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市场调查报告书
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1687897

可调式雷射:市场占有率分析、行业趋势和成长预测(2025-2030)

Tunable Laser - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2025 - 2030)

出版日期: | 出版商: Mordor Intelligence | 英文 126 Pages | 商品交期: 2-3个工作天内

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简介目录

可调式雷射市场规模预计在 2025 年为 157.1 亿美元,预计到 2030 年将达到 234.1 亿美元,预测期内(2025-2030 年)的复合年增长率为 8.3%。

可调谐雷射市场-IMG1

可调式雷射能够发射不同波长的光,因此用途十分广泛。这种灵活性使其能够适应各种应用,包括光谱学、材料加工和光纤通讯。这些雷射提供强大的控制和精度,可以根据特定要求进行微调。由于它可以发射从紫外线到红外线的宽频谱,因此可以用于多种用途。

关键亮点

  • 可调式雷射具有高分辨率,使研究人员能够精确研究微小的细节。这种分辨率在显微镜等领域至关重要,因为聚焦特定结构或细胞的能力至关重要。透过调整雷射的波长,可以实现高效的细节和清晰度。
  • 可调式雷射为各行各业提供了经济高效的解决方案。与传统的固定波长雷射相比,可调式雷射不需要多个雷射来覆盖较宽的波长范围。这种整合降低了与维护、校准和电力消耗相关的成本。
  • 此外,重新配置雷射输出波长的能力消除了昂贵的硬体升级的需要,从长远来看,它是一种更经济的选择。它们还透过将输入能量转换为有用的输出光而具有高能源效率。这种效率降低了功耗,使可调式雷射成为环保的选择。
  • 可调式雷射也越来越多地与其他技术相结合,例如光纤和整合光电。透过结合这些技术,可调式雷射可以实现更复杂、更整合的系统。此外,可调式雷射与人工智慧(AI)的结合对于优化雷射性能具有巨大潜力。可以采用人工智慧来自动化调整流程,提高稳定性,并根据特定应用优化雷射参数。这种整合使得可调式雷射的控制更加高效和智慧。
  • 然而,可调式雷射较高的初始成本是限制市场发展的因素之一。生产这些雷射需要大量的研究和开发,这导致了昂贵的製造过程,使得许多潜在买家无法负担。高成本将市场限制在小众客户群,限制了可调式雷射在各行业的应用。
  • 此外,远距工作环境的兴起为增加资料产生带来了新的机会。远距工作环境正在推动超大规模资料中心的成长,从而产生对高效网路的需求。可调式雷射对于 WDM 系统中精确的波长控制至关重要。随着光通道数量的增加和所需通道间距的减小,需要精确的调谐和滤波。可调式雷射也用于多路復用和容量扩展、平行单模架构、连贯系统、密集分波多工(DWDM)等。
  • 各个资料中心供应商都在不断投资新的资料中心,以满足对资料永不满足的需求。根据印度国家软体和服务公司协会(NASSCOM)预测,到2025年,印度资料中心市场的投资金额预计将达到46亿美元。无论是市场进入还是运营,成本效益都是印度资料中心相较于成熟市场的最大优势。目前,印度的资料中心集中在孟买、班加罗尔、清奈、德里(NCR)、海得拉巴和普纳。加尔各答、喀拉拉邦和艾哈默德巴德被计划作为未来的资料中心所在地。资料中心市场不断增长的投资正在推动印度对资料中心基础设施的需求,包括 IT、电气、机械和一般建筑服务。

