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Fiber Laser Market By Type, By Application: Global Opportunity Analysis and Industry Forecast, 2023-2032

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    Report

  • 390 Pages
  • June 2023
  • Region: Global
  • Allied Market Research
  • ID: 4612815
The Fiber Laser Market was valued for $3.3 billion in 2022 and is estimated to reach $9.2 billion by 2032, exhibiting a CAGR of 11% from 2023 to 2032.

Fiber laser is a device, which is optically pumped, most commonly with laser diodes but in a few cases with other fiber lasers. The optics used in this system is usually fiber components, with most, or all the components fiber-coupled to one another. In some systems, bulk optics are used, and sometimes an internal fiber-coupling system is combined with external bulk optics.

Rapid advancements in technology have revolutionized the industrial sector. Automation, robotics, artificial intelligence (AI), the Internet of Things (IoT), and other digital technologies have significantly improved efficiency, productivity, and quality in manufacturing and production processes. These technological advancements have led to the growth of factories and industries enabling faster and more flexible manufacturing capabilities where fiber laser have gained significant popularity in industrial applications such as metal cutting, welding, and marking. Their high beam quality, reliability, and scalability make them ideal for precision manufacturing processes. As industries strive for higher productivity, efficiency, and improved product quality, the demand for fiber lasers has grown. These factors together function as one of the key drivers responsible for the growth of the fiber laser market.

Fiber lasers can be more expensive upfront compared to other laser technologies, such as CO2 lasers or diode lasers. The initial investment cost for a fiber laser system, Including the laser source, optics, and associated equipment, can be higher. Furthermore, maintenance and repairs are more complex as compared to other laser technologies, which Incur additional cost and restrains the market growth. Furthermore, the fiber optics and optical components in fiber lasers require careful handling and alignment. In the event of damage or failure, specialized expertise may be required to repair or replace components. Thus, all these factors collectively hamper the growth of the fiber laser market.

Advancements in areas such as unmanned aerial vehicles (UAVs), autonomous systems, radar & sensor technologies, and satellite systems as well as surge in demand for commercial aircraft & stealth technologies are fueling growth of the fiber laser market. The fiber lasers are widely used in defense and aerospace industries for various applications, Including laser weapons, target designation, and laser-based communication systems. With Increasing defense budgets and advancements in laser technology, the demand for fiber lasers in the defense & aerospace sector is expected to Increase, which is anticipated to open new avenues for the expansion of the global market during the forecast period.

The global fiber laser market scope covers segmentation based on type, application, and region. The report highlights the details about different laser types such as infrared fiber laser, ultraviolet fiber laser, ultrafast fiber laser, and visible fiber laser. In addition, the applications covered in the study Include high-power, marking, fine processing, and micro processing. Moreover, it analyzes the current market trends of fiber lasers across North America, Europe, Asia-Pacific, and LAMEA and suggests the future growth opportunities.

Key Benefits For Stakeholders

  • This report provides a quantitative analysis of the market segments, current trends, estimations, and dynamics of the fiber laser market analysis from 2022 to 2032 to identify the prevailing fiber laser market opportunities.
  • The market research is offered along with information related to key drivers, restraints, and opportunities.
  • Porter's five forces analysis highlights the potency of buyers and suppliers to enable stakeholders make profit-oriented business decisions and strengthen their supplier-buyer network.
  • In-depth analysis of the fiber laser market segmentation assists to determine the prevailing market opportunities.
  • Major countries in each region are mapped according to their revenue contribution to the global market.
  • Market player positioning facilitates benchmarking and provides a clear understanding of the present position of the market players.
  • The report Includes the analysis of the regional as well as global fiber laser market trends, key players, market segments, application areas, and market growth strategies.

Key Market Segments

By Type

  • Infrared Fiber Laser
  • Ultraviolet Fiber Laser
  • Ultrafast Fiber Laser
  • Type
  • Picosecond fiber laser
  • Femtosecond fiber laser
  • Visible Fiber Laser
  • Type
  • Quasi-CW green fiber lasers
  • Nanosecond fiber laser

By Application

  • High power
  • Type
  • Cutting
  • Type C
  • Welding and Others
  • Type W
  • Marking
  • Fine Processing
  • Micro processing

By Region

  • North America
  • U.S.
  • Canada
  • Mexico
  • Europe
  • Germany
  • France
  • Italy
  • Spain
  • UK
  • Rest of Europe
  • Asia-Pacific
  • China
  • Japan
  • India
  • South Korea
  • Australia
  • Rest of Asia-Pacific
  • LAMEA
  • Brazil
  • South Africa
  • Saudi Arabia
  • Rest of LAMEA

Key Market Players

  • Amonics Ltd
  • Apollo Instruments, Inc
  • Coherent Corp.
  • CY Laser SRL
  • IPG Photonics Corporation
  • Jenoptik Group
  • NKT Photonics A/S
  • Quantel Group
  • Toptica Photonics AG
  • TRUMPF

