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市場調査レポート
商品コード
1792697
高圧コンデンサ市場:市場規模・シェア・動向・予測、種類別、最終用途産業別、地域別(2025~2033年)High-Voltage Capacitor Market Size, Share, Trends and Forecast by Type, End Use Sector, and Region, 2025-2033 |
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高圧コンデンサ市場:市場規模・シェア・動向・予測、種類別、最終用途産業別、地域別(2025~2033年) |
出版日: 2025年08月01日
発行: IMARC
ページ情報: 英文 146 Pages
納期: 2~3営業日
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世界の高圧コンデンサの市場規模は2024年に136億米ドルに達しました。今後、IMARC Groupは、2033年には279億米ドルに達し、2025~2033年の成長率(CAGR)は7.88%になると予測しています。再生可能エネルギーの統合、送電網の近代化、電気インフラの拡大、送電、電気自動車、産業オートメーションへの投資の増加、エネルギー効率の高いソリューションへのニーズの高まり、スマートグリッド技術の進歩などの需要の増加が、高圧コンデンサ市場の成長を促進する主な要因となっています。
電気インフラの拡大
増大するエネルギー需要に対応し、再生可能エネルギー源を統合するため、電力網の近代化と拡張への投資が増加しており、高圧コンデンサへのニーズを後押ししています。例えば、2024年2月、国営電力網公社(Power Grid Corporation)は、国内の送電プロジェクト実施のため、約656ルピー相当の投資を取締役会が承認したと発表しました。取締役会は、2025年11月15日の試運転スケジュールで、514.66ルピーの概算費用で、Unified Load Dispatch and Communication(ULDC)Phase-III SCADA/EMS Upgradation Project Northern Region SLDCsの実施を承認しました。プロジェクト投資委員会は、Bhiwaniの765/400 kV、1500 MVA変圧器の増設(第4)を承認しました。
再生可能エネルギーの普及
風力発電や太陽光発電のような再生可能エネルギーへのシフトが進む中、電圧変動を管理し、送電網の安定性を向上させるために高圧コンデンサが必要とされています。IBEFによると、新・再生可能エネルギー省は、首相のCOP26での発表通り、2030年までに非化石ベースの発電量を500GWとすることを目標としており、2023年にはさらに1350GWの再生可能エネルギー容量を設置し、約74,000ルピー(89億米ドル)の投資に相当します。調査機関ICRAによると、インドの再生可能エネルギー設備容量は、2023年12月時点の1億3,657万kWから、2025年3月までに約1億7,000万kWに増加すると予想されています。インドが2070年までに炭素排出量ゼロを達成し、2030年までに電力需要の50%を再生可能エネルギーで賄う意向を表明したことは、気候変動と闘う世界の取り組みにおいて歴史的な意味を持っています。
台頭するスマートグリッド技術
電気システムの監視と制御を強化するスマートグリッドの導入が進むにつれ、効率的で信頼性の高い配電を支える高圧コンデンサの需要が高まっています。例えば、2023年12月、ISGAN(国際スマートグリッド・アクション・ネットワーク)は、スマートグリッドを世界的に推進するための新たな取り組みを開始しました。エネルギーシステムにおけるスマート配電網の役割を含む、クリーンエネルギー移行に向けた不確実性の下での電力ネットワーク計画と実施」と題された新しい「灯台プロジェクト」は、スマート配電網に取り組むネットワークズの6つの作業部会間の緊密な協力を開始することを目的としています。
送電網インフラ強化への需要の高まり
世界の再生可能エネルギーへのシフトは、電力需要の増加と相まって、最新かつ効率的で信頼性の高い送電網インフラの必要性を高めています。太陽光や風力などの変動する再生可能エネルギーを送電網に統合する必要があり、そのためには高度なエネルギー貯蔵、電圧調整、力率補正機能が必要となり、高圧コンデンサが不可欠となります。コンデンサは、特に分散型発電の普及が進むにつれて、電圧変動の平滑化、ノイズ・フィルタリング、送電網の安定化において重要な役割を果たしています。さらに、スマートグリッド、マイクログリッド、高電圧直流(HVDC)システムの用途が拡大するにつれ、コンデンサはより高い電圧で動作し、より長い寿命を持ち、熱管理を改善する必要があります。このような動向は、世界のグリッド近代化構想に向けた先進コンデンサの継続的な技術革新と市場需要につながると思われます。
産業オートメーションと電気自動車(EV)の成長
産業オートメーションと電気自動車(EV)の普及は、高圧コンデンサ市場に強い影響を与えています。産業オートメーションでは、コンデンサはパワーエレクトロニクス、モータードライブ、インバーター、ロボットで重要な役割を担っており、信頼性の高いエネルギー貯蔵とノイズ除去が、動作精度と機器の耐久性を達成するために必要です。工場がネットワーク化されたスマートマシンでインダストリー4.0に移行するにつれ、堅牢で小型化されたコンデンサへの需要が高まっています。同様に、急成長するEV産業では、車載充電器、バッテリー管理システム、トラクション・インバーター用の高圧コンデンサが求められています。コンデンサは高温に耐え、急速な充放電サイクルを持ち、過酷な車載環境に耐える長期信頼性を確保しなければならないです。この二重の需要が技術開発を促進し、世界中の高性能コンデンサ市場の範囲を拡大しています。
