
Global 6G Market
Description
MARKET SCOPE:
The global 6G Market is projected to grow significantly, registering a CAGR of 15.6% during the forecast period (2024 – 2032).
In comparison to the 5G network, the anticipated 6G network is expected to deliver a 100x increase in both energy and volumetric spectral efficiency. The intricate interconnectedness of the 6G infrastructure poses significant challenges. Projections indicate a steep annual growth rate of 55% in global mobile data traffic between 2020 and 2030, resulting in an estimated 5,016 exabytes (EBs) of monthly data by 2030. This massive data volume, coupled with substantial processing and learning capabilities, could be leveraged to manage the network at various stages. To address these evolving demands and aspirations for the future, the driving forces behind the leap beyond current mobile communication systems will be a combination of societal needs and technological advancements that address those needs. Taken together, these factors present a compelling argument for exploring the next frontiers in wireless networks. The capabilities of 6G mobile technology extend beyond the intelligence, reliability, scalability, and security of traditional mobile networks. They will facilitate the integration of satellite communication, paving the way for the establishment of a ubiquitous mobile network that aligns with the necessity for a truly global wireless network presence.
MARKET OVERVIEW:
Driver: Increase in demand for low-latency networks is driving the market growth.
As reliance on technology and communication networks continues to grow, consumers are becoming increasingly intolerant of delays and disruptions in data transmission. Telecommunication systems have become indispensable in daily life, and even the briefest delay, as minimal as one millisecond, can have a detrimental impact on tasks, particularly in critical domains such as autonomous vehicles. To remain competitive, service providers are actively striving to minimize any potential for network delays. Recent advancements in internet technology have facilitated the proliferation of interactive applications such as personalized web browsing, online gaming, video conferencing, and financial trading, all of which demand minimal latency. Moreover, the financial and trading sectors highlight a universal requirement for reduced latency, as even slight delays can result in significant financial consequences. This escalating demand for low-latency networking solutions underscores the vital importance of 6G technology in optimizing user experiences and business operations across diverse industries.
Opportunities: The transformative potential of 6G technology on IoT, blockchain, and artificial intelligence is expected to pave the way for market growth in the upcoming years.
Anticipated to significantly influence the expansion of IoT, blockchain, and artificial intelligence, 6G technology is poised for substantial impact. Artificial intelligence entails imbuing machines with human-like intelligence, empowering them to execute designated tasks. Conversely, the Internet of Things (IoT) facilitates the linkage of small devices to larger ones through the Internet. Notably, the integration of artificial intelligence and IoT-based communication devices into 5G communication systems has garnered considerable momentum in recent years. These innovations produce data, subsequently decoded to extract pertinent information.
COVID IMPACT:
The COVID-19 pandemic has impacted the 6G market in various ways. Initially, the outbreak disrupted supply chains and manufacturing processes, causing delays in the development and rollout of 6G technology. Travel restrictions and lockdown measures also impeded collaboration and research efforts, slowing progress in the field. However, the pandemic underscored the critical importance of robust and resilient telecommunications infrastructure. With remote work, online education, telemedicine, and other digital services becoming increasingly prevalent, there has been a heightened demand for faster and more reliable connectivity. This heightened reliance on digital technologies has hastened the development and adoption of 6G as a solution to meet the evolving needs of a digitally connected society.
Moreover, the pandemic has spurred investments in technologies that support remote work, automation, and digital transformation across various industries. As organizations strive to build more resilient and adaptable systems, there is a growing interest in the potential capabilities of 6G, including ultra-low latency and high-speed data transmission, to facilitate innovative applications and services.
SEGMENTATION ANALYSIS:
The smartphone segment is anticipated to grow significantly during the forecast period.
The primary recipient of the advancements brought by 6G technology is anticipated to be the smartphone. With its capability to offer ultra-high-speed and low-latency connectivity, 6G has the potential to facilitate advanced functionalities such as augmented reality, virtual reality, and holographic communication. While these technologies promise to enhance user experiences across various devices, smartphones are poised to undergo a significant evolutionary leap first. This is due to their widespread adoption and continual need for faster and more dependable internet connectivity, positioning them as the foremost beneficiaries of 6G technology.
The multi-sensory extended reality (XR) segment is anticipated to grow significantly during the forecast period.
