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Additive Manufacturing & Materials Market – Growth, Trends, and Forecast (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 130 pages | Published: 12-06-2019 |
- Electronics
- Mordor Intelligence
- 130 pages
- Published: 12-06-2019
Market Overview
The Global Additive Manufacturing & Materials Market was valued USD 12.79 billion in 2018 and is expected to register a CAGR of 25.7% over the forecast period (2019-2024). With rapid advancements in material compositions, such as, polymers and metals, additive manufacturing technology is evolving from being a prototyping tool to a functional part of fabrication.
The decreased prices of additive manufacturing-based machines, coupled with growing expertize and awareness, have increased the availability and demand for this technology.
The growing demand for lightweight, fast, and fuel-efficient vehicles in countries, such as, Germany, Japan, and China, have fueled the growth of the metal additive manufacturing sector.
The increased investments in the R&D of improved software and technology, coupled with the introduction of new combinations of printing materials, are expected to spur the development of new equipment and applications, thereby bolstering the growth of the additive manufacturing market.
Scope of the Report
Additive manufacturing, also known as 3D printing, is a technology which creates objects, as it offers a plethora of opportunities in production, design, and performance of novel architectural forms, construction systems, and materials.
Key Market Trends
Automotive to Hold a Significant Share
In the automotive industry, additive manufacturing is used to design components like, engines and their various components. It provides the precision and finishing needed for smaller parts for their functioning and spatial requirements.
Innovative and tool-less additive manufacturing techniques have provided a new approach to tackle the challenges faced by the automotive industries. The techniques allow for maximum design freedom, while creating complex, yet lightweight components for the industry.
Furthermore, autonomous and electric vehicles are expected to lead the automotive sector in the future. With this, 3D printed electric car will be ready for mass production as the technology has already made its way into the market.
Considering all the additive manufacturing applications, which are aimed at improving the precision and finishing of the products and the need for increasing efficiency, additive manufacturing is likely to dominate the entire market in the automotive industry during the forecast period.
North America to Hold Major Share
North America is expected to hold a major share as the adoption of 3D printing in the region has been strong, as industry and academic institutions are implementing 3D printing at a steady rate. The adoption of additive manufacturing by firms produces various economic benefits as it lowers production costs, improves production efficiency, and contributes to revenue generation of the North American organizations and businesses. However, the growing demand for additive manufacturing in emerging economies such as India, Japan and China is reflecting higher growth, due to which Asia-Pacific is expected to exhibit higher growth over the forecast period.
Competitive Landscape
The additive manufacturing and materiasl market is highly competitive and consists of several major players. In terms of market share, few of the major players currently dominate the market. These major players with prominent share in the market are focusing on expanding their customer base across foreign countries. These companies are leveraging on strategic collaborative initiatives to increase their market share and increase their profitability. For instance, in Feb 2018, 3D Systems launched the FabPro 1000, a new low cost, high productivity DLP-based 3D printer designed for dental and jewelry production as well as high functionality and throughput, industrial prototyping. Further, in May 2018, ExOne launched Innovent+ metal Additive Manufacturing machine. The new machine is based on the company’s previous Innovent range and offers increased powder handling capabilities and the company’s new Ultrasonic recoater, designed to enable greater material flexibility and ease of use.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Scope of the Study
2 RESEARCH METHODOLOGY
2.1 Study Deliverables
2.2 Study Assumptions
2.3 Analysis Methodology
2.4 Research Phases
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Industry Attractiveness Porters Five Force Analysis
4.2.1 Threat of New Entrants
4.2.2 Bargaining Power of Buyers/Consumers
4.2.3 Bargaining Power of Suppliers
4.2.4 Threat of Substitute Products
4.2.5 Intensity of Competitive Rivalry
4.3 Value Chain Analysis
