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市場調查報告書
商品編碼
1953768
汽車相機模組市場-全球產業規模、佔有率、趨勢、機會與預測:按類型、車輛類型、應用、技術、分銷管道、地區和競爭格局分類,2021-2031年Automotive Camera Module Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type, By Vehicle Type, By Application, By Technology, By Distribution Channel, By Region & Competition, 2021-2031F |
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全球汽車相機模組市場預計將從 2025 年的 114.9 億美元大幅成長至 2031 年的 233.8 億美元,複合年成長率為 12.57%。
這些相機模組作為關鍵光學儀器整合到車輛中,用於採集視覺數據,以支援高級駕駛輔助系統(ADAS)和自動駕駛功能。該行業的主要驅動力是嚴格的監管要求,例如強製配備自動緊急煞車等安全功能,以及消費者對車輛自動化日益成長的需求。輔助科技的快速普及凸顯了這個趨勢。例如,根據中國汽車工業協會(CAAM)預測,到2025年,超過60%的新乘用車將配備L2級駕駛輔助系統,這意味著對高性能視覺感測器的持續依賴。
| 市場概覽 | |
|---|---|
| 預測期 | 2027-2031 |
| 市場規模:2025年 | 114.9億美元 |
| 市場規模:2031年 | 233.8億美元 |
| 複合年成長率:2026-2031年 | 12.57% |
| 成長最快的細分市場 | 多視圖 |
| 最大的市場 | 亞太地區 |
然而,將這些先進的感測技術整合到經濟型汽車領域面臨巨大的成本挑戰,這構成了該行業的一大障礙。汽車製造商在努力平衡先進功能與價格可負擔性的同時,開發和校準精密光學系統所帶來的經濟負擔仍然是限制市場整體成長的一大因素,尤其是在價格敏感型地區。因此,儘管對安全功能的需求推動著市場發展,但低價位車型的成本限制仍然阻礙這些技術在全球範圍內的全面推廣。
政府嚴格的安全法規和碰撞測試標準的實施是市場擴張的根本驅動力。世界各地的立法者都在製定嚴格的法規,要求汽車製造商採用主動安全技術,強制所有車型安裝可靠的光學感測器。美國政府最終確定旨在大幅減少追撞事故和行人事故的綜合標準,是這項法規環境的關鍵轉捩點。根據美國國家公路交通安全管理局 (NHTSA) 於 2024 年 4 月發布的關於自動緊急煞車系統的最終規則,製造商將被要求在 2029 年 9 月之前將這些系統作為標準配置安裝到所有新乘用車和輕型卡車上,從而有效地確保了對前置相機模組的基本需求,而不受消費者偏好。
同時,電動車市場的成長對先進的視覺系統提出了更高的要求,這正推動著汽車平臺光學單元平均數量的顯著增加。傳統的內燃機汽車可能只使用單一倒車感測器,而現代電動車架構則越來越依賴多攝影機配置來實現環景監控和自動駕駛功能。這種感測器密度不斷提高的趨勢對硬體數量產生了顯著的倍增效應。SONY半導體解決方案公司高層在2024年5月的年度策略簡報會上預測,到2025會計年度,平均每輛車將配備約8個攝影機以支援這些功能。這種擴張帶來的經濟影響也反映在供應商的表現上。例如,安森美半導體公司公佈2024年第二季汽車業務銷售額達9.069億美元,凸顯了該產業的巨額資本流入。
整合複雜感測技術的巨額成本是全球汽車相機模組市場擴張的主要障礙。雖然高階車型能夠承受這些成本,但開發、安裝和校準精密光學系統所帶來的經濟負擔,對低階和對價格敏感的車型而言卻構成了一道障礙。為了保持價格可負擔性,價格敏感地區的製造商往往被迫放棄一些先進的攝影機功能,這實際上限制了高成長潛力地區的市場規模。這種妥協阻礙了該技術進入大眾市場,而成本效益是影響消費者購買決策的關鍵因素。
這種經濟壓力在供應鏈中也顯而易見,生產高性能零件所需的高資本投入持續擠壓著盈利。歐洲汽車零件供應商協會(CLEPA)的數據顯示,到2025年,65%的供應商將表示難以維持在永續投資所需的利潤率水準之上,這主要是由於先進技術製造成本不斷上升。這項訊息凸顯了高昂的整合成本與市場停滯之間的直接聯繫,顯示成本難以降低阻礙了相機模組在車輛中的廣泛應用。
隨著安全重點從車輛外部擴展到車輛內部,車載乘員監控系統的興起正在改變市場模式。這一趨勢推動了駕駛員監控系統 (DMS) 和乘員監控系統 (OMS) 的快速普及,這些系統能夠檢測疲勞駕駛、注意力分散以及乘員在場情況,從而為光學元件開闢了除傳統高級駕駛輔助系統 (ADAS) 之外的新成長路徑。供應商的數據也印證了車載感測技術的日益普及。例如,Seeing Machines 在 2024 年 10 月的財務報告中宣布,使用其監控技術的車輛數量年增 104%,達到 220 萬輛。此類數據表明,隨著汽車製造商越來越重視車廂智慧化,車內攝影機正在迅速整合到車輛中。
同時,為了滿足下一代自動駕駛平台對精準機器視覺的需求,向更高解析度影像感測器的過渡變得至關重要。由於演算法需要在遠距離和複雜光照條件下進行高保真度的物體識別,製造商正從標準的低像素感測器轉向更高解析度的替代方案。這項技術進步在近期發布的產品中得到了充分體現。 2024年10月,OmniVision發表了OX12A10,這是一款1,200萬像素的CMOS影像感測器,具有更高的解析度和動態範圍,適用於汽車機器視覺任務。向更高像素模組的過渡確保了光學硬體能夠提供做出高級駕駛決策所需的詳細數據。
The Global Automotive Camera Module Market is projected to experience substantial growth, rising from USD 11.49 Billion in 2025 to USD 23.38 Billion by 2031, reflecting a compound annual growth rate of 12.57%. These camera modules act as critical optical instruments integrated into vehicles to gather visual data for Advanced Driver Assistance Systems (ADAS) and autonomous driving functions. The industry is primarily fueled by strict regulatory requirements that mandate safety features, such as automatic emergency braking, along with increasing consumer demand for vehicle automation. This trend is highlighted by the swift adoption of assistance technologies; for instance, the China Association of Automobile Manufacturers noted that over 60 percent of new passenger vehicles sold in 2025 included Level 2 driver assistance systems, ensuring a continued dependence on high-performance visual sensors.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 11.49 Billion |
| Market Size 2031 | USD 23.38 Billion |
| CAGR 2026-2031 | 12.57% |
| Fastest Growing Segment | Multi View |
| Largest Market | Asia Pacific |
However, the industry encounters a major obstacle related to the substantial expense of incorporating these sophisticated sensing technologies into economy-class vehicle segments. As automakers attempt to reconcile advanced functionality with affordability, the financial strain associated with developing and calibrating accurate optical systems persists as a significant barrier to universal market growth, especially in regions sensitive to pricing. Consequently, while the demand for safety features drives the market forward, cost constraints in lower-tier segments continue to challenge the comprehensive expansion of these technologies globally.