Multi-sensory extended reality (XR) stands out as a potential frontrunner in 6G applications. With multi-sensory XR, users can delve into virtual, augmented, and mixed realities enriched with enhanced sensory inputs, encompassing haptic feedback, smell, taste, and touch. This innovation holds the promise of transforming numerous sectors, including gaming, entertainment, education, healthcare, and remote collaboration. The prospect of immersing oneself in virtual environments with heightened sensory experiences presents significant market opportunities. Furthermore, network-enabled robotic and autonomous systems are poised to play pivotal roles across various industries such as manufacturing, logistics, healthcare, agriculture, and disaster response. These systems hold the potential to boost efficiency, productivity, and safety by facilitating advanced automation and remote control of robots and autonomous vehicles. Such applications carry substantial real-world implications and benefits for humanity, particularly in labor-intensive industries, healthcare assistance, and hazardous environments.
REGIONAL ANALYSIS:
The Asia Pacific region is set to witness significant growth during the forecast period.
In recent years, the Asia Pacific region has emerged as the fastest-growing market for 6G technology. China, in particular, has made significant strides in establishing itself as a leader in this field, fueled by strong governmental support and the dominance of Chinese companies. This has positioned China ahead of the United States and other nations in the race to develop advanced telecommunications technology. Moreover, Chinese companies have taken the lead in 6G technology development, with telecommunications giants like Huawei, ZTE, and Xiaomi heavily investing in research and development efforts. These companies possess the expertise, resources, and scale to drive large-scale experiments and propel 6G technology forward. For example, in January 2022, Purple Mountain Laboratories, a Chinese government-supported research lab, announced a groundbreaking achievement: achieving wireless transmission speeds of up to 206.25 gigabits per second, marking a significant milestone in 6G development.
COMPETITIVE ANALYSIS
The global 6G is reasonably competitive with mergers, acquisitions, and product launches. See some of the major key players in the market.
Ericsson
Broadcom
Cisco
DeepSig
Fujitsu
Google
InterDigital
Keysight
LG Corporation
MediaTek
National Instrument Corp
NEC Corporation
Nokia
NTT DoCoMo
Orange
Scope of the Report
By Vertical
It provides a technological development map over time to understand the industry’s growth rate and indicates how the 6G is evolving.
The report offers a dynamic method to various factors that drive or restrain the growth of the market and specifies which Farm management software submarket will be the main driver of the overall market from 2024 to 2032.
It renders a definite analysis of changing competitive dynamics and stipulates the leading players and what are their prospects over the forecast period.
It builds a nine-year estimate based on how the market is predicted to grow and shows what will market shares of the global region change by 2032 and which country will lead the market in 2032.
The global 6G Market is projected to grow significantly, registering a CAGR of 15.6% during the forecast period (2024 – 2032).
In comparison to the 5G network, the anticipated 6G network is expected to deliver a 100x increase in both energy and volumetric spectral efficiency. The intricate interconnectedness of the 6G infrastructure poses significant challenges. Projections indicate a steep annual growth rate of 55% in global mobile data traffic between 2020 and 2030, resulting in an estimated 5,016 exabytes (EBs) of monthly data by 2030. This massive data volume, coupled with substantial processing and learning capabilities, could be leveraged to manage the network at various stages. To address these evolving demands and aspirations for the future, the driving forces behind the leap beyond current mobile communication systems will be a combination of societal needs and technological advancements that address those needs. Taken together, these factors present a compelling argument for exploring the next frontiers in wireless networks. The capabilities of 6G mobile technology extend beyond the intelligence, reliability, scalability, and security of traditional mobile networks. They will facilitate the integration of satellite communication, paving the way for the establishment of a ubiquitous mobile network that aligns with the necessity for a truly global wireless network presence.
MARKET OVERVIEW:
Driver: Increase in demand for low-latency networks is driving the market growth.
As reliance on technology and communication networks continues to grow, consumers are becoming increasingly intolerant of delays and disruptions in data transmission. Telecommunication systems have become indispensable in daily life, and even the briefest delay, as minimal as one millisecond, can have a detrimental impact on tasks, particularly in critical domains such as autonomous vehicles. To remain competitive, service providers are actively striving to minimize any potential for network delays. Recent advancements in internet technology have facilitated the proliferation of interactive applications such as personalized web browsing, online gaming, video conferencing, and financial trading, all of which demand minimal latency. Moreover, the financial and trading sectors highlight a universal requirement for reduced latency, as even slight delays can result in significant financial consequences. This escalating demand for low-latency networking solutions underscores the vital importance of 6G technology in optimizing user experiences and business operations across diverse industries.