The global high-voltage capacitor market size reached USD 13.6 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 27.9 Billion by 2033, exhibiting a growth rate (CAGR) of 7.88% during 2025-2033. The increasing demand for renewable energy integration, grid modernization, the expansion of electrical infrastructure, the rising investment in power transmission, electric vehicles, and industrial automation, the growing need for energy-efficient solutions, and advancements in smart grid technologies are some of the major factors propelling the high-voltage capacitor market growth.
Expansion of Electrical Infrastructure
The increasing investments in modernizing and expanding power grids to accommodate growing energy demands and integrate renewable energy sources drive the need for high-voltage capacitors. For instance, in February 2024, the State-owned Power Grid Corporation announced that its board had approved an investment worth about Rs 656 crore for the implementation of electricity transmission projects in the country. The Board of Directors approved the implementation of Unified Load Dispatch and Communication (ULDC) Phase-III SCADA/EMS Upgradation Project Northern Region SLDCs at an estimated cost of Rs 514.66 crore with commissioning schedule of November 15, 2025. The Committee of Directors on Investment on Projects approved the augmentation of 765/400 kV, 1500 MVA transformer (4th) at Bhiwani at an estimated cost of Rs 141.09 crore, scheduled to be commissioned by May 5, 2025.
Widespread Adoption of Renewable Energy
The rising shift toward renewable energy sources like wind and solar power requires high-voltage capacitors to manage voltage fluctuations and improve grid stability. According to the IBEF, the Ministry of New and Renewable Energy targets 500 GW of non-fossil-based electricity generation by 2030, as per the Prime Minister's COP26 announcement, with an added installation of 13.5 GW renewable energy capacity in 2023, corresponding to an investment of around Rs. 74,000 crores (US$ 8.90 billion). India's installed renewable energy capacity is expected to increase to about 170 GW by March 2025 from the level of 136.57 GW as of December 2023, according to research agency ICRA. India's announcement that it intends to achieve net zero carbon emissions by 2070 and to meet 50% of its electricity needs from renewable sources by 2030 marks a historic point in the global effort to combat climate change.
Rising Smart Grid Technologies
The growing implementation of smart grids, which enhance monitoring and control of electrical systems, increases the demand for high-voltage capacitors that support efficient and reliable power distribution. For instance, in December 2023, ISGAN (International Smart Grid Action Network) launched new initiatives to advance smart grids globally. A new 'Lighthouse Project' entitled 'Electricity network planning and implementation under uncertainty for the clean energy transition including the roles of smart distribution grids in energy systems' is aimed to initiate closer collaboration between the Networks' six working groups to address smart distribution grids.
