection capabilities, MA micro automation serves high-growth med-tech automation end-markets, covering the production, assembly, and testing medical and optical components including contact lenses, IVD and diabetes diagnostics consumables, and injection molding for medical use. The company was established in 2003 through a carve-out from Siemens*1 and since 2013 has been part of the MAX Automation group. 
JR Automation is a leading provider of intelligent automated manufacturing technology solutions, serving customers across the globe in a variety of industries including automotive, life sciences, e-mobility, consumer and industrial products. With over 20 locations between North America, Europe, and Southeast Asia, the leading integrator offers nearly 2 million square feet (185,806 sq. m) of available build and engineering floorspace. This acquisition allows JR Automation to further grow and strengthen both the company’s geographical footprint and their continued commitment on expanding support capabilities within the European region and medical market vertical.
“MA micro automation provides engineering, build and support expertise with established capabilities in complex vision applications, high-speed and high-precision automation technologies. When integrated with JR Automation’s uniform global process and digital technologies, this partnership will further enhance our ability to deliver added value and support to all of our customers worldwide and continue to grow our capabilities in the medical market,” says Dave DeGraaf, CEO of JR Automation. “As we integrate this new dimension, impressive talents and abilities of the MA micro automation team we further enhance our ability to serve our customers, creating a more robust and globally balanced offering.”
With this acquisition, Hitachi aims to further enhance its ability to provide a “Total Seamless Solution*2” to connect manufacturer’s factory floors seamlessly and digitally with their front office data, allowing them to achieve total optimization and bringing Industry 4.0 to life. This “Total Seamless Solution” strategy links organizations’ operational activities such as engineering, supply chain, and purchasing to the plant floor and allows for real time, data-driven decision-making that improves the overall business value for customers.
Kazunobu Morita, Vice President and Executive Officer, CEO of Industrial Digital Business Unit, Hitachi, Ltd. says, “We are very pleased to welcome MA micro automation to the Hitachi Group. The team is based in Europe, providing robotic SI to global medical device manufacturing customers with its high technological capabilities and will join forces with JR Automation and Hitachi Automation to strengthen our global competitiveness. Hitachi aims to enhance its ability to provide value to customers and grow alongside them by leveraging its strengths in both OT, IT, including robotic SI, and “Total Seamless Solution” through Lumada*3’s customer co-creation framework.”
Joachim Hardt, CEO MA micro automation GmbH says, “Following the successful establishment and growth of MA micro automation within the attractive automation market for medical technology products, we are now opening a new chapter. Our partnership with Hitachi will not only strengthen our global competitive position, but we will also benefit from joint technological synergies and a global market presence.  We look forward to a synergistic partnership with Hitachi and JR Automation.”
Outline of MA micro automation    
Name
MA micro automation GmbH
Head Office
St. Leon-Rot, Germany
Representative
Joachim Hardt (CEO)
Outline of Business
Automation solutions within micro-assembly
Total no. of Employees:
Approx. 200 (As of April 2024)
Founded
2003
Revenues (2023)
€ 46.5 million
Website

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*1
“Siemens” is a registered trademark or trademark of Siemens Trademark GmbH & Co. KG in the U.S. and other countries.
*2
“Total Seamless Solution” is a registered trademark of Hitachi, Ltd. in the U.S. and Japan.
*3
Lumada: A collective term for solutions, services and technologies based on Hitachi’s advanced digital technologies for creating value from customers’ data accelerating digital innovation. https://www.hitachi.com/products/it/lumada/global/en/index.html
About JR AutomationEstablished in 1980, JR Automation is a leading provider of intelligent automated manufacturing technology solutions that solve customers’ key operational and productivity challenges. JR Automation serves customers across the globe in a variety of industries, including automotive, life sciences, aerospace, and more.  