Opportunities: The transformative potential of 6G technology on IoT, blockchain, and artificial intelligence is expected to pave the way for market growth in the upcoming years.
Anticipated to significantly influence the expansion of IoT, blockchain, and artificial intelligence, 6G technology is poised for substantial impact. Artificial intelligence entails imbuing machines with human-like intelligence, empowering them to execute designated tasks. Conversely, the Internet of Things (IoT) facilitates the linkage of small devices to larger ones through the Internet. Notably, the integration of artificial intelligence and IoT-based communication devices into 5G communication systems has garnered considerable momentum in recent years. These innovations produce data, subsequently decoded to extract pertinent information.
COVID IMPACT:
The COVID-19 pandemic has impacted the 6G market in various ways. Initially, the outbreak disrupted supply chains and manufacturing processes, causing delays in the development and rollout of 6G technology. Travel restrictions and lockdown measures also impeded collaboration and research efforts, slowing progress in the field. However, the pandemic underscored the critical importance of robust and resilient telecommunications infrastructure. With remote work, online education, telemedicine, and other digital services becoming increasingly prevalent, there has been a heightened demand for faster and more reliable connectivity. This heightened reliance on digital technologies has hastened the development and adoption of 6G as a solution to meet the evolving needs of a digitally connected society.
Moreover, the pandemic has spurred investments in technologies that support remote work, automation, and digital transformation across various industries. As organizations strive to build more resilient and adaptable systems, there is a growing interest in the potential capabilities of 6G, including ultra-low latency and high-speed data transmission, to facilitate innovative applications and services.
SEGMENTATION ANALYSIS:
The smartphone segment is anticipated to grow significantly during the forecast period.
The primary recipient of the advancements brought by 6G technology is anticipated to be the smartphone. With its capability to offer ultra-high-speed and low-latency connectivity, 6G has the potential to facilitate advanced functionalities such as augmented reality, virtual reality, and holographic communication. While these technologies promise to enhance user experiences across various devices, smartphones are poised to undergo a significant evolutionary leap first. This is due to their widespread adoption and continual need for faster and more dependable internet connectivity, positioning them as the foremost beneficiaries of 6G technology.
The multi-sensory extended reality (XR) segment is anticipated to grow significantly during the forecast period.
Multi-sensory extended reality (XR) stands out as a potential frontrunner in 6G applications. With multi-sensory XR, users can delve into virtual, augmented, and mixed realities enriched with enhanced sensory inputs, encompassing haptic feedback, smell, taste, and touch. This innovation holds the promise of transforming numerous sectors, including gaming, entertainment, education, healthcare, and remote collaboration. The prospect of immersing oneself in virtual environments with heightened sensory experiences presents significant market opportunities. Furthermore, network-enabled robotic and autonomous systems are poised to play pivotal roles across various industries such as manufacturing, logistics, healthcare, agriculture, and disaster response. These systems hold the potential to boost efficiency, productivity, and safety by facilitating advanced automation and remote control of robots and autonomous vehicles. Such applications carry substantial real-world implications and benefits for humanity, particularly in labor-intensive industries, healthcare assistance, and hazardous environments.
REGIONAL ANALYSIS:
The Asia Pacific region is set to witness significant growth during the forecast period.
In recent years, the Asia Pacific region has emerged as the fastest-growing market for 6G technology. China, in particular, has made significant strides in establishing itself as a leader in this field, fueled by strong governmental support and the dominance of Chinese companies. This has positioned China ahead of the United States and other nations in the race to develop advanced telecommunications technology. Moreover, Chinese companies have taken the lead in 6G technology development, with telecommunications giants like Huawei, ZTE, and Xiaomi heavily investing in research and development efforts. These companies possess the expertise, resources, and scale to drive large-scale experiments and propel 6G technology forward. For example, in January 2022, Purple Mountain Laboratories, a Chinese government-supported research lab, announced a groundbreaking achievement: achieving wireless transmission speeds of up to 206.25 gigabits per second, marking a significant milestone in 6G development.
COMPETITIVE ANALYSIS
The global 6G is reasonably competitive with mergers, acquisitions, and product launches. See some of the major key players in the market.