可调式雷射市场趋势

医疗领域将显着成长

  • 医疗领域的可调式雷射预计将出现高成长,因为它们用于各种应用,例如癌症治疗、痤疮治疗、心臟病、发炎性皮肤病、人类乳头状瘤、肝血管瘤、皮肤病学等。在医学领域,可调式雷射可实现非侵入性成像方式,例如用于详细组织成像的光学相干断层扫描。
  • 可调式雷射以独特的方式调整其输出波长,从而可以精确瞄准各种医疗程序。客製化这些雷射的能力在皮肤病学、眼科和外科手术等应用中起着关键作用,使医疗专业人员能够以最佳精度针对特定的组织类型。
  • 随着技术的进步,医疗领域的可调式雷射正在经历显着增长,这得益于对微创手术的需求不断增加、诊断能力不断提高以及治疗效果不断改善。这些雷射还可应用于纹身移除和视网膜手术等领域,在这些领域中,波长选择的灵活性是实现最佳临床结果的关键。
  • 不断扩大的医疗应用和雷射技术的不断改进将推动市场成长。此外,透过持续的研究和开发,有可能融入即时影像控制和自动波长选择等先进功能,进一步提高医疗程序的效率和安全性。
  • 慢性病的增加和全球人口老化导致对创新医疗技术的需求增加,从而推动预计时间内的市场成长。根据美国国家生物技术资讯中心发布的报告,预计2023年,美国将新增1,958,310例癌症病例,并有609,820例美国死亡病例。癌症患者数量的增加增加了对医学影像处理的需求,从而推动了市场的成长。
  • 此外,各个地区增加医疗支出和投资以改善医疗基础设施可能会对所研究的市场产生需求。例如,根据 CMS 的数据,预计 2000 年至 2031 年间美国个人医疗保健支出总额和人均支出都将大幅增加。到2031年,美国医疗保健总支出预计将达到6兆美元,人均支出将增加至17,178美元。
  • 2023年5月,英国政府宣布将在全国新建五所大型医院,作为新医院计画的一部分。透过这项倡议,政府旨在保障病患和员工的安全,预计将在医院基础设施上投资超过 200 亿欧元(214.5 亿美元)。这五家医院急需维修,并将维修,以确保患者和员工能够受益于配备最新技术的新的、更大的医院。

亚太地区占很大份额

  • 亚太地区是雷射技术(包括可调式雷射)的主要消费国和生产国。中国、韩国、台湾和日本等主要国家和地区拥有丰富的製造可调式雷射的原料,而可调谐雷射则依赖半导体和电子元件(例如固体雷射)。对于许多在海外生产可调式雷射解决方案的公司来说,亚太地区是其主要进口地区。
  • NTT India 已拨款约 20 亿美元用于在未来三到四年内改善该国的资讯和通讯技术基础设施,以满足资料使用量的激增。 NTT India 计划进行资本投资的重点领域包括新资料中心、云端运算、海底电缆登陆站和太阳能园区。
  • 此外,政府措施和企业对资料中心的投资增加也进一步推动了市场的成长。可调式雷射是现代资料中心的关键推动因素,支援为我们的数位世界提供动力的快速且高效的资料流。随着资料中心需求的不断增长,这些微型光源的作用预计将变得越来越突出,促进高速资料通讯的进一步创新和进步。
  • 这些雷射越来越多地用于材料加工应用,例如钻孔、焊接和各种材料的高精度切割。政府加大倡议推动製造业发展将​​进一步促进市场成长。

可调式雷射市场概况

由于该行业有许多全球和地区参与企业,预计全球可调式雷射市场将会分散。市场的主要企业包括 Lumentum Operations LLC(Lumentum Holdings Inc.)、Coherent, Inc.、EKSPLA(EKSMA Group)、EXFO Inc. 和 Keysight Technologies Inc. 所有这些参与企业都致力于制定竞争策略,包括合作伙伴关係、新产品创新和市场开发,以在全球可调式雷射市场中占据主导地位。

  • 2024 年 1 月,EKSPLA 加强了其全球超过 25 家经销商的网络,巩固了其在全球市场的地位。该公司的电子产品连续 20 多年来一直受到美国雷射製造商的青睐,目前该公司正在寻找更多合作伙伴,在美国和加拿大代表和销售其OEM雷射电子产品。
  • 2024年1月,TOPTICA Photonics AG宣布其法国子公司TOPTICA Photonics SAS将接管TOPTICA产品在法国的销售。 TOPTICA Photonics SAS 也分销 TOPTICA 主要合作伙伴 HighFinesse GmbH 的产品,并透过波长计和其他光学分析设备补充 TOPTICA 雷射。

