Laser Marking Industry Size & Share Analysis - Growth Trends & Forecasts (2025 - 2030)

The Laser Marking Market Report is Segmented by Laser Type (Fiber Laser, CO₂ Laser, Solid-State, UV Laser, and More), Marking Process (Annealing, Etching, Engraving, Foaming, and Carbonisation), Offering (Hardware, Software, and Services), End-User Industry (Automotive and Aerospace, Electronics and Semiconductors, Medical Devices and Healthcare, and More), and Geography. The Market Forecasts are Provided in Terms of Value (USD).

Laser Marking Market Size and Share

Laser Marking Industry (2025 - 2030)
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Laser Marking Market Analysis by Mordor Intelligence

The laser marking market is valued at USD 3.62 billion in 2025 and is on track to rise to USD 4.58 billion by 2030, advancing at a 4.82% CAGR. Growth is anchored in global regulations that require permanent device identification, expanding demand from electric vehicle battery production, and rising precision needs across miniaturised electronics and sustainable packaging. Asia continues to dominate installations as domestic suppliers cut entry costs, while service-led business models gain traction in North America and Europe. Pricing pressure from Chinese fiber-laser producers compresses hardware margins, but software and predictive-maintenance services preserve profitability. New use-cases in aerospace composites, jewellery hallmarking, and industrial automation widen the customer base even as high capital requirements constrain some small manufacturers.

Conclusiones clave del informe

  • By laser type, fiber lasers led with 62.4% revenue share in 2024; UV lasers are forecast to expand at a 6.8% CAGR through 2030.
  • By marking process, engraving held 38.4% of the laser marking market share in 2024, while annealing is projected to grow at a 7.1% CAGR to 2030.
  • By offering, hardware systems commanded 81.7% of the laser marking market size in 2024; services are advancing at an 8.4% CAGR through 2030.
  • By end-user industry, electronics and semiconductors accounted for 27.8% of revenue in 2024; medical devices and healthcare show the fastest growth at a 5.3% CAGR to 2030.
  • By geography, Asia captured 46.3% of the laser marking market in 2024, whereas South America is set to record the highest regional CAGR at 6.1% through 2030.

Análisis de segmento

By Laser Type: Fiber Leadership and UV Growth

Fiber lasers held 62.4% of revenue in 2024, reflecting their reliability, high wall-plug efficiency, and ability to mark most metals at high speed. Automotive powertrain parts, surgical instruments, and aerospace fasteners rely on fiber beams for deep, legible engravings that survive harsh service. The laser marking market size for fiber systems is projected to expand steadily alongside Industry 4.0 retrofits in Asia and Europe. UV lasers, though smaller in revenue today, are advancing at a 6.8% CAGR through 2030 thanks to demand for micro-marking on sensitive substrates such as flexible circuits and glass covers. Rising yields in consumer electronics push factories to retrofit UV capabilities, while semiconductor fabs specify 355 nm sources for wafer-level ID.

Green and ultrashort-pulse solutions occupy niche roles in silicon wafer processing and glass interposer drilling. Coherent, TRUMPF, and IPG Photonics continue to refine beam characteristics, but Chinese vendors narrow the technology gap and undercut on price. Integration of vision-guided alignment and inline verification software now differentiates suppliers more than raw beam power.

Laser Marking Market: Market Share by Laser Type
Imagen © Mordor Intelligence. Reutilización permitida bajo la licencia CC BY 4.0.

Nota: Las participaciones de todos los segmentos individuales están disponibles al momento de la compra del informe.

By Marking Process: Engraving Dominance and Rapid Annealing Uptake

Engraving accounted for 38.4% of market revenue in 2024, driven by automotive and aerospace requirements for deep, tamper-proof marks. Fiber systems remove material quickly, ensuring high contrast and durability, while dust extraction and vision verification modules sustain throughput. Annealing is the fastest-expanding process at a 7.1% CAGR because medical device makers prefer oxide-layer color changes that leave surfaces smooth and sterile. The laser marking market share for annealing rises whenever stainless tools or implantables demand pristine finishes.

Etching and foaming continue to support consumer goods and packaging lines where shallow marks suffice. Carbonisation remains a go-to method for organic materials, especially cardboard and engineered wood. Multi-process heads capable of switching between engraving, annealing, and etching in a single cycle gain popularity as factories seek flexible cells.