4.4 Industry Policies
4.5 Introduction to Market Drivers and Restraints
4.6 Market Drivers
4.6.1 New And Improved Technologies To Drive Product Customization
4.6.2 Demand For Lightweight Construction In Automotive And Aerospace Industries
4.7 Market Restraints
4.7.1 Concerns Over Intellectual Property Protection
5 MARKET SEGMENTATION
5.1 By Technology
5.1.1 Stereo Lithography
5.1.2 Fused Deposition Modelling
5.1.3 Laser Sintering
5.1.4 Binder Jetting Printing
5.1.5 Other Technologies
5.2 By End User
5.2.1 Aerospace and Defense
5.2.2 Automotive
5.2.3 Healthcare
5.2.4 Industrial
5.2.5 Other End Users
5.3 By Material
5.3.1 Plastic
5.3.2 Metals
5.3.3 Ceramics
5.4 Geography
5.4.1 North America
5.4.1.1 US
5.4.1.2 Canada
5.4.2 Europe
5.4.2.1 UK
5.4.2.2 Germany
5.4.2.3 France
5.4.2.4 Italy
5.4.2.5 Rest of Europe
5.4.3 Asia-Pacific
5.4.3.1 China
5.4.3.2 Japan
5.4.3.3 India
5.4.3.4 Rest of Asia-Pacific
5.4.4 Latin America
5.4.4.1 Brazil
5.4.4.2 Mexico
5.4.4.3 Argentina
5.4.4.4 Rest of Latin America
5.4.5 Middle East and Africa
5.4.5.1 UAE
5.4.5.2 Saudi Arabia
5.4.5.3 Israel
5.4.5.4 South Africa
5.4.5.5 Rest of Middle East and Africa
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 3D Systems Corporation
6.1.2 Arcam AB
6.1.3 EnvisionTEC GmbH
6.1.4 EOS GmbH
6.1.5 Exone Company
6.1.6 Mcor Technologies Ltd
6.1.7 Materialise NV
6.1.8 Optomec Inc.
6.1.9 Stratasys Ltd
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Technology
Stereo Lithography
Fused Deposition Modelling
Laser Sintering
Binder Jetting Printing
Other Technologies
By End User
Aerospace and Defense
Automotive
Healthcare
Industrial
Other End Users
By Material
Plastic
Metals
Ceramics
Geography
North America
US
Canada
Europe
UK
Germany
France
Italy
Rest of Europe
Asia-Pacific
China
Japan
India
Rest of Asia-Pacific
Latin America
Brazil
Mexico
Argentina
Rest of Latin America
Middle East and Africa
UAE
Saudi Arabia
Israel
South Africa
Rest of Middle East and Africa
5G chipset market – Growth, Trends, and Forecast (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 100 pages | Published: 17-06-2019 |
- Electronics
- Mordor Intelligence
- 100 pages
- Published: 17-06-2019
Market Overview
The global 5G chipset market was evaluated from 2019, as the technology has not yet been commercialized in 2018. The market is expected to grow at a CAGR of 75.11% over the forecast period (2019-2024).
With 5G networks soon to be rolled out, smartphone OEMs telecom players are rapidly gearing towards the shift. Telecom service providers across the globe are upgrading to 5G networks, which rely on denser arrays of small antennas to offer ultra-high data speeds.
There has been a surge in high-quality video and audio content as well. Among the digital devices, mobile devices have taken over as the preferred medium of consuming online media, including live video streaming, file sharing, audio streaming, and running business applications, among others. However, current LTE technologies do not entirely support all these applications. This has been a significant factor driving the adoption of 5G, for high internet speeds and coverage, as well as reduced latency.
5G is expected to add several layers of complexity to the spectrum, due to the all-inclusive nature of services that it supports, from extreme broadband services to massive machine-type communications (mMTC) and ultra-reliable MTC. Every application demands its own position in the spectrum depending on its requirements.
Over the forecast period, as more countries acquire the required infrastructure to support 5G, and with an increasing demand for faster data transfers and reliance on cloud technology, the demand for 5G chipsets is expected to surge, creating an immense market potential for 5G chipset market.
Scope of the Report
5G chipsets enable 5G packet transmission on smartphones, portable hotspots, IoT devices, and increasingly, notebook PCs with mobile network capabilities. 5G mobile devices will combine familiar sub-6GHz bands with new MIMO antenna systems, as well as high-frequency millimeter-wave.(mmWave) bands with highly-focused beam-steering.
Key Market Trends
Industrial Automation to Account for Significant Share
The manufacturing companies across the world are under immense pressure due to shorter product and business lifecycles and intense volatility in the business. The profit margins are getting squeezed as the workforce is aging, and components increasingly become more varied and complicated to manufacture.
Internet of Things (IoT), coupled with the 5G network, is expected to enhance the aforementioned business issues associated with industrial automation. The enhanced network provides manufacturers to build smart factories and leverage emerging technologies, such as artificial intelligence (AI), machine learning, augmented reality, and automation.