其他福利

  • Excel 格式的市场预测 (ME) 表
  • 3个月的分析师支持

目录

第一章 引言

  • 研究假设和市场定义
  • 研究范围

第二章调查方法

第三章执行摘要

第四章 市场洞察

  • 市场概览
  • 产业价值链分析
  • 产业吸引力-波特五力分析
    • 供应商的议价能力
    • 买家的议价能力
    • 新进入者的威胁
    • 替代品的威胁
    • 竞争对手之间的竞争
  • COVID-19 和其他宏观经济因素对市场的影响

第五章 技术简介

  • 按类型
    • C波
    • 其他的

第六章市场动态

  • 市场驱动因素
    • 可调谐二极体雷射气体分析仪的需求不断增长
    • 生命科学研究对光谱仪器的需求
  • 市场限制
    • 系统设计与功能复杂性

第七章市场区隔

  • 按最终用户产业
    • 製造和工业部门
    • 通讯及网路设备部门
    • 医疗领域
    • 其他的
  • 按地区
    • 北美洲
    • 欧洲
    • 亚洲
    • 澳洲和纽西兰
    • 拉丁美洲
    • 中东和非洲

第八章竞争格局

  • 公司简介
    • Lumentum Operations LLC(Lumentum Holdings Inc.)
    • Coherent Inc.
    • EKSPLA(EKSMA Group)
    • EXFO Inc.
    • Keysight Technologies Inc.
    • HBNER GmbH & Co. KG
    • Sacher Lasertechnik
    • Newport Corporation(MKS Instruments Inc.)
    • Santec Corporation
    • Thorlabs Inc.
    • TOPTICA Photonics AG

第九章投资分析

第十章 市场机会与未来趋势

简介目录
Product Code: 66736

The Tunable Laser Market size is estimated at USD 15.71 billion in 2025, and is expected to reach USD 23.41 billion by 2030, at a CAGR of 8.3% during the forecast period (2025-2030).

Tunable Laser - Market - IMG1

Tunable lasers possess the ability to emit light at different wavelengths, making them very versatile. This flexibility enables them to adapt to various applications like spectroscopy, material processing, optical communications, etc. These lasers can be fine-tuned to match the specific requirements, providing robust control and precision. The lasers can emit a broad spectrum, from ultraviolet to infrared, allowing for a multitude of applications.

Key Highlights

  • Tunable lasers offer high resolution, allowing researchers to precisely study minute details. This level of resolution is crucial in fields like microscopy, where the ability to focus on specific structures or cells is paramount. By adjusting the laser's wavelength, efficient detail and clarity can be achieved.
  • Tunable lasers offer cost-effective solutions in various industries. Compared to traditional fixed-wavelength lasers, tunable lasers eliminate the need for multiple lasers to cover a wide range of wavelengths. This consolidation reduces costs associated with maintenance, calibration, and power consumption.
  • Additionally, the ability to reconfigure the laser's output wavelength eliminates the need for expensive hardware upgrades, making these lasers a more economical choice in the long run. They also offer high energy efficiency by converting the input energy into useful output light. This efficiency reduces power consumption, making tunable lasers an environmentally friendly choice.
  • Tunable lasers are also being integrated with other technologies, such as optical fibers and integrated photonics. Combining these technologies allows tunable lasers to enable more complex and integrated systems. Further, the integration of tunable lasers with artificial intelligence (AI) holds great potential for optimizing laser performance. AI can be employed to automate the tuning process, enhance stability, and optimize laser parameters based on specific applications. This integration could enable more efficient and intelligent control of tunable lasers.
  • However, the high initial cost associated with tunable lasers is one of the primary market restraints. The extensive R&D required to manufacture these lasers results in expensive production processes, making them unaffordable for many potential buyers. The high cost restricts the market to a niche customer base and limits the adoption of tunable lasers in various industries.
  • Moreover, it presented new opportunities for growing data generation due to the increase in remote working environments. The remote working environment is leading to the growth in hyper-scale data centers, creating a need for efficient networking. Tunable lasers are essential for precise wavelength control in WDM systems. As the number of optical channels increases and smaller channel spacing is required, highly accurate tuning and filtering become necessary. Tunable lasers are also used in multiplexing and capacity expansions, as well as parallel single-mode architectures, coherent systems, dense wavelength division multiplexing (DWDM), etc.
  • Various data center vendors are consistently investing in new data centers in line with the insatiable need for data. According to the National Association of Software and Service Companies (NASSCOM), India's data center market investment is expected to reach USD 4.6 billion in 2025. India's higher cost efficiency in both development and operation is its most significant advantage compared to more mature markets. Currently, India's data centers are mostly located in Mumbai, Bengaluru, Chennai, Delhi (NCR), Hyderabad and Pune. Calcutta, Kerala, and Ahmedabad are the upcoming data center hubs. These growing data center market investments drive the demand for data center infrastructure, including IT, electrical, mechanical, and general construction services in India.

