市場調查報告書
商品編碼
1348785
光子裝置市場 - 全球產業規模、佔有率、趨勢、預測和機遇,2018-2028 年。按產品、按應用、最終用戶、地區細分,競爭Photonics Devices Market - Global Industry Size, Share, Trends, Forecast and Opportunities, 2018-2028. Segmented By Product, By Application, By End User, By Region, Competition |
由於矽基光子應用的出現,全球光子元件市場快速成長。光子學正成為下一個常態的基礎技術模型。許多企業採用光子學作為經濟高效的解決方案,以滿足資料通訊中高速傳輸的需求。各產業中光子應用的高使用率已成為提供尖端服務以提高效率、可擴展性和客戶體驗的重要因素之一。此外,市場的成長是由於在預測期內全球對節能和綠色產品的需求不斷增加,以節省能源和減少污染。科技已成為卓越的關鍵推動力,隨著數位化的出現,企業逐漸變得行動化。網際網路普及率的不斷提高和智慧顯示設備的使用量的不斷成長預計將在預測期內進一步推動全球光子裝置市場的發展。
市場概況 | |
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預測期 | 2024-2028 |
2022年市場規模 | 7143.2億美元 |
2028年市場規模 | 10853億美元 |
CAGR (2023-2028) | 7.22% |
成長最快的細分市場 | 引領 |
最大的市場 | 亞太 |
矽基光子學應用的指數級成長和大規模採用推動全球光子學市場的發展。矽光子學 (SiPh) 是光子系統的應用,廣泛用於計算、通訊、感測和成像光,以實現微晶片內部、之間的更快資料傳輸。矽光子學是一種材料平台,能夠利用絕緣體上矽 (SOI) 晶圓作為半導體基板材料來製造光子積體電路 (PIC)。矽光子學擴大用於光學資料通訊、感測、醫療、汽車、虛擬實境和人工智慧 (AI) 應用。儘管如此,矽是大多數半導體產業用來建構整合 CMOS 電路的主要材料,因此產量非常高且成本低廉。許多公司已經制定了各種策略,將多種材料(例如磷化銦)整合到矽光子學中。應用來創建驅動光子電路的整合式雷射、調製器和探測器。固態雷射雷達感測器、光子積體電路(PIC) 等矽基光子學應用是一些常見的新興技術,這些技術在自動駕駛汽車和工業自動化領域日益受到關注,可帶來巨大的技術、經濟價值、高頻寬和軟體可配置對計算和儲存的存取。此外,資料通訊對高速傳輸的需求和大量投資推動矽基光子應用的出現,預計這將推動全球光子裝置市場的成長。
醫療保健和醫療設備業務的應用範圍從診斷到手術器械再到治療,是光學和光子技術潛力快速擴展的領域。生物光子學是胃腸病學中重要的診斷技術。幾十年來,內視鏡一直用於胃腸病學,以識別食道、胃和腸的發炎和腫瘤。如果使用內視鏡更快地發現突變並消除它們,在許多情況下可以避免死亡。在患者出現任何症狀之前,診斷生物光子學可以在疾病的早期階段識別出疾病。透過利用現場護理應用和非侵入性成像技術來早期檢測各種疾病的生物光子學在醫學科學中的快速進展必將推動全球光子學市場的發展。此外,醫療雷射、光療、生物成像、光學相干斷層掃描 (OCT) 等醫療保健應用可用於患者健康意識、疾病診斷、眼科手術和增強即時生物過程。此外,醫療設備的持續研究和技術進步使得奈米光子功能在醫療保健中廣泛使用,預計將在預測期內推動全球光子設備市場的發展。
對節能和綠色產品的需求不斷成長,帶來了潛在的機遇,改變了環境,使其更加永續,減少溫室氣體排放,改善公眾健康,減少污染。綠色光子技術影響能源產生(光伏)、節能固態照明和顯示器),減少光電系統和通訊的能源消耗。此外,支援光子學的產品還具有使用壽命更長、能源效率更高、精度更高和運行速度更快等優點。該領域在光子學中日益重要,促使 OIDA(光電工業發展協會)和 OSA(美國光學學會)等組織挺身而出,致力於提高能源效率。因此,對具有成本效益的節能綠色產品的需求不斷成長,預計將在預測期內推動全球光子裝置市場的成長。
光子裝置市場分為產品、應用、最終用戶和地區。根據產品,市場分為 LED、雷射感測器、探測器和成像設備、光通訊系統和組件、消費性電子產品和設備等。根據應用,市場分為顯示、資訊和通訊技術、光伏、醫療技術和生命科學、測量和自動視覺、照明、生產技術等。最終用戶細分市場進一步分為建築、媒體廣播和電信、消費者和商業自動化、醫療、安全和國防、工業等。
全球光子裝置市場的主要參與者包括IPG Photonics、Innolume GmbH、Infinera Corporation、Hamamatsu Photonics、Finisar Corporation、Shin-Etsu Chemical Company、Nikon Corporation、Ohara Corporation、Signify Holding 和 Corning Inc.。
在本報告中,除了以下詳細介紹的產業趨勢外,全球光子元件市場還分為以下幾類:
公司簡介:全球光子裝置市場主要公司的詳細分析。
根據給定的市場資料,Tech Sci Research 根據公司的具體需求提供客製化服務。本報告可以使用以下自訂選項:
(註:公司名單可依客戶要求客製化。)
Global Photonics Devices Market is growing rapidly owing to the emergence of silicon-based photonics applications. Photonics is becoming the foundational technology model for the next normal. Many enterprises are adopting photonics as a cost-effective solution to bolster the need for high-speed transfer in data communication. The high usage for photonics applications across various industries has become one of the significant factors offering cutting edge services for better efficiency, scalability, and customers' experience. Moreover, the growth of the market is on account of the increasing demand for energy-efficient and green products across the globe for saving energy and reducing pollution during the forecast period. Technology has become the key enabler of excellence and businesses are gradually becoming mobile as digitalization emerges. The increasing internet penetration and growing usage of smart display devices are further expected to boost the global photonics devices market during the forecast period.