Ericsson
- In November 2022, Ericsson, a manufacturer of networking equipment, has announced its commitment to investing millions of pounds in 6G mobile research in Britain. The company will collaborate with universities on various projects encompassing hardware security, artificial intelligence, cognitive networks, and quantum computing.
- In September 2021, Huawei had introduced its initial 6G devices by approximately 2030. Over the forthcoming years, the company will concurrently delineate 5.5G and conduct research on 6G. Nonetheless, Xu highlighted geopolitical uncertainties that might impede Huawei's ability to market 6G products internationally, thereby overshadowing the progress of 6G technology research and development.
Broadcom
Cisco
DeepSig
Fujitsu
InterDigital
Keysight
LG Corporation
MediaTek
National Instrument Corp
NEC Corporation
Nokia
NTT DoCoMo
Orange
Scope of the Report
By Vertical
- Agriculture
- Automotive
- Educational and entertainment
- Health
- Manufacturing
- Public safety
- Others
- Smartphones
- Tablets
- Wearables
- Internet of Things (IoT) devices
- Others
- Multi-sensory extended reality
- Networked enabled robotic and autonomous systems
- Blockchain
- Distributed sensing and communications
- Others
- North America (the United States & Canada)
- Europe (Germany, UK, France, Spain, Italy, and the Rest of Europe)
- Asia Pacific (China, Japan, India, and Rest of Asia Pacific)
- Rest of the World (the Middle East & Africa, and Latin America)
It provides a technological development map over time to understand the industry’s growth rate and indicates how the 6G is evolving.
The report offers a dynamic method to various factors that drive or restrain the growth of the market and specifies which Farm management software submarket will be the main driver of the overall market from 2024 to 2032.
It renders a definite analysis of changing competitive dynamics and stipulates the leading players and what are their prospects over the forecast period.
It builds a nine-year estimate based on how the market is predicted to grow and shows what will market shares of the global region change by 2032 and which country will lead the market in 2032.
Table of Contents
190 Pages
- 1. Executive Summary
- 1.1. Market Snapshot
- 1.2. Regional Analysis
- 1.3. Segment Analysis
- 2. Overview And Scope
- 2.1. Market Vision
- 2.1.1. Market Definition
- 2.2. Market Segmentation
- 3. Global 6g Market Overview By Region: 2019 Vs 2023 Vs 2032
- 3.1. Global 6g Market Size By Regions (2019-2023) (Usd Million)
- 3.1.1. North America 6g Market Size By Country (2019-2023) (Usd Million)
- 3.1.2. Europe 6g Market Size By Country (2019-2023) (Usd Million)
- 3.1.3. Asia Pacific America 6g Market Size By Country (2019-2023) (Usd Million)
- 3.1.4. Rest Of The World 6g Market Size By Country (2019-2023) (Usd Million)
- 3.2. Global 6g Market Size By Regions (2023-2032) (Usd Million)
- 3.2.1. North America 6g Market Size By Country (2023-2032) (Usd Million)
- 3.2.2. Europe 6g Market Size By Country (2023-2032) (Usd Million)
- 3.2.3. Asia Pacific 6g Market Size By Country (2023-2032) (Usd Million)
- 3.2.4. Rest Of The World 6g Market Size By Country (2023-2032) (Usd Million)
- 4. Global 6g Market Dynamics
- 4.1. Market Overview
- 4.1.1. Market Drivers
- 4.1.2. Market Restraints/ Challenges Analysis
- 4.1.3. Market Opportunities
- 4.2. Pestle Analysis
- 4.3. Porter’s Five Forces Model
- 4.3.1. Bargaining Power Of Suppliers
- 4.3.2. Bargaining Power Of Buyers
- 4.3.3. The Threat Of New Entrants
- 4.3.4. Threat Of Substitutes
- 4.3.5. Intensity Of Rivalry
- 4.4. Value Chain Analysis/Supply Chain Analysis
- 4.5. Covid-19 Impact Analysis On Global 6g Market
