市場調查報告書
商品編碼
1593132
智慧型手機包絡追蹤器 IC 的全球市場Smartphone Envelope Tracker IC |
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智慧型手機包絡追蹤器 IC 的全球市場預計到 2030 年將達到 27 億美元
智慧型手機包絡追蹤器 IC 的全球市場預計 2023 年為 13 億美元,預計到 2030 年將達到 27 億美元,2023 年至 2030 年複合年成長率為 11.4%。溢價價格分佈是本報告分析的細分市場之一,預計複合年成長率為 12.1%,到分析期結束時將達到 15 億美元。分析期間內,中等價格分佈細分市場的複合年成長率預計為 11.1%。
美國市場預估為3.321億美元,中國預期複合年成長率為10.6%
預計 2023 年美國智慧型手機包絡追蹤器 IC 市場規模將達到 3.321 億美元。中國作為世界第二大經濟體,預計2030年市場規模將達到4.137億美元,2023-2030年分析期間複合年成長率為10.6%。其他值得注意的區域市場包括日本和加拿大,在分析期間預計複合年成長率分別為 10.6% 和 9.6%。在歐洲,德國的複合年成長率預計為 8.2%。
全球智慧型手機包絡追蹤IC市場趨勢及促進因素總結
什麼是智慧型手機包絡追蹤器 IC?
智慧型手機包絡追蹤器 IC (ET IC) 是一種專用元件,旨在透過根據即時訊號需求調整射頻 (RF) 功率放大器的電源電壓來最佳化行動裝置的電源效率。這種自我調整功率控制可顯著降低智慧型手機的功耗,特別是在 LTE、5G 和 Wi-Fi 等高級通訊模式下,高資料速率需要大量能源。透過最大限度地減少功率損耗和減少熱量產生,ET IC 可以改善智慧型手機的電池壽命和溫度控管,確保即使在用戶大量使用或資料集中活動期間也不會出現過熱問題。
隨著資料速度和網路需求的增加,封包追蹤對於支援高效能行動通訊變得至關重要。傳統的功率放大器通常在固定電壓下運行,在處理變化的訊號幅度時導致能量和熱量的浪費。 ET IC 動態調整提供給這些放大器的電壓,確保僅在需要時使用電源。這種效率對於使用 4G LTE-Advanced 和 5G 網路的智慧型手機尤其有利,這些網路中的資料傳輸由於更高的頻寬和複雜的調變需要更多的功率。 ET IC 在如此高的資料速率下最佳化電力傳輸的能力可以延長電池壽命並提高設備可靠性,特別是當智慧型手機支援更複雜的應用和網路功能並改善用戶體驗時。
ET IC 的小型化和更高整合度對於現代智慧型手機設計也至關重要,現代智慧型手機設計需要緊湊的多功能組件,以適應越來越薄的外形尺寸。包絡追蹤可協助製造商在不犧牲效能的情況下滿足這些需求,延長電池壽命,同時最大限度地減少設備發熱。隨著向 5G 過渡的繼續以及視訊串流、遊戲和擴增實境(AR) 等應用程式的出現,封包追蹤IC 對於支援智慧型手機的高性能和高效用電至關重要,已成為未來的重要組成部分。移動技術。
技術進步與網路升級如何塑造智慧型手機包絡追蹤器 IC 市場?
