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市場調查報告書
商品編碼
1734897
2032 年多模晶片組市場預測:按類型、通訊標準、應用和地區進行的全球分析Multimode Chipset Market Forecasts to 2032 - Global Analysis By Type, Communication Standard (2G, 3G, 4G and 5G ), Application and By Geography |
根據 Stratistics MRC 的數據,全球多模晶片組市場預計在 2025 年達到 88.2 億美元,到 2032 年將達到 234.6 億美元,預測期內的複合年成長率為 15.0%。
多模晶片組是一種積體電路,可使單一裝置支援多種網路模式和通訊標準。這些晶片組通常用於智慧型手機、平板電腦和物聯網設備,能夠支援多種無線技術,包括 2G、3G、4G LTE、5G,以及潛在的 Wi-Fi 和藍牙,從而實現流暢的連接。此外,多模晶片組透過將多種模式整合到單一晶片中,無需多個專用處理器,從而降低功耗和空間消耗,從而提升設備效能。
根據 GSMA 情報平台的數據,全球行動生態系統正在經歷顯著成長,該平台提供有關全球每個行動電話營運商的數據,涵蓋 1,250 家行動電話營運商、80 個營運商集團和 4,600 個網路。
5G技術的使用日益廣泛
多模晶片組能夠在單一平台上支援 2G、3G、4G LTE 和 5G 標準的任意組合,其應用正受到全球 5G 網路部署的推動。這種相容性確保即使在訊號強度變化或尚未部署 5G 的區域也能實現不間斷服務。此外,多模晶片組能夠促進網路世代的平穩過渡,這對於為身臨其境型媒體、工業自動化和無人駕駛汽車等尖端應用提供可靠的高速數據、極低延遲和無處不在的連接至關重要。
整合和開發成本高
由於多模晶片組的複雜性,將多種無線電技術整合到一個架構中需要大量的研發投入。設計能夠控制不同模式下的功率效率、熱穩定性和頻譜相容性的晶片組會顯著增加製造成本。此外,這些增加的成本轉化為製造商設備價格的上漲,這可能會阻礙其普及,尤其是在價格敏感的市場和入門級產品類型中。
物聯網生態系統對多重連結的需求不斷增加
智慧城市、連網汽車、智慧家庭和工業自動化 (IIoT) 等例子,都展現了物聯網 (IoT) 如何超越簡單的感測器。這些環境需要可靠、始終線上連接,並能夠在各種網路配置下工作。多模晶片組使物聯網設備能夠根據用例需求、功率限制和訊號強度,選擇透過 NB-IoT、LTE-M、4G 甚至 5G 進行連接。此外,這種靈活性創造了新的成長機會,尤其是在物流、醫療保健、農業和能源等行業。
市場飽和,競爭加劇
高通、聯發科和三星等少數幾家主要企業控制著競爭激烈的多模晶片組市場的大部分佔有率。這些公司已經建立了OEM合作關係,並投入了大量研發預算。隨著更多公司進入市場或嘗試在同一領域進行創新,價格戰和功能商品化可能會降低利潤率。對於新興和中階廠商而言尤其如此,它們可能難以在成本效益和性能方面匹敵現有廠商。此外,市場飽和也減少了待開發區的機會,使新競爭對手更難取得成功。
新冠疫情對多模晶片組市場產生了許多影響。最初,全球供應鏈中斷、工廠關閉以及半導體短缺導致生產延遲和晶片組供應減少,影響了智慧型手機、物聯網設備和汽車電子產品的交付計劃。然而,由於筆記型電腦、智慧型手機和連網醫療設備等遠端連線工具的需求增加,對高效能多模通訊晶片組的需求也隨之成長。此外,疫情加速了各行各業的數位轉型,凸顯了強大的多網路連結的價值。
預計 4G(第四代)細分市場將成為預測期內最大的市場
預計4G(第四代)細分市場將在預測期內佔據最大市場佔有率。廣泛的設備相容性、4G網路的全球覆蓋範圍以及對高速行動寬頻服務的持續需求是其主導的原因。儘管5G正在迅速普及,但4G仍然是已開發國家和開發中國家行動連線的主導形式。物聯網設備、汽車系統、平板電腦和智慧型手機中4G的加入正在推動需求成長。為了確保向後相容性,多模晶片組通常會整合4G支持,這在無線標準變革的背景下進一步鞏固了4G在市場中的重要性。
預測期內,汽車產業預計將以最高複合年成長率成長
預計汽車產業將在預測期內實現最高成長率。聯網汽車、自動駕駛系統和改進的資訊娛樂系統等最尖端科技的引入,正在極大地改變汽車產業。多模晶片組對於促進跨 4G、5G 和 LTE 等各種網路標準的順暢通訊,以及確保車聯網 (V2X) 等關鍵通訊的持續連接至關重要。此外,現代汽車對安全、導航和即時資料處理的日益重視也促進了這一需求。
預計北美地區將在預測期內佔據最大市場佔有率。強大的通訊基礎設施、對5G技術的大量投資以及高通、英特爾和博通等半導體領導者的參與是推動其主導的關鍵因素。美國是主要貢獻者,預計到2032年其市場價值將達到65億美元。這些因素的結合使北美成為多模晶片組市場領導。
預計亞太地區在預測期內將呈現最高的複合年成長率。 5G技術的快速普及以及中國、印度、日本和韓國等國家對尖端消費性電子產品的需求不斷成長是這一強勁成長的主要驅動力。預計該地區的成長將主要受到中國市場的推動。由於智慧型手機、物聯網設備和智慧家居技術的廣泛應用,這些市場對多模晶片組的需求急劇成長。此外,5G基礎設施的大量投資和技術發展也支持了亞太地區的市場成長。
According to Stratistics MRC, the Global Multimode Chipset Market is accounted for $8.82 billion in 2025 and is expected to reach $23.46 billion by 2032 growing at a CAGR of 15.0% during the forecast period. A multimode chipset is an integrated circuit that allows a single device to support several network modes and communication standards. Commonly found in smartphones, tablets, and Internet of Things devices, these chipsets provide smooth connectivity across a range of wireless technologies, including 2G, 3G, 4G LTE, and 5G, as well as Wi-Fi and Bluetooth in certain situations. Moreover, multimode chipsets improve device performance by combining several modes into a single chip, eliminating the need for multiple specialized processors and reducing power consumption and space consumption.
