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#M3D Technologies
embracethepixels · 5 months
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VRARA: My First Tech Expo!
My first tech expo! I had a blast going interacting with a majoprity of the gadgets, as well as, learning about the finer intricasies of the tech field. Special thanks to Selina Mallatt for accompanying me thoughout the event!
Host: Full Sail University I’ve been dying to attend one of these. Though I mostly speak about games, I like to keep up with the latest technological breakthroughs in the entertainment sector—especially if they involve XR. Even with all this incredible technology eagerly displayed for all to admire and ready to be utilized, I know I’m only experiencing a glimpse of the greater world of XR tech.…
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infifashion · 7 months
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Most Expensive Cameras In The World
The world is filled with breathtaking beauty that captivates everyone, whether they're professional photographers or not. The desire to capture these wonders has been alive since the invention of the camera in 1816. Over the centuries, advancements in technology have introduced us to a myriad of camera models, each with its own unique features and rarities. However, some cameras stand out not only for their functionality but also for their exorbitant prices, making them highly sought-after collectibles.
Here's a glimpse into some of the most expensive cameras in the world:
Leica 0 – Series No.122 Price: $2.97 million Key Features: One of only three surviving models from a limited production run in 1925 by Leica, renowned for its durability and image quality.
Hasselblad H6D – 100C Price: $47,995 Key Features: Known for its sensor-shift technology, capable of creating high-resolution images by combining multiple exposures, along with its precise color accuracy and touchscreen display.
Leica M3D – 2 Price: $2 million Key Features: A vintage Leica camera, produced as a limited edition for war photojournalist Douglas Duncan, featuring a unique 50-mm lens and a short shutter lag time.
Susse Frères Daguerreotype Camera Price: $978,000 Key Features: An antique camera dating back to 1839, notable for its historical significance as one of the earliest commercially available cameras, designed by Louis Daguerre.
Apollo 15 Hasselblad 500 Series Moon Camera Price: $910,000 Key Features: The only camera to have been to the moon and back, featuring special modifications for lunar conditions, such as a leaf shutter and a 70-exposure film magazine.
Jonathan Ive & Marc Newson Leica M Prototype Camera Price: Undisclosed Key Features: A rare Leica camera designed by Jony Ive and Marc Newson, boasting unique design elements and manufactured in limited quantities, making it highly desirable among collectors.
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pavkal · 10 months
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26 Most Expensive Cameras in the World
Whether you're a professional or not, everyone can appreciate the breathtaking beauty that surrounds us all the time. Everyone feels compelled to capture these amazing events and terrains since the earth is full with captivating components. The first time this dream was realized was in 1816. Even with the passage of centuries and the emergence of contemporary technology, the industry's cameras still owe their creation to innumerable rare and exceptional items. Every antique collector's dream come true, but there is a cost involved in expensive camera in the world
1. Leica 0 - No. 122 Series The Leica 0 - Series No.122, the most expensive camera ever sold, tops this list with a price that never fails to astound. This antique camera was produced in a small run of 25 in the early 1900s. It's interesting to note that this camera was only recently purchased by a private collector at a Vienna auction.
2. The 100C Hasselblad H6D Hasselblad, one of the best camera manufacturers in the business, has another one on this list. Because of its exceptional qualities, this camera is quite popular among historians who use it for documentation and reproduction of art. Being one of the very few high-end manufacturers that produces multi-shot cameras, the demand for this camera is through the roof.
3. Leica M3D – 2 Another ancient model, the M3D-2 was also a limited edition and was one of the priciest Leica cameras ever made. The Leica M3D, or "D" for Douglas Duncan, was made specifically for the combat photographer. It was auctioned off alongside another member of the same product line. DDD used this camera primarily to take pictures of his friend Pablo Picasso and the fighting in Vietnam and Korea. Recently, the company unveiled an updated, limited-edition version of this camera specifically designed for photographers.
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my3dartblog · 11 months
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Introducing M3D Hikari HD for Genesis 9: a meticulously crafted character that seamlessly merges captivating aesthetics with advanced 3D technology. Elevate your creative renders with Hikari's presence, as her sculpted features and lifelike textures redefine realism in your renders. Unlock a world of creative possibilities with Hikari's comprehensive features. From her carefully constructed face to intricate body detailing, each aspect ensures authenticity in every angle, no matter the render. Experiment with different face makeup options - from bold Black to serene Blue - each choice adds personality to your creation. Hikari's lips offer a palette of colors, allowing you to evoke the perfect mood. Make M3D Hikari HD a part of your 3D renders today! What's Included and Features M3D Hikari HD for Genesis 9: (.DUF) M3D Hikari Character Preset MM3D Hikari HD Character Preset Head Apply/Remove Body Apply/Remove Complete Apply/Remove Material Options: Full Material Lips Natural Eye Color Black Eye Color Blue Eye Color Brown Eye Color Green Eye Color Light Blue Eye Color Purple Eye Color Red Eye Light OFF Eye Light ON Face Makeup Black Face Makeup Blue Face Makeup Pink Face Makeup Red Anatomical Elements Female Anatomical Elements Male Lips Black Lips Blue Lips Pink Lips Purple Lips Red Nipples Female Nipples Male Skin Material Textures Include: 69 Texture, Bump, Normal, Roughness, SSS, and Transparency Maps (2048 x 2048 to 4096 x 4096) Daz Studio Iray Material Presets (.DUF) Required Products: Genesis 9 Starter Essentials Compatible Figures: Genesis 9 Compatible Software: Daz Studio 4.22 Install Types: DazCentral, Daz Connect, DIM, Manual Install Coming soon: https://3d-stuff.net/ #daz3d #dazstudio #3drender #3dart #daz3dstudio #irayrender #3dartwork #blender #blenderrender #blenderart #noaiart #noaiwriting #noai https://3d-stuff.net/
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lucraryexp · 1 year
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Elevate Your Game Development Journey with M3DS Academy
Elevate Your Game Development Journey with M3DS Academy
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In the current era, the gaming industry is a booming entity, promising not just thrilling experiences for the players, but also lucrative opportunities for developers, designers, and artists. If you're an aspiring game developer or a budding 3D artist looking to carve a niche for yourself in this realm, you're probably wondering where to start. Enter the world of M3DS Academy - a platform that pledges to transform your dreams into reality.
