市場調查報告書
商品編碼
1556152
SiC MOSFET晶片·模組市場:現狀分析與預測(2024年~2032年)SiC MOSFET Chips (Devices) and Module Market: Current Analysis and Forecast (2024-2032) |
SiC MOSFET 晶片和模組市場受到對節能解決方案不斷增長的需求、電動汽車(EV) 普及率的提高以及可再生能源發電項目(作為各地區/主要國家政府主導的綠色舉措的一部分)的推動。推動 SiC MOSFET 晶片和模組市場的主要因素是由於節能顯著和性能提高,各工業領域的強勁需求,進一步支持了成長。全球電動車的日益普及也推動了汽車製造商透過更高效的電力電子設備提高車輛性能並擴大駕駛里程的需求不斷增長。
SiC 的技術進步和製造成本的降低為市場帶來了巨大的機會。市場潛力巨大的主要地區包括北美、歐洲和亞太地區。北美:美國在汽車生產和工業領域擁有最大的影響力。中國和日本是亞太地區的領先市場,擁有強大的電動車採用能力和對再生能源基礎設施的大量投資。看起來它將在未來幾年繼續處於引領這個市場的最前沿。
按類型劃分,市場分為 SiC MOSFET 晶片/裝置和 SiC MOSFET 模組。其中,SiC MOSFET模組佔據較大佔有率。各種應用中熱性能的提高和開關損耗的降低正在增加電動車 (EV) 中對高效電力電子裝置的需求,從而推動了 SiC MOSFET 模組市場的成長。再生能源系統(包括太陽能和風力發電)的成長趨勢需要由 SiC MOSFET 模組支援的先進功率轉換解決方案。工業應用受益於 SiC MOSFET 模組的高功率密度和系統效率提高特性。全球推動節能技術以減少碳排放並遵守嚴格的監管標準也可能增強需求。碳化矽技術正在迅速發展,製造成本正在下降,使得這些類型的模組更容易獲得。組合多種功能的能力簡化了設計和整體系統的複雜性,使其成為適合各種應用的有吸引力的模組。
依應用劃分,SiC MOSFET 晶片和模組市場分為汽車、工業、光伏等。汽車領域在 2023 年錄得最高收入。汽車是電力電子產品(尤其是電動車)需求不斷增長的主要推動力,而 SiC MOSFET 市場則依賴更有效率的功率逆變器來延長電池壽命和行駛里程。與傳統矽元件相比,SiC MOSFET 的功耗顯著降低,開關速度更快,非常適合用於電動車系統。這一趨勢歸因於對 SiC MOSFET 的需求不斷增長。有關碳排放的嚴格規範和環境法規正在推動電動車的大規模採用。可用功能的增加,加上 SiC 技術的進步和成本的下降,使 SiC MOSFET 成為對汽車製造商有吸引力的系統。其次,在全球範圍內,永續和再生能源的發展正在推動電動車的發展。
為了更了解SiC MOSFET晶片模組產業的市場滲透率,將市場分為北美(美國、加拿大、北美其他地區)、歐洲(德國、英國、法國、西班牙、義大利、其他地區)歐洲) ,根據亞太地區(中國、日本、印度、澳洲、亞太地區其他地區)和世界其他地區的全球影響力進行分析。 2023 年,亞太地區佔據了 SiC MOSFET 晶片和模組市場的很大佔有率。快速的工業化和城市化使亞太地區成為 SiC MOSFET 市場的領導者。在區域層面,亞太地區 (APAC) 由於快速的工業成長率、快速的人口擴張以及電動車 (EV) 的日益普及而被公認為最突出的區域之一。該市場由中國、日本和印度等國家主導,這些國家除了擁有強大的再生能源產業外,還擁有成熟的汽車基礎設施。中國作為一個大國,正在大力投資電動車生產和基礎設施。日本對電子產業發展的支持和韓國的半導體創新也是主要的市場激勵因素。各種再生能源項目的擴張、對具有更高功率轉換比的電力電子產品的需求不斷增加以及政府為促進電動車採用而開展的眾多活動是支持亞太地區市場成長的主要因素。東亞的半導體市場正在快速成長,除了堅實的製造基礎之外,各種技術進步也正在支持線上計量系統的成長。此外,有利的政府政策、綠色技術和再生能源指令正在推動 SiC MOSFET 的成長。亞太地區領先公司的研發投資正在推動整個亞太地區的創新和市場成長。
市場上的主要公司包括 Wolfspeed、英飛凌科技、意法半導體、羅姆、Semiconductor Components Industries, LLC、Littelfuse、Microchip、三菱電機、GeneSiC Semiconductor Inc.、深圳基礎半導體有限公司。
Silicon Carbide Metal-Oxide-Semiconductor Field-Effect Transistors (MOSFETs) are semiconductor devices that offer both good characteristics like high performance and can be utilized in power switching purposes over a wide range of frequencies compared to the related silicon types. For electric vehicles, SiC MOSFETs enable more efficient operation for extended mileage between charges and longer battery life, while in renewable energy systems, the use of SiC improves solar inverter and wind turbine efficiency.
The SiC MOSFET Chips and Module Market is expected to grow at a robust CAGR of 21.6% during the forecast period, on account of growing demand for energy-efficient solutions, increasing adoption of electric vehicles (EVs), expansion in renewable electricity generation projects as part of green initiatives led by governments across regions/prominent countries, and stringent government regulations promoting energy efficiency and carbon emission reduction. Key factors driving the SiC MOSFET Chips and Modules market include the strong demand in a wide range of industries due to their substantial energy savings and performance benefits, further fueling the growth. Rising global penetration of electric vehicles worldwide is another factor that spurs demand increases by car manufacturers to improve vehicle performance and extend driver range via more efficient power electronics.
Technological advancements in SiC and reduced manufacturing costs will serve sizeable opportunities for the market. Some of the key regions identified as having high market potential are North America, Europe, and Asia-Pacific. North America: The U.S. has the largest presence, with its car production and industrial sectors. China and Japan are the major countries with high electric vehicle adoption capacities as well as investments in renewable energy infrastructure, leading markets in the Asia-Pacific region. They are likely to remain at the forefront of leading this market over the next few years.
Based on Type, the market is categorized into Sic MOSFET Chip and Device and Sic MOSFET Module. Among these, the SiC MOSFET Module has a significant market share. The improved thermal performance and reduced switching losses over a wide range of different applications have been driving the demand for high-efficiency power electronics required within electric vehicles (EVs) to a greater extent, fueling SiC MOSFET Module Market growth. The increasing inclination toward renewable energy systems, including solar and wind power, requires sophisticated power conversion solutions that are met by SiC MOSFET Modules. In industrial use cases, the high-power density and system efficiency-improving capabilities of these modules are beneficial. Demand may also be reinforced by the global push for energy-efficient technologies to lower carbon emissions and comply with stringent regulatory standards. Because Silicon Carbide technology is advancing so fast and manufacturing costs are dropping, these kinds of modules are becoming more available. Their capability to combine several functions simplifies design and overall system complexity, making them attractive for different applications.
Based on Application, the SiC MOSFET Chips and Module market is divided into Car, Industrial, Photovoltaic (PV), and Others. The car segment registered the highest revenue during the year 2023. Vehicles are the main driver for the expanding need for power electronics, especially in EVs, which depend on more efficient power inverters to extend battery life and driving range in the SiC MOSFET market. As these lose much less power and switch faster than conventional silicon components, they are perfect for use in EV systems. This trend is driven by the increasing demand for SiC MOSFETs, as stringent norms related to carbon emissions and environmental regulations pushing for the mass adoption of EVs are propelling this growth. The growing number of features available, combined with greater SiC technology advances and declining costs, make these systems more appealing to carmakers. Secondly, on a global scale, the move towards sustainable and renewable energy sources is boosting EV's fortune as well.
For a better understanding of the market adoption of the SiC MOSFET Chips and Module industry, the market is analyzed based on its worldwide presence in countries such as North America (U.S.A., Canada, and Rest of North America), Europe (Germany, United Kingdom, France, Spain, Italy, and Rest of Europe), Asia-Pacific (China, Japan, India, Australia, and Rest of Asia-Pacific), Rest of World. APAC captured a significant share of the SiC MOSFET Chips and Module market in 2023. Fast-paced industrialization and urbanization make APAC a leader in the SiC MOSFET market. On a regional level, Asia-Pacific (APAC) has been identified as one of the most prominent regions due to its fast industrial growth rate, rapid population expansion, and growing adoption of electric vehicles (EVs). The market is dominated by countries such as China, Japan, and India, which have a mature automotive base in addition to robust renewable energy sectors. One big player, China, has invested heavily in EV production and infrastructure. Support for Japanese electronics industry development and South Korea's semiconductor technology innovation are also significant market incentives. The expansion of various renewable energy projects, the growing need for power electronics with improved power conversion ratios, and numerous government campaigns to promote EV adoption are key factors supporting market growth in APAC. The rapidly growing semiconductor market in East Asia and the robust manufacturing base, along with a wide range of technological advancements, support growth for inline metrology systems. Additionally, favorable government policies and green technology and renewable energy mandates fuel the growth of SiC MOSFETs. Investments in research and development made by major APAC players are driving innovation and market growth across APAC, given their competitive landscape.
Some of the major players operating in the market include Wolfspeed, Infineon Technologies, STMicroelectronics, ROHM, Semiconductor Components Industries, LLC, Littelfuse, Microchip, Mitsubishi Electric, GeneSiC Semiconductor Inc., and Shenzhen BASiC Semiconductor LTD.