蒸着市場:技術別(化学蒸着、物理蒸着)、エンドユーザー産業別(マイクロエレクトロニクス、切削工具、産業・エネルギー、医療、装飾コーティング)世界動向と2028年までの予測Vapor Deposition Market by Technology (Chemical Vapor Deposition, Physical Vapor Deposition), by End-user Industry (Microelectronics, Cutting tools, Industrial & Energy, Medical, Decorative Coating) Global Trends & Forecast to 2028 蒸着市場は、2023年の426億米ドルから2028年には661億米ドルに成長し、予測期間中のCAGRは9.2%を記録すると予測されている。技術の進歩により蒸着プロセスがより効率的かつ汎用的になり、採用が増加している。半... もっと見る
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サマリー蒸着市場は、2023年の426億米ドルから2028年には661億米ドルに成長し、予測期間中のCAGRは9.2%を記録すると予測されている。技術の進歩により蒸着プロセスがより効率的かつ汎用的になり、採用が増加している。半導体、光学、医療機器などの産業は蒸着に大きく依存しており、これらの分野で需要が伸びている。さらにエネルギー産業では、薄膜太陽電池やエネルギー効率の高いコーティングに応用されている。蒸着はまた、航空宇宙、自動車、ナノテクノロジーにおいても極めて重要である。環境への関心が高まるにつれ、その環境に優しい性質がさらに利用を後押しする可能性がある。カスタマイズ機能とニッチ市場に対応する能力は、その成長に寄与している。しかし、市場予測は経済状況や新たなトレンドによって変動する可能性があるため、正確な洞察には最新の業界レポートが不可欠である。予測期間中、化学気相成長(CVD)分野が世界市場を牽引する可能性が高い世界の化学気相成長(CVD)市場は、予測期間中に業界全体の成長を牽引することになる。これは、半導体、太陽エネルギー、航空宇宙、バイオテクノロジーなどの主要分野で広く応用されているためである。特に半導体産業における先端材料の需要が、CVDプロセスの必要性を押し上げている。また、薄膜太陽電池の製造、医療機器の強化、ナノスケール材料の創出にも欠かせない。絶え間ない技術の進歩と小型化の傾向は、CVDの世界的な採用拡大にさらに貢献している。産業界がより効率的で特殊なコーティングを求める中、CVDの役割は市場の軌道を形成する上で極めて重要な役割を果たすと予想される。予測期間中、エネルギー・電力部門が第2位の市場シェアを占める見込み海運業界は、排出量を削減し、より厳しい環境規制を遵守する必要に迫られている。LNGは、重油やディーゼルといった従来の船舶用燃料に比べてクリーンな燃料と考えられている。硫黄酸化物(SOx)、窒素酸化物(NOx)、粒子状物質、温室効果ガスの排出量を大幅に削減できる。このため、特に沿岸地域や港湾などの排出規制地域で、船舶用燃料としてLNGへの関心が高まっている。さらに、LNGは従来の船舶用燃料に比べてエネルギー効率が高い。LNGは単位重量あたりのエネルギー含有量が高いため、同じ燃料容量でより長い航海距離を達成することができる。これは、フェリーやオフショア支援船、さらには一部のばら積み貨物船など、長距離輸送に携わる船舶にとって特に有利となる。予測期間中、欧州が第3位の市場規模を占める欧州の半導体産業は、同地域の製造工場数の増加により、今後5年間で高い成長が見込まれる。さらに、欧州にはSTMicroelectronics(スイス)、Infineon Technologies AG(ドイツ)、X-FAB Silicon Foundries(ドイツ)などの大手半導体メーカーが多数存在する。このような定評ある半導体メーカーの存在と製造施設の増加は、蒸着装置を提供する市場プレーヤーに成長機会をもたらすと期待されている。さらに、政府の取り組みも欧州市場の成長を促進する大きな要因となっている。例えば、2022年2月、欧州委員会は、2030年までに半導体生産における市場シェアを倍増させるという欧州連合(EU)の目標に従い、430億ユーロの計画を概説した。この地域の半導体産業を強化するためのこのような有利なイニシアチブは、様々な半導体用途への蒸着採用を増加させると予想される。蒸着市場で事業を展開する様々な主要組織の最高経営責任者(CEO)、マーケティング責任者、その他の技術革新責任者、技術責任者、経営幹部に対して詳細なインタビューを実施した。いくつかのセグメントとサブセグメント、および二次調査を通じて収集した情報の市場規模を決定し検証するために、広範な一次インタビューを実施した。一次インタビューの内訳は以下の通り:- 企業タイプ別 - Tier 1 - 30%、Tier 2 - 50%、Tier 3 - 20%- 役職別 - Cレベル幹部 - 40%、ディレクターレベル - 20%、その他* - 40%- 地域別 - 北米 - 20%、欧州 - 20%、アジア太平洋 - 40%、中東・アフリカ - 5%、中南米 - 15%注: *その他には、セールス、マーケティング、プロダクト・マネージャーが含まれる:ティア1:>50億米ドル、ティア2:10億米ドル~50億米ドル、ティア3:<10億米ドル対象企業:この市場調査レポートで調査対象となっている企業は、Applied Materials, Inc.(日本)、Lam Research Corporation(米国)、OC Oerlikon Management AG(スイス)、株式会社IHI(日本)、株式会社アルバック(日本)、Veeco Instruments Inc.(米国)、Voestalpine AG(オーストリア)、ASM International N.V.