Market Driver
The implementation of rigorous government safety and crash-test regulations serves as a fundamental driver for market expansion. Around the globe, legislative bodies are introducing strict mandates that require automakers to incorporate active safety technologies, thereby necessitating the deployment of dependable optical sensors across all vehicle classes. A critical shift in this regulatory environment took place when the United States government finalized comprehensive standards aimed at significantly lowering rear-end and pedestrian accidents. As stated by the National Highway Traffic Safety Administration in April 2024, under the final rule for Automatic Emergency Braking Systems, manufacturers are required to make these systems standard on all new passenger cars and light trucks by September 2029, effectively securing a baseline demand for front-facing camera modules independent of consumer preference.
Concurrently, the growth of the Electric Vehicle Market, which demands advanced vision suites, is notably raising the average count of optical units per vehicle platform. Unlike conventional internal combustion vehicles that might use a single backup sensor, modern electric architectures increasingly depend on multi-camera configurations to enable surround-view monitoring and autonomous features. This shift toward greater sensor density creates a significant multiplier effect on hardware volumes. During an annual strategy briefing in May 2024, executives from Sony Semiconductor Solutions projected that the average vehicle would feature approximately eight cameras by the 2025 fiscal year to support these capabilities. The economic impact of this expansion is reflected in supplier results, such as Onsemi reporting $906.9 million in automotive revenue during the second quarter of 2024, highlighting the massive capital influx into this sector.
Market Challenge
The significant expense involved in integrating complex sensing technologies represents a major hurdle to the wider growth of the Global Automotive Camera Module Market. Although premium vehicle categories can accommodate these costs, the financial load of developing, installing, and calibrating precise optical systems serves as an obstacle for lower-tier and budget-conscious vehicle classes. Manufacturers in price-sensitive regions are frequently compelled to omit advanced camera-based features to preserve affordability, effectively limiting market volume in areas with high growth potential. This compromise restricts the technology's reach into the mass market, where cost efficiency is the primary factor influencing consumer purchasing choices.
This economic strain is clearly visible within the supply chain, where the capital intensity required to produce high-performance components continues to pressure profitability. Data from the European Association of Automotive Suppliers (CLEPA) indicates that in 2025, 65 percent of suppliers reported difficulties in maintaining profit margins above the level necessary for sustainable investment, largely due to the escalating costs of manufacturing advanced technology. This information highlights the direct link between high integration expenses and market stagnation, as the inability to lower costs hinders camera modules from becoming a universal utility across all vehicle types.
Market Trends
The rise of In-Cabin Occupant Monitoring is transforming the market as safety priorities expand from the vehicle's exterior to its interior. This trend entails the swift implementation of Driver Monitoring Systems (DMS) and Occupant Monitoring Systems (OMS) aimed at detecting fatigue, distraction, and passenger presence, effectively establishing a new growth avenue for optical components alongside traditional ADAS. This increase in internal sensing adoption is backed by supplier figures; for example, Seeing Machines reported in its October 2024 year-end results that the number of vehicles on the road utilizing its monitoring technology surged by 104 percent year-over-year, totaling 2.2 million units. Such data underscores the rapid integration of interior-facing cameras as automakers place greater emphasis on cabin intelligence.
At the same time, the shift toward High-Resolution Image Sensors is becoming essential to meet the precise machine vision demands of next-generation autonomous platforms. As algorithms require superior fidelity to recognize objects at greater distances and under difficult lighting conditions, manufacturers are transitioning from standard lower-megapixel sensors to higher-definition alternatives. This technological advancement is illustrated by recent product launches; in October 2024, OMNIVISION introduced the OX12A10, a 12-megapixel CMOS image sensor designed to offer improved resolution and dynamic range for automotive machine vision tasks. This movement toward high-pixel-count modules ensures that optical hardware delivers the granular data required for sophisticated driving decisions.
Report Scope
In this report, the Global Automotive Camera Module Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Automotive Camera Module Market.
Global Automotive Camera Module Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: