市场调查报告书
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1454078
2030 年机器视觉照明市场预测:按产品类型、频谱、应用、最终用户和地区分類的全球分析Machine Vision Lighting Market Forecasts to 2030 - Global Analysis By Product Type (LED, Xenon, Fluorescent, Fiber Optic, Halogen and Other Product Types), Spectrum of Light, Application, End User and By Geography |
根据Stratistics MRC预测,2023年全球机器视觉照明市场规模将达到17.4亿美元,预计2030年将达到33.3亿美元,预测期内复合年增长率为9.7%。
机器视觉照明是自动视觉检测系统的关键组件,可提高工业应用中的影像品质。透过采用 LED、卤素灯和萤光等各种技术,您可以确保相机获得最佳照明并捕捉高品质影像。照明精度对于製造过程中准确的物体辨识、缺陷检测和品管至关重要。机器视觉照明具有可调节强度、波长和方向,适应各种生产环境。
高产量的需求不断增加
高产量的需求推动了自动化解决方案的实施,包括机器视觉系统。这些系统配备高效照明,在其他生产过程的检测、品管和自动化中发挥重要作用。此外,机器视觉照明解决方案必须提供最佳照明,以实现快速、准确的影像分析,并使生产线能够在不影响品质的情况下保持高吞吐量,这是我们成长的驱动力。
初期投资成本高
中小型企业通常预算有限,可能不愿意投资可能需要高额初始投资的技术,即使有改善品管或效率等长期好处。这限制了机器视觉照明解决方案的整体市场渗透率。即使是拥有深厚资源的大公司也应该谨慎进行大量的前期投资,特别是如果投资收益(ROI)不是立即明显或需要很时限才能实现。因此,采用可能会被推迟,市场成长可能会放缓。
製造业快速扩张
製造业的扩张正在越来越多地采用机器视觉系统来完成品管、检查和自动化等任务。机器视觉照明是这些系统中的关键组件,可确保准确可靠的影像撷取。机器视觉照明已成为现代製造流程中不可或缺的一部分,并整合到生产线中以执行零件识别、组装验证和表面检查等任务。无缝整合提高了整体生产效率并促进了市场成长。
整合复杂度
将照明系统整合到现有设备、配置软体并确保正常功能需要额外的工程师和技术人员时间和资源。这可能会增加照明组件的初始购买价格以外的成本。此外,机器视觉照明系统的成功整合和维护通常需要自动化、电气工程和软体配置等领域的专业技能。在某些地区,具有这些技能的人才可能不容易获得,这进一步阻碍了招募。
COVID-19 的影响
与许多其他行业一样,机器视觉照明市场也因工厂关闭、运输限制和零件交付延迟而遭受供应链中断的影响。这影响了机器视觉照明产品的生产和供应,许多使用机器视觉系统的行业,例如製造业和汽车行业,在疫情期间面临计划延误和安装延迟的问题。因此,对机器视觉照明解决方案的需求暂时下降。
预计在预测期内氙气细分市场将是最大的
由于具有接近自然光的频谱高亮度光,氙气细分市场预计将出现良好的成长。这使得它们非常适合机器视觉应用,其中准确的色彩再现和高对比度非常重要。氙气灯通常具有较高的显色指数(CRI)并且可以准确地再现颜色。这对于颜色精度很重要的机器视觉应用(例如品管和检查过程)至关重要。
电子和半导体产业预计在预测期内将经历最高的复合年增长率。
电子和半导体产业预计在预测期内复合年增长率最高。这是因为在电子元件的製造基板中,机器视觉系统经常用于品管和检查,因为它是必不可少的。因此,随着电子和半导体行业采用自动化来提高效率和准确性,对机器视觉解决方案(包括先进照明系统)的需求不断增加。
由于大规模製造业的成长,亚太地区预计将在预测期内占据最大的市场占有率,这是机器视觉照明需求的关键驱动力。随着製造过程变得更加自动化,对机器视觉系统确保产品缺陷检查和品管的需求不断增加。此外,自动化在世界各地的製造业中变得越来越重要,亚太地区也不例外。
预计北美在预测期内的复合年增长率最高。这是因为越来越多的行业正在部署机器视觉系统来进行品管和检查,从而增加了对高效可靠的照明解决方案的需求,以确保准确的影像撷取。此外,该地区製造流程自动化的成长趋势正在推动机器视觉系统的采用,从而推动对照明等相关组件的需求。
According to Stratistics MRC, the Global Machine Vision Lighting Market is accounted for $1.74 billion in 2023 and is expected to reach $3.33 billion by 2030 growing at a CAGR of 9.7% during the forecast period. Machine vision lighting, a critical component in automated visual inspection systems, enhances image quality for industrial applications. Employing various technologies like LED, halogen, or fluorescent, it ensures optimal illumination for cameras to capture high-quality images. Precision in lighting is crucial for accurate object recognition, defect detection, and quality control in manufacturing processes. Adjustable in intensity, wavelength, and direction, machine vision lighting adapts to diverse production environments.