In 2019, JR Automation was acquired by Hitachi, Ltd. In a strategic effort towards offering a seamless connection between the physical and cyber space for industrial manufacturers and distributers worldwide. With this partnership, JR Automation provides customers a unique, single-source solution for complete integration of their physical assets and data information, offering greater speed, flexibility, and efficiencies towards achieving their Industry 4.0 visions. JR Automation employs over 2,000 people at 21 manufacturing facilities in North America, Europe, and Asia.  For more information, please visit www.jrautomation.com.   
About Hitachi, Ltd.Hitachi drives Social Innovation Business, creating a sustainable society through the use of data and technology. We solve customers’ and society’s challenges with Lumada solutions leveraging IT, OT (Operational Technology) and products. Hitachi operates under the 3 business sectors of “Digital Systems & Services” – supporting our customers’ digital transformation; “Green Energy & Mobility” – contributing to a decarbonized society through energy and railway systems, and “Connective Industries” – connecting products through digital technology to provide solutions in various industries. Driven by Digital, Green, and Innovation, we aim for growth through co-creation with our customers. The company’s revenues as 3 sectors for fiscal year 2023 (ended March 31, 2024) totaled 8,564.3 billion yen, with 573 consolidated subsidiaries and approximately 270,000 employees worldwide. For more information on Hitachi, please visit the company’s website at https://www.hitachi.com.
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$10 million Artificial Intelligence Mathematical Olympiad Prize appoints further advisory committee members

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D. Sculley, Kevin Buzzard, Leo de Moura, Lester Mackey and Peter J. Liu appointed to the advisory committee for the Artificial Intelligence Mathematical Olympiad Prize.
LONDON, April 26, 2024 /PRNewswire/ — XTX Markets’ newly created Artificial Intelligence Mathematical Olympiad Prize (‘AIMO Prize’) is a $10mn challenge fund designed to spur the creation of a publicly shared AI model capable of winning a gold medal in the International Mathematical Olympiad (IMO).

XTX Markets is delighted to announce the appointment of five further advisory committee members. This group brings great expertise in machine learning, including D. Sculley, the CEO of Kaggle; Lester Mackey, a Principal Researcher at Microsoft Research and a Macarthur Fellow; and Peter J. Liu, a research scientist at Google DeepMind.
Prolific mathematicians Kevin Buzzard, who achieved a perfect score in the International Mathematical Olympiad, and Leo De Moura who is the Chief Architect for Lean, the automated reasoning tool, also join the advisory group.
They join the existing advisory committee members Terence Tao and Timothy Gowers, both winners of the Fields Medal, as well as Dan Roberts, Geoff Smith and Po-Shen Loh.
The AIMO Advisory Committee will support the development of the AIMO Prize, including advising on appropriate protocols and technical aspects, and designing the various competitions and prizes.
Simon Coyle, Head of Philanthropy at XTX Markets, commented:
“We are thrilled to complete the AIMO Advisory Committee with the appointments of D., Kevin, Leo, Lester and Peter. Together, they have enormous experience in machine learning and automated reasoning and are already bringing expertise and wisdom to the AIMO Prize. We look forward to announcing the winners of the AIMO’s first Progress Prize soon, and then publicly sharing the AI models to support the open and collaborative development of AI.”
Further information on the AIMO Prize
There will be a grand prize of $5mn for the first publicly shared AI model to enter an AIMO approved competition and perform at a standard equivalent to a gold medal in the IMO. There will also be a series of progress prizes, totalling up to $5mn, for publicly shared AI models that achieve key milestones towards the grand prize.
The first AIMO approved competition opened to participants in April 2024 on the Kaggle competition platform. The first progress prize focuses on problems pitched at junior and high-school level maths competitions. There is a total prize pot of $1.048m for the first progress prize, of which at least $254k will be awarded in July 2024, There will be a presentation of progress held in Bath, England in July 2024, as part of the 65th IMO.