半導體製造和射頻技術的技術進步正在推動包絡追蹤器 IC 的進步,從而為高速行動網路實現更高效的電源管理。最新的 ET IC 旨在支援 5G 網路所需的高頻率和先進調變方案,從而增加了智慧型手機的功率需求。這些 IC 目前設計為同時在多個頻寬運行,支援在 4G、5G 和 Wi-Fi 網路之間切換的智慧型手機的無縫連接。此外,新一代 ET IC 利用氮化鎵 (GaN) 和先進的矽技術來提供更高的效率和功率處理能力,以應對 5G通訊的嚴峻挑戰,同時延長電池壽命。
這是因為5G的毫米波(mmWave)頻率和多輸入多輸出(MIMO)技術在訊號放大方面需要更高的功率和精度。專為 5G 設計的 ET IC 可確保功率放大器在多個通道和寬頻寬度上高效運行,從而減少能量損失並最大限度地減少熱量。隨著製造商利用雙通道 ET IC 和其他先進架構進行創新,智慧型手機將能夠在不犧牲熱穩定性或電池壽命的情況下滿足 5G 的電源需求。這對於使用毫米波 5G 的下一代智慧型手機尤其重要,它可以實現超快的資料通訊,同時需要高效的電源管理以防止電池快速耗盡。
人工智慧和機器學習的進步也開始影響 ET IC 的發展。這些技術可以根據使用模式和網路狀況進行預測性電源管理。透過分析訊號強度和設備活動的即時資料,人工智慧增強型 ET IC 可以動態調整功率放大器電壓,以更精確地最佳化能源使用。這種預測方法使智慧型手機能夠有效地適應不斷變化的網路條件並改善用戶體驗,同時保持電池壽命。這些技術進步不僅滿足了現代智慧型手機的功耗和效率需求,而且隨著網路和應用的不斷發展,為行動裝置的未來功能鋪平了道路。
智慧型手機包絡追蹤器 IC 在哪些裝置領域影響最大?
智慧型手機包絡追蹤器 IC 正在對智慧型手機市場的多個領域產生重大影響,從高階旗艦設備到注重效率的中階型號。在高階和旗艦智慧型手機中,ET IC 用於管理與先進 5G 功能、大顯示器以及擴增實境(AR) 和高清視訊串流等資料密集型應用相關的高功率需求。支援毫米波 5G 和雙頻連接的高效能智慧型手機依靠 ET IC 來最佳化能源效率並確保平穩運行,而不會過度消耗電池。由於旗艦機型通常優先考慮長電池壽命和頂級性能,ET IC 旨在滿足消費者尋求優質功能的期望,同時不影響電源效率,從而有助於提高智慧型手機領域的用戶滿意度。
隨著製造商希望以更實惠的價格分佈提供 5G 功能和高性能功能,封包追蹤IC 也對中階智慧型手機產生了巨大影響。儘管 5G 的功率需求不斷增加,ET IC 仍使這些設備能夠維持電池壽命和溫度控管,從而使更多消費者能夠使用這些先進的連接功能。透過降低功耗和發熱,ET IC 使中階智慧型手機能夠實現可靠的高速連接,而無需大型電池或先進的冷卻系統。這種高效的電源管理對於注重成本的消費者來說尤其有價值。消費者希望獲得持久的電池壽命和可靠的連接,但又希望價格不高。 ET IC 使製造商能夠有效率地提供這些功能,滿足對中階5G 智慧型手機不斷成長的需求。
此外,ET IC 在新興遊戲和專業智慧型手機市場中越來越重要,這些市場優先考慮行動遊戲、串流媒體和其他要求苛刻的應用程式的高處理能力和持久連接。遊戲智慧型手機可以從 ET IC 中受益,因為即使在將功率放大器推至極限的密集操作期間,它們也需要穩定的性能。透過穩定電源並最大限度地減少過熱,ET IC 改善了用戶體驗,讓遊戲玩家可以玩更長時間,而不會遇到設備效能問題。隨著遊戲和內容創作在行動市場上變得越來越流行,包絡追蹤器IC 在支援這些高效能、頻繁使用的智慧型手機方面的作用變得越來越突出,確保即使在重負載下也能平穩運行,並有助於保證較長的電池壽命。
推動智慧型手機包絡追蹤器 IC 市場成長的因素有哪些?