Increased Demand for Grid Infrastructure Enhancement
The shift towards renewable energy globally, combined with increasing electricity demand, has heightened the need for up-to-date, efficient, and reliable power grid infrastructure. Variable renewables such as solar and wind need to be integrated into power grids, which in turn require advanced energy storage, voltage regulation, and power factor correction functions where high-voltage capacitors are vital. Capacitors play a vital role in smoothing voltage fluctuations, noise filtering, and grid stability, particularly as decentralized power generation becomes increasingly prevalent. In addition, growing applications for smart grids, microgrids, and high-voltage direct current (HVDC) systems require capacitors to operate at higher voltages, with longer lifetimes, and improve thermal management. These trends are likely to translate into ongoing innovation and market demand for advanced capacitors for grid modernization initiatives globally.
Growth of Industrial Automation and Electric Vehicles (EVs)
The growth of industrial automation and electric vehicle (EV) adoption is strongly influencing the high-voltage capacitor market. In industrial automation, capacitors play a key role in power electronics, motor drives, inverters, and robots, where dependable energy storage and noise elimination are necessary to achieve operational accuracy and equipment durability. As factories migrate towards Industry 4.0 with networked smart machines, the demand for rugged and miniaturized capacitors increases. Likewise, the burgeoning EV industry demands high-voltage capacitors for onboard chargers, battery management systems, and traction inverters. Capacitors have to survive high temperatures, have fast charge/discharge cycles, and ensure long-term reliability for rugged automotive conditions. This double demand is driving technological development and increasing the scope of the market for high-performance capacitors worldwide.
Plastic film accounts for the majority of the market share
Based on the high-voltage capacitor market outlook, the plastic film holds the largest dielectric segment of the market due to its excellent electrical insulation properties, stability, and durability. Plastic films, such as polypropylene and polyester, offer high breakdown voltage, low losses, and good thermal resistance, making them ideal for high-voltage applications. They are also lightweight and cost-effective as compared to other dielectric materials. These characteristics contribute to their widespread use in various high-voltage capacitors, supporting their dominance in the market.
Above 14000V holds the largest share of the industry
The above 14,000V segment holds the largest capacity share in the market due to its critical role in heavy-duty applications, such as power transmission, industrial machinery, and renewable energy systems. Capacitors in this range are essential for stabilizing and supporting high-voltage grids and equipment, ensuring efficient energy transmission over long distances. As industries demand more robust energy infrastructure, particularly in regions experiencing rapid urbanization and industrialization, the need for high-capacity capacitors continues to grow.
Power generation represents the leading market segment
Power generation holds the largest application segment of the high-voltage capacitor market due to the growing demand for a stable and efficient energy supply. High-voltage capacitors are essential in power generation systems for voltage regulation, reactive power compensation, and improving grid stability. With the increasing integration of renewable energy sources like wind and solar, capacitors help manage voltage fluctuations and enhance energy transmission. The expansion of power generation infrastructure worldwide, particularly in emerging economies, further drives the segment growth.
Asia Pacific leads the market, accounting for the largest high-voltage capacitor market share
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, Argentina, Colombia, Chile, Peru and others); and the Middle East and Africa (Turkey, Saudi Arabia, Iran, United Arab Emirates, and others). According to the report, Asia Pacific represents the largest regional market for high-voltage capacitor.
The increasing electricity demand, rapid urbanization, and industrial growth are driving the market growth across the region. Governments in the region are investing heavily in upgrading and expanding power infrastructure to meet these needs which is fueling the growth of the market. The push for renewable energy integration, particularly from wind and solar sources, is another key driver, as high-voltage capacitors are essential for stabilizing grid voltage. Additionally, the rise of electric vehicles and smart grid projects across countries like China, India, and Japan further fuels market growth. For instance, in May 2024, Tata Power Delhi Distribution Limited (Tata Power-DDL), a power utility supplying electricity to a populace of 7 million in North Delhi, signed a Memorandum of Understanding (MoU) with the India Smart Grid Forum (ISGF) to collaborate on a Vehicle-to-Grid (V2G) Technology Demonstration Project in Delhi.