For more information on the AIMO Prize visit: https://aimoprize.com/ or the competition page on Kaggle: https://www.kaggle.com/competitions/ai-mathematical-olympiad-prize/
Advisory Committee member profiles:
D. Sculley
D. is the CEO at Kaggle. Prior to joining Kaggle, he was a director at Google Brain, leading research teams working on robust, responsible, reliable and efficient ML and AI. In his career in ML, he has worked on nearly every aspect of machine learning, and has led both product and research teams including those on some of the most challenging business problems. Some of his well-known work involves ML technical debt, ML education, ML robustness, production-critical ML, and ML for scientific applications such as protein design.
Kevin Buzzard
Kevin a professor of pure mathematics at Imperial College London, specialising in algebraic number theory. As well as his research and teaching, he has a wide range of interests, including being Deputy Head of Pure Mathematics, Co-Director of a CDT and the department’s outreach champion. He is currently focusing on formal proof verification, including being an active participant in the Lean community. From October 2024, he will be leading a project to formalise a 21st century proof of Fermat’s Last Theorem. Before joining Imperial, some 20 years ago, he was a Junior Research Fellow at the University of Cambridge, where he had previously been named ‘Senior Wrangler’ (the highest scoring undergraduate mathematician). He was also a participant in the International Mathematical Olympiad, winning gold with a perfect score in 1987. He has been a visitor at the IAS in Princeton, a visiting lecturer at Harvard, has won several prizes both for research and teaching, and has given lectures all over the world.
Leo de Moura
Leo is a Senior Principal Applied Scientist in the Automated Reasoning Group at AWS. In his spare time, he dedicates himself to serving as the Chief Architect of the Lean FRO, a non-profit organization that he proudly co-founded alongside Sebastian Ullrich. He is also honoured to hold a position on the Board of Directors at the Lean FRO, where he actively contributes to its growth and development. Before joining AWS in 2023, he was a Senior Principal Researcher in the RiSE group at Microsoft Research, where he worked for 17 years starting in 2006. Prior to that, he worked as a Computer Scientist at SRI International. His research areas are automated reasoning, theorem proving, decision procedures, SAT and SMT. He is the main architect of several automated reasoning tools: Lean, Z3, Yices 1.0 and SAL. Leo’s work in automated reasoning has been acknowledged with a series of prestigious awards, including the CAV, Haifa, and Herbrand awards, as well as the Programming Languages Software Award by the ACM. Leo’s work has also been reported in the New York Times and many popular science magazines such as Wired, Quanta, and Nature News.
Lester Mackey
Lester Mackey is a Principal Researcher at Microsoft Research, where he develops machine learning methods, models, and theory for large-scale learning tasks driven by applications from climate forecasting, healthcare, and the social good. Lester moved to Microsoft from Stanford University, where he was an assistant professor of Statistics and, by courtesy, of Computer Science. He earned his PhD in Computer Science and MA in Statistics from UC Berkeley and his BSE in Computer Science from Princeton University. He co-organized the second place team in the Netflix Prize competition for collaborative filtering; won the Prize4Life ALS disease progression prediction challenge; won prizes for temperature and precipitation forecasting in the yearlong real-time Subseasonal Climate Forecast Rodeo; and received best paper, outstanding paper, and best student paper awards from the ACM Conference on Programming Language Design and Implementation, the Conference on Neural Information Processing Systems, and the International Conference on Machine Learning. He is a 2023 MacArthur Fellow, a Fellow of the Institute of Mathematical Statistics, an elected member of the COPSS Leadership Academy, and the recipient of the 2023 Ethel Newbold Prize.
Peter J. Liu
Peter J. Liu is a Research Scientist at Google DeepMind in the San Francisco Bay area, doing machine learning research with a specialisation in language models since 2015 starting in the Google Brain team. He has published and served as area chair in top machine learning and NLP conferences such as ICLR, ICML, NEURIPS, ACL and EMNLP. He also has extensive production experience, including launching the first deep learning model for Gmail Anti-Spam, and using neural network models to detect financial fraud for top banks. He has degrees in Mathematics and Computer Science from the University of Toronto.