Tunable Laser Market Trends

Healthcare Sector to Witness Significant Growth

  • The tunable lasers in the healthcare sector will witness high growth as they are used in various applications such as cancer treatment, acne treatment, cardiology, inflammatory skin disease, human papilloma, hemangiomas, dermatology, etc. In healthcare, tunable lasers enable non-invasive imaging modalities like optical coherence tomography for detailed tissue imaging.
  • The tunable lasers uniquely adjust the output wavelength, enabling precise targeting of various medical procedures. The ability to customize these lasers plays an important role in applications such as dermatology, ophthalmology, and surgical procedures, allowing healthcare professionals to target specific tissue types with optimal precision.
  • As technology advances, the tunable laser in the healthcare sector is witnessing significant growth, driven by increasing demand for minimally invasive procedures, improved diagnostic capabilities, and improved therapeutic outcomes. These lasers also find application in areas such as tattoo removal and retinal surgery, where their flexibility in wavelength selection is critical to achieving optimal clinical results.
  • The expanding scope of medical applications and the continual refinement of laser technologies will drive the market's growth. Moreover, through ongoing research and development, there is potential to incorporate advanced features such as real-time image control and automatic wavelength selection, further improving the efficiency and safety of medical procedures.
  • The increasing prevalence of chronic diseases and the aging of the global population are leading to increased demand for innovative medical technologies, thus propelling the market's growth during the projected timeline. As per the report published by the National Center for Biotechnology Information, 1,958,310 new cancer cases and 609,820 cancer deaths are predicted in the United States in fiscal year 2023. The rising number of cancer patients increases the demand for medical imaging, thus driving the market's growth.
  • Moreover, increasing healthcare expenditure and investments across various regions to improve healthcare infrastructure may create demand in the market studied. For instance, according to CMS, projected U.S. personal healthcare expenditure, both in total and per capita, is set to see significant growth from 2000 to 2031. By 2031, the nation's total healthcare spending is forecasted to hit a staggering USD six trillion, with per capita expenditure anticipated to increase to USD 17,178.
  • In May 2023, the government of the United Kingdom announced the building of five more significant hospitals in the country as a part of the new hospital program. Through this initiative, the government aims to protect patients' and staff safety, and it is expected to be backed by over EUR 20 billion (USD 21.45 billion) of investments in hospital infrastructure. These five hospitals urgently need refurbishment and will be prioritized so patients and staff can benefit from sizeable new hospital buildings equipped with the latest technology.

Asia-Pacific to Hold Major Share

  • Asia-Pacific is a major consumer and producer of laser technologies, including tunable lasers. In some major countries, such as China, South Korea, Taiwan, Japan, etc., raw materials are highly available for manufacturing laser solutions, especially tunable lasers highly dependent on semiconductors and electronic components (such as solid-state lasers.). Asia-Pacific is a major importer for many companies manufacturing tunable laser solutions abroad.
  • NTT India has allocated around USD 2 billion to improve the nation's information and communications technology infrastructure over the next three to four years to capitalize on the surge in data usage. The main areas where NTT India's capex is planned include new data centers, cloud computing, submarine cable landing stations, and solar parks.
  • Moreover, the increasing government initiatives and companies' investment in data centers further boost market growth. Tunable lasers are critical enablers of modern data centers, supporting the rapid and efficient flow of data that powers the digital world. As data center demand continues to grow, the role of these miniature light sources is only expected to become more prominent, driving further innovation and advancements in high-speed data communication.
  • These lasers are increasingly used in material processing applications such as drilling, welding, and cutting various materials with high precision. The increasing government initiatives to boost the manufacturing sector further boost the market growth.