Courses for 3D and Games: A Stepping Stone to Success
There's a common misconception that a career in game development or 3D artistry only revolves around hardcore coding or sketching figures. In truth, it's a fusion of creativity, technology, and skill. M3DS Academy is a testament to this ethos, offering a wide range of courses for 3D and games. These courses aren't just tutorials; they're gateways to the gaming industry's nerve center.
Becoming a Successful 3D Artist: A Journey, Not a Destination
Every great 3D artist started somewhere. There's no magic potion to instantly make you an expert. Instead, it's about dedicated learning, practice, and honing your craft. M3DS Academy understands this trajectory and offers an insightful program - 'Becoming a Successful 3D Artist.'
This program doesn't merely impart lessons; it's an experience. It delves deep into the nuances of 3D artistry, ensuring that you master the craft's integral aspects. From the basics of modeling to the intricate details of animation, from the art of sculpting to the science of texturing – this course covers it all.
Game Development Courses: Your Path to Crafting Legendary Games
While 3D artistry is an essential aspect of game creation, the gaming world has many more facets. Game development courses at M3DS Academy bridge the gap between a novice and a professional. These courses are meticulously crafted, keeping in mind the industry's dynamic nature and demands.
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Dive deep into the game mechanics, understand the physics behind each movement, learn the nuances of character development, and get hands-on experience in creating compelling game narratives. With M3DS Academy's game development courses, you don't just learn; you evolve into a full-fledged game developer.
A Learning Experience like No Other
What sets M3DS Academy apart? It's their comprehensive 3-6 month program. Many might argue that true proficiency can't be achieved in such a short span. But M3DS Academy begs to differ. The courses are designed for those who are passionate, dedicated, and ready to dive headfirst into the world of 3D and Courses for 3D and games
Moreover, the program is self-paced. This means you have the freedom to learn at your rhythm, ensuring that you grasp every concept in-depth before moving on. By the end of your journey, not only will you possess the essential skills of the 3D and Game industries, but you'll also be a certified 3D artist. A certification that's a testament to your expertise and a beacon for potential employers.
Conclusion: The Future of 3D Artistry and Game Development Starts Here
In conclusion, M3DS Academy is not just another educational platform; it's a transformative learning adventure. An adventure that promises to equip you with industry-standard tools, techniques, and more importantly, the confidence to set the stage for your artistic success.
So, if you've been contemplating a career in the 3D or gaming industry, the time to act is now. Enroll in the M3DS Academy and embark on a creative journey that's bound to make you stand out. Remember, every legend in the game development arena or every successful 3D artist started with a single step. Your step begins at M3DS Academy.
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Most Expensive Camera in the World
Anyone and everyone can appreciate the great beauty we are constantly surrounded by, whether they are a professional photographer or not. Due of how fascinating various aspects of the world are, everyone feels the impulse to photograph amazing landscapes and wonderful moments. The first time this dream was actually realised was in 1816. Even though modern technology has advanced over the years, the industry of cameras still owes the development of this wonderful instrument to the many rare and one-of-a-kind objects.
Every antique collector's greatest fantasy, but it certainly has a cost. Check out the best and most expensive camera in the world :
Leica 0 – Series No.122 Hasselblad H6D – 100C Leica M3D – 2 Susse Frères Daguerreotype Camera
Panoscan MK – 3 Panoramic Mamiya Leaf Credo 645DFDigital Back Camera
Phase One XF IQ4  Apollo 15 Hasselblad 500 Series Moon Camera Jonathan Ive & Marc Newson Leica M Prototype Camera LargeSense LS911
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webanditnews · 2 years
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Weisman Worldwide and Magnetic3D join efforts to accelerate Holographic 3D-Visualization deployments with New “Glasses-Free 3D” Technology
Weisman Worldwide and Magnetic3D join efforts to accelerate Holographic 3D-Visualization deployments with New “Glasses-Free 3D” Technology
3D without glasses now offered by Weisman Worldwide for Aerospace, Defense, and Enterprise Displays Weisman Worldwide Entertainment selects Magnetic 3D to expand and accelerate the adoption of holographic devices utilizing M3D’s Enterprise Platform for Glasses-free 3D Extended & Augmented Reality (XR/AR) Applications The companies are working together to offer and deploy unique 3D visualization…
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Desktop 3D Printer Market Industry Size, Analysis, Trends and Regional Forecast by 2027
The report provides an in-depth analysis of the competitive landscape, along with company profiling of key players involved in the global Desktop 3D Printer market . The authors of the report make sure to equip readers with a thorough evaluation of the vendor landscape and inform them of the current and future changes that can be expected. The competitive analysis offered in the report inspects the market share, gross margin, product portfolio, consumption, market status, and technologies of leading players controlling a significant portion of the global Desktop 3D Printer market.
