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市场调查报告书
商品编码
1813289
智慧型手机 3D 相机市场预测(至 2032 年):按产品、组件、设备类型、分销管道、应用、最终用户和地区进行的全球分析Smartphone 3D Camera Market Forecasts to 2032 - Global Analysis By Product (Integrated 3D modules and Discrete sensors), Component, Device Type, Distribution Channel, Application, End User and By Geography |
根据 Stratistics MRC 的数据,全球智慧型手机 3D 相机市场预计在 2025 年达到 90 亿美元,到 2032 年将达到 167 亿美元,预测期内的复合年增长率为 9.3%。
智慧型手机 3D 相机是整合在行动装置中的先进成像技术,可在捕捉标准 2D 影像的同时捕捉深度资讯。与传统相机不同,它们使用双镜头、结构光或飞行时间感测器来测量相机与物体之间的距离,从而创建逼真的深度感知和3D影像。这实现了脸部辨识、扩增实境(AR)、虚拟实境 (VR)、增强摄影和身临其境型视讯体验等功能。透过模拟人类双眼视觉,智慧型手机 3D 相机可以提升影像质量,提供精确的空间映射,并支援游戏、安全、医疗保健和互动式多媒体领域的创新应用。
生物识别安全的需求
先进的 3D 感测技术可实现精准的脸部认证,使设备比传统的密码或指纹身份验证更安全。人们对资料隐私和防诈骗日益增长的担忧,促使製造商整合 3D 摄影机进行身份验证。该技术提供快速、非接触式且可靠的访问,提升了用户的便利性。银行、支付和敏感应用领域的广泛采用进一步刺激了需求。随着生物辨识安全成为标配功能,3D 相机正逐渐成为最新智慧型手机的关键组件。
零件数量增加,设计更加复杂
复杂的设计需要先进的组件和精确的集成,这使得製造难度加大且耗时。这通常会导致开发週期延长,产品发布延迟。此外,成本上升会降低製造商的利润率,阻碍其大规模部署。复杂性也会增加硬体故障和品管问题的风险。因此,通常只有高阶智慧型手机才会采用 3D 镜头,从而限制了市场普及率。
电子商务与3D扫描
消费者更倾向于透过逼真的 3D 影像来更好地评估产品,这推动了智慧型手机采用先进的相机技术。零售商越来越多地整合 3D 扫描功能,以增强虚拟试穿和身临其境型购物体验。扩增实境 ( AR) 在网路零售中的兴起,进一步鼓励智慧型手机製造商加入 3D 相机。电子商务的竞争促使品牌提供创新的摄影机功能来吸引顾客。因此,3D 扫描与电子商务的结合将显着加速市场成长。
标准和应用支援分散
不同的製造商使用不同的3D感测技术,引发了相容性问题。由于市场接受度的不确定性,这种碎片化阻碍了应用程式开发者在基于3D摄影机的应用程式上进行大量投资。当某些功能仅适用于某些智慧型手机时,消费者也会感到困惑。这些不一致性降低了智慧型手机3D相机的整体效用和需求。因此,儘管该技术潜力巨大,但市场成长却放缓。
COVID-19的影响
新冠疫情对智慧型手机3D相机市场造成了重大衝击,扰乱了供应链,减缓了生产速度,并限制了零件供应。封锁和限制措施导致製造业活动停滞,并减少了消费者对配备先进3D摄影机的高阶智慧型手机的支出。然而,这场危机加速了数位化的普及,刺激了对支援AR/VR、网路购物和虚拟通讯的智慧型手机的需求,而3D相机在这些领域发挥了重要作用。随着经济復苏,市场復苏趋势逐渐显现,人们对身临其境型技术、脸部辨识和增强摄影技术的兴趣日益浓厚,逐渐重振了疫情后的市场成长。
旗舰智慧型手机市场预计将成为预测期内最大的市场
旗舰智慧型手机市场预计将在预测期内占据最大市场份额,这得益于其整合的先进相机技术,而这将成为其关键的差异化优势。高阶设备通常配备高阶3D感测器、深度感知模组以及扩增实境/虚拟实境(AR/VR)相容性,以提升使用者体验。消费者对卓越摄影、脸部辨识和身临其境型应用的需求日益增长,推动了这一类别的普及。领先的製造商优先考虑旗舰机型的创新,随后逐渐推广至中阶机型。对旗舰智慧型手机的持续推动正在推动整体市场成长和技术进步。
预计企业部门在预测期内的复合年增长率最高
预计企业级市场将在预测期内实现最高成长率,这得益于医疗保健、零售和製造等行业对先进影像处理的需求。企业正在将3D摄影机应用于脸部辨识、扩增实境和库存管理等应用,从而推动其普及。银行和企业环境中日益增长的安全和身份验证需求将进一步推动市场成长。此外,企业正在将3D摄影机整合到远端协作工具中,以提高效率和使用者体验。这种日益增长的业务驱动型主导使企业级市场成为市场的主要成长催化剂。
由于对先进影像处理功能的需求不断增长,以及扩增实境 (AR) 和虚拟实境 (VR) 应用的日益普及,预计亚太地区将在预测期内占据最大的市场份额。消费者对增强摄影功能的偏好日益增长,加上智慧型手机製造商的快速扩张,正在推动市场发展。千禧世代和 Z 世代的大量涌现,以及该地区各参与者的技术创新,正在加速技术的应用。电子商务和娱乐领域的扩张也促进了市场扩张。
由于先进技术日益融入高端设备,预计北美地区将在预测期内实现最高的复合年增长率。消费者对卓越影像处理、脸部辨识和基于扩增实境 (AR) 的应用的高度认知和需求正在推动市场成长。专注于技术创新的领先科技公司和製造商的存在,正在支持各个领域的应用。 3D 影像在游戏、社群媒体和安全应用中的日益普及,进一步拓展了市场前景。智慧型手机品牌和科技公司之间的策略联盟正在加强产品开发和竞争定位。
According to Stratistics MRC, the Global Smartphone 3D Camera Market is accounted for $9.0 billion in 2025 and is expected to reach $16.7 billion by 2032 growing at a CAGR of 9.3% during the forecast period. A smartphone 3D camera is an advanced imaging technology integrated into mobile devices that captures depth information along with standard two-dimensional images. Unlike conventional cameras, it uses dual lenses, structured light, or time-of-flight sensors to measure the distance between the camera and objects, creating realistic depth perception and three-dimensional imagery. This enables features such as facial recognition, augmented reality (AR), virtual reality (VR), enhanced photography, and immersive video experiences. By simulating human binocular vision, smartphone 3D cameras enhance image quality, provide accurate spatial mapping, and support innovative applications in gaming, security, healthcare, and interactive multimedia.
Biometric security demand
Advanced 3D sensing enables precise facial recognition, making devices more secure than traditional PINs or fingerprint methods. Growing concerns over data privacy and fraud prevention push manufacturers to integrate 3D cameras for authentication. This technology provides fast, contactless, and reliable access, enhancing user convenience. Increasing adoption in banking, payments, and sensitive applications further accelerates demand. As biometric security becomes a standard feature, 3D cameras are evolving into a critical component of modern smartphones.
Higher BOM & design complexity
Complex designs require advanced components and precise integration, making manufacturing more challenging and time-consuming. This often leads to longer development cycles and delays in product launches. Additionally, higher costs reduce profit margins for manufacturers, discouraging mass deployment. The complexity also raises risks of hardware malfunctions and quality control issues. As a result, only premium smartphones tend to adopt 3D cameras, restricting widespread market penetration.
E-commerce & 3D scanning
Consumers prefer realistic 3D images for better evaluation of products, which boosts adoption of advanced camera technologies in smartphones. Retailers are increasingly integrating 3D scanning features to enhance virtual try-on and immersive shopping experiences. The rise of augmented reality in online retail further drives smartphone manufacturers to incorporate 3D cameras. E-commerce competition pushes brands to offer innovative camera features to attract customers. As a result, 3D scanning and e-commerce together significantly accelerate growth in the market.