By Offering: Hardware Strength, Service Momentum

Hardware systems represented 81.7% of total value in 2024, underpinned by large one-time purchases for greenfield factories across Asia. Integrated systems that mount inside production cells now outsell stand-alone workstations because line automation demands synchronized code validation. However, service revenue is rising faster at an 8.4% CAGR. Users purchase uptime rather than machines, subscribing to remote diagnostics, consumable management, and predictive maintenance dashboards. Hardware vendors respond by bundling software licences and data analytics with every gantry sale, pivoting to recurring income.

Vision inspection, machine-learning-based code grading, and secure data archiving enhance traceability compliance. The laser marking market size allocated to software modules climbs as customers link shop-floor marking data with enterprise resource planning platforms. Suppliers that offer cloud-ready APIs win long-term service contracts.

Laser Marking Market: Market Share by Offering
Imagen © Mordor Intelligence. Reutilización permitida bajo la licencia CC BY 4.0.

Nota: Las participaciones de todos los segmentos individuales están disponibles al momento de la compra del informe.

By End-User Industry: Electronics Lead, Medical Devices Surge

Electronics and semiconductors contributed 27.8% of 2024 revenue, benefitting from relentless device miniaturisation and complex supply chains that require component-level ID. Smartphone makers, contract assemblers, and chip foundries specify laser codes to manage warranty claims and counterfeit risk. The segment emphasises zero-defect processes, leading to heightened demand for UV and ultrashort-pulse systems. The medical devices and healthcare segment is expanding at a 5.3% CAGR, propelled by global UDI mandates. The laser marking market size for surgical tools and implantables is projected to grow quickly as hospitals standardise digital inventory management.

Automotive and aerospace remain steady contributors as electric drivetrains and lightweight composites broaden marking needs. Food and beverage brands accelerate adoption for sustainability goals, while jewellery, defence, and oil and gas add incremental demand. Vendors now design universal controllers that toggle between material databases to serve multiple industries with minimal changeover.

Análisis geográfico

Asia generated 46.3% of global revenue in 2024, anchored by China’s electronics and automotive clusters and supported by large state incentives for smart factories. Domestic suppliers such as Han’s Laser and HGTECH sell competitively priced fiber units, widening access for regional job shops and tier-one components firms. Japan and South Korea pursue niche precision applications in semiconductors and EV battery modules, while India’s hallmarking and pharmaceutical coding policies open new mid-tier opportunities. Rising service contracts create recurring income streams as manufacturers seek predictable costs and regulatory compliance.

North America’s demand is mature and quality-driven, centred on aerospace, medical devices, and automotive VIN coding. Regulations and warranty risk drive adoption of high-end systems with validated process monitoring. Canadian firms leverage laser coding for mining equipment while Mexico’s automotive export plants modernise with inline marking to satisfy traceability standards for US vehicle platforms. Service penetration is high as uptime contracts offset labour shortages.

Europe balances sustainability objectives with strict safety regulations. German powertrain and machinery builders rely on deep engraving, while French aerospace plants adopt ultrashort-pulse beams for lightweight composites. Brands across the United Kingdom and the Nordic region choose laser coding to eliminate ink and lower carbon footprints. The laser marking market size attributed to European packaging lines grows steadily as GS1 Digital Link rollouts progress. Eastern Europe benefits from near-shoring, prompting new installations in Poland and the Czech Republic.

South America is the fastest-growing region at a 6.1% CAGR to 2030, led by Brazilian automotive exports and Chilean mining automation. High capital costs and a shortage of trained technicians slow the pace in smaller economies, yet leasing models are starting to remove barriers. Government incentives for digital manufacturing in Argentina and Colombia could accelerate adoption once macroeconomic stability improves. The Middle East and Africa register moderate growth, with oil and gas asset identification and government-backed industrial parks in the Gulf creating demand clusters, although political risk tempers longer-term forecasts.

Laser Marking Market CAGR (%), Growth Rate by Region
Imagen © Mordor Intelligence. Reutilización permitida bajo la licencia CC BY 4.0.