In the future, the smart factories are expected to comprise several sensors to monitor various aspects of the working environment. The 5G network is likely to offer low-latency, wireless flexibility, and high capacity performance to the smart factories enabling them to overcome challenges in the production environment. As a result, it creates immense opportunities for chipset manufacturers to invest mainly in devices used in industrial automation.
In industrial automation, 5G acts as an enabler to new operating models. Notably, the wireless industry needs to engage with future customers and potential users.
North America to Account for Largest Share
North America is expected to account for the significant market share of the 5G chipset market, and dominance is mainly due to the high rate of adoption of advanced technologies in the market studied.
The region is also home to Qualcomm, a dominant player in smartphone communications chips, making half of all core baseband radio chips in smartphones. It is one of the big U.S. technology companies, with a major role in the global 5G chipset market.
Therefore, in 2018, U.S. President blocked microchip maker Broadcom’s USD 117 billion takeovers of rival Qualcomm amid concerns that it would give China the upper hand in the 5G chipset market. According to Ericsson, North America is anticipated to lead the 5G mobile technology, with all the major operators stating their intentions to deploy the 5G early.
Competitive Landscape
All the companies involved in the production of 5G chipsets in the current market scenario are highly competitive and mostly market incumbents. All of them have equally high R&D capabilities, and all of them have equally effective competitive strategies. Such competition, even before commercialization of the product, indicates a high probability of an increase in the competitive rivalry over the forecast period. Due to this, the market is highly fragmented.
Some of the key players in the 5G chipset market are Qualcomm, Intel, Samsung. Some of the recent developments in 5G chipset market are as follows:
Qualcomm announced that its upcoming flagship mobile platform will feature a system-on-chip (SoC) built on the 7nm process node. The 7nm SoC can be paired with the Qualcomm Snapdragon X50 5G modem, which is anticipated to be the first 5G-capable mobile platform for smartphones and other mobile devices.
MediaTek and China Mobile signed the 5G Device Forerunner Initiative memorandum at the 2018 MWC SH Global End Device Summit organized by China Mobile to jointly develop 5G terminal devices and enhance the maturity of 5G chipsets and terminals. This initiative was kick-started by China Mobile to promote the maturity and expansion of the industry for 5G terminal devices.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers and Restraints
4.3 Market Drivers
4.3.1 Increasing Demand for High-speed Internet and Broad Network Coverage With Reduced Latency and Power Consumption
4.3.2 Growing Machine-to-Machine/IoT Connections
4.3.3 Growing Demand For High-speed Wireless Broadband
4.4 Market Restraints
4.4.1 High Hardware Cost Involved in the Terrestrial Network Densification
4.4.2 Fragmented Spectrum Allocation
4.5 Value Chain Analysis
4.6 Industry Attractiveness Porters Five Force Analysis
4.6.1 Threat of New Entrants
4.6.2 Bargaining Power of Buyers/Consumers
4.6.3 Bargaining Power of Suppliers
4.6.4 Threat of Substitute Products
4.6.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 By Chipset Type
5.1.1 Application-specific Integrated Circuits (ASIC)
5.1.2 Radio Frequency Integrated Circuit (RFIC)
5.1.3 Millimeter Wave Technology Chips
5.1.4 Field-programmable Gate Array (FPGA)
5.2 By Operational Frequency
5.2.1 Sub-6 GHz
5.2.2 Between 26 and 39 GHz
5.2.3 Above 39 GHz
5.3 By End-user Industry
5.3.1 Consumer Electronics
5.3.2 Industrial Automation
5.3.3 Automotive and Transportation
5.3.4 Energy and Utilities
5.3.5 Healthcare
5.3.6 Retail
5.3.7 Other End-user Industries
5.4 Geography
5.4.1 North America
5.4.2 Europe
5.4.3 Asia Pacific
5.4.4 Latin America
5.4.5 Middle East and Africa
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Qualcomm Technologies Inc.