According to the GSMA Intelligence platform, which provides data on every mobile operator in every country worldwide, covering 1,250 mobile operators, 80 operator groups, and 4,600 networks, the global mobile ecosystem is experiencing significant growth.
Increasing use of 5G technology
The adoption of multimode chipsets, which can support a combination of 2G, 3G, 4G LTE, and 5G standards within a single platform, is being pushed by the global rollout of 5G networks. This compatibility guarantees uninterrupted service in regions with varying signal strengths or where 5G has not yet been implemented. Additionally, multimode chipsets facilitate smooth network generation transitions, which are critical for providing reliable high-speed data, extremely low latency, and extensive connectivity for cutting-edge applications such as immersive media, industrial automation, and driverless cars.
High integration and development costs
The integration of multiple radio technologies into a single architecture necessitates a significant investment in research and development due to the complexity of multimode chipsets. Production costs are greatly increased when designing chipsets that can control power efficiency, thermal stability, and spectrum compatibility across various modes. Furthermore, these increased expenses result in higher device prices for manufacturers, which may prevent adoption, especially in markets with price sensitivity or in product categories that are entry-level.
Increasing multi connectivity demand in IoT ecosystems
Smart cities, connected automobiles, smart homes, and industrial automation (IIoT) are all examples of how the Internet of Things (IoT) is developing beyond simple sensors. These settings need reliable, constant connectivity that works with a variety of network configurations. Multimode chipsets give IoT devices the option to connect via NB-IoT, LTE-M, 4G, or even 5G, based on the needs of the use case, power limitations, or signal strength. Moreover, this flexibility creates new opportunities for growth, particularly in industries like logistics, healthcare, agriculture, and energy.
Increasing market saturation and competition
A small number of powerful companies, including Qualcomm, MediaTek, and Samsung, control a large portion of the fiercely competitive multimode chipset market. These companies have established OEM relationships and significant R&D budgets. Price wars and feature commoditization can reduce profit margins as more companies enter the market or try to innovate in the same area. This is particularly true for emerging and mid-tier vendors, who might find it difficult to match incumbents' cost-effectiveness or performance. Additionally, saturation reduces greenfield opportunities, which makes it more difficult for new competitors to succeed.