Panorama competitivo

Global competition is moderate, with Western innovators facing rising rivalry from cost-efficient Chinese manufacturers. Coherent, IPG Photonics, and TRUMPF sustain technological leadership through investments in dual-beam architectures, ultrashort-pulse sources, and advanced control software. They protect margins by bundling analytics, remote support, and automated quality checks. Han’s Laser, HGTECH, and other Chinese brands undercut on price and shorten innovation cycles, capturing domestic share and penetrating export markets.

Strategic consolidation continues. Brady Corporation’s 2024 purchase of Gravotech expanded its installed base by 60,000 customers and added European and Asian manufacturing sites. The merger creates cross-selling potential for cloud-based device management services. IPG Photonics launched the LightWELD 2000 XR in January 2025 to enter handheld welding, signalling diversification into adjacent laser processes. TRUMPF’s partnership with SCHMID focuses on glass interposer drilling for chip packaging, opening new revenue in semiconductor back-end lines.

Competitive advantage now hinges on software ecosystems. Vendors integrate artificial intelligence that predicts optics wear, schedules maintenance, and optimises code contrast in real time. Open APIs allow enterprise resource planning connectivity, locking customers into proprietary data platforms. Service teams leverage digital twins of customer equipment to offer guaranteed uptime, shifting bargaining power toward technology owners.

Líderes de la industria del marcado láser

  1. Corporación coherente

  2. Corporación IPG Photonics

  3. Grupo TRUMPF

  4. Mecco Partners LLC

  5. Grupo Gravotech

  6. *Descargo de responsabilidad: los jugadores principales están clasificados sin ningún orden en particular
Mercado de marcado láser
Imagen © Mordor Intelligence. Reutilización permitida bajo la licencia CC BY 4.0.
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Desarrollos recientes de la industria

  • January 2025: IPG Photonics launched the LightWELD 2000 XR handheld laser welding system, delivering 2 kW output and quadrupling speed over TIG welding
  • January 2025: TRUMPF and SCHMID announced a partnership to develop laser-etching on glass interposers for advanced chip packaging
  • January 2025: Thorlabs completed the acquisition of Praevium Research, expanding tunable VCSEL capabilities for imaging applications
  • January 2025: Coherent introduced the FACTOR Series of fiber-coupled diode pumps with power up to 220 W for industrial and medical OEMs

Table of Contents for Laser Marking Industry Report

1. INTRODUCCIÓN

  • 1.1 Supuestos del estudio y definición del mercado
  • 1.2 Alcance del estudio

2. METODOLOGÍA DE INVESTIGACIÓN

3. RESUMEN EJECUTIVO

4. PANORAMA DEL MERCADO

  • 4.1 Visión general del mercado
  • Controladores del mercado 4.2
    • 4.2.1 Mandatory UDI and traceability regulations in medical devices (US, EU, CN)
    • 4.2.2 Surge in EV battery production contact-less marking demand
    • 4.2.3 Miniaturised consumer electronics driving micro-marking in Asia
    • 4.2.4 Sustainable packaging shift ? laser coding over inkjet in Europe
    • 4.2.5 Industry 4.0 inline integration in North-American automotive plants
    • 4.2.6 Jewellery hallmarking digitisation policy boost in India
  • Restricciones de mercado 4.3
    • 4.3.1 High CAPEX (Above USD 150 k) for SMEs in emerging markets
    • 4.3.2 Qualification delay for aerospace composites (HAZ concerns)
    • 4.3.3 Skilled-operator shortage in Latin-American factories
    • 4.3.4 Margin pressure from low-cost Chinese fiber-laser suppliers
  • 4.4 Análisis del ecosistema de la industria
  • 4.5 Perspectivas regulatorias y tecnológicas
  • 4.6 Análisis de las cinco fuerzas de Porter
    • 4.6.1 Poder de negociación de los proveedores
    • 4.6.2 poder de negociación de los compradores
    • 4.6.3 Amenaza de nuevos entrantes
    • 4.6.4 Amenaza de sustitutos
    • Grado de Competición 4.6.5