The market is revolutionizing the industry, with automation becoming a norm in manufacturing sectors. It will witness increased investment by manufacturing companies as it reduces cost by limiting the need for man force and can produce goods locally. However, deployment of large-scale 3D printing is quite high, and the lack of governing bodies for the regulation of the market will curb the growth of the desktop 3D printer market.
To know more about the report @ https://www.emergenresearch.com/industry-report/desktop-3d-printer-market
The report also discusses the key players involved in the market such as:
Ltd., 3D Systems, Tinkerine Stidios Ltd., XYZprinting Inc., M3D, Tiertime Corporation, Shining 3D, Markforged, Zortrax, and Ultimaker, among others.
Key insights presented in the report:
Market revenue shares by major business players, by type, by application, and market scope of global Desktop 3D Printer market
Sales revenue by key players and new entrants
Competitive analysis of the key players including aspects such as company overview, product or services specification, vendors, and buyers.
Recent mergers, acquisitions, product launches, recent investments, and joint ventures
Regional analysis to provide insight to recent trends and opportunities
Get Free Sample PDF Brochure @ https://www.emergenresearch.com/request-sample/326
Desktop 3D Printer Market segmentation
Emergen Research has segmented the global desktop 3D printer market on the basis of material, technology, industry vertical, and region:
Material Outlook (Revenue, USD Billion; 2017-2027)Metals Plastics Composites Others
Technology Outlook (Revenue, USD Billion; 2017-2027)Fused Deposition Modeling (FDM) Direct Metal Laser Sintering (DMLS) Inkjet Printing Laser Metal Deposition (LMD) Laminated Object Manufacturing (LOM) Stereolithography (SLA) Selective Laser Sintering (SLS) PolyJet/MultiJet Printing (MJP) Electron Beam Melting (EBM) Direct Light Projection (DLP) Others
Regional Outlook: (Revenue, USD Billion; 2018-2028)
North America (U.S.) (Canada) (Mexico)
Europe (Germany) (UK) (France) (BENELUX) (Rest of Europe)
Asia Pacific (China) (Japan) (South Korea) (Rest of APAC)
Latin America (Brazil) (Rest of LATAM)
Click here to Get customization: https://www.emergenresearch.com/request-for-customization/326
Table of Contents:
Chapter 1 includes an introduction of the global Desktop 3D Printer Market, along with a comprehensive market overview, market scope, product offerings, and an investigation of the market drivers, growth opportunities, risks, restraints, and other vital factors.
Chapter 2 offers an in-depth analysis of the key manufacturers engaged in this business vertical, along with their sales and revenue estimations.
Chapter 3 elaborates on the highly competitive terrain of the market, highlighting the key manufacturers and vendors.
In Chapter 4, our team has fragmented the Desktop 3D Printer market on the basis of regions, underscoring the sales, revenue, and market share of each region over the forecast timeline.
Chapters 5 and 6 have laid emphasis on the Desktop 3D Printer market segmentation based on product type and application
Thank you for reading our report. Please get in touch with us if you have any query regarding the report or its customization. Our team will ensure the report is best suited to your needs.
Look Over transcripts provided by Emergen Research
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3D Printing Metal Market @ https://www.emergenresearch.com/industry-report/3d-printing-metal-market
Family Indoor Entertainment Market @ https://www.emergenresearch.com/industry-report/family-indoor-entertainment-market
Operating Room Integration Systems Market @ https://www.emergenresearch.com/industry-report/operating-room-integration-systems-market
Food Safety Testing System MarketSmart Wi-Fi Power Strip Market  @ https://www.emergenresearch.com/industry-report/smart-wifi-power-strip-market
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thomasmarleyblog · 3 years
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3D Printing Devices Market With Emerging Trends And Revenue Estimation By 2027
Data Lab Forecast, one of the world’s prominent market research firms has released a new report on 3D Printing Devices Market. The report is full of crucial insights on the market which will help the clients in making correct business decisions. This research will help both existing and new aspirants for 3D Printing Devices Market to figure out and study market requirements, market size, market share, growth and competition. This market report offers an overall scope of the market which includes future supply and demand scenarios, changing market trends, high growth opportunities, and in-depth analysis of the future prospects of the market. The recently published 3D Printing Devices market report helps readers in understanding the factors that will impel the industry growth in the forthcoming years, as well as the challenges and threats that are likely to obstruct the progression. The study maps out the various regions where business has thrived while highlighting the potential areas for expansion. 3D Printing Devices data documented in the study includes market share, market size, application spectrum, market trends, supply chain, and revenue graph. For More Information, Get a Sample PDF @ https://www.datalabforecast.com/request-sample/20498-3d-printing-devices-market 3D Printing Devices Market with 100+ market data Tables, Pie Chat, Graphs & Figures spread through Pages and easy to understand detailed analysis. The information is gathered based on modern floats and requests identified with the administrations and items. Competitive Landscape: Leading players operating in the global 3D Printing Devices Market include Key Manufacturers Analysis:   3D Systems Corporation, Arcam AB, The ExOne Company, Stratasys Ltd, EOS GmbH Electro Optical Systems, EnvisionTEC, Materialise NV, XYZprinting, SLM SolutionsGroup AG, M3D. Detailed Segmentation: Global 3D Printing Devices Market, By Product Type: ⇛ VatPhoto Polymerization, Material Extrusion, Material Jetting, Powder Bed Fusion, Direct Energy Deposition, Other. Global 3D Printing Devices Market, By End User: ⇛ Construction, Automotive, Consumer Electronics, Aerospace and Defence, Electronics, Medical, Other. Data Lab Forecast, understand the economic impact on 3D Printing Devices markets. Using our holistic market research methodology, we are focused on aiding your business sustain and grow during COVID-19 pandemics. With deep expertise across various industries-no matter how large or small- and with a team of highly experienced and dedicated analysts, we will offer you an impact analysis of coronavirus outbreak across industries to help you prepare for the future.