Rising demand for high production output
The need for high production output often drives industries to adopt automation solutions, including machine vision systems. These systems, when equipped with efficient lighting, play a crucial role in automating inspection, quality control, and other production processes. Moreover, machine vision lighting solutions need to provide optimal illumination to enable quick and accurate image analysis, ensuring that production lines can maintain high throughput rates without compromising quality drives the market growth.
High initial investment costs
SMEs often have tighter budgets and may hesitate to invest in a technology perceived as expensive upfront, even if it offers long-term benefits like improved quality control and efficiency. This limits the overall market penetration of machine vision lighting solutions. Even larger companies with more resources might be cautious about making significant upfront investments, especially if the return on investment (ROI) is not immediately apparent or requires a longer timeframe to materialize. This can lead to delayed adoption and slower market growth.
Rapid expansion of the manufacturing industry
The expansion of the manufacturing industry leads to a higher adoption rate of machine vision systems for tasks such as quality control, inspection, and automation. Machine vision lighting is a critical component for ensuring accurate and reliable image capture in these systems. Machine vision lighting becomes an integral part of modern manufacturing processes and is integrated into production lines for tasks such as part recognition, assembly verification, and surface inspection. The seamless integration enhances overall production efficiency encouraging the market growth.
Integration Complexity
Integrating the lighting system with existing equipment, configuring software, and ensuring proper functionality requires additional time and resources from engineers and technicians. This translates to increased costs beyond the initial purchase price of the lighting components. Moreover successfully integrating and maintaining machine vision lighting systems often requires specialized skills in areas like automation, electrical engineering, and software configuration. The lack of readily available personnel with these skills in some regions can further hinder adoption.
Covid-19 Impact
The machine vision lighting market, like many other industries, experienced disruptions in the supply chain due to factory closures, transportation restrictions, and delays in the delivery of components. This affected the production and availability of machine vision lighting products and many industries that use machine vision systems, such as manufacturing and automotive, faced project delays and postponed installations during the pandemic. This led to a temporary decline in the demand for machine vision lighting solutions.
The xenon segment is expected to be the largest during the forecast period
The xenon segment is estimated to have a lucrative growth, owing to their high-intensity light with a broad spectrum that closely resembles natural sunlight. This makes them ideal for applications in machine vision where accurate color representation and high contrast are crucial. Xenon lamps typically have a high color rendering index (CRI), which means they can reproduce colors accurately. This is essential in machine vision applications where color accuracy is critical, such as in quality control and inspection processes.
The electronics & semiconductor segment is expected to have the highest CAGR during the forecast period
The electronics & semiconductor segment is anticipated to witness the highest CAGR growth during the forecast period, as they are often utilize machine vision systems for quality control and inspection during the production of electronic components and is crucial for ensuring accurate imaging and inspection of intricate details in semiconductor manufacturing processes, such as the inspection of microchips and circuit boards. Thus, as the electronics & semiconductor industry embraces automation for improved efficiency and precision, the demand for machine vision solutions, including advanced lighting systems, increases.
Asia Pacific is projected to hold the largest market share during the forecast period as the Asia Pacific region is home to a large and growing manufacturing sector, which is a major driver of demand for machine vision lighting. As manufacturing processes become more automated, the need for machine vision systems to inspect products for defects and ensure quality control is increasing. Further as automation is becoming increasingly important in manufacturing industries across the globe, and the Asia Pacific region is no exception.
North America is projected to have the highest CAGR over the forecast period, owing to industries implementing machine vision systems for quality control and inspection purposes, leading to increased demand for efficient and reliable lighting solutions to ensure accurate image capture. Moreover the increasing trend towards automation in manufacturing processes in this region boosts the adoption of machine vision systems, thereby driving the demand for associated components like lighting.
Key players in the market
Some of the key players in the Machine Vision Lighting Market include Hitachi Kokusai Electric Inc, Illumination Technologies, Inc., Innovations in Optics, Inc., Metaphase Technologies Inc., Keyence Corporation, Jenoptik AG, Omron Corporation, Panasonic Corporation, Smart Vision Lights, Navitar, Inc., Advanced illumination, Inc., Baumer Holding AG, Coherent, Inc., Edmund Optics Inc., Falcon Illumination, Stemmer Imaging AG, Moritex Corporation, Effilux and Phlox Corp.
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