The COVID-19 pandemic had a mixed impact on the multimode chipset market. Initially, production delays and a decrease in chipset availability were caused by global supply chain disruptions, factory closures, and semiconductor shortages, which had an impact on the delivery schedules for smart phones, Internet of Things devices, and automotive electronics. The need for high-performance, multimode communication chipsets, however, increased due to the rise in demand for remote connectivity tools, such as laptops, smart phones, and connected medical devices. Furthermore, the pandemic's acceleration of digital transformation across industries highlighted the value of robust, multi-network connectivity.
The 4G (fourth generation) segment is expected to be the largest during the forecast period
The 4G (fourth generation) segment is expected to account for the largest market share during the forecast period. The widespread device compatibility, the global reach of 4G networks, and the ongoing demand for high-speed mobile broadband services are the reasons for this dominance. Even though 5G is quickly gaining traction, 4G is still the mainstay of mobile connectivity in both developed and developing nations. Its incorporation into IoT devices, automobile systems, tablets, and smart phones increases demand for it. In order to guarantee backward compatibility, multimode chipsets frequently incorporate 4G supports, which further solidify their market importance in the face of changing wireless standards.
The automotive segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the automotive segment is predicted to witness the highest growth rate. The introduction of cutting-edge technologies like connected cars, autonomous driving systems, and improved infotainment systems is drastically changing the automotive industry. Multimode chipsets are essential for facilitating smooth communication across a range of network standards, such as 4G, 5G, and LTE, and guaranteeing continuous connectivity for vital applications such as Vehicle-to-Everything (V2X) communication. Moreover, the increasing focus on modern vehicles' safety, navigation, and real-time data processing is contributing to this demand.
During the forecast period, the North America region is expected to hold the largest market share. Strong telecommunications infrastructure, large investments in 5G technology, and the presence of top semiconductor companies like Qualcomm, Intel, and Broadcom are the main factors driving this dominance. A significant contributor is the United States, whose market value is predicted to reach US$6.5 billion by 2032. Additionally, North America is positioned as the market leader for multimode chipsets due to these factors combined.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR. The swift adoption of 5G technology and the rising demand for cutting-edge consumer electronics in nations like China, India, Japan, and South Korea are the main drivers of this strong growth. The region is anticipated to be led by China in particular. The demand for multimode chipsets has increased dramatically in these markets due in large part to the proliferation of smart phones, IoT devices, and smart home technologies. Furthermore, the market's growth in the Asia-Pacific area is also supported by significant investments in 5G infrastructure and technological developments.
Key players in the market
Some of the key players in Multimode Chipset Market include Huawei Technologies Co. Ltd., Intel Corporation, Altair Semiconductor, Inc., Marvell Technology Group Ltd., Hisilicon Technologies, NXP Semiconductors N.V., GCT Semiconductor Inc., MediaTek Inc., Fujitsu Limited, Qualcomm Technologies Inc., Broadcom Corporation, Samsung Electronics Co., Ltd., Nokia Corporation, Renesas Electronics Corporation and STMicroelectronics N.V.
In April 2025, Intel Corporation announced that it has entered into a definitive agreement to sell 51% of its Altera business to Silver Lake, a global leader in technology investing. The transaction, which values Altera at $8.75 billion, establishes Altera's operational independence and makes it the largest pure-play FPGA semiconductor solutions company.
In March 2025, Huawei and the Netherlands' Sona signed a strategic cooperation agreement. According to the agreement, the two parties will cooperate closely in the secure access service edge (SASE) field to jointly develop products, build a more intelligent network security system for enterprises worldwide, and share the SASE market. Sonia Harjani, founder of Sona, and Vincent Liu from President of Global Enterprise Network Marketing and Sales Dept, Huawei, attended the signing ceremony.
In July 2024, Altair announced it has entered into a definitive agreement to acquire all of the outstanding capital stock of Metrics Design Automation Inc. (Metrics), a Canadian company with a game changing simulation as a service (SaaS) business model for semiconductor electronic functional simulation and design verification. Closing of the transaction is subject to customary conditions.