市場調查報告書
商品編碼
1364053
全球 5G 晶片組市場:按類型、工作頻率、處理節點、產業和地區劃分的評估、機會和預測(2016-2030 年)5G Chipset Market Assessment, By Type, By Operational Frequency, By Processing Node, By Industry, By Region, Opportunities and Forecast, 2016-2030F |
全球5G晶片組市場近年來取得了顯著成長,預計未來將保持強勁的擴張速度。 預計2022年營收約367億美元,預計2023年至2030年將以18.1%的複合年增長率穩定成長,2030年達到1,389億美元。
5G 晶片組提供升級的行動寬頻,下載和上傳速度顯著加快,從而實現高品質視訊串流、線上遊戲和即時通訊。 5G 晶片組可降低功耗並延長電池壽命。 此外,5G 減少的延遲將使遠端手術和逼真的虛擬體驗等應用成為可能。 受物聯網和 AR/VR 等高速數據和低延遲應用需求不斷增長的推動,5G 晶片組市場正在迅速擴大。 此外,5G 網路部署的全球擴張正在創造機遇,晶片製造商之間的競爭性創新正在透過推動技術和價格突破來推動市場擴張。
隨著 5G 網路在全球擴展,智慧型手機、物聯網設備和基礎設施設備對相容晶片組的需求不斷增加。 此次擴張將推動晶片組的採用和創新,推動 5G 晶片組市場的成長,並帶來變革性的技術和應用領域。 到 2022 年,128 個國家將安裝 127,509 個 5G 設備,高於去年 112 個國家的 85,602 個安裝量。 Starlink 提供快速衛星互聯網,在某些地區排名第一。 然而,5G 可用性一直參差不齊,美國達到 54.3%,而一些國家依賴 2G 或 3G 連接,但自 2021 年以來該名單已大幅縮減。
例如,2023年7月,MediaTek在天璣6000系列中發布了天璣6100+ SoC,提供低功耗的5G連接、AI相機技術、10位元顯示和108MP相機支持,使其成為主流5G產品. 相容於
為涵蓋的所有地區/國家提供每個細分市場的資訊。
上面列出的公司並非按市場份額排序,並且可能會根據研究工作中獲得的資訊進行更改。
Global 5G chipset market has experienced significant growth in recent years and is expected to maintain a strong pace of expansion in the coming years. With projected revenue of approximately USD 36.7 billion in 2022, the market is forecasted to reach a value of USD 138.9 billion by 2030, displaying a robust CAGR of 18.1% from 2023 to 2030.
5G chipsets enable high-quality video streaming, online gaming, and real-time communication by providing upgraded mobile broadband with much faster download and upload rates. They allow decreased power usage, which increases battery life. Furthermore, the reduced latency of 5G enables applications such as remote surgery and realistic virtual experiences. The 5G chipset market is rapidly expanding, fueled by rising demand for high-speed data and low-latency applications like IoT and AR/VR. Also, the global expansion of 5G network deployments creates opportunities and competitive innovation among chip makers is fueling market expansion by pushing technological and affordability breakthroughs.
As 5G networks expand worldwide, there is a growing demand for compatible chipsets in smartphones, IoT devices, and infrastructure equipment. This expansion fuels chipset adoption and innovation, propelling the 5G chipset market's growth and ushering in transformative technologies and applications. In 2022, there were 127,509 5G deployments in 128 countries, up from 85,602 in 112 nations in the previous year. Starlink provided rapid satellite internet, ranking first in certain locations. However, 5G availability varied, with the United States reaching 54.3%, while several nations relied on 2G and 3G connections, however, the list has shrunk dramatically since 2021.
For instance, in July 2023, MediaTek introduced the Dimensity 6100+ SoC in its Dimensity 6000 series, which provides power-efficient 5G connection, AI camera technology, 10-bit displays, and 108MP camera compatibility for mainstream 5G products.
Low latency demands from crucial applications like telemedicine and driverless cars drive the 5G chipset market. Telemedicine requires real-time contact between doctors and patients to provide proper diagnosis and treatment. Similarly, the safety of autonomous cars is dependent on split-second judgments. 5G chipsets enable ultra-low latency, enabling near-instantaneous data transfer, to satisfy these criteria. As these sectors grow, the need for 5G chipsets that provide reliable, low-latency communication becomes critical. It encourages chip makers to engage in R&D, resulting in creative solutions that cater to these latency-sensitive applications, driving the 5G chipset market forward.
For example, in September 2023, MediaTek and TSMC jointly developed MediaTek's flagship Dimensity chip using TSMC's advanced 3nm technology. The partnership aims to deliver high-performance, low-power SoCs for various devices starting in H2 2024.
The fast growth of smart infrastructure and smart cities is increasing demand for 5G chipsets. These ambitious ideas rely significantly on high-speed, low-latency 5G networks to improve urban life through data-driven services and automation. Advanced chipsets are required to handle huge data volumes and allow real-time decision-making in smart traffic management, autonomous vehicles, energy-efficient utilities, and remote monitoring. As these projects spread internationally, the 5G chipset market sees increased demand, with manufacturers attempting to build chipsets capable of powering the backbone of these revolutionary efforts, propelling the 5G chipset market's growth.
