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市場調查報告書
商品編碼
1700187
2032 年電動車車載充電器市場預測:按功率、充電模式、車輛類型、推進類型、應用、最終用戶和地區進行的全球分析EV Onboard Battery Charger Market Forecasts to 2032 - Global Analysis By Power (Low Power, Medium Power, High Power, and Other Powers), Charging Mode, Vehicle Type, Propulsion Type, Application, End User and By Geography |
根據 Stratistics MRC 的數據,全球電動車車載充電器市場預計在 2025 年達到 46 億美元,到 2032 年將達到 147 億美元,預測期內的複合年成長率為 18.0%。
電動車車載充電器是電動車 (EV) 的重要組成部分,它將來自外部充電站的交流電轉換為直流電,為車載電池充電。它內建於車輛中,使用戶可以輕鬆地從住宅或商業設施的電源插座為電動車充電。這些充電器具有不同的額定功率,通常在 3.3kW 至 22kW 之間,具體取決於車輛型號和電池容量。為了最佳化性能,製造商正專注於提高效率、小型化和改進溫度控管系統。
根據專注於電動公車市場的網路雜誌《Sustainable Bus》提供的數據,到2040年,電動公車的銷售量預計將成長83%。
電動車(EVS)的普及率不斷提高
電動車的日益普及極大地推動了車載充電器的需求。世界各國政府正在實施嚴格的排放法規並提供獎勵以促進電動車的普及,從而加速市場成長。汽車製造商正在透過高效的車載充電解決方案來改進車輛設計,以提高充電速度和便利性。消費者對永續性和電動車優勢的認知不斷提高,進一步推動了市場擴張。
高成本且技術限制
由於使用先進的半導體元件和電源轉換技術,在電動車中加入車載充電器會增加車輛的整體成本。對價格敏感的消費者可能更喜歡外部快速充電器,這限制了對車載充電解決方案的需求。此外,各個電動車製造商之間缺乏標準化,這造成了相容性問題,並使整合變得複雜且成本高昂。這些因素阻礙了車載充電器的廣泛應用,尤其是在開發中地區。
快速充電和智慧充電技術的進步
碳化矽 (SiC) 和氮化鎵 (GaN) 半導體的開發進步使得車用充電器更有效率、更小巧。雙向充電和車輛到電網 (V2G) 技術的出現為電動車作為能源儲存單元創造了機會,使消費者和電網都受益。人工智慧主導的智慧充電解決方案的整合將最佳化電力分配,降低電力成本並提高電網穩定性。這些進步將使充電更加方便,並可能有助於電動車在世界各地的廣泛應用。
與非車載快速充電站的競爭
高功率直流快速充電站的快速部署為車載充電器提供了引人注目的替代方案,減少了對車載整合解決方案的依賴。公共快速充電網路正在全球擴張,使電動車用戶無需依賴車載充電即可快速充電。原料價格的波動,尤其是電力電子和半導體,會影響車載充電解決方案的成本效益。這些替代充電技術的競爭日益激烈,可能長期限制車載充電器的市場成長。
COVID-19 疫情對電動車車載充電器市場產生了多種影響,供應鏈和製造業務中斷導致產品開發和交付延遲。封鎖和限制導致汽車銷量暫時下降,但疫情後的復甦努力活性化了對電動車基礎設施和充電解決方案的投資。雖然短期中斷影響了生產,但由於強力的監管和消費者主導的需求,電動車車載充電器市場的長期前景仍然樂觀。
預計直流快速充電市場在預測期內將佔據最大佔有率
預計直流快速充電領域將在預測期內佔據最大的市場佔有率,因為與交流車載充電器相比,它可以顯著縮短充電時間。政府對快速充電網路的投資不斷增加以及對便利遠距旅行的需求不斷成長,推動了這一領域的成長。直流快速充電器廣泛應用於商業車隊、公共充電站和高速公路,支援電動車基礎設施的發展。隨著快速充電站在都市區和農村地區不斷擴張,未來幾年這一領域的主導地位可能會得到鞏固。
預計預測期內乘用車市場將以最高的複合年成長率成長。
由於消費者對電動車的需求不斷增加,預計乘用車領域將在預測期內達到最高成長率。快速的都市化,加上政府對電動車購買者的激勵措施,正在鼓勵更多的人轉向電動車。汽車製造商正在推出一系列配備改進的車載充電解決方案的電動乘用車,以滿足不同消費者的需求。乘用電動車擴大採用智慧連網充電解決方案,也刺激了市場擴張。隨著消費者偏好轉向永續交通,乘用車車載充電器的需求將持續激增。
由於汽車產業的快速電氣化,預計亞太地區將在預測期內佔據最大的市場佔有率,主要集中在中國、日本和韓國等國家。政府的補貼、稅收優惠和鼓勵使用電動車的政策等措施對市場成長做出了重大貢獻。該地區是主要電動車製造商和電池技術公司的所在地,進一步推動了車載充電器的需求。隨著能源儲存和充電技術的不斷進步,亞太地區有望引領電動車車載充電器市場。
在預測期內,由於電動車的普及率不斷提高以及政府對擴建充電基礎設施的支持力度不斷加大,預計北美將呈現最高的複合年成長率。主要電動車製造商的存在以及消費者對永續出行意識的不斷增強正在推動市場成長。雙向充電和節能車載充電器等技術創新進一步增強了市場成長潛力。此外,汽車製造商和科技公司之間的合作正在加速先進車載充電解決方案的開發。隨著電動車需求的不斷成長,北美車載充電器市場可能會出現強勁成長。