About XTX Markets:
XTX Markets is a leading financial technology firm which partners with counterparties, exchanges and e-trading venues globally to provide liquidity in the Equity, FX, Fixed Income and Commodity markets. XTX has over 200 employees based in London, Paris, New York, Mumbai, Yerevan and Singapore. XTX is consistently a top 5 liquidity provider globally in FX (Euromoney 2018-present) and is also the largest European equities (systematic internaliser) liquidity provider (Rosenblatt FY: 2020-2023).
The company’s corporate philanthropy focuses on STEM education and maximum impact giving (alongside an employee matching programme). Since 2017, XTX has donated over £100mn to charities and good causes, establishing it as a major donor in the UK and globally.
In a changing world XTX Markets is at the forefront of making financial markets fairer and more efficient for all.
 

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Hikvision redefines urban mobility with AIoT-powered solutions at Intertraffic 2024

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HANGZHOU, China, April 26, 2024 /PRNewswire/ — Hikvision made a significant appearance at Intertraffic Amsterdam, the leading global trade fair for mobility and traffic technology. At the trade event, Hikvision unveiled a suite of traffic, transport, and parking management solutions and products powered by Artificial Intelligence of Things (AIoT) technology, which promised to improve urban mobility, road safety, and operational efficacy.

Elevating urban traffic intelligence with AIoT
One highlight of the Hikvision stand was its intelligent urban traffic solution, which leveraged the power of AIoT to deliver comprehensive real-time monitoring, incident detection, and traffic control. This solution intelligently reshapes traffic dynamics, offering a more responsive and data-driven approach to enhance situational awareness and traffic management. Key innovations in the solution included:
Hikvision’s radar-video fusion camerasThese combine the range perception of radar with the visual perception of video. The 4 MP Radar and Video Vehicle Detector, for example, helps to enhance road safety by providing early warning of potential hazards in challenging situations such as blind spots at intersections and obstacles outside the visual range.Hikvision’s All-In-One Traffic SpotterThis stands out with its multifaceted design incorporating video, radar, and lighting technologies for heightened traffic violation detection. Its streamlined column design facilitates effortless installation.Hikvision’s Radar-Linked PTZ Camera This ensures consistent performance in adverse weather and lightening conditions, and minimizes false alarms with advanced deep-learning algorithms.Innovating parking management
Hikvision also introduced its parking management solutions. These combine extremely precise license plate recognition and intelligent barrier controls incorporating highly accurate radar sensors. This comprehensive approach enhances security, reduces the need for manual intervention, and streamlines traffic flow across parking areas. The Global Shutter CMOS* (GMOS) ANPR camera was a new addition to the lineup. Designed to seamlessly blend in the environment, it is tailored for the task of discreetly capturing license plates at parking facilities that prioritize subtlety.
Advancing public transportation safety and efficiency
Attendees also had the opportunity to explore Hikvision’s latest public transport solutions, integrating AI-driven analytics with advanced video security, on-site voice broadcasting, and centralized management for enhanced onboard security, improved passenger experience, and operational efficiency for buses and taxis. This included the Four-way monitoring system and the Panoramic Auxiliary System, both designed to reduce blind spots and provide high-definition imaging to improve driving safety.
“As ever, we are continually expanding our suite of technologies to enhance traffic safety and efficiency,” said Nick Wu, Project Product Director at Hikvision Europe. “Our commitment lies in minimizing the need for extensive roadside installations by incorporating comprehensive perception and robust AI within unified device frameworks. These innovations automate and streamline every aspect of traffic management, from violation detection to traffic flow monitoring, driving safety, and parking management.”
To find out more about Hikvision’s urban mobility products and solutions, please explore its official website.
Note: CMOS stands for Complementary Metal-Oxide-Semiconductor.
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