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市場調查報告書
商品編碼
1831929
2025 年至 2033 年包絡追蹤晶片市場報告(按技術、應用、最終用戶和地區)Envelope Tracking Chips Market Report by Technology, Application, End User, and Region 2025-2033 |
2024年,全球包絡追蹤晶片市場規模達23.966億美元。展望未來, IMARC Group預計到2033年,該市場規模將達到49.062億美元,2025-2033年期間的複合年成長率(CAGR)為7.46%。能源效率需求的不斷成長、4G LTE和5G網路的普及、穿戴式技術的快速發展以及物聯網和智慧家居設備的普及,正在推動市場快速成長。
不斷發展的汽車產業
汽車產業的蓬勃發展極大地推動了包絡追蹤晶片市場的發展。由於政府措施的不斷增多,電動車的普及趨勢日益明顯。例如,根據國際能源總署的數據,2023 年全球將註冊約 1,400 萬輛新電動車,屆時上路行駛的電動車總數將達到 4,000 萬輛。 2023 年電動車銷量比 2022 年增加了 350 萬輛,年增 35%。在汽車應用中,包絡追蹤 (ET) 技術可根據訊號特性動態調整射頻功率放大器的電壓供應,從而幫助最佳化功耗。這種效率對於延長電動車 (EV) 的電池壽命和提高傳統汽車的整體能源效率至關重要。這些因素進一步提升了包絡追蹤晶片的市場佔有率。
穿戴式裝置的普及
穿戴式科技的採用是推動包絡追蹤晶片 (ETC) 市場成長的重要因素之一。例如,根據 IMARC 的數據,全球穿戴式科技市場規模在 2023 年達到 642 億美元。展望未來, IMARC Group預計到 2032 年市場規模將達到 1,922 億美元,2024-2032 年期間的成長率 (CAGR) 為 12.6%。此外,根據 Vicert 發表的一篇文章,截至 2020 年,30% 的美國成年人正在使用穿戴式科技進行醫療保健。這些設備(包括智慧手錶和醫療保健監視器)需要延長電池壽命以增強用戶的便利性和可用性。 ETC 使穿戴式裝置能夠透過根據即時使用模式動態調整電壓等級來最佳化功耗,從而延長電池壽命。這些因素進一步對包絡追蹤晶片市場預測產生正面影響。
5G技術的普及
5G技術的普及推動了包絡追蹤晶片(ETC)市場的需求。 5G用戶數量顯著成長。例如,2022年,全球約十分之一的連結使用了5G技術,預計到2020年這一數字將超過一半。截至2023年,中東和非洲約三分之一的服務提供者提供了5G FWA。 ETC可最佳化5G基地台、智慧型手機和其他連接設備的用電,支援5G技術在全球的擴展,進而提升包絡追蹤晶片系統市場的收入。
The global envelope tracking chips market size reached USD 2,396.6 Million in 2024. Looking forward, IMARC Group expects the market to reach USD 4,906.2 Million by 2033, exhibiting a growth rate (CAGR) of 7.46% during 2025-2033. The rising energy efficiency demands, proliferation of 4G LTE and 5G networks, rapid growth in wearable technology, and expansion of IoT and smart home devices are proliferating the market growth.
Growing Automotive Industry
The growing automotive sector is significantly driving the envelope tracking chips market. There has been an increasing shift towards electric vehicles owing to rising government initiatives. For instance, according to IEA, in 2023, about 14 million new electric cars were registered globally, bringing the total number on the road to 40 million. Electric vehicle sales in 2023 were 3.5 million greater than in 2022, representing a 35% year-on-year growth. In automotive applications, envelope tracking (ET) technology helps optimize power consumption by dynamically adjusting the voltage supply to RF power amplifiers based on signal characteristics. This efficiency is crucial for extending battery life in electric vehicles (EVs) and improving overall energy efficiency in conventional vehicles. These factors are further contributing to the envelope tracking chips market share.
Adoption of Wearable Devices
The adoption of wearable technology is one of the prominent factors propelling the Envelope Tracking Chips (ETC) market growth. For instance, according to IMARC, the global wearable technology market size reached US$ 64.2 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 192.2 Billion by 2032, exhibiting a growth rate (CAGR) of 12.6% during 2024-2032. Also, according to an article published by Vicert, as of 2020, 30% of American adults are using wearable technology for healthcare. These devices, including smartwatches and healthcare monitors, require extended battery life to enhance user convenience and usability. ETC enables wearable devices to optimize power consumption by dynamically adjusting voltage levels based on real-time usage patterns, thereby extending battery life. These factors are further positively influencing the envelope tracking chips market forecast.
Proliferation of 5G Technology
The proliferation of 5G technology is driving the Envelope Tracking Chips (ETC) market demand. There has been a significant increase in the number of 5G users. For instance, in 2022, around one-tenth of all global connections used 5G technology, with this figure expected to exceed one-half by the end of the decade. As of 2023, about one-third of service providers in the Middle East and Africa offered 5G FWA. ETC can optimize power usage in 5G base stations, smartphones, and other connected devices, supporting the expansion of 5G technology globally, and thereby boosting the envelope tracking chips systems market revenue.
Envelope tracking chips are used in RF power amplifiers (PAs) within base stations and mobile devices to optimize power efficiency in cellular communications. This optimization is critical for supporting higher data rates and increasing network capacity without compromising battery life in mobile devices. Moreover, envelope tracking chips enable efficient power management in RF front-end modules of devices supporting wireless communication standards like Wi-Fi (e.g., 802.11ac, 802.11ax) and Bluetooth. This improves battery life and enhances the range and reliability of wireless connectivity. Furthermore, envelope tracking chips are used in satellite communication terminals to optimize the efficiency of power amplifiers, especially in mobile satellite terminals and ground stations. This improves the reliability and cost-effectiveness of satellite communications systems.
Smartphones and wearable devices require efficient power management to extend battery life. ET technology dynamically adjusts the voltage supply to RF power amplifiers based on the signal's amplitude, ensuring that the device operates at the minimum required power level. This optimization significantly reduces power consumption during voice calls, data transmissions, and other wireless activities, thereby prolonging battery life between charges.
ET chips are widely used in consumer electronics including smartphones to enhance battery life by dynamically adjusting the voltage supplied to RF power amplifiers (PAs). While ET technology is essential in satellite communications for optimizing the efficiency of RF power amplifiers. Moreover, the automotive sector utilizes ET chips to optimize power efficiency in RF systems used for vehicle-to-vehicle (V2V) and vehicle-to-everything (V2X) communications. Furthermore, ET chips are critical in telecommunications infrastructure for optimizing RF power amplifiers in base stations and mobile devices. They ensure efficient power usage, enhance signal quality, and support higher data throughput in LTE and 5G networks.
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia and others); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa.
North American countries are significant contributors to the global ET chips market, driven by the presence of leading semiconductor manufacturers, high adoption of advanced technologies in consumer electronics, automotive, and telecommunications sectors. Moreover, European countries are prominent in automotive manufacturing and telecommunications infrastructure development, influencing the demand for ET chips. Apart from this, Asia-Pacific dominates the global semiconductor market and is a major manufacturing hub for consumer electronics, smartphones, and automotive components.
The market research report has provided a comprehensive analysis of the competitive landscape. Detailed profiles of all major market companies have also been provided. Some of the key players in the market include: