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市場調查報告書
商品編碼
1725058
2032 年環形變壓器市場預測:按產品類型、功率容量、應用和地區進行的全球分析Toroidal Power Transformer Market Forecasts to 2032 - Global Analysis By Product Type, Power Capacity, Application and By Geography |
根據 Stratistics MRC 的數據,全球環形變壓器市場預計在 2025 年達到 7.2026 億美元,到 2032 年將達到 13.1921 億美元,預測期內的複合年成長率為 9.03%。
環形變壓器是一種鐵芯形狀像甜甜圈的變壓器,通常由連續的鐵氧體或矽鋼帶製成。這種創新設計比傳統的層壓變壓器具有許多優勢,包括尺寸更小、電磁干擾 (EMI) 更低、效率更高。這種對稱形狀可以更好地限制磁芯內的磁通量,從而減少洩漏並增強能量傳輸。此外,環形變壓器廣泛應用於音訊設備、醫療設備、工業控制、電源和其他需要緊湊設計和低噪音水平的領域。
據印度電氣電子工業協會(IEEMA)稱,印度電力變壓器產量一直保持溫和成長,最近報告的增幅為2%。然而,第四季該公司面臨挑戰,產量下降6%,出口下降2.5%。
節能解決方案的需求日益增加
能源效率是現代電氣設計的關鍵要素,尤其是在全球永續性目標和電費上漲的背景下。為了響應《京都議定書》和《巴黎協定》等強調節能的國際環境標準,環形電力變壓器由於具有優異的磁通控制性能和降低的鐵芯損耗,比傳統的層壓鐵芯變壓器具有更高的能量轉換效率。此外,它們運作時產生的熱量極少,非常適合連續工作應用,從而降低了能耗和營運成本。
製造成本高
與傳統EI鐵芯變壓器相比,環形變壓器的製造成本相對較高,這是限制市場的主要因素之一。環形磁芯所需的精密繞線需要花費時間和精力,特別是對於定製或小批量產品而言。環形變壓器通常必須手動或半自動地繞製,而標準變壓器則可以輕鬆地用自動機器繞製,從而導致更高的人事費用。此外,成本敏感的應用和行業可能會因這種增加的複雜性而被推遲,因為它意味著更長的生產時間和更高的最終用戶價格。
改進醫療設備技術
從治療設備到診斷工具,醫療設備的日益複雜化需要超靜音、精確和可靠的電源解決方案。環形變壓器非常適合此類應用,因為它們產生的電磁干擾(EMI)更少且更安靜。隨著全球醫療保健支出的增加,尤其是在老化社會和新興經濟體,對先進、安全、微型變壓器的需求預計也會成長。此外,用於診斷成像設備、實驗室診斷和生命維持系統的客製化環形變壓器也具有商機。
來自傳統變壓器的競爭壓力
儘管環形變壓器具有技術優勢,但傳統的層壓EI鐵芯變壓器由於其成本低、供應鏈完善和易於製造,仍然佔據許多市場的主導地位。在效率和緊湊性不是最重要的應用中,客戶通常會選擇更知名且價格更合理的選項。此外,環形變壓器的採用仍然受到持續競爭的嚴重威脅,限制了其市場滲透率和成長潛力,尤其是在大眾市場和成本敏感的行業。
COVID-19疫情對環形變壓器市場產生了多方面的影響。在該行業發展的早期階段,全球供應鏈中斷、工廠關閉和勞動力短缺導致生產和交付延遲。銅和芯層壓板等關鍵原料也面臨可得性和價格波動的問題。然而,在疫情期間,對環形設計所提供的小型、可靠和節能變壓器的需求增加,醫療設備、家用電子產品和可再生能源系統的需求也有所增加。疫情過後,這種轉變為智慧型設備、醫療保健和家庭電力系統的長期應用鋪平了道路,有助於部分抵消工業衰退帶來的損失。
預計電力變壓器部分在預測期內將成為最大的部分。
預計預測期內電力變壓器部分將佔據最大的市場佔有率。這些變壓器廣泛應用於商業、住宅和工業領域,以實現有效的電壓變換和電氣隔離。環形設計減少了電磁干擾並提高了效率,使其成為現代電源管理系統的理想選擇。此外,隨著全球電力需求的增加和基礎設施的日益現代化,環形變壓器在電動車、可再生能源系統和敏感電子設備等應用中越來越受歡迎。
可再生能源產業預計將在預測期內實現最高複合年成長率
預計可再生能源產業將在預測期內實現最高成長率。隨著各國向更清潔能源來源邁進,環形變壓器因其體積小、電磁干擾低、效率高,在太陽能逆變器、風力發電系統和電池能源儲存系統中越來越受歡迎。即使在惡劣條件下,它們也能可靠、安靜地運行,使其成為分散式可再生能源裝置的理想選擇。此外,由於政府激勵措施、碳中和目標以及分散式能源系統的出現推動了持續的需求,該行業已成為環形變壓器的關鍵成長引擎。
預計亞太地區將在預測期內佔據最大的市場佔有率。這是由於韓國、日本、中國和印度等國家基礎設施、都市化和工業的快速發展。這一優勢很大程度上歸功於該地區強大的製造業基礎以及家電、可再生能源和電動汽車等行業對節能電子元件日益成長的需求。由於政府鼓勵採用清潔能源和現代化電網的優惠計劃,環形變壓器的使用也在成長。此外,亞太地區在全球市場的主導地位也得益於其廉價的勞動力和原料,從而可以進行大規模生產。
在預測期內,由於智慧電網技術、電動車和可再生能源基礎設施支出的增加,預計北美將呈現最高的複合年成長率。隨著該地區重視能源效率並對電能品質和電磁干擾制定嚴格的監管標準,環形變壓器在太陽能逆變器、電動車充電站和尖端醫療設備等應用中的應用正在加速。此外,家用和商用電子設備對更小、更安靜的電源解決方案的需求日益成長,這刺激了美國和加拿大的創新和市場成長。
According to Stratistics MRC, the Global Toroidal Power Transformer Market is accounted for $720.26 million in 2025 and is expected to reach $1319.21 million by 2032 growing at a CAGR of 9.03% during the forecast period. A toroidal power transformer is a kind of electrical transformer with a core shaped like a doughnut and usually composed of a continuous strip of ferrite or silicon steel. This innovative design has a number of benefits over conventional laminated transformers, such as smaller size, lower electromagnetic interference (EMI), and increased efficiency. This symmetrical shape reduces leakage and enhances energy transfer by better containing the magnetic flux within the core. Moreover, audio equipment, medical devices, industrial controls, and power supplies-where compact design and low noise levels are essential-all make extensive use of toroidal transformers.