5. TAMAÑO DEL MERCADO Y PREVISIONES DE CRECIMIENTO (VALORES)

  • 5.1 Por tipo de láser
    • 5.1.1 láser de fibra
    • 5.1.2 CO? Laser
    • 5.1.3 Solid-State (Nd:YAG, Nd:YVO?)
    • 5.1.4 UV Laser
    • Láser verde 5.1.5
    • 5.1.6 Others (Diode, YB:YAG, Hybrid)
  • 5.2 By Marking Process
    • 5.2.1 Recocido
    • 5.2.2 Grabado
    • 5.2.3 Grabado
    • 5.2.4 Formación de espuma
    • 5.2.5 Carbonisation
  • 5.3 Ofreciendo
    • Hardware 5.3.1
    • 5.3.1.1 Stand-Alone Systems
    • 5.3.1.2 Integrated/In-line Systems
    • Software 5.3.2
    • Servicios 5.3.3
  • 5.4 Por industria de usuario final
    • 5.4.1 Automoción y aeroespacial
    • 5.4.2 Electrónica y Semiconductores
    • 5.4.3 Dispositivos médicos y atención sanitaria
    • 5.4.4 Envasado de alimentos y bebidas
    • 5.4.5 Industrial Machinery and Machine Tools
    • 5.4.6 Joyas y artículos de lujo
    • 5.4.7 Other Industries (Oil and Gas, Defence, etc.)
  • 5.5 Por geografía
    • 5.5.1 América del Norte
    • 5.5.1.1 Estados Unidos
    • 5.5.1.2 Canadá
    • 5.5.1.3 México
    • 5.5.2 Europa
    • 5.5.2.1 Alemania
    • 5.5.2.2 Reino Unido
    • 5.5.2.3 Francia
    • 5.5.2.4 países nórdicos
    • 5.5.2.5 Resto de Europa
    • 5.5.3 Sudamérica
    • 5.5.3.1 Brasil
    • 5.5.3.2 Resto de América del Sur
    • 5.5.4 Asia-Pacífico
    • 5.5.4.1 de china
    • 5.5.4.2 Japón
    • 5.5.4.3 la India
    • 5.5.4.4 Sudeste Asiático
    • 5.5.4.5 Resto de Asia-Pacífico
    • 5.5.5 Oriente Medio y África
    • 5.5.5.1 Medio Oriente
    • 5.5.5.1.1 Países del Consejo de Cooperación del Golfo
    • 5.5.5.1.2 Turquía
    • 5.5.5.1.3 Resto de Medio Oriente
    • 5.5.5.2 África
    • 5.5.5.2.1 Sudáfrica
    • 5.5.5.2.2 Resto de África

6. PANORAMA COMPETITIVO

  • 6.1 Concentración de mercado
  • 6.2 Movimientos estratégicos
  • Análisis de cuota de mercado de 6.3
  • 6.4 Perfiles de la empresa (incluye descripción general a nivel global, descripción general a nivel de mercado, segmentos principales, estados financieros según disponibilidad, información estratégica, clasificación/participación en el mercado de empresas clave, productos y servicios, y desarrollos recientes)
    • 6.4.1 Corporación coherente
    • 6.4.2 IPG Photonics Corp.
    • 6.4.3 Grupo TRUMPF
    • 6.4.4 Han's Laser Technology Co. Ltd.
    • 6.4.5 Keyence Corp.
    • 6.4.6 Novanta Inc. (FOBA)
    • 6.4.7 Videojet Technologies Inc.
    • 6.4.8 Grupo Gravotech
    • 6.4.9 Mecco Socios LLC
    • 6.4.10 Epilog Laser Inc.
    • 6.4.11 Trotec Laser GmbH
    • 6.4.12 LaserStar Technologies Corp.
    • 6.4.13 SIC Marking Group
    • 6.4.14 Rofin-Sinar UK Ltd.
    • 6.4.15 Panasonic Connect Co. Ltd.
    • 6.4.16 Corporación Omron
    • 6.4.17 Domino Printing Sciences plc
    • 6.4.18 SATO Holdings Corp.
    • 6.4.19 TYKMA Electrox Inc.
    • 6.4.20 Nichia Corp.
    • 6.4.21 Control Laser Corp.

7. OPORTUNIDADES DE MERCADO Y PERSPECTIVAS DE FUTURO

  • 7.1 Evaluación de espacios en blanco y necesidades insatisfechas
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Global Laser Marking Market Report Scope

El marcado láser utiliza un haz de luz concentrada para crear una marca duradera en una superficie. Por lo general, se realiza utilizando una máquina láser de fibra, pulsada o de onda continua. Las aplicaciones de marcado láser incluyen decoloración, grabado y grabado.