6.1.2 MediaTek Inc.
6.1.3 Intel Corporation
6.1.4 Samsung Electronics Co. Ltd
6.1.5 Xilinx Inc.
6.1.6 Nokia Corporation
6.1.7 Broadcom Inc.
6.1.8 Infineon Technologies AG
6.1.9 Huawei Technologies Co. Ltd
6.1.10 Integrated Device Technology Inc.
6.1.11 Anokiwave Inc.
6.1.12 Qorvo Inc.
6.1.13 MACOM Technology Solutions Holdings Inc.
6.1.14 Cavium Inc.
6.1.15 Advanced Micro Devices, Inc.
6.1.16 Texas Instruments, Inc.
6.1.17 NXP Semiconductors NV
6.1.18 Analog Devices, Inc.
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Chipset Type
Application-specific Integrated Circuits (ASIC)
Radio Frequency Integrated Circuit (RFIC)
Millimeter Wave Technology Chips
Field-programmable Gate Array (FPGA)
By Operational Frequency
Sub-6 GHz
Between 26 and 39 GHz
Above 39 GHz
By End-user Industry
Consumer Electronics
Industrial Automation
Automotive and Transportation
Energy and Utilities
Healthcare
Retail
Other End-user Industries
Geography
North America
Europe
Asia Pacific
Latin America
Middle East and Africa
3D Bioprinting Market – Growth, Trends and Forecasts (2019 – 2024)
| Electronics | Published by: Mordor Intelligence | Market: |
| 110 pages | Published: 11-06-2019 |
- Electronics
- Mordor Intelligence
- 110 pages
- Published: 11-06-2019
Market Overview
The Global 3D Bioprinting Market was valued at USD 385.56 million in 2018 and is expected to register a CAGR of 25.36% during the forecast period (2019-2024). The global 3D bioprinting market is expected to grow, owing to its revolutionary breakthrough in healthcare and pharmaceutical industries. The increasing technological advancements, government intervention for improving healthcare, and increasing investments in R&D are also significant factors driving the studied market growth.
The primarily growing bioprinting applications include 3D bioprinted tissue and hair follicles, as they are very beneficial to cosmetics companies, especially in Europe, where animal testing for cosmetics was banned in 2013. For a cosmetic company, the advantage will be the ability to economically and ethically test products (i.e., not on animals) across varying skin types, for more accurate results.
Growing government support is also attracting many investors to invest in R&D programs, which is expected to develop space for the studied market. In 2018, Mapp Biopharmaceutical Inc. announced that it had been awarded a contract of USD14.8 million, with options for an additional USD 32.0 million, by the Biomedical Advanced Research and Development Authority (BARDA).
Further, a significant increase in the number of older adults is projected in the coming decades, which is expected to drive the need for 3D bioprinting reflecting the growth of the market.
Scope of the Report
3D bioprinting is an emerging field represented by various biologically applied deposition and assembling systems, which include direct writing, photolithography, microstamping, extrusion, laser writing, stereolithography, electro-printing, microfluidics, and inkjet deposition.
Key Market Trends
Drug Testing to Hold Major Share
3D bioprinters are of the highest importance for drug testing and clinical trials applications expected to drastically reduce the need for animal trials (therefore not only being ethically beneficial but also being cost-effective).
Traditionally, clinical trials for new drug development involved testing on animals with artificially induced affected tissues. With the advent of 3D bioprinting, drug developers will be able to address the complications associated with human clinical trials of new drugs, by identifying them in a short period (since these can be tested with human-like 3D printed tissues).
Thus, they are expected to reduce the losses incurred during late-stage failures. The regulatory agency of the United States Food and Drug Administration has already started to consider integrating alternatives for drug safety and efficacy assessment, providing scope for the market. Companies like Organovo (US based) were instrumental in the development of 3D bioprinter able to develop liver and kidney tissue for drug discovery applications.
Cosmetic companies are also potential buyers of the bioprinter technology. In 2013, the European Union prohibited the use of cosmetics developed by animal testing. Prohibition of retailing products tested abroad on animals was also levied. Such regulations have accelerated the use of alternatives like bioprinting.
Asia-Pacific Anticipated to Witness Fastest Growth
Asia-Pacific is the fastest growing market for 3D bioprinting, mainly due to a strong existing consumer base that will drive demand for 3D bioprinting, huge scope of 3D printing in medical services, increasing R&D for 3D printing, and government support and tax incentives. The growing number of cancer cases and the increasing the number of cancer treatments in the region are also expected to fuel the adoption of 3D bioprinting technology. According to the World Cancer Research Fund, the cancer rate is the highest in Australia and New Zealand in the world.