According to Stratistics MRC, the Global EV Onboard Battery Charger Market is accounted for $4.6 billion in 2025 and is expected to reach $14.7 billion by 2032 growing at a CAGR of 18.0% during the forecast period. An EV onboard battery charger is an essential component in electric vehicles (EVs) that converts AC power from external charging stations into DC power to charge the vehicle's battery. It is integrated within the vehicle and allows users to charge their EVs conveniently from residential or commercial power outlets. These chargers vary in power ratings, typically ranging from 3.3 kW to 22 kW, depending on the vehicle type and battery capacity. Manufacturers are focusing on improving efficiency, reducing size, and enhancing thermal management systems to optimize performance.
According to the statistics provided by Sustainable Bus, a web magazine focused on the electric buses market, by 2040, the sales of electric buses are expected to rise to 83%.
Growing adoption of electric vehicles (EVS)
The rising transition towards electric mobility is significantly fueling the demand for onboard battery chargers. Governments worldwide are implementing stringent emission regulations and offering incentives to promote EV adoption, accelerating market growth. Automakers are enhancing vehicle designs with efficient onboard charging solutions to improve charging speed and convenience. Increasing consumer awareness regarding sustainability and the benefits of EVs is further propelling market expansion.
High cost and technical limitations
The integration of onboard chargers in EVs increases the overall vehicle cost due to the use of advanced semiconductor components and power conversion technologies. Price-sensitive consumers may prefer external fast-charging alternatives, limiting the demand for onboard charging solutions. Additionally, the lack of standardization across various EV manufacturers creates compatibility issues, making integration complex and costly. These factors collectively hinder the widespread adoption of onboard chargers, particularly in developing regions.
Advancements in fast-charging and smart charging technologies
Ongoing developments in silicon carbide (SiC) and gallium nitride (GaN) semiconductors are enhancing the efficiency and compactness of onboard battery chargers. The emergence of bidirectional charging and vehicle-to-grid (V2G) technology is creating opportunities for EVs to function as energy storage units, benefiting both consumers and power grids. Integration of AI-driven smart charging solutions optimizes power distribution, reducing electricity costs and improving grid stability. These advancements will enhance charging convenience and contribute to the wider adoption of electric vehicles globally.