Photonics is the technique of producing and utilizing light and other types of radiant energy, with the photon serving as the quantum unit. Instead of electrons, it uses photons to transfer information. Photonics is primarily used for light generation, which includes emission, transmission, amplification, detection, and light modification. Photonics, which is a term for the technologies created based on the light source, has supplied the market expansion. Photonics has a property that may be used to detect and treat issues, to imagine in medical sectors such as examining and studying diseases, as well as solve crimes, which has improved the use of photonics and elevated the market economy. Photonics does also play a great role in enterprise by developing potential for designing and manufacturing devices, systems, and integrated circuits for high-speed data transmission, sophisticated sensing, and imaging applications. The role of this direction is the development of methods for data transmission, reduced power consumption, large integration capacity and large bandwidth. Widely used optic fibers, lasers, and lights used in homes, hotels, computer displays, automobiles, televisions, and theatres are examples of photonics. Fiber optic telecommunications, optical data storage, displays, optical pumping of high-power lasers and laser printing are among the major used applications in photonics.
Market Overview | |
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Forecast Period | 2024-2028 |
Market Size 2022 | USD 714.32 Billion |
Market Size 2028 | USD 1085.3 Billion |
CAGR (2023-2028) | 7.22% |
Fastest Growing Segment | LED |
Largest Market | Asia-Pacific |
The exponential growth and the massive adoption of silicon-based photonics applications are driving the photonics market globally. Silicon photonics (SiPh) is the application of photonics systems, and it is widely used for computation, communication, sensing, and imaging light for faster data transmission in both, between and within microchips. Silicon photonics is a material platform that enables the fabrication of photonic integrated circuits (PICs) utilising silicon on insulator (SOI) wafers as the semiconductor substrate material. Silicon photonics is being used more often in optical data communications, sensing, medicinal, automotive, virtual reality, and artificial intelligence (AI) applications. Nonetheless, silicon is the principal material used by the majority of the semiconductor industry to construct integrated CMOS circuits, resulting in very high yield and cheap cost. Numerous companies have developed various strategies for integrating diverse materials, such as indium phosphide, in silicon photonics. applications to create integrated lasers, modulators, and detectors that drive the photonic circuit. Silicon-based photonics applications such as solid-state LiDAR sensors, photonic integrated circuits (PICs) are some of the common emerging technologies which are gaining traction in the autonomous vehicle and industrial automation space enabling tremendous technical, economical value, high-bandwidth, and software-configurable access to compute and storage. Furthermore, the need for high-speed transfer in data communication and heavy investment is driving the emergence of silicon-based photonics applications, which is expected to drive the growth of the global photonics devices market.
With applications ranging from diagnostics to surgical instruments to therapies, the healthcare and medical device business is a fast-expanding area of potential for optical and photonics technology. Biophotonics is an important diagnostic technique in gastroenterology. For decades, endoscopes have been used in gastroenterology to identify inflammations and tumors in the esophagus, stomach, and bowel. Deaths could be prevented in many cases if endoscopies were used to find the mutations sooner and remove them. Before a patient has any symptoms, diagnostic biophotonics can identify illnesses in their early stages. The rapid progress in biophotonics in medical sciences for early detection of various diseases by utilizing point-of-care applications and non-invasive imaging techniques is set to propel the global photonics market. Moreover, applications in healthcare such as medical lasers, phototherapy for treatment, bioimaging, optical coherence tomography (OCT) and many more are utilized for patient health awareness, disease diagnostics, eye surgery and enhancing real-time biological process. Furthermore, continuous research and technological advancement in medical devices are enabling the massive use of nanophotonic capabilities in healthcare and are expected to drive the global photonics devices market during the forecast period.
The increasing demand for energy-efficient and green products has enabled potential opportunities which have altered the environment making it more sustainable, reduce greenhouse gas emission, improves public health, and reduce pollution. Green photonic technology impacts energy generation (photovoltaics), solid state lighting for energy saving and displays), decreasing energy consumption in optoelectronic systems and communications. Additionally, the photonics-enabled products offer advantages such as longer lifespan, high energy efficiency, better accuracy, and faster operation. The growing importance of this area in photonics has led to organizations such as OIDA (Opto-Electronics Industry Development Association) and OSA (Optical Society of America) to come forward for enhancing energy efficiency. Thus, the rising demand for cost-effective energy efficient green products is expected to drive the growth of global photonics devices market during the forecast period.
The photonics devices market is segmented into product, application, end-user, and region. Based on product, the market is bifurcated into LED, lasers sensors detectors & imaging devices, optical communication systems & components, consumer electronics & devices and other. Based on application, the market is categorized into displays, information & communication technology, photovoltaic, medical technology & life sciences, measurement & automated vision, lighting, production technology and others. The end-user segment is further categorized into building & construction, media broadcasting & telecommunication, consumer & business automation, medical, security & defence, industrial and others.
Major market players in the global photonics devices market are IPG Photonics, Innolume GmbH, Infinera Corporation, Hamamatsu Photonics, Finisar Corporation, Shin-Etsu Chemical Company, Nikon Corporation, Ohara Corporation, Signify Holding, and Corning Inc.
In this report, the global photonics devices 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 photonics devices market.
With the given market data, Tech Sci Research offers customizations according to a company's specific needs. The following customization options are available for the report:
(Note: The companies list can be customized based on the client requirements.)