- ** In – Depth Qualitative Analysis Will Be Provided In The Final Report Subject To Market
- 5. Global 6g Market, By Vertical
- 5.1. Overview
- 5.2. Global 6g Market Size By Vertical
- 5.3. Key Findings For 6g Market - By Vertical
- 5.3.1. Agriculture
- 5.3.2. Automotive
- 5.3.3. Educational And Entertainment
- 5.3.4. Health
- 5.3.5. Manufacturing
- 5.3.6. Public Safety
- 5.3.7. Others
- 6. Global 6g Market, By Development Device
- 6.1. Overview
- 6.2. Key Findings For 6g Market - By Development Device
- 6.2.1. Smartphones
- 6.2.2. Tablets
- 6.2.3. Wearables
- 6.2.4. Internet Of Things (Iot) Devices
- 6.2.5. Others
- 7. Global 6g Market, By Application
- 7.1. Overview
- 7.2. Key Findings For 6g Market - By Application
- 7.2.1. Multi-sensory Extended Reality
- 7.2.2. Networked Enabled Robotic And Autonomous Systems
- 7.2.3. Blockchain
- 7.2.4. Distributed Sensing And Communications
- 7.2.5. Others
- 8. Global 6g Market, By Region
- 8.1. Key Findings For 6g Market- By Region
- 8.2. Overview
- 8.3. Global 6g Market, By Vertical
- 8.4. Global 6g Market, By Development Device
- 8.5. Global 6g Market, By Application
- 9. Global 6g Market- North America
- 9.1. Overview
- 9.2. North America 6g Market Size (2019 - 2032) (Usd Million)
- 9.3. North America 6g Market, By Vertical
- 9.4. North America 6g Market, By Development Device
- 9.5. North America 6g Market, By Application
- 9.6. North America 6g Market Size By Countries
- 9.6.1. United States
- 9.6.2. Canada
- 10. Global 6g Market- Europe
- 10.1. Overview
- 10.2. Europe 6g Market Size (2019 - 2032) (Usd Million)
- 10.3. Europe 6g Market, By Vertical
- 10.4. Europe 6g Market, By Development Device
- 10.5. Europe 6g Market, By Application
- 10.6. Europe 6g Market Size By Countries
- 10.6.1. Germany
- 10.6.2. Uk
- 10.6.3. France
- 10.6.4. Spain
- 10.6.5. Italy
- 10.6.6. Rest Of Europe
- 11. Global 6g Market - Asia Pacific
- 11.1. Overview
- 11.2. Asia Pacific 6g Market Size (2019 - 2032) (Usd Million)
- 11.3. Asia Pacific 6g Market, By Vertical
- 11.4. Asia Pacific 6g Market, By Development Device
- 11.5. Asia Pacific 6g Market, By Application
- 11.6. Asia Pacific 6g Market Size By Countries
- 11.6.1. China
- 11.6.2. Japan
- 11.6.3. India
- 11.6.4. Rest Of Asia Pacific
- 12. Global 6g Market- Rest Of World
- 12.1. Overview
- 12.2. Rest Of World 6g Market Size (2019 - 2032) (Usd Million)
- 12.3. Rest Of World 6g Market, By Vertical
- 12.4. Rest Of World 6g Market, By Development Device
- 12.5. Rest Of World 6g Market, By Application
- 12.6. Rest Of World 6g Market Size By Region
- 12.6.1. Middle East & Africa
- 12.6.2. Latin America
- 13. Global 6g Market- Competitive Landscape
- 13.1. Key Strategies Adopted By The Leading Players
- 13.2. Recent Developments
- 13.2.1. Investments & Expansions
- 13.2.2. New End-user Launches
- 13.2.3. Mergers & Acquisitions
- 13.2.4. Agreements, Joint Ventures, And Partnerships
- 14. Global 6g Market- Company Profiles
- 14.1. Ericsson
- 14.1.1. Company Overview
- 14.1.2. Financial Overview
- 14.1.3. Product Offered
- 14.1.4. Key Developments
- 14.2. At&T
- 14.3. Broadcom
- 14.4. Cisco
- 14.5. Deepsig
- 14.6. Fujitsu
- 14.7. Google
- 14.8. Huawei
- 14.9. Interdigital
- 14.10. Keysight
- 14.11. Lg Corporation
- 14.12. Mediatek
- 14.13. National Instrument Corp
- 14.14. Nec Corporation
- 14.15. Nokia
- 14.16. Ntt Docomo
- 14.17. Orange
- 15. Our Research Methodology
- 15.1. Data Triangulation
- 15.2. Data Sources
- 15.2.1. Secondary Sources
- 15.2.2. Primary Sources
- 15.3. Assumptions/ Limitations For The Study
- 15.4. Research & Forecasting Methodology
- 16. Appendix
- 16.1. Disclaimer
- 16.2. Contact Us
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