According to the Indian Electrical & Electronics Manufacturers Association (IEEMA), the production of power transformers in India has experienced modest growth, with a 2% increase reported recently. However, the industry faced challenges in the fourth quarter, witnessing a 6% decline in production and a 2.5% decrease in exports.
Increasing need for energy-saving solutions
Modern electrical design has made energy efficiency a key component, particularly in light of global sustainability goals and rising electricity costs. In line with international efforts to meet environmental standards like the Kyoto Protocol and the Paris Agreement, which emphasize energy conservation, toroidal power transformers, with their superior magnetic flux containment and reduced core losses, offer higher energy conversion efficiency than traditional laminated core transformers. Additionally, they are also ideal for continuous-use applications because they operate with minimal heat generation, which helps organizations reduce both energy consumption and operating costs.
Expensive production costs
The comparatively high manufacturing costs of toroidal power transformers in comparison to conventional E-I core transformers are one of the main factors limiting the market. Particularly for custom-built or low-volume units, the precise winding that is necessary around the toroidal core takes more time and effort. Toroidal transformers frequently need manual or semi-automated winding, which raises labor costs, in contrast to standard transformers, which are easily wound using automated machinery. Furthermore, cost-sensitive applications and industries may be put off by this increased complexity, which also results in longer production times and higher end-user pricing.
Improvements in healthcare equipment technology
Ultra-quiet, accurate, and dependable power solutions are needed due to the growing sophistication of medical devices, which include everything from therapeutic machines to diagnostic tools. Toroidal transformers are ideal for these uses because of their low electromagnetic interference (EMI) and silent operation. The need for sophisticated, secure, and small transformers is anticipated to increase as healthcare spending rises globally, especially in aging populations and emerging economies. Moreover, this creates opportunities for customized toroidal transformers made for imaging devices, laboratory diagnostics, and life support systems.
Competitive pressure from traditional transformers
Traditional laminated E-I core transformers still rule many markets despite the technical benefits of toroidal power transformers because of their lower cost, well-established supply chains, and simplicity of manufacturing. Customers frequently choose the more recognizable and reasonably priced options for applications where efficiency or compactness are not top concerns. Additionally, the adoption of toroidal transformers is still seriously threatened by this ongoing competition, which restricts their market penetration and growth potential, particularly in mass-market and cost-sensitive industries.