Tunable Laser Market Overview

As there are many global and regional players in the industry, the global market for the tunable laser is expected to be fragmented. Lumentum Operations LLC (Lumentum Holdings Inc.), Coherent, Inc., EKSPLA (EKSMA Group), EXFO Inc., and Keysight Technologies Inc. are some of the major players in the market. All these players are involved in competitive strategic developments such as partnerships, new product innovation, and market expansion to gain leadership positions in the global tunable laser market.

  • In January 2024, EKSPLA strengthened its global network of over 25 distributors to fortify its market presence worldwide. Its electronic products have been popular amongst the United States laser manufacturers for 20+ years straight, and they are currently seeking more partners to represent and distribute its OEM laser electronics in the United States and Canada.
  • In January 2024, TOPTICA Photonics AG announced that its French subsidiary TOPTICA Photonics SAS would take over the sales of TOPTICA products in France to strengthen the collaboration between French scientific or industrial customers and TOPTICA by offering a direct link between the partners. TOPTICA Photonics SAS would also distribute products from HighFinesse GmbH, a valued partner of TOPTICA, and complement the TOPTICA lasers with wavelength meters and other optical analyzers.

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support

TABLE OF CONTENTS

1 INTRODUCTION

  • 1.1 Study Assumptions and Market Definition
  • 1.2 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET INSIGHTS

  • 4.1 Market Overview
  • 4.2 Industry Value Chain Analysis
  • 4.3 Industry Attractiveness - Porter's Five Forces Analysis
    • 4.3.1 Bargaining Power of Suppliers
    • 4.3.2 Bargaining Power of Buyers
    • 4.3.3 Threat of New Entrants
    • 4.3.4 Threat of Substitutes
    • 4.3.5 Intensity of Competitive Rivalry
  • 4.4 Impact of COVID-19 Aftereffects and Other Macroeconomic Factors on the Market

5 Technology Snapshot

  • 5.1 By Type
    • 5.1.1 C-wave
    • 5.1.2 Other Types

6 MARKET DYNAMICS

  • 6.1 Market Drivers
    • 6.1.1 Increased Demand for Tunable Diode Laser Gas Analyzer
    • 6.1.2 Demand for Spectroscopy Equipment in Life Science Study
  • 6.2 Market Restraints
    • 6.2.1 Complexity in System Design and Function

7 MARKET SEGMENTATION

  • 7.1 By End-User Industry
    • 7.1.1 Manufacturing and Industrial Sector
    • 7.1.2 Telecommunication and Networking Devices Sector
    • 7.1.3 Healthcare Sector
    • 7.1.4 Other End-user Industries
  • 7.2 By Geography
    • 7.2.1 North America
    • 7.2.2 Europe
    • 7.2.3 Asia
    • 7.2.4 Australia and New Zealand
    • 7.2.5 Latin America
    • 7.2.6 Middle East and Africa

8 COMPETITIVE LANDSCAPE

  • 8.1 Company Profiles
    • 8.1.1 Lumentum Operations LLC (Lumentum Holdings Inc.)
    • 8.1.2 Coherent Inc.
    • 8.1.3 EKSPLA (EKSMA Group)
    • 8.1.4 EXFO Inc.
    • 8.1.5 Keysight Technologies Inc.
    • 8.1.6 HBNER GmbH & Co. KG
    • 8.1.7 Sacher Lasertechnik
    • 8.1.8 Newport Corporation (MKS Instruments Inc.)
    • 8.1.9 Santec Corporation
    • 8.1.10 Thorlabs Inc.
    • 8.1.11 TOPTICA Photonics AG

9 INVESTMENT ANALYSIS

10 MARKET OPPORTUNITIES AND FUTURE TRENDS