Competition from offboard fast charging stations
The rapid deployment of high-powered DC fast-charging stations presents a strong alternative to onboard battery chargers, reducing dependency on vehicle-integrated solutions. Public fast-charging networks are expanding globally, allowing EV users to quickly recharge their vehicles without relying on onboard charging capabilities. Fluctuations in raw material prices, particularly for power electronics and semiconductors, can impact the cost-effectiveness of onboard charging solutions. The growing competition from these alternative charging technologies may limit the market growth of onboard battery chargers in the long term.
The COVID-19 pandemic had a mixed impact on the EV onboard battery charger market, with disruptions in supply chains and manufacturing operations delaying product development and deliveries. Lockdowns and restrictions led to a temporary decline in vehicle sales, but post-pandemic recovery efforts boosted investments in EV infrastructure and charging solutions. While short-term disruptions affected production, the long-term outlook for the EV onboard charger market remains positive due to strong regulatory and consumer-driven demand.
The DC fast charging segment is expected to be the largest during the forecast period
The DC Fast Charging segment is expected to account for the largest market share during the forecast period due to its ability to significantly reduce charging times compared to AC onboard chargers. Increasing government investments in fast-charging networks and the rising need for convenient long-distance travel are driving the segment's growth. DC fast chargers are widely adopted in commercial fleets, public charging stations, and highway corridors, supporting the growing EV infrastructure. The continued expansion of fast-charging stations across urban and rural areas will solidify the dominance of this segment in the coming years.
The passenger vehicles segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the Passenger Vehicles segment is predicted to witness the highest growth rate driven by increasing consumer demand for electric cars. The rapid expansion of urbanization, coupled with government incentives for EV buyers, is encouraging more individuals to transition to electric mobility. Automakers are launching an extensive range of electric passenger vehicles with improved onboard charging solutions to cater to different consumer needs. The rising adoption of smart and connected charging solutions in passenger EVs is further fueling market expansion. As consumer preferences shift towards sustainable transportation, the demand for onboard battery chargers in passenger vehicles will continue to surge.
During the forecast period, the Asia Pacific region is expected to hold the largest market share primarily due to the rapid electrification of the automotive industry in countries such as China, Japan, and South Korea. Government initiatives, including subsidies, tax incentives, and policies promoting EV adoption, are significantly contributing to market growth. The presence of leading EV manufacturers and battery technology companies in the region is further driving the demand for onboard battery chargers. With continuous advancements in energy storage and charging technologies, Asia Pacific is poised to lead the EV onboard battery charger market.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR due to increasing government support for electric vehicle adoption and charging infrastructure expansion. The presence of major EV manufacturers, coupled with rising consumer awareness regarding sustainable mobility, is driving market growth. Technological innovations in bidirectional charging and energy-efficient onboard chargers are further enhancing the market's growth potential. Additionally, collaborations between automotive and technology firms are accelerating the development of advanced onboard charging solutions. As the demand for electric mobility continues to rise, North America will experience robust growth in the onboard battery charger market.
Key players in the market
Some of the key players in EV Onboard Battery Charger Market include Delphi Automotive LLP, Clore Automotive LLC, Robert Bosch GmbH, Current Ways Inc., IES Synergy, Lear Corporation, Baccus Global LLC, Tesla, CTEK Holding AB, Meta Systems S.P.A, LG Electronics, Ficosa Internacional SA, Schumacher Electric Corporation, BorgWarner Inc., and Nichicon Corporation.
In November 2024, Breathe Battery Technologies introduced Breathe Charge, an algorithm capable of enhancing lithium-ion battery charging speeds by up to 30% while preserving battery lifespan. This software can be deployed via over-the-air updates and operates efficiently even on older embedded systems.
In March 2024, Wallbox unveiled the Quasar 2 bidirectional charger, designed specifically for Kia EV9 owners. This innovative charger enables the vehicle to function as a backup power generator for homes during outages.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.