 

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Table of Contents

CHAPTER 1: INTRODUCTION
1.1. Report description
1.2. Key benefits for stakeholders
1.3. Key market segments
1.3.1. List of key players profiled in the report
1.4. Research methodology
1.4.1. Secondary research
1.4.2. Primary research
1.4.3. Analyst tools and models
CHAPTER 2: EXECUTIVE SUMMARY
2.1. Key findings of the study
2.1.1. CXO perspective
CHAPTER 3: MARKET OVERVIEW
3.1. Market definition and scope
3.2. Key findings
3.2.1. Top investment pockets
3.2.2. Top winning strategies
3.3. Porters five forces analysis
3.3.1.1. Bargaining power of the suppliers
3.3.1.2. Bargaining power of the buyers
3.3.1.3. Threat of substitutes
3.3.1.4. Threat of new entrants
3.3.1.5. Competitive rivalry
3.4. Top player positioning
3.5. Market dynamics
3.5.1. Drivers
3.5.1.1. Eco-friendly technology
3.5.1.2. Technological advancement with respect to fiber lasers
3.5.1.3. High beam quality and a lower cost of ownership
3.5.2. Restraints
3.5.2.1. Reduced cutting speed while processing thicker materials
3.5.2.2. Undesired pulse pedestals and nonlinear optical effects
3.5.3. Opportunity
3.5.3.1. Automobile and mobile electronics applications
CHAPTER 4: GLOBAL FIBER LASER MARKET, BY TYPE
4.1. Overview
4.1.1. Market size and forecast
4.2. Infrared Fiber Laser
4.2.1. Key market trends growth factors and opportunities
4.2.2. Market size and forecast
4.2.3. Market analysis, by country
4.3. Ultraviolet Fiber Laser
4.3.1. Key market trends growth factors and opportunities
4.3.2. Market size and forecast
4.3.3. Market analysis, by country
4.4. Ultrafast Fiber Laser
4.4.1. Key market trends, growth factors and opportunities
4.4.1.1. Picosecond fiber laser
4.4.1.2. Femtosecond fiber laser
4.4.2. Market size and forecast, by type
4.4.3. Market size and forecast
4.4.4. Market analysis, by country
4.5. Visible Fiber Laser
4.5.1. Key market trends, growth factors and opportunities
4.5.1.1. Quasi-CW green fiber lasers
4.5.1.2. Nanosecond fiber laser
4.5.2. Market size and forecast, by type
4.5.3. Market size and forecast
4.5.4. Market analysis, by country
CHAPTER 5: GLOBAL FIBER LASER MARKET, BY APPLICATION
5.1. Overview
5.1.1. Market size and forecast
5.2. High Power
5.2.1. Key market trends, growth factors and opportunities
5.2.2. Market size and forecast
5.2.3. Market analysis, by country
5.2.4. Market size and forecast, by application type
5.2.4.1. Cutting
5.2.4.1.1. Market size and forecast
5.2.4.1.2. Flat sheet cutting
5.2.4.1.3. Tube cutting
5.2.4.1.4. 3D cutting
5.2.4.2. Welding & others
5.2.4.2.1. Market size and forecast
5.2.4.2.2. Power train
5.2.4.2.3. Tube welding
5.2.4.2.4. Car body scanner welding
5.2.4.2.5. Car body seam welding/brazing
5.2.4.2.6. Others
5.3. Marking
5.3.1. Key market trends, growth factors and opportunities
5.3.2. Market size and forecast
5.3.3. Market analysis, by country
5.4. Fine Processing
5.4.1. Key market trends, growth factors and opportunities
5.4.2. Market size and forecast
5.4.3. Market analysis, by country
5.5. Micro Processing
5.5.1. Key market trends, growth factors and opportunities
5.5.2. Market size and forecast
5.5.3. Market analysis, by country
CHAPTER 6: GLOBAL FIBER LASER MARKET, BY GEOGRAPHY
6.1. Overview
6.1.1. Market size and forecast
6.2. North America
6.2.1. Key market trends, growth factors and opportunities
6.2.2. North America market size & forecast for fiber laser market, by country
6.2.2.1. U.S. market size & forecast, by type
6.2.2.2. U.S. market size & forecast, by application
6.2.2.3. Canada market size & forecast, by type
6.2.2.4. Canada market size & forecast, by application
6.2.2.5. Mexico market size & forecast, by type