智慧型手機包絡追蹤器 IC 市場的成長受到幾個關鍵因素的推動,例如 5G 技術的快速採用、對節能智慧型手機的需求不斷增加以及 RF 電源管理的進步。隨著5G網路在全球的擴展,對支援高頻率、低延遲和大資料量的智慧型手機的需求正在顯著增加。 ETIC 對於管理 5G 不斷增加的功率需求、確保高效運作、同時最大限度地減少電池消耗至關重要。 5G 基礎設施的推出推動了對增強電池壽命和溫度控管的組件的需求,使得 ET IC 對於實現下一代行動連接至關重要。 5G 的廣泛採用促使智慧型手機製造商將 ET IC 納入其設計中,以支援可靠的 5G 性能並提高能源效率。
另一個主要因素是對節能智慧型手機的需求不斷成長,因為消費者越來越重視電池壽命和效能。 ET IC 根據訊號要求動態調整射頻放大器的功率,從而在不犧牲連接品質的情況下最佳化能源使用,從而提高智慧型手機的能源效率。隨著環境永續性意識的增強,許多消費者正在尋找電池壽命長、盡量減少頻繁充電並降低能耗的設備。透過使智慧型手機能夠提供一致的性能,同時延長電池壽命,ETIC 滿足了消費者對能源效率和永續性的期望,使其成為現代智慧型手機設計中的重要組成部分。
RF 技術和電源管理能力的進步進一步推動 ET IC 市場的成長。 ET IC 支援多頻段和多模式功能,使智慧型手機能夠在不同網路類型和頻寬之間無縫切換,以最佳化不同訊號環境下的效能。隨著行動裝置和網路基礎設施變得越來越複雜,電源管理方面的這些進步對於智慧型手機提供快速、可靠的連接同時保持電池壽命至關重要。隨著設備製造商推進多頻段支援、高頻操作和人工智慧主導的功率最佳化等技術創新,對支援這些功能的先進 ET IC 的需求持續成長。我確信,5G 的採用、能源效率需求以及 RF 電源管理的進步等促進因素正在推動智慧型手機包絡追蹤器 IC 市場的成長,並確保這些組件對於未來的行動技術仍然至關重要。
調查範圍
本報告按價格分佈範圍、地區和國家(美國:千美元)分析了智慧型手機包絡追蹤器 IC 市場:
部分
價格分佈(溢價率、中型端、低階)
地區/國家
世界;美國;歐洲;英國;亞太地區其他歐洲國家;
Global Smartphone Envelope Tracker IC Market to Reach US$2.7 Billion by 2030
The global market for Smartphone Envelope Tracker IC estimated at US$1.3 Billion in the year 2023, is expected to reach US$2.7 Billion by 2030, growing at a CAGR of 11.4% over the analysis period 2023-2030. Premium Price Range, one of the segments analyzed in the report, is expected to record a 12.1% CAGR and reach US$1.5 Billion by the end of the analysis period. Growth in the Medium Price Range segment is estimated at 11.1% CAGR over the analysis period.
The U.S. Market is Estimated at US$332.1 Million While China is Forecast to Grow at 10.6% CAGR
The Smartphone Envelope Tracker IC market in the U.S. is estimated at US$332.1 Million in the year 2023. China, the world's second largest economy, is forecast to reach a projected market size of US$413.7 Million by the year 2030 trailing a CAGR of 10.6% over the analysis period 2023-2030. Among the other noteworthy geographic markets are Japan and Canada, each forecast to grow at a CAGR of 10.6% and 9.6% respectively over the analysis period. Within Europe, Germany is forecast to grow at approximately 8.2% CAGR.
Global Smartphone Envelope Tracker IC Market - Key Trends & Drivers Summarized
What Are Smartphone Envelope Tracker ICs and Why Are They Crucial for Mobile Performance?
Smartphone Envelope Tracker ICs (ET ICs) are specialized integrated circuits designed to optimize power efficiency in mobile devices by adjusting the power supply voltage to the radio frequency (RF) power amplifier based on real-time signal needs. This adaptive power control significantly reduces power consumption in smartphones, particularly in advanced communication modes like LTE, 5G, and Wi-Fi, where high data rates require substantial energy. By minimizing power loss and reducing heat generation, ET ICs improve the battery life and thermal management of smartphones, ensuring that users experience smoother performance without overheating issues, even during heavy usage or data-intensive activities.