We are currently offering Quarter-end Discount to all our high potential clients and would really like you to avail the benefits and leverage your analysis based on our report.
Avail 30-50% Discount on various license type on immediate purchase (Use Corporate email ID to Get Higher Priority) @ https://www.datalabforecast.com/request-discount/20498-3d-printing-devices-market
3D Printing Devices Market
10 Key Benefits of 3D Printing Devices Market Research Report: • It helps businesses strengthen their position. • It minimises any investment risk. • It identifies potential threats and opportunities. • It helps to discover yours and your competitor’s strengths and weaknesses. • It facilitates strategic planning. • It helps in spotting emerging trends. • It assists businesses to stay ahead of the competition. • It provides revenue projections. • It focuses on customer needs and demands. • It helps to evaluate the success of a business against benchmarks. Top-down and bottom-up approaches were used to validate the size of the global 3D Printing Devices market and estimate the size of various other dependent submarkets. Major players in the market were identified through secondary sources secondary sources, directories and databases. Secondary research included the study of the annual and financial reports of top market players, whereas primary research included extensive interviews with the key opinion leaders such as CEOs, directors, and marketing executives. The percentage splits, shares, and breakdowns of the product markets were determined using secondary sources and verified through primary sources. Do You Have Any Query Or Specific Requirement? Drop Your Query Here @ https://www.datalabforecast.com/request-enquiry/20498-3d-printing-devices-market Business Opportunities in Following Regions and Countries: Like any other research material, the report has covered key geographical regions such as Europe, Japan, United States, India, Southeast Asia and Europe. Researchers have given their opinion or insights of 3D Printing Devices value, product sales, and industry share besides availability opportunities to expand in those regions. As far as the sub-regions, North America, Canada, Medico, Australia, Asia-Pacific, India, South Korea, China, Singapore, Indonesia, Japan, Rest of Asia-Pacific, Germany, United Kingdom, France, Spain, Italy, Rest of Europe, Russia, Central & South America, Middle East & Africa are included. Major Points Covered in TOC: Overview:  Along with a broad overview of the global 3D Printing Devices market, this section gives an overview of the report to give an idea about the nature and contents of the research study. Analysis on Strategies of Leading Players:  Market players can use this analysis to gain competitive advantage over their competitors in the 3D Printing Devices market. Study on Key Market Trends:  This section of the report offers deeper analysis of latest and future trends of the 3D Printing Devices market. Market Forecasts:  Buyers of the report will have access to accurate and validated estimates of the total market size in terms of value and volume. The report also provides consumption, production, sales, and other forecasts for the 3D Printing Devices market. Regional Growth Analysis:  All major regions and countries have been covered in the report. The regional analysis will help market players to tap into unexplored regional markets, prepare specific strategies for target regions, and compare the growth of all regional 3D Printing Devices markets. Buy Now This Premium Report to Grow your Business@ https://www.datalabforecast.com/buy-now/?id=20498-3d-printing-devices-market&license_type=su Years Considered to Estimate the 3D Printing Devices Market Size: History Year: 2015-2019 Base Year: 2020 Estimated Year: 2021 Forecast Year: 2021-2028 Why Choose Data Lab Forecast? • Deliver updated information on the current industry trends • Available 24/7 to facilitate clients with unbiased solutions • Embrace digital technologies to offer accurate business ideas • Exhaustive supply chain augmentation analysis • Provide reports strictly according to the requirements of the clients Thank you for reading our report. To know more about customization options, please get in touch with us. Our team will ensure the report is tailored to suit your requirements. About Us Transforming Information into Insights We pride ourselves in being a niche market intelligence and strategic consulting and reporting firm driven towards resulting in a powerful impact on businesses across the globe. Our accuracy estimation and forecasting models have earned recognition across majority of the business forum. We source online reports from some of the best publishers and keep updating our collection to offer you direct online access to the world’s most comprehensive and recent database with skilled perceptions on global industries, products, establishments and trends. We at ‘Data Lab Forecast’, wish to assist our clients to strategize and formulate business policies, and achieve formidable growth in their respective market domain. Data Lab Forecast is a one-stop solution provider right from data collection, outsourcing of data, to investment advice, business modelling, and strategic planning. The company reinforces client’s insight on factors such as strategies, future estimations, growth or fall forecasting, opportunity analysis, and consumer surveys, among others. Contact: Henry K Data Lab Forecast Felton Office Plaza 6375 Highway 8 Felton, California 95018, United States Phone: +1 917-725-5253 Email: [email protected] Website: https://www.datalabforecast.com/ Follow Us on: LinkedIN | Twitter | Data Lab Forecast, 3D Printing Devices, 3D Printing Devices Market, 3D Printing Devices Market Size, 3D Printing Devices Market Trends, 3D Printing Devices Market Forecast, 3D Printing Devices Market CAGR, 3D Printing Devices Market, Google News, 3D Systems Corporation, Arcam AB, The ExOne Company, Stratasys Ltd, EOS GmbH Electro Optical Systems, Market Strategies, DLF
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ericpaulgoldie · 7 years
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instagram
Timelapse of a Pawn piece for a Modernist Chess Set being 3D Printed with the M3D Micro. Watch the full 3d Printed Chess Set Video in HD on YouTube: Print your own Chess Set: https://www.thingiverse.com/thing:671260 Check out more of my 3d Prints: https://www.pinterest.com.au/pcpaulieg/3d-prints/ Buy an M3D 3D Printer: https://printm3d.com/ #3dprinter #3dprinting #3dprinted #3dprint #geek #geeklife #fun #chess #timelapse #gopro #boardgames #technology #instagram #love #instagramvideo #instagood #instavid #fun #australia #nerd @m3dllc @3dprint #perth (at Perth, Western Australia)
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pavkal · 10 months
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26 Most Expensive Cameras in the World
Whether you're a professional or not, everyone can appreciate the breathtaking beauty that surrounds us all the time. Everyone feels compelled to capture these amazing events and terrains since the earth is full with captivating components. The first time this dream was realized was in 1816. Even with the passage of centuries and the emergence of contemporary technology, the industry's cameras still owe their creation to innumerable rare and exceptional items. Every antique collector's dream come true, but there is a cost involved in expensive camera in the world
1. Leica 0 - No. 122 Series The Leica 0 - Series No.122, the most expensive camera ever sold, tops this list with a price that never fails to astound. This antique camera was produced in a small run of 25 in the early 1900s. It's interesting to note that this camera was only recently purchased by a private collector at a Vienna auction.