For example, in November 2023, Qorvo earned significant design wins in 5G smartphones, Wi-Fi equipment, and automotive platforms in partnership with MediaTek, increasing connectivity options for a variety of devices and applications .
Sub-6GHz is huge in 5G chipsets as it allows 5G to function in more areas. It is like a 5G engine, which may cover a wide range of geography, from towns to rural areas. Sub-6GHz chipsets help the gadgets connect to 5G without breaking the budget. It acts as the glue that holds 4G and 5G together, ensuring the internet functions properly. As a result, Sub-6GHz is driving the growth of 5G chipset market as it expands 5G availability while keeping it inexpensive for everyone.
For instance, in February 2023, Nokia, Qualcomm, and T-Mobile successfully demonstrated 5 Component Carrier 5G sub-6 GHz Carrier Aggregation (5CC CA) data transfer at data speeds surpassing 4.2Gbps. The technology improves mobile operators' data speeds, connection, and coverage.
Asia-Pacific dominates the 5G chipset market due to its early and extensive adoption of 5G technology. Countries like as South Korea, Australia, and China were among the first to establish commercial 5G networks, owing to favorable government regulations and early spectrum allotment. The region's excellent utilization of mid-band spectrum and massive base station deployment have resulted in improved 5G performance. Furthermore, places like Seoul and Kuala Lumpur have amazing 5G speeds. Asia-Pacific region's leadership is further cemented by its usage of 5G Fixed Wireless Access (FWA) to bridge the digital divide, making it a global powerhouse in the 5G chipset market.
For instance, in August 2023, Qualcomm's Snapdragon X75 5G Modem-RF System established a world record 7.5 Gbps downlink throughput on sub-6 GHz spectrum using 4x carrier aggregation and 1024 QAM, allowing faster and more efficient 5G performance.
Government initiatives for the 5G chipset market include supporting R&D to stimulate innovation, assuring spectrum availability for 5G networks, and enacting rules that favor local manufacturing. They emphasize security measures to protect key infrastructure, encourage international collaboration in standards development, and support programs to spread 5G connectivity to disadvantaged regions. Furthermore, governments are stimulating private sector investment in 5G technology through grants and tax breaks, while eliminating regulatory barriers to facilitate deployment and acceptance. These efforts seek to foster economic development, technological innovation, and worldwide leadership in 5G technology.
For example, in November 2022, Marvell and Nokia strengthened their collaboration by integrating Marvell's 5nm OCTEON 10 DPU technology into Nokia's ReefShark chipset, increasing mobile operators' 5G network performance and energy efficiency .
The 5G chipset market seemed promising before COVID-19, with manufacturers investing in innovative technologies to fulfill increased demand. The global 5G rollout was proceeding apace. However, the pandemic disrupted supply chains, affecting productivity at first. After COVID-19, the significance of reliable connections for distant work, healthcare, and education became clear. As a result, expenditures in 5G infrastructure and devices have skyrocketed. The pandemic expedited the introduction of 5G chipsets, critical in facilitating digital transformation and distant communication. The market recovered, with 5G becoming key to global recovery efforts and answering the expanding connectivity demands of a changing world.
The Russia-Ukraine conflict impacts the 5G chipset market and the wider telecommunications sector. The decision by the GSMA for not sponsoring a Russian pavilion at MWC Barcelona illustrates the industry's reaction to geopolitical concerns. The White House's sanctions on Russia, which include limits on critical technology and semiconductors, directly impact the 5G chipset market. While Russia's direct effect on the global semiconductor market is minor, its control over Ukraine is a critical source of neon purification for the manufacture of semiconductors, which raised concerns about interruptions in the semiconductor supply chain, impacting the stability and accessibility of critical components in the global 5G chipset market.
The 5G chipset market is dominated by companies such as Huawei Technologies, Qualcomm, Nokia, Intel Corporation, and MediaTek. These market leaders foster innovation and competition by providing cutting-edge chipset solutions for the developing 5G ecosystem. As 5G adoption grows worldwide, the market outlook remains positive. The demand for high-speed, low-latency connections for applications such as IoT, autonomous cars, and smart infrastructure drives market expansion. Government efforts, spectrum auctions, and ongoing network installations contribute to the industry's favorable outlook, making it an essential arena for technical innovation and market domination among the big competitors.
In June 2023, Qualcomm unveiled the Snapdragon 4 Gen 2 Mobile Platform, which is aimed at the value market and offers greater performance, 5G connectivity, improved camera capabilities, AI features, and long battery life. The platform's commercial devices are expected in H2 2023.
In August 2023, Nokia, TPG Telecom, and MediaTek showed live 360-degree video streaming in the Metaverse utilizing Nokia 5G technology, TPG spectrum, and MediaTek chipsets, demonstrating 5G's potential for immersive experiences.
All segments will be provided for all regions and countries covered:
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.