6.2.2.6. Mexico market size & forecast, by application
6.2.3. North America Fiber Laser Market by type
6.2.4. North America Fiber Laser Market by application
6.3. Europe
6.3.1. Key market trends, growth factors, and opportunities
6.3.2. Europe market size & forecast for Fiber Laser market, by country
6.3.2.1. Germany market size & forecast, by type
6.3.2.2. Germany market size & forecast, by application
6.3.2.3. France market size & forecast, by type
6.3.2.4. France market size & forecast, by application
6.3.2.5. UK market size & forecast, by type
6.3.2.6. UK market size & forecast, by application
6.3.2.7. Rest of Europe market size & forecast, by type
6.3.2.8. Rest of Europe market size & forecast, by application
6.3.3. Europe market size & forecast, by type
6.3.4. Europe market size & forecast, by application
6.4. Asia-Pacific
6.4.1. Key market trends, growth factors and opportunities
6.4.2. Asia-Pacific market size & forecast, by country
6.4.2.1. Japan market size & forecast, by type
6.4.2.2. Japan market size & forecast, by application
6.4.2.3. China market size & forecast, by type
6.4.2.4. China market size & forecast, by application
6.4.2.5. India market size & forecast, by type
6.4.2.6. India market size & forecast, by application
6.4.2.7. Rest of Asia-Pacific market size & forecast, by type
6.4.2.8. Rest of Asia-Pacific market size & forecast, by application
6.4.3. Asia-Pacific market size & forecast, by type
6.4.4. Asia-Pacific market size & forecast, by application
6.5. LAMEA
6.5.1. Key market trends, growth factors, and opportunities
6.5.2. LAMEA market size & forecast, by country
6.5.2.1. Brazil market size & forecast, by type
6.5.2.2. Brazil market size & forecast, by application
6.5.2.3. South Africa market size & forecast, by type
6.5.2.4. South Africa market size & forecast, by application
6.5.2.5. Rest of LAMEA market size & forecast, by type
6.5.2.6. Rest of LAMEA market size & forecast, by application
6.5.3. LAMEA market size & forecast, by type
6.5.4. LAMEA market size & forecast, by application
CHAPTER 7: COMPANY PROFILES
7.1. Amonics Ltd.
7.1.1. Company overview
7.1.2. Company snapshot
7.1.3. Operating business segments
7.1.4. Product portfolio
7.2. Apollo Instruments, Inc.
7.2.1. Company overview
7.2.2. Company snapshot
7.2.3. Operating business segments
7.2.4. Product portfolio
7.3. Coherent, Inc.
7.3.1. Company overview
7.3.2. Company snapshot
7.3.3. Operating business segments
7.3.4. Product portfolio
7.3.5. Business performance
7.3.6. Key strategic moves and developments
7.4. CY Laser SRL
7.4.1. Company overview
7.4.2. Company snapshot
7.4.3. Product portfolio
7.4.4. Key strategic moves and developments
7.5. IPG Photonics Corporation
7.5.1. Company overview
7.5.2. Company snapshot
7.5.3. Product portfolio
7.5.4. Business performance
7.5.5. Key strategic moves and developments
7.6. Jenoptik Group
7.6.1. Company overview
7.6.2. Company snapshot
7.6.3. Operating business segments
7.6.4. Product portfolio
7.6.5. Business performance
7.6.6. Key strategic moves and developments
7.7. NKT Photonics A/S
7.7.1. Company overview
7.7.2. Company snapshot
7.7.3. Operating business segments
7.7.4. Product portfolio
7.7.5. Business performance
7.7.6. Key strategic moves and developments
7.8. Quantel Group
7.8.1. Company overview
7.8.2. Company snapshot
7.8.3. Operating business segments
7.8.4. Product portfolio
7.8.5. Key strategic moves and developments
7.9. TRUMPF GmbH + Co. KG
7.9.1. Company overview
7.9.2. Company snapshot
7.9.3. Operating business segments
7.9.4. Product portfolio
7.9.5. Business performance
7.9.6. Key strategic moves and developments
7.10. TOPTICA Photonics AG
7.10.1. Company overview
7.10.2. Company snapshot
7.10.3. Product portfolio