2. The 100C Hasselblad H6D Hasselblad, one of the best camera manufacturers in the business, has another one on this list. Because of its exceptional qualities, this camera is quite popular among historians who use it for documentation and reproduction of art. Being one of the very few high-end manufacturers that produces multi-shot cameras, the demand for this camera is through the roof.
3. Leica M3D – 2 Another ancient model, the M3D-2 was also a limited edition and was one of the priciest Leica cameras ever made. The Leica M3D, or "D" for Douglas Duncan, was made specifically for the combat photographer. It was auctioned off alongside another member of the same product line. DDD used this camera primarily to take pictures of his friend Pablo Picasso and the fighting in Vietnam and Korea. Recently, the company unveiled an updated, limited-edition version of this camera specifically designed for photographers.
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blogwiseguy123world · 4 years
Text
Global 3D Printing Devices Market Industry Analysis, Size, Share and Growth Trends 2020-2026
Summary – A new market study, titled "Global 3D Printing Devices Market Insights and Forecast to 2026" has been featured on WiseGuyReports.
3D Printing Devices market is segmented by Type, and by Application. Players, stakeholders, and other participants in the global 3D Printing Devices market will be able to gain the upper hand as they use the report as a powerful resource. The segmental analysis focuses on production capacity, revenue and forecast by Type and by Application for the period 2015-2026.
Also read – https://www.benzinga.com/pressreleases/20/07/ab16579044/3d-printing-devices-market-analysis-report-by-product-by-technology-by-application-by-end-use-and
Segment by Type, the 3D Printing Devices market is segmented into
VatPhoto Polymerization
Material Extrusion
Material Jetting
Powder Bed Fusion
Direct Energy Deposition
Other
Segment by Application, the 3D Printing Devices market is segmented into
Construction
Automotive
Consumer Electronics
Aerospace and Defence
Electronics
Medical
Other
Regional and Country-level Analysis
The 3D Printing Devices market is analysed and market size information is provided by regions (countries).
The key regions covered in the 3D Printing Devices market report are North America, Europe, China and Japan. It also covers key regions (countries), viz, the U.S., Canada, Germany, France, U.K., Italy, Russia, China, Japan, South Korea, India, Australia, Taiwan, Indonesia, Thailand, Malaysia, Philippines, Vietnam, Mexico, Brazil, Turkey, Saudi Arabia, U.A.E, etc.
The report includes country-wise and region-wise market size for the period 2015-2026. It also includes market size and forecast by Type, and by Application segment in terms of production capacity, price and revenue for the period 2015-2026.
Competitive Landscape and 3D Printing Devices Market Share Analysis
3D Printing Devices market competitive landscape provides details and data information by manufacturers. The report offers comprehensive analysis and accurate statistics on production capacity, price, revenue of 3D Printing Devices by the player for the period 2015-2020. It also offers detailed analysis supported by reliable statistics on production, revenue (global and regional level) by players for the period 2015-2020. Details included are company description, major business, company total revenue, and the production capacity, price, revenue generated in 3D Printing Devices business, the date to enter into the 3D Printing Devices market, 3D Printing Devices product introduction, recent developments, etc.
The major vendors covered:
3D Systems Corporation
Arcam AB
The ExOne Company
Stratasys Ltd
EOS GmbH Electro Optical Systems
EnvisionTEC
Materialise NV
XYZprinting
SLM SolutionsGroup AG
M3D
For more details - https://www.wiseguyreports.com/reports/5549689-global-3d-printing-devices-market-insights-and-forecast-to-2026
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Wise Guy Reports is part of the Wise Guy Research Consultants Pvt. Ltd. and offers premium progressive statistical surveying, market research reports, analysis & forecast data for industries and governments around the globe.              
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Who are the Most Prominent 3D Printing Market Leaders?
The global 3D printing market is projected to reach approximately $29 billion, growing at a CAGR of over 18% during 2019-2025. This growth trajectory will create lucrative opportunities for the 3D printing market leaders operating in the market.
Did You Know?
In 2018, VC funding exceeded $300 million in start-ups related to 3D printing. The US, UK, Germany, France and China are the top 5 countries with the highest 3D printing adoption and investment rates.