The COVID-19 pandemic affected the market for toroidal power transformers in a variety of ways. Production and delivery delays were caused by global supply chain failures, factory closures, and labour shortages during the industry's early stages. Crucial raw materials like copper and core laminations also had problems with availability and price volatility. However, during the pandemic, there was a corresponding increase in demand for small, dependable, and energy-efficient transformers-domains in which toroidal designs excel-as well as for medical equipment, home electronics, and renewable energy systems. After COVID, this change cleared the path for long-term adoption in smart devices, healthcare, and home power systems, helping to partially offset the losses from industrial slowdowns.
The power transformers segment is expected to be the largest during the forecast period
The power transformers segment is expected to account for the largest market share during the forecast period. These transformers are widely used for effective voltage conversion and electrical isolation in the commercial, residential, and industrial sectors. Their toroidal design makes them perfect for contemporary power management systems because it reduces electromagnetic interference and increases efficiency. Furthermore, toroidal power transformers are becoming more and more popular in applications such as electric vehicles, renewable energy systems, and delicate electronic devices as the world's electricity demand increases and infrastructure becomes more modern.
The renewable energy segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the renewable energy segment is predicted to witness the highest growth rate. Toroidal transformers are becoming more and more popular in solar inverters, wind power systems, and battery energy storage systems as countries move toward cleaner energy sources because of their small size, low electromagnetic interference, and high efficiency. They are perfect for dispersed renewable installations because they can function dependably and silently in harsh conditions. Moreover, this segment is positioned as a major growth engine within the toroidal transformer landscape due to the continued demand driven by government incentives, carbon neutrality targets, and the emergence of decentralized energy systems.
During the forecast period, the Asia Pacific region is expected to hold the largest market share, fueled by the swift development of infrastructure, urbanization, and industry in nations like South Korea, Japan, China, and India. This dominance is largely due to the region's robust manufacturing base and rising demand for energy-efficient electronic components in industries like consumer electronics, renewable energy, and electric vehicles. The use of toroidal transformers is also increased by advantageous government programs that encourage the adoption of clean energy and grid modernization. Additionally, Asia-Pacific's dominance in the global market is further supported by the availability of inexpensive labor and raw materials, which enable high production volumes.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, driven by rising expenditures on smart grid technologies, electric cars, and renewable energy infrastructure. Adoption of toroidal transformers in applications like solar inverters, EV charging stations and cutting-edge medical devices has accelerated due to the region's emphasis on energy efficiency and strict regulatory standards for power quality and electromagnetic interference. Furthermore, the increasing need for small and silent power solutions in home and business electronics keeps spurring innovation and market growth in both the US and Canada.
Key players in the market
Some of the key players in Toroidal Power Transformer Market include Johnson Electric Coil Company, ABB Ltd., Eaton, Toroid Corporation, Hammond Manufacturing Co. Ltd, Miracle Electronic Devices Pvt Ltd., Triad Magnetics Inc, Agile Magnetics Inc, Pico Electronics Inc., Noratel AS, Talema Group LLC, Bel Fuse, Inc., Schuntermann GmbH, Lenco Electronics, Inc. and Amgis, LLC.
In March 2025, ABB has signed a Leveraged Procurement Agreement (LPA) to support as the automation partner for Dow's Path2Zero project at Fort Saskatchewan in Alberta, Canada. According to Dow, the project, which is currently under construction, will create the world's first net-zero Scope 1 and 2 greenhouse gas emissions ethylene and derivatives complex1, producing the essential building blocks needed for many of the materials and products that society relies on.
In March 2025, Intelligent power management company Eaton announced it has signed an agreement to acquire Fibrebond Corporation, a designer and builder of pre-integrated modular power enclosures for data center, industrial, utility and communications customers. Under the terms of the agreement, Eaton will pay $1.4 billion for the acquisition of Fibrebond, which is expected to generate $110 million of estimated 2025 adjusted EBITDA.
In September 2024, Hammond Power Solutions Inc. announced that it has entered into a definitive agreement to acquire the assets relating to the operations of Micron Industries Corporation, a company based in the United States. Micron Industries is a leading provider of control transformers and other electrical products and had approximately $23 million USD of revenue in 2023.