El alcance del estudio se centra en el análisis del mercado de hardware y software de marcado láser vendido en todo el mundo, y el tamaño del mercado abarca los ingresos generados por varios actores del mercado. El estudio también rastrea los ingresos de equipos como láseres de fibra, láseres de CO2 y láseres de estado sólido en diversas industrias de usuarios finales, como la atención médica, la automoción, la electrónica, las máquinas herramienta y el embalaje. El mercado rastrea los parámetros clave del mercado, los factores de crecimiento subyacentes y los proveedores/empresas importantes que operan en la industria, lo que respalda las estimaciones del mercado y las tasas de crecimiento durante el período de pronóstico. El estudio analiza más a fondo el impacto general de las macrotendencias en el mercado.

El mercado de marcado láser está segmentado por equipos (láser de fibra, láser de CO2, láser de estado sólido y otros equipos), oferta (hardware y software), industria del usuario final (atención médica, automoción, electrónica, máquinas herramienta, embalaje y otros). industrias de usuarios finales) y geografía (América del Norte, Europa, Asia Pacífico y resto del mundo). El informe ofrece previsiones de mercado y tamaño en valor (USD) para todos los segmentos anteriores.

Por tipo de láser láser de fibra
CO? Laser
Solid-State (Nd:YAG, Nd:YVO?)
Láser UV
Láser Verde
Others (Diode, YB:YAG, Hybrid)
By Marking Process Recocido
Aguafuerte
Grabado
Espumoso
Carbonización
Ofreciendo Ferretería Sistemas independientes
Integrated/In-line Systems
Software
Servicios
Por industria del usuario final Automoción y Aeroespacial
Electrónica y semiconductores
Dispositivos médicos y atención sanitaria
Envasado de alimentos y bebidas
Industrial Machinery and Machine Tools
Joyas y artículos de lujo
Other Industries (Oil and Gas, Defence, etc.)
Por geografía Norteamérica United States
Canada
México
Europa Alemania
Reino Unido
Francia
Nórdicos
El resto de Europa
Latinoamérica Brasil
Resto de Sudamérica
Asia-Pacífico China
Japón
India
Sudeste de Asia
Resto de Asia-Pacífico
Oriente Medio y África Oriente Medio Países del Consejo de Cooperación del Golfo
Turquía
Resto de Medio Oriente
África Sudáfrica
Resto de Africa
Por tipo de láser
láser de fibra
CO? Laser
Solid-State (Nd:YAG, Nd:YVO?)
Láser UV
Láser Verde
Others (Diode, YB:YAG, Hybrid)
By Marking Process
Recocido
Aguafuerte
Grabado
Espumoso
Carbonización
Ofreciendo
Ferretería Sistemas independientes
Integrated/In-line Systems
Software
Servicios
Por industria del usuario final
Automoción y Aeroespacial
Electrónica y semiconductores
Dispositivos médicos y atención sanitaria
Envasado de alimentos y bebidas
Industrial Machinery and Machine Tools
Joyas y artículos de lujo
Other Industries (Oil and Gas, Defence, etc.)
Por geografía
Norteamérica United States
Canada
México
Europa Alemania
Reino Unido
Francia
Nórdicos
El resto de Europa
Latinoamérica Brasil
Resto de Sudamérica
Asia-Pacífico China
Japón
India
Sudeste de Asia
Resto de Asia-Pacífico
Oriente Medio y África Oriente Medio Países del Consejo de Cooperación del Golfo
Turquía
Resto de Medio Oriente
África Sudáfrica
Resto de Africa
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Preguntas clave respondidas en el informe

What is the current value of the laser marking market?

The laser marking market is valued at USD 3.62 billion in 2025.

Which region holds the largest share of laser marking installations?

Asia leads with 46.3% of global revenue in 2024, supported by China’s vast manufacturing base.

Why are UV lasers growing faster than other types?

UV lasers deliver sub-micron precision without thermal damage, making them ideal for miniaturised electronics and medical polymers, which drives a 6.8% CAGR through 2030.

How are service contracts influencing the market?

Outcome-based agreements and predictive maintenance services are growing at an 8.4% CAGR, shifting revenue from one-time hardware sales to recurring income.

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