As data speeds and network demands increase, envelope tracking has become essential for supporting high-performance mobile communication. Conventional power amplifiers often operate at fixed voltages, which leads to wasted energy and heat when handling variable signal amplitudes. ET ICs dynamically adjust the voltage supplied to these amplifiers, ensuring power is used only when needed. This efficiency is particularly beneficial for smartphones using 4G LTE-Advanced and 5G networks, where data transmission requires more power due to higher frequency bands and complex modulation. The ability of ET ICs to optimize power delivery at these high data rates enhances user experience by enabling longer battery life and improved device reliability, especially as smartphones support more complex applications and network functions.
The miniaturization and high integration of ET ICs are also vital for modern smartphone designs, which demand compact, multi-functional components to fit into increasingly thin form factors. Envelope tracking helps manufacturers meet these demands without compromising performance, extending battery life while minimizing device heating. With the ongoing shift toward 5G and the rise of applications such as video streaming, gaming, and augmented reality, envelope tracking ICs are essential in supporting both high performance and efficient power use in smartphones, making them indispensable components for the future of mobile technology.
How Are Technological Advancements and Network Upgrades Shaping the Smartphone Envelope Tracker IC Market?
Technological advancements in semiconductor manufacturing and RF technology are driving the evolution of envelope tracker ICs, enabling more efficient power management for high-speed mobile networks. Modern ET ICs are designed to support the high-frequency bands and advanced modulation schemes required by 5G networks, which place increased power demands on smartphones. These ICs are now built to operate across multiple frequency bands simultaneously, supporting seamless connectivity in smartphones that switch between 4G, 5G, and Wi-Fi networks. Furthermore, new-generation ET ICs leverage gallium nitride (GaN) and advanced silicon technologies, which offer higher efficiency and power handling capabilities, allowing them to meet the challenging demands of 5G communication while conserving battery life.
The rollout of 5G networks has been a significant driver in the development of more sophisticated envelope tracking ICs, as 5G’s millimeter-wave (mmWave) frequencies and multiple-input multiple-output (MIMO) technology require more power and precision in signal amplification. ET ICs designed for 5G ensure that power amplifiers operate efficiently across multiple channels and high bandwidths, reducing energy loss and minimizing heat. As manufacturers innovate with dual-channel ET ICs and other advanced architectures, smartphones can handle the power demands of 5G without sacrificing thermal stability or battery longevity. This is especially critical for next-generation smartphones that use mmWave 5G, which enables ultra-fast data speeds but requires efficient power management to prevent rapid battery depletion.
Advancements in AI and machine learning are also beginning to influence the development of ET ICs, as these technologies allow for predictive power management based on usage patterns and network conditions. By analyzing real-time data on signal strength and device activity, AI-enhanced ET ICs can make dynamic adjustments to the power amplifier voltage, optimizing energy usage more precisely. This predictive approach enables smartphones to adapt to varying network conditions efficiently, enhancing user experience while preserving battery life. Together, these technological advancements are not only meeting the power and efficiency demands of modern smartphones but are also paving the way for future capabilities in mobile devices as networks and applications continue to evolve.
Where Are Smartphone Envelope Tracker ICs Making the Greatest Impact Across Device Segments?
Smartphone envelope tracker ICs have a substantial impact across multiple segments of the smartphone market, from high-end flagship devices to mid-tier models focused on efficiency. In premium and flagship smartphones, ET ICs are essential for managing the high power demands associated with advanced 5G capabilities, large displays, and data-intensive applications like augmented reality (AR) and high-definition video streaming. High-performance smartphones that support mmWave 5G and dual-band connectivity rely on ET ICs to optimize power efficiency, ensuring smooth operation without excessive battery drain. As flagship models often prioritize long-lasting battery life alongside top-tier performance, ET ICs help manufacturers meet consumer expectations for premium features without compromising on power efficiency, enhancing user satisfaction in the high-end smartphone segment.