Executive Summary

According to a new report, titled, 'Fiber Laser Market,' The fiber laser market was valued at $3.3 billion in 2022, and is estimated to reach $9.2 billion by 2032, growing at a CAGR of 11% from 2023 to 2032.

A fiber laser is a solid-state laser that generates a high-intensity laser beam through the process of stimulated emission. The laser utilizes an optical fiber as the gain medium or the source of laser light amplification. The core of a fiber laser consists of a specially designed optical fiber, often doped with rare-earth elements such as erbium, ytterbium, or neodymium. These dopants provide the necessary energy levels for the laser to operate. The fiber is surrounded by a cladding layer that helps confine and guide the light within the core.

Healthcare expenditure continues to rise globally due to the factors such as population growth, alarming increase in prevalence of chronic diseases, and advancements in medical treatments. In addition, innovations in areas such as robotics, artificial intelligence, 3D printing, nanotechnology, and biotechnology have facilitated the development of more advanced and sophisticated medical devices and equipment.

These technological advancements have improved patient outcomes, enhanced diagnostics, and expanded treatment options, thus driving the popularity of the industry. Fiber lasers find their application in the medical field, including surgery, dermatology, and dentistry. In addition, they can be used for precise cutting, ablation, and coagulation of tissues as well as for tattoo and pigmentation removal.

Fiber lasers can be more expensive upfront compared to other laser technologies, such as CO2 lasers or diode lasers. The initial investment cost for a fiber laser system, including the laser source, optics, and associated equipment, can be higher. Furthermore, maintenance and repairs are more complex as compared to other laser technologies, which incur additional cost and restrains the market growth. Furthermore, the fiber optics and optical components in fiber lasers require careful handling and alignment. In the event of damage or failure, specialized expertise may be required to repair or replace components. Thus, all these factors collectively hamper the growth of the fiber laser market.

On the contrary, the demand for battery has increased considerably in the recent years due to the factors such as widespread use of portable electronics, rise in popularity of electronics vehicles, and integration of renewable energy sources have spurred the demand for high-power marking fiber lasers. It has been used to mark essential information on batteries, such as capacity, voltage ratings, safety symbols, and manufacturer details. These marks aid in battery identification, proper usage, and compliance with safety standards. These supporting factors are responsible for the growth of the fiber laser market.

Furthermore, need for laser-based medical procedures is increasing due to their precision, minimal invasiveness, and shorter recovery time. Infrared-based fiber lasers are well-suited for these applications, due to their target-specific chromophores in tissues with minimal damage to surrounding areas. Thus, infrared fiber lasers find extensive use in the medical field for surgical procedures, dermatology treatments, and aesthetics, which acts as the key driving force of the overall market. In addition, There has been a noticeable shift from traditional laser technologies, such as CO2 and Nd:YAG lasers, to fiber lasers. Fiber lasers offer several advantages over traditional lasers, including higher beam quality, greater efficiency, compact size, lower maintenance requirements, and reduced operating costs. This trend towards fiber lasers as a preferred choice for industrial applications is driving market growth. This factor is projected to offer new avenues for the market
The growth drivers, restraints, and opportunities are explained in the report to better understand the market dynamics. This report further highlights the key areas of investments. In addition, it includes Porter’s five forces analysis to understand the competitive scenario of the industry and role of each stakeholder. The report features strategies adopted by key market players to maintain their foothold in the market. Furthermore, it highlights the competitive landscape of key players to increase their market share and sustain intense competition in the industry.

The global fiber laser market is segmented into type, application, and region. On the basis of type, the market is categorized into infrared fiber laser, ultraviolet fiber laser, ultrafast fiber laser, and visible fiber laser. By application, it is segregated high-power, marking, fine processing, and micro processing. Region wise, it is studied across North America, Europe, Asia-Pacific, and LAMEA.

These marks may include part numbers, ratings, safety symbols, and compliance markings for regulatory purposes. This factor is projected to drive the market during the forecast period. The global fiber laser market report profiles leading players that include Amonics Ltd, TRUMPF GmbH, Coherent, Inc., Quantel Group, IPG Photonics Corporation, NKT Photonics A/S, TOPTICA Photonics AG, Jenoptik Group, CY Laser SRL, and Apollo Instruments, Inc. The global fiber laser market report provides in-depth competitive analysis as well as profiles of these major players.

Companies Mentioned

  • Amonics Ltd
  • Apollo Instruments, Inc
  • Coherent Corp.
  • CY Laser SRL
  • IPG Photonics Corporation
  • Jenoptik Group
  • NKT Photonics A/S
  • Quantel Group
  • Toptica Photonics AG
  • TRUMPF

Methodology

The analyst offers exhaustive research and analysis based on a wide variety of factual inputs, which largely include interviews with industry participants, reliable statistics, and regional intelligence. The in-house industry experts play an instrumental role in designing analytic tools and models, tailored to the requirements of a particular industry segment. The primary research efforts include reaching out participants through mail, tele-conversations, referrals, professional networks, and face-to-face interactions.

They are also in professional corporate relations with various companies that allow them greater flexibility for reaching out to industry participants and commentators for interviews and discussions.

They also refer to a broad array of industry sources for their secondary research, which typically include; however, not limited to:

  • Company SEC filings, annual reports, company websites, broker & financial reports, and investor presentations for competitive scenario and shape of the industry
  • Scientific and technical writings for product information and related preemptions
  • Regional government and statistical databases for macro analysis
  • Authentic news articles and other related releases for market evaluation
  • Internal and external proprietary databases, key market indicators, and relevant press releases for market estimates and forecast

Furthermore, the accuracy of the data will be analyzed and validated by conducting additional primaries with various industry experts and KOLs. They also provide robust post-sales support to clients.

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