The global wi-fi 6, wi-fi 6E, and wi-fi 7 chipset market size is expected to reach USD 89.34 billion by 2030. It is expected to expand at a CAGR of 13.6% from 2025 to 2030. The growing demand for bandwidth capacity among consumers and enterprises for providing support for smart devices is one of the key factors driving the global market.
Increasing trends of e-learning techniques have expanded the deployment of next-generation wireless network infrastructure across several schools, universities, offices, and residents. In addition, accessing undisturbed content during online video streaming services has increased the need and demand for installing wi-fi 6, wi-fi 6E, and wi-fi 7 devices across the globe. Therefore, the increasing adoption of e-learning is expected to fuel the wi-fi 6, wi-fi 6E, and wi-fi 7 chipsets demand from 2025 to 2030.
With the evolution of industry 4.0., manufacturers from various industry verticals such as General Motors Company, BMW Group, Ford Motor Company, Volkswagen Group, and Toyota Group are implementing advanced technologies to transform their manufacturing facilities into smart and intelligent factories. A smart factory integrates numerous intelligent devices such as collaborative robots, IoT sensors, wireless cameras, and automated guided vehicles (AGV) to achieve self-adapting manufacturing capabilities. Providing seamless connectivity to these devices requires next-generation infrastructure, which is expected to accelerate the adoption of wi-fi 6 and wi-fi 6E devices worldwide. Therefore, it is anticipated to fuel the demand for chipsets over the next seven years.
Wi-fi 6, wi-fi 6E, and wi-fi 7 devices support multi-user, multi-input multi-output communications (MU-MIMO). The wi-fi 6 and 6E technology operates on the 6GHz band that can handle up to 12 upstream and downstream data streams on various frequency bands, such as 5GHz, 2.4GHz, and 6GHz. The wi-fi 7 technology using its 320MHz channel provides a high-speed advantage as compared to wi-fi 6 and 6E technology. With the notable investment opportunities in the smart cities globally, the next-generation wi-fi chipset-enabled devices would play a pivotal role in catering to the growing need for integrated internet connectivity for the mass population situated in public venues such as railway stations, bus stands, and airports. Thus, it is expected to bolster global market growth from 2025 to 2030.
Initially, in the 1st and 3rd quarters of 2020, the COVID-19 outbreak affected the production and supply chains for the wi-fi chipsets globally. The primary reason for this is the lockdown implemented by the governments across key countries such as the U.K., the U.S., Germany, and China. These lockdowns have forced the companies to temporarily shut down their manufacturing facilities and initiated restrictions on international travel. However, in the latter Q3 of 2020, the governments across many countries have provided certain relaxations in the lockdown, which has helped companies significantly recover the economic losses that happened during the COVID-19 times. Thus, it is expected to increase the overall market growth in the next seven years. Moreover, the high investments in the healthcare industry to create digitally advanced network infrastructure is further expected to drive the global market.
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Increasing trends of e-learning techniques have expanded the deployment of next-generation wireless network infrastructure across several schools, universities, offices, and residents. In addition, accessing undisturbed content during online video streaming services has increased the need and demand for installing wi-fi 6, wi-fi 6E, and wi-fi 7 devices across the globe. Therefore, the increasing adoption of e-learning is expected to fuel the wi-fi 6, wi-fi 6E, and wi-fi 7 chipsets demand from 2025 to 2030.
With the evolution of industry 4.0., manufacturers from various industry verticals such as General Motors Company, BMW Group, Ford Motor Company, Volkswagen Group, and Toyota Group are implementing advanced technologies to transform their manufacturing facilities into smart and intelligent factories. A smart factory integrates numerous intelligent devices such as collaborative robots, IoT sensors, wireless cameras, and automated guided vehicles (AGV) to achieve self-adapting manufacturing capabilities. Providing seamless connectivity to these devices requires next-generation infrastructure, which is expected to accelerate the adoption of wi-fi 6 and wi-fi 6E devices worldwide. Therefore, it is anticipated to fuel the demand for chipsets over the next seven years.
Wi-fi 6, wi-fi 6E, and wi-fi 7 devices support multi-user, multi-input multi-output communications (MU-MIMO). The wi-fi 6 and 6E technology operates on the 6GHz band that can handle up to 12 upstream and downstream data streams on various frequency bands, such as 5GHz, 2.4GHz, and 6GHz. The wi-fi 7 technology using its 320MHz channel provides a high-speed advantage as compared to wi-fi 6 and 6E technology. With the notable investment opportunities in the smart cities globally, the next-generation wi-fi chipset-enabled devices would play a pivotal role in catering to the growing need for integrated internet connectivity for the mass population situated in public venues such as railway stations, bus stands, and airports. Thus, it is expected to bolster global market growth from 2025 to 2030.
Initially, in the 1st and 3rd quarters of 2020, the COVID-19 outbreak affected the production and supply chains for the wi-fi chipsets globally. The primary reason for this is the lockdown implemented by the governments across key countries such as the U.K., the U.S., Germany, and China. These lockdowns have forced the companies to temporarily shut down their manufacturing facilities and initiated restrictions on international travel. However, in the latter Q3 of 2020, the governments across many countries have provided certain relaxations in the lockdown, which has helped companies significantly recover the economic losses that happened during the COVID-19 times. Thus, it is expected to increase the overall market growth in the next seven years. Moreover, the high investments in the healthcare industry to create digitally advanced network infrastructure is further expected to drive the global market.
Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market Report Highlights
- By device type, the, WLAN infrastructure devices segment held the maximum market share in 2024. Increasing deployment of Wi-Fi 6 gateways and routers in commercial, residential, and industrial applications propelled the segment growth
- The Wi-Fi 7 chipset type segment uses a 4K QAM modulation scheme to increase the throughput value, fuelling the market growth over the forecast period. The Wi-Fi 7 chipset features flexible channel utilization, minimizing the network's interference and enhancing connectivity
- Increased spending on the deployment of digital infrastructure in the healthcare sector, rising smart city, and smart factory projects have propelled the growth of Wi-Fi chipsets in the U.S.
- Several key players operating in the market across the globe are mainly focusing on acquisitions, mergers, and collaborations to strengthen their market presence and expand the overall product offerings
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Table of Contents
Chapter 1 Methodology and Scope
Chapter 2 Executive Summary
Chapter 3 Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market Variables and Trends
Chapter 4 Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market: Chipset Estimates & Trend Analysis
Chapter 5 Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market: Device Estimates & Trend Analysis
Chapter 6 Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market: Application Estimates & Trend Analysis
Chapter 7 Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market: Regional Estimates & Trend Analysis
Chapter 8 Wi-Fi 6, Wi-Fi 6E And Wi-Fi 7 Chipset Market - Competitive Landscape
List of Tables
List of Figures
Companies Mentioned
- Broadcom Inc.
- Qualcomm Technologies, Inc.
- ON Semiconductor Connectivity Solutions, Inc.
- Intel Corporation
- Celeno
- MediaTek Inc.
- Texas Instruments Incorporated
- Cypress Semiconductor Corporation
- STMICROELECTRONICS N.V.
- NXP SEMICONDUCTORS N.V.
Methodology
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Table Information
Report Attribute | Details |
---|---|
No. of Pages | 120 |
Published | January 2025 |
Forecast Period | 2024 - 2030 |
Estimated Market Value ( USD | $ 39.03 Billion |
Forecasted Market Value ( USD | $ 89.34 Billion |
Compound Annual Growth Rate | 13.6% |
Regions Covered | Global |
No. of Companies Mentioned | 10 |