Read:3D Printing Market – Global Outlook and Forecast 2020-2025
3D printing solutions are most commonly used for prototyping followed by repair, research and development and production parts. The use of 3D painting technology solutions across industry-wide businesses continue to pursue emerging technology use cases. Competition is increasingly enhanced by consolidating companies with complementary products and technologies, as well as the possibility that competitors in one vertical segment may enter other vertical segments that they serve. Furthermore, emerging markets such as China, India, the UAE, Brazil, and South Africa are attracting huge investments opening up lucrative possibilities for vendors operating in the market.
The prominent 3D printing market leaders are:
3D Systems
3D Systems has facilities in Israel, US, Switzerland, and the Netherlands. Its competitors are suppliers of 3D printer, materials, software & healthcare solutions as well as suppliers of conventional manufacturing solutions for customers as well as channel partners. The company got 1000 patents issued in the last decade which provides it a competitive advantage.
ARC Group
ARC provides one-stop shop solution to its customers by offering a spectrum of highly advanced products, processes, and services, thereby delivering highly engineered precision components at efficient production yields. The company has an established customer base, diverse metallurgy background, and scalable injection molding capabilities which helps in its positioning in the industrial metal 3D printing industry.
EOS GmbH
EOS offers systems and solutions which include modular solutions for 3D printing from polymer materials such as part property management, systems and equipment, materials, software, material management, and technical and consulting services. The company has strong R&D capabilities to develop and introduce innovative products in the industry.
HP
HP competes on the basis of technology, innovation, performance, price, quality, reliability, brand, reputation, distribution, range of products and services, ease of use of our products, account relationships, customer training, service and support, security, availability of application software and internet infrastructure offerings, and our sustainability performance. The company focuses on developing products and sales models that target developing countries.
Materialise
Materialise is among the global 3D printing market leaders. The company offers products that cater to a wide range of industries such as healthcare automotive, aerospace consumer products, and art and design among others. The company is focusing to seek potential M&A or partnership opportunities along payment value chain to enhance technological expertise or market share.
Proto Labs
Proto Labs entered the 3D printing services market in 2014 by acquiring FineLine Prototyping, a US-based additive manufacturing services provider. In 2015, the company, further expanded its 3D printing capabilities and strengthen its foothold in Europe by acquiring Alphaform, a Germany-based 3D printing leading service bureau. The processes offered by the company are stereolithography, selective laser sintering (SLS), direct metal laser sintering (DMLS).
Stratasys
Stratasys competes with a wide variety of producers of systems that create models, prototypes, other 3D objects and end-use parts as well as producers of materials and services for these systems, including both additive and subtractive manufacturing methodologies, such as metal extrusion, computer-controlled machining and manual modelling techniques.
SLM Solutions
SLM Solutions provides products for various industries such as aerospace and defense, tool construction, mechanical engineering, and automotive, and also serves sectors such as medical technology and energy through a wide distribution network. The company focuses on research and development (R&D) to secure and extend the technology leadership it claims in the metal-based 3D printing area.
EnvisionTEC
EnvisionTEC is a leading global provider of professional-grade 3D printing solutions. Headquartered Michigan, US, the company invents, develops, manufactures, and sells 3D printers and proprietary materials worldwide. The company’s intellectual property includes more than 100 pending and granted patents and 70 proprietary materials.
GE Additive
GE Additive is engaged in supplying 3D printers, 3D printing materials, and engineering consulting services in the additive manufacturing domain. The company has been aggressively expanding its core focus on additive manufacturing and has acquired related companies in this field. The company is mainly focused on producing 3D printed parts and components for aerospace industry. In June 2017, the company announced to produce the world’s largest laser-powder additive manufacturing machine named ATLAS.
XYZprinting
XYZprinting is the world’s largest 3D printer manufacturer, covering more than a fifth of the global market. The company has offices across Europe, the US, Japan, Thailand, China, South Korea and Taiwan, with more on the way. The company has an employee strength of around 8500 which gives it a benefit over other small companies with a smaller employee base.
Desktop Metal
Desktop Metal provides solutions for every stage of the manufacturing process from prototyping and pilot runs to mass production and aftermarket parts. The company is reinventing the way engineering teams produce metal and composite parts across a wide range of applications and industries. The company has been awarded two seminal Separable Support patents for its metal 3D printing technology.
Other vendors operating in the market include 3D Hubs, Aleph Objects, Carbon, Cookson Precious Metals (Cooksongold), ExOne, Kraftwurx, Autodesk, Voxeljet, New Kinpo Group, Beijing Tiertime Technology, Formlabs, Groupe Gorgé, Ultimaker, Höganäs, Koninklijke DSM, M3D, Makexyz, Markforged, Mcor Industries, Monoprice, Optomec, Ponoko, Renishaw, Nano Dimension, Organovo, Prototype Projects, SGD, Simplify3D, Sculpteo, Shapeways, Denford, Ricoh Company, Trinckle, BigRep, ReaLizer, and Taulman3D.