Competitive Landscape
The 3D bioprinting market is highly competitive and consists of several major players. In terms of market share, few of the major players currently dominate the market. These major players with a prominent share in the market are focusing on expanding their customer base across foreign countries. These companies are leveraging on strategic collaborative initiatives to increase their market share and increase their profitability. In Feb 2018, 3D Systems introduced NextDent 5100, a Figure 4-based 3D bioprinter designed for dental labs. NextDent 5100 facilitates high-speed 3D bioprinting for production of dental appliances and sacrificial castings. Further in Dec 2018, Aspect Biosystems has made a collaboration with the Institute for Technology-Inspired Regenerative Medicine (MERLN) at Maastricht University in the Netherlands. This collaboration includes the placement of an RX1 Bioprinting Platform in Professor Lorenzo Moroni’s Lab, where it will be used to develop kidney tissue by a head of bioprinting research, Dr. Carlos Mota. Under the terms of the collaborative research agreement, Aspect has an option to further develop and commercialize products based on the results of the research.
Reasons to Purchase this report:
– The market estimate (ME) sheet in Excel format
– Report customization as per the client’s requirements
– 3 months of analyst support
1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
2.1 Analysis Methodology
2.2 Research Phases
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers and Restraints
4.3 Market Drivers
4.3.1 Increasing Geriatric Population
4.3.2 Increasing Organ Transplant Requirements
4.3.3 Increasing Investments In R&D
4.4 Market Restraints
4.4.1 Operational Challenges
4.5 Industry Attractiveness Porter’s Five Force Analysis
4.5.1 Threat of New Entrants
4.5.2 Bargaining Power of Buyers/Consumers
4.5.3 Bargaining Power of Suppliers
4.5.4 Threat of Substitute Products
4.5.5 Intensity of Competitive Rivalry
4.6 Industry Value Chain Analysis
5 MARKET SEGMENTATION
5.1 By Technology
5.1.1 Syringe/Extrusion Bioprinting
5.1.2 Inkjet Bioprinting
5.1.3 Magnetic Levitation Bioprinting
5.1.4 Laser-assisted Bioprinting
5.1.5 Other Technologies
5.2 By Component
5.2.1 3D Bioprinters
5.2.2 Biomaterials
5.2.3 Scaffolds
5.3 By Application
5.3.1 Drug Testing and Development
5.3.2 Regenerative Medicine
5.3.3 Food testing
5.3.4 Research
5.3.5 Other Applications
5.4 Geography
5.4.1 North America
5.4.1.1 US
5.4.1.2 Canada
5.4.2 Europe
5.4.2.1 Germany
5.4.2.2 UK
5.4.2.3 France
5.4.2.4 Rest of Europe
5.4.3 Asia-Pacific
5.4.3.1 China
5.4.3.2 Japan
5.4.3.3 India
5.4.3.4 Rest of Asia-Pacific
5.4.4 Rest of World
5.4.4.1 Latin America
5.4.4.2 Middle East & Africa
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 3D Systems Corporation
6.1.2 Aspect Biosystems Ltd
6.1.3 GeSIM GmbH
6.1.4 Bio3D Technologies
6.1.5 Allevi Inc.
6.1.6 Cyfuse Biomedical KK
6.1.7 Envision TEC GmbH
6.1.8 Organovo Holdings Inc.
6.1.9 3Dynamic Systems Ltd
6.1.10 RegenHU SA
6.1.11 Stratasys Ltd
6.1.12 REGEMAT 3D
6.1.13 3D Bioprinting Solutions
6.1.14 Arcam AB (GE Company)
7 INVESTMENT ANALYSIS
8 MARKET OPPORTUNITIES AND FUTURE TRENDS
MARKET SEGMENTATION
By Technology
Syringe/Extrusion Bioprinting
Inkjet Bioprinting
Magnetic Levitation Bioprinting
Laser-assisted Bioprinting
Other Technologies
By Component
3D Bioprinters
Biomaterials
Scaffolds
By Application
Drug Testing and Development
Regenerative Medicine
Food testing
Research
Other Applications
Geography
North America
US
Canada
Europe
Germany
UK
France
Rest of Europe
Asia-Pacific
China
Japan
India
Rest of Asia-Pacific
Rest of World
Latin America
Middle East & Africa