In mid-range smartphones, envelope tracking ICs are also making a significant impact as manufacturers look to deliver 5G capabilities and high-performance features at a more affordable price point. ET ICs enable these devices to maintain battery life and thermal management despite the increased power demands of 5G, helping make these advanced connectivity features accessible to a broader consumer base. By reducing power consumption and heat generation, ET ICs allow mid-range smartphones to deliver reliable, high-speed connectivity without requiring high-capacity batteries or advanced cooling systems. This efficient power management is particularly valuable for cost-sensitive consumers, who seek long-lasting battery life and dependable connectivity without the premium price tag. ET ICs enable manufacturers to offer these features efficiently, supporting the growing demand for mid-range 5G smartphones.
Additionally, ET ICs are increasingly important in the emerging market for gaming and specialized smartphones, which prioritize high processing power and sustained connectivity for mobile gaming, streaming, and other demanding applications. Gaming smartphones benefit from ET ICs because they require consistent performance during intensive activities that push power amplifiers to their limits. By stabilizing power supply and minimizing overheating, ET ICs improve user experience, allowing gamers to play for extended periods without device performance issues. As gaming and content creation gain popularity in the mobile market, the role of envelope tracker ICs in supporting these high-performance, high-usage smartphones is becoming more prominent, helping ensure smooth operation and battery longevity even under heavy loads.
What Are the Key Drivers Fueling Growth in the Smartphone Envelope Tracker IC Market?
The growth in the smartphone envelope tracker IC market is driven by several key factors, including the rapid adoption of 5G technology, the rising demand for energy-efficient smartphones, and advancements in RF power management. As 5G networks expand globally, the demand for smartphones that can handle high-frequency bands, low latency, and large data volumes has increased significantly. ET ICs are crucial for managing the increased power requirements of 5G, ensuring efficient operation while minimizing battery drain. The rollout of 5G infrastructure has fueled a need for components that enhance battery life and thermal management, making ET ICs essential in enabling the next generation of mobile connectivity. This widespread adoption of 5G is driving smartphone manufacturers to incorporate ET ICs in their designs, supporting reliable 5G performance and enhanced energy efficiency.
The rising demand for energy-efficient smartphones is another major driver, as consumers increasingly prioritize long battery life alongside performance. ET ICs improve smartphone energy efficiency by dynamically adjusting power to the RF amplifier based on signal requirements, optimizing energy usage without sacrificing connectivity quality. With growing awareness of environmental sustainability, many consumers are seeking devices that offer extended battery life, minimizing the need for frequent charging and reducing energy consumption. By enabling smartphones to conserve battery power while delivering consistent performance, ET ICs align with these consumer expectations for energy efficiency and sustainability, making them a valuable component in the design of modern smartphones.
Advancements in RF technology and power management capabilities are further propelling the growth of the ET IC market. ET ICs that support multi-band and multi-mode functionality enable smartphones to seamlessly switch between different network types and frequency bands, optimizing performance in varied signal environments. With the increasing complexity of mobile devices and network infrastructure, these advancements in power management are critical for ensuring smartphones can deliver fast, reliable connections while maintaining battery longevity. As device manufacturers innovate with multi-band support, high-frequency operation, and AI-driven power optimization, the demand for advanced ET ICs that support these functions continues to rise. Together, these drivers—5G adoption, energy efficiency demands, and advancements in RF power management—are fueling growth in the smartphone envelope tracker IC market, ensuring that these components remain essential for the future of mobile technology.
SCOPE OF STUDY:
The report analyzes the Smartphone Envelope Tracker IC market in terms of US$ Thousand by the following Price Range, and Geographic Regions/Countries:
Segments:
Price Range (Premium Range, Medium Range, Low Range)
Geographic Regions/Countries:
World; USA; Canada; Japan; China; Europe; France; Germany; Italy; UK; Rest of Europe; Asia-Pacific; Rest of World.
Select Competitors (Total 44 Featured) -