Fragmented standards & app support
Different manufacturers adopt varying 3D sensing technologies, leading to compatibility issues. This fragmentation discourages app developers from investing heavily in 3D camera-based applications due to uncertain market adoption. Consumers also face confusion when certain features work only on specific smartphones. Such inconsistency reduces the overall utility and demand for 3D cameras in smartphones. As a result, the market growth slows despite the technology's potential.
Covid-19 Impact
The Covid-19 pandemic significantly influenced the Smartphone 3D Camera Market, disrupting supply chains, delaying production, and limiting component availability. Lockdowns and restrictions slowed manufacturing activities and reduced consumer spending on premium smartphones equipped with advanced 3D cameras. However, the crisis also accelerated digital adoption, boosting demand for smartphones supporting AR/VR, online shopping, and virtual communication, where 3D cameras play a role. As economies reopened, recovery trends emerged with increased interest in immersive technologies, facial recognition, and enhanced photography, gradually revitalizing market growth post-pandemic.
The flagship smartphones segment is expected to be the largest during the forecast period
The flagship smartphones segment is expected to account for the largest market share during the forecast period by integrating advanced camera technologies as a key differentiator. Premium devices often feature high-end 3D sensors, depth-sensing modules, and AR/VR compatibility to enhance user experience. Rising consumer demand for superior photography, facial recognition, and immersive applications boosts adoption in this category. Leading manufacturers prioritize flagship models to introduce innovations, which later cascade to mid-range devices. This continuous push from flagship smartphones accelerates overall market growth and technological advancement.
The enterprise segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the enterprise segment is predicted to witness the highest growth rate by driving demand for advanced imaging in industries such as healthcare, retail, and manufacturing. Businesses leverage 3D cameras for applications like facial recognition, augmented reality, and inventory management, boosting adoption. Enhanced security and authentication needs in banking and corporate environments further accelerate market growth. Enterprises also integrate 3D cameras into remote collaboration tools, improving efficiency and user experience. This rising business-driven adoption positions the enterprise segment as a key growth catalyst for the market.
During the forecast period, the Asia Pacific region is expected to hold the largest market share due to rising demand for advanced imaging capabilities and the increasing popularity of AR and VR applications. Growing consumer preference for enhanced photography features, coupled with the rapid expansion of smartphone manufacturers, is fuelling the market. The presence of a large millennial and Gen Z population, along with technological innovations from regional players, is accelerating adoption. Expanding e-commerce and entertainment sectors also contribute to the growing market outlook.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, owing to the growing integration of advanced technologies in premium devices. High consumer awareness and demand for superior imaging, facial recognition, and AR-based applications are strengthening market growth. The presence of leading technology companies and innovation-focused manufacturers supports adoption across diverse segments. Increasing use of 3D imaging in gaming, social media, and security applications further expands market prospects. Strategic collaborations among smartphone brands and tech firms enhance product development and competitive positioning.
Key players in the market
Some of the key players profiled in the Smartphone 3D Camera Market include Apple Inc., Samsung Electronics, Sony Group Corporation, LG Electronics, Xiaomi Corporation, Huawei Technologies Co., Ltd., Oppo, Vivo, Google LLC, Intel Corporation, Qualcomm Technologies, Inc., STMicroelectronics, Infineon Technologies AG, Lumentum Holdings Inc., Himax Technologies, Inc, Orbbec and Trinamix GmbH.
In March 2024, Sony acquired a minority stake in Prophesee, a French startup specializing in event-based vision sensors. These sensors offer ultra-fast 3D motion tracking and low-latency depth sensing, ideal for AR/VR and mobile robotics.
In March 2024, Samsung acquired Deltatech Imaging, a startup specializing in low-power 3D camera modules and structured light technologies. This acquisition supports Samsung's push into compact, high-efficiency depth sensors for foldables and wearables.
In March 2024, Apple acquired Mira, an AR startup known for its spatial tracking and headset technologies. This acquisition was aimed at strengthening Apple's Vision Pro ecosystem and enhancing its 3D spatial camera capabilities.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.