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行业聚焦:全球智能手机摄像头执行器市场头部企业份额调研(附Top10 厂商名单)
QYResearch·2025-09-18 03:51

Core Viewpoint - The global smartphone camera actuator market is projected to reach USD 5.41 billion by 2031, with a compound annual growth rate (CAGR) of 3.9% from 2025 to 2031 [1]. Market Overview - The smartphone camera actuator is a micro-precision driving device used for automatic focusing (AF), optical image stabilization (OIS), and zoom functions [1]. - The market is dominated by VCM (Voice Coil Motor), which holds approximately 77.9% of the market share [6][5]. - The mid-range smartphone segment is the largest downstream market, accounting for about 52.6% of the demand [9][6]. Key Players - Major manufacturers in the global smartphone camera actuator market include Alps Alpine, MinebeaMitsumi, TDK, Jahwa Electronics, Samsung Electro-Mechanics, ActRO, and LG Innotek, among others [5][18]. - The top five manufacturers are expected to hold around 53.0% of the market share in 2024 [5]. Market Drivers - The growth of the smartphone camera actuator market is driven by the long-term trend of imaging upgrades in high-end and mid-range smartphones, with increasing reliance on high-performance actuators to ensure image quality [12]. - Consumer demand for mobile imaging experiences, including 4K/8K video recording and night scene optimization, is a significant growth factor [12]. - The rise of new smartphone forms, such as foldable screens and AI computational photography, is also boosting actuator demand [12]. Downstream Demand Trends - There is a growing emphasis on smartphone imaging capabilities among consumers, prompting brands to adopt higher-end camera module solutions [14]. - The penetration of triple-camera setups and beyond is expected to become standard in mid-to-high-end models, increasing the demand for actuators in terms of quantity and performance [14]. - The proliferation of AR/VR, social media short videos, and e-commerce live streaming is expanding the application scenarios for mobile imaging, driving the market towards higher precision, faster response times, and lower energy consumption [14].