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infifashion-loopify · 2 years
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Most Expensive Camera
Anyone and everyone can appreciate the great beauty we are constantly surrounded by, whether they are a professional photographer or not. Due of how fascinating various aspects of the world are, everyone feels the impulse to photograph amazing landscapes and wonderful moments. The first time this dream was actually realised was in 1816. Even though modern technology has advanced over the years, the industry of cameras still owes the development of this wonderful instrument to the many rare and one-of-a-kind objects. Every antique collector's greatest fantasy, but it certainly has a cost.Check out the best and most expensive camera in the world:
Leica 0 – Series No.122 Hasselblad H6D – 100C Leica M3D – 2 Susse Frères Daguerreotype Camera  Apollo 15 Hasselblad 500 Series Moon Camera Jonathan Ive & Marc Newson Leica M Prototype Camera LargeSense LS911 Leica Luxus II Panoscan MK – 3 Panoramic Mamiya Leaf Credo 645DF Digital Back Camera Phase One XF IQ4
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Desktop 3D Printer Market Revenue, Demand, Share, Size  Research Report 2028
The Global Desktop 3D Printer Market Research Report published by Emergen Research  has been formulated by analysis of key business details and extensive geographical spread of the Desktop 3D Printer industry. The study offers comprehensive coverage of the qualitative and quantitative analysis of the Desktop 3D Printer market along with crucial statistical data about the Desktop 3D Printer market. The research study provides historical data from 2017 to 2018 and offers accurate forecast estimation until 2027. The report also profiles established and emerging players of the market, covering the business overview, product portfolio, strategic alliances, and business expansion strategies.
To learn more details about the Global Desktop 3D Printer Market report, visit @ https://www.emergenresearch.com/industry-report/desktop-3d-printer-market
Furthermore, the report is attuned with the latest market changes and economic landscape with regard to the currently unfolding COVID-19 pandemic. The crisis has affected the demand and supply pattern, as well as the trends of the industry. It has also brought an economic slowdown that has affected the business of the key manufacturers of the industry. The report estimates the impact of this crisis on the current scenario and future prospects and provides a post-COVID market scenario.
Top Key Players :
Stratasys Ltd., 3D Systems, Tinkerine Stidios Ltd., XYZprinting Inc., M3D, Tiertime Corporation, Shining 3D, Markforged, Zortrax, and Ultimaker, among other
sample copy of the Global Desktop 3D Printer Market report, visit @ https://www.emergenresearch.com/request-sample/326
This report encompasses the current scenario and growth prospects of Global Keyword for the period 2020 – 2025. The study is a meticulously framed, in-depth study, with multiple tables charts and graphs that provide vital information on the state of the industry and is a valuable source of guidance and direction for companies and individuals interested in that specific market.
Radical Highlights of the Desktop 3D Printer Market Report:
Information about profit-making strategies and developmental strategies of major companies and manufacturers
Insightful information for the new entrants willing to enter the market
Details and insights about business expansion strategies, product launches, and other collaborations
The report incorporates advanced analytical tools such as SWOT analysis, Porter’s Five Forces Analysis, feasibility analysis, and investment return analysis
The Global Desktop 3D Printer Market report provides full coverage of the companies’ data, including details about their production and manufacturing capacity, product portfolio, business overview, revenue, gross profit margins, sales network and distribution channel, financial standing, and market position. The report also studies business strategies and strategic alliances undertaken by companies to gain a robust footing in the market. The report sheds light on the mergers and acquisitions, collaborations, joint ventures, brand promotions and product launches, agreements and partnerships, and corporate and government deals. The comprehensive analysis of the competitive landscape offers the readers a deeper understanding about the competitors.
Segmentation :
Emergen Research has segmented the global desktop 3D printer market on the basis of material, technology, industry vertical, and region:
Material Outlook (Revenue, USD Billion; 2017-2027)
Metals
Plastics
Composites
Others
Technology Outlook (Revenue, USD Billion; 2017-2027)
Fused Deposition Modeling (FDM)
Direct Metal Laser Sintering (DMLS)
Inkjet Printing
Laser Metal Deposition (LMD)
Laminated Object Manufacturing (LOM)
Stereolithography (SLA)
Selective Laser Sintering (SLS)
PolyJet/MultiJet Printing (MJP)
Electron Beam Melting (EBM)
Direct Light Projection (DLP)
Others
Region wise performance of the Keyword industry
North America Keyword market forecast is expected to remain significantly positive in terms of revenue share between 2020 and 2028. In addition, North America Keyword market revenue share is expected to remain comparatively larger than that of other regional markets from 2020 to 2028.
Asia Pacific registered fastest revenue CAGR in 2020, and the Keyword market forecast is that this trend is expected to continue going ahead. Market forecast states that revenue share contribution from China, India, and South Korea is expected to remain robust till 2028.
Europe Keyword market forecast is positive currently, with revenue growth expected to remain steady between 2020 and 2028. Robust focus on research and development initiatives by major firms and changing trends and demographics in countries in the region are some factors expected to continue to support Keyword market growth.
About Us: At Emergen Research, we believe in advancing with technology. We are a growing market research         and strategy consulting company with an exhaustive knowledge base of cutting-edge and potentially market-disrupting technologies that are predicted to become more prevalent in the coming decade.
Explore more Emergen Research Reports @
Artificial Intelligence in Military Market @ https://www.emergenresearch.com/industry-report/artificial-intelligence-in-military-market
Edge Artificial Intelligence (AI) Software Market @ https://www.emergenresearch.com/industry-report/edge-artificial-intelligence-software-market
Nanomagnetics Market @ https://www.emergenresearch.com/industry-report/nanomagnetics-market
Non-Metal 3D Printing Market @ https://www.emergenresearch.com/industry-report/non-metal-3d-printing-market
Wireless Brain Sensor Market @ https://www.emergenresearch.com/industry-report/wireless-brain-sensor-market
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kathleenseiber · 5 years
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2D and 3D combo could keep Moore’s Law going
Ultra-compact, yet high-performing electronic chips could overcome the challenges that face conventional integrated circuits and maintain Moore’s Law indefinitely, researchers say.
To create the chips, researchers would take advantage of relatively new and promising two-dimensional (2D) materials and combining them with monolithic 3D (M3D) integration practices.
Moore’s Law says that the number of transistors on a microchip will double roughly every two years. And, thanks to advances in miniaturization and performance, this axiom has held true since 1965, when Intel cofounder Gordon Moore first made that statement based on emerging trends in chip manufacturing at Intel.
However, integrated circuits (IC) are hitting hard physical limits that are rendering Moore’s Law obsolete—elements on a dense integrated circuit can get only so small and so tightly packed together before they begin to interfere with each other and otherwise lose their functionality.
“Apart from fundamental physical limits to the scaling of transistor feature sizes below a few nanometers, there are significant challenges in terms of reducing power dissipation, as well as justifying the incurred cost of IC fabrication,” says Kaustav Banerjee, a professor of electrical and computer engineering at the University of California, Santa Barbara. As a result, the very devices that we rely on for their steadily improving performance and versatility—computers, smartphones, internet-enabled gadgets—would also hit a limit, he says.
While Banerjee first disclosed the idea to combine 2D materials and 3D integration practices in a article back in 2014, more detailed research evaluating this technology from his Nanoelectronics Research Lab now appears in the IEEE Journal of the Electron Devices Society.
“Two-dimensional materials can be stable in their monolayer form with atomic scale thickness—0.5 nanometer or 5 Angstroms for graphene (a conductor) and hexagonal-boron-nitride (an insulator), and ~6.5 Angstroms for 2D transition metal dichalcogenides (semiconductors) such as molybdenum-disulphide (MoS2) or tungsten-disulphide/diselenide (WS2/WSe2),” Banerjee says.
“In addition, due to their layered nature, they offer pristine surfaces relatively free of defects and are excellent conductors of heat in the in-plane direction. All these properties, along with the possibility to directly synthesize these materials on top of prefabricated devices, offer unprecedented advantages over conventional 3D ICs that are already in the market or M3D integration with conventional electronic materials.”
Extending Moore’s Law
According to the Banerjee Group’s study, there’s a limit to how thin conventional semiconductor materials can get before their desirable electronic properties begin to fade.
“Thickness scaling of common semiconductor materials, such as Si, becomes challenging below a few nanometers due to rapid degradation of their mobility caused by the increase in electron scatterings from surface roughness,” Banerjee says. “In fact, below ~1 nm, conventional materials like Si or Ge may not be thermodynamically stable.”
On the other hand, atomically thin and stable 2D materials, such as graphene, hexagonal boron nitride (h-BN), and transitional metal dichalcogenides (MoS2, WS2, WSe2, etc) are highly space-efficient, thickness-wise. Moreover, due to their layered nature and pristine interfaces, the 2D semiconductors exhibit reasonably high mobilities and immunity against surface defects, according to the paper.
In addition, 2D materials tend to be a lot more flexible than their conventional counterparts, which make them ideal for state-of-the-art electronics applications, such as flexible displays. Stacked 2D materials, in contrast to their stacked 3D counterparts, meanwhile, can also minimize the inter-tier signal delays, thermal resistance, and reduce potential overheating.
By selecting certain 2D materials and stacking them, according to the researchers, not only does the monolithic 3D conserve precious space on the chip, but also allows for configuration based on the combined electronic properties of the materials.
“For example, owing to the atomically-thin vertical dimensions of 2D materials, and carefully-designed inter-tier electrostatics with graphene shielding layer that also benefits from enhanced heat dissipation, aggressive scaling of tier thickness down to sub-μm can be achieved,” Banerjee says. “Such scaling allows over 10-folds higher integration density with respect to conventional 3D integration, and over 150% greater integration density with respect to conventional M3D integration, with plenty of room for further improvements.
“Thus, 2D materials can help realize the ultimate density scaling of integrated electronics—both laterally and vertically—which can usher an unprecedented era of innovation and economic growth for the worldwide semiconductor industry,” he adds.
The ‘chip cities’ of the future
As with many innovations with potential to become mainstream technologies, there are challenges to consider to pave the way toward their mass manufacturing. For monolithic 3D devices, the challenges are to be able to fabricate these components at relatively low temperatures (lower than 500 degrees Celsius) to avoid degradations and damages to prefabricated devices located in the lower tiers, electromagnetic interference, and heat dissipation.
Last year, Banerjee’s group demonstrated a CMOS compatible graphene synthesis method that essentially addressed the low-temperature and transfer-free synthesis challenge for graphene. Similar efforts are underway in his laboratory to synthesize other 2D materials directly on wafers at low temperatures.
“Additionally, careful design is needed to electrically shield the generated electromagnetic waves from affecting the operations of devices on adjacent or nearby tiers,” says lead author Junkai Jiang, recent recipient of a doctoral degree in electrical and computer engineering from Banerjee’s laboratory. The researchers note that by using a thin graphene shielding layer between tiers (preferably doped to enhance electromagnetic screening effect), interference can be prevented even as the vertical layers are scaled down.
In terms of heat dissipation, the thinness of the material itself is conducive to allowing the heat from densely packed stacked components to dissipate efficiently. Coauthor Kamyar Parto, a member of Banerjee’s lab, remarked that “the 2D materials have much higher in-plane thermal conductivity compared to thinned-down conventional materials like silicon, which helps fast lateral heat transport, thereby reducing the risks of any hot-spot formation.”
“Ultimately, we envision heterogeneously integrated devices and technologies enabled by 2D materials to realize the world’s tallest and densest ‘chip-cities’ with unprecedented performance, storage capacity, and energy-efficiency,” he adds.
Source: UC Santa Barbara
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