(オランダ)などが含まれます。調査対象:この調査レポートは、様々なセグメントにわたる蒸着市場を対象としています。この調査レポートは、技術、最終用途産業、地域に基づくさまざまなセグメントにわたって、この市場の市場規模と成長の可能性を推定することを目的としています。当レポートを購入する主な利点当レポートは、市場のリーダー/新規参入者が蒸着市場全体とそのセグメントおよびサブセグメントの収益数を最も近い概算値で共有するのに役立つと期待されています。本レポートは、利害関係者が市場の競争状況を理解し、事業の地位を向上させるための洞察を得て、適切な市場参入戦略を計画するのに役立つと予測されます。また、当レポートは、利害関係者が市場の鼓動を理解し、主要な市場促進要因、課題、機会に関する情報を提供することを目的としています。 本レポートでは、以下のポイントに関する洞察を提供しています:- 主な促進要因(半導体産業の成長、高性能フィルム需要を促進する太陽電池産業の成長、医療機器・装置の需要増加)、阻害要因(高額な設備投資、フィルム汚染)、機会(技術革新により様々な産業用途で有利な機会が提供される、発展途上国のエンドユーザー産業からの需要増加)、および蒸着市場の成長に影響を与える課題(操作のための有能な労働力の不足、技術的な困難とプロセスの複雑さ)の分析- 製品開発/イノベーション:製品開発/イノベーション:蒸着市場における今後の技術、研究開発活動、新製品・新サービスの発売に関する詳細な洞察:市場開拓:有利な市場に関する包括的な情報 - 当レポートは様々な地域の蒸着市場を分析しています:市場の多様化:新製品とサービス、未開拓の地域、最近の開発、蒸着市場への投資に関する徹底的な情報:競合企業評価:アプライド マテリアルズ社(米国)、東京エレクトロン株式会社(日本)、ラムリサーチ社(日本)などの主要企業の市場シェア、成長戦略、サービス内容を詳細に評価。(日本)、Lam Research Corporation(米国)、OC Oerlikon Management AG(スイス)、IHI Corporation(日本)、ULVAC, Inc.(日本)、Veeco Instruments Inc.(米国)、Voestalpine AG(オーストリア)、ASM International N.V.(オランダ)など、蒸着市場における主要企業の市場シェア、成長戦略、サービス内容を詳細に評価します。目次1 INTRODUCTION 251.1 STUDY OBJECTIVES 25 1.2 MARKET DEFINITION 26 1.2.1 INCLUSIONS AND EXCLUSIONS 27 1.3 STUDY SCOPE 28 1.3.1 MARKET SEGMENTATION 28 1.3.2 REGIONS COVERED 28 1.3.3 YEARS CONSIDERED 29 1.4 CURRENCY CONSIDERED 29 1.5 UNITS CONSIDERED 29 1.6 LIMITATIONS 29 1.7 STAKEHOLDERS 30 1.8 SUMMARY OF CHANGES 30 2 RESEARCH METHODOLOGY 31 2.1 RESEARCH DATA 31 FIGURE 1 VAPOR DEPOSITION MARKET: RESEARCH DESIGN 31 2.1.1 SECONDARY DATA 32 2.1.1.1 Key data from secondary sources 32 2.1.2 PRIMARY DATA 32 2.1.2.1 Key data from primary sources 33 2.1.2.2 Breakdown of primary interviews 33 2.2 BASE NUMBER CALCULATION 34 2.2.1 SUPPLY-SIDE APPROACH 34 2.3 MARKET SIZE ESTIMATION 34 2.3.1 BOTTOM-UP APPROACH 35 2.3.2 TOP-DOWN APPROACH 35 2.4 DATA TRIANGULATION 36 FIGURE 2 VAPOR DEPOSITION MARKET: DATA TRIANGULATION 36 2.5 ASSUMPTIONS 37 3 EXECUTIVE SUMMARY 38 FIGURE 3 CVD TECHNOLOGY TO DOMINATE VAPOR DEPOSITION MARKET 39 FIGURE 4 ELECTRONICS & SEMICONDUCTOR TO DOMINATE MARKET DURING FORECAST PERIOD 39 FIGURE 5 ASIA PACIFIC LED VAPOR DEPOSITION MARKET IN 2022 40 4 PREMIUM INSIGHTS 41 4.1 ATTRACTIVE OPPORTUNITIES IN VAPOR DEPOSITION MARKET 41 FIGURE 6 ASIA PACIFIC TO BE FASTEST-GROWING MARKET FOR VAPOR DEPOSITION FROM 2023 TO 2028 41 4.2 VAPOR DEPOSITION MARKET: MAJOR COUNTRIES 41 FIGURE 7 GERMANY TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 41 4.3 ASIA PACIFIC: VAPOR DEPOSITION MARKET, BY TECHNOLOGY & COUNTRY 42 FIGURE 8 SOUTH KOREA LED VAPOR DEPOSITION MARKET IN ASIA PACIFIC 42 5 MARKET OVERVIEW 43 5.1 INTRODUCTION 43 5.2 MARKET DYNAMICS 43 FIGURE 9 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES IN VAPOR DEPOSITION MARKET 44 5.2.1 DRIVERS 44 5.2.1.1 Growth in semiconductor industry 44 FIGURE 10 SEMICONDUCTORS MARKET GROWTH, 2008–2022 45 5.2.1.2 Expansion of solar industry and demand for high-performance films 45 5.2.1.3 Increasing demand for medical devices 46 5.2.1.4 Growth of LED devices market 46 5.2.1.5 Environmental regulation regarding Cr6 47 5.2.2 RESTRAINTS 47 5.2.2.1 High capital investment 47 5.2.2.2 Film contamination 48 5.2.3 OPPORTUNITIES 49 5.2.3.1 Increase in application areas due to technological innovations 49 5.2.3.2 Growing demand in developing economies 49 5.2.4 CHALLENGES 50 5.2.4.1 Lack of qualified workforce 50 5.2.4.2 Technical difficulties and process complexity 50 5.3 PORTER’S FIVE FORCES ANALYSIS 51 FIGURE 11 VAPOR DEPOSITION MARKET: PORTER’S FIVE FORCES ANALYSIS 51 5.3.1 BARGAINING POWER OF SUPPLIERS 52 5.3.2 THREAT OF NEW ENTRANTS 52 5.3.3 THREAT OF SUBSTITUTES 52 5.3.4 BARGAINING POWER OF BUYERS 53 5.3.5 INTENSITY OF COMPETITIVE RIVALRY 53 6 INDUSTRY TRENDS 54 6.1 MACROECONOMIC INDICATORS 54 6.1.1 INTRODUCTION 54 6.1.2 GDP TRENDS AND FORECAST 54 TABLE 1 WORLD GDP GROWTH PROJECTION, 2021–2028 (USD TRILLION) 54 6.1.3 GLOBAL AUTOMOBILE PRODUCTION AND GROWTH 55 TABLE 2 GLOBAL AUTOMOBILE PRODUCTION (UNITS) AND GROWTH, BY COUNTRY 55 6.1.4 INFLATION RATE, AVERAGE CONSUMER PRICE 56 TABLE 3 INFLATION RATE, AVERAGE CONSUMER PRICES (ANNUAL PERCENT CHANGE) 56 6.2 VALUE CHAIN ANALYSIS 57 FIGURE 12 MAXIMUM VALUE ADDITION DURING EQUIPMENT MANUFACTURING STAGE 57 6.3 SUPPLY CHAIN ANALYSIS 58 FIGURE 13 VAPOR DEPOSITION MARKET: SUPPLY CHAIN 58 6.4 TRENDS AND DISRUPTIONS IMPACTING CUSTOMER’S BUSINESSES 59 FIGURE 14 REVENUE SHIFT AND NEW REVENUE POCKETS IN VAPOR DEPOSITION MARKET 59 6.5 ECOSYSTEM ANALYSIS 60 FIGURE 15 VAPOR DEPOSITION MARKET: ECOSYSTEM MAPPING 60 TABLE 4 VAPOR DEPOSITION MARKET: KEY STAKEHOLDERS 60 6.6 PATENT ANALYSIS 61 6.6.1 INTRODUCTION 61 6.6.2 METHODOLOGY 61 6.6.3 DOCUMENT TYPE 61 TABLE 5 TOTAL NUMBER OF PATENTS IN VAPOR DEPOSITION MARKET 62 FIGURE 16 GRANTED PATENTS AND PATENT APPLICATIONS IN VAPOR DEPOSITION MARKET 62 FIGURE 17 PATENT PUBLICATION TRENDS (2013–2022) 62 6.6.4 INSIGHTS 62 FIGURE 18 JURISDICTION ANALYSIS (2013–2022) 63 6.6.5 TOP COMPANIES/APPLICANTS 63 FIGURE 19 TOP COMPANIES/APPLICANTS WITH HIGHEST NUMBER OF PATENTS 63 TABLE 6 LIST OF MAJOR PATENTS IN VAPOR DEPOSITION MARKET 64 6.7 TECHNOLOGY ANALYSIS 64 6.7.1 CHEMICAL VAPOR DEPOSITION 65 6.7.1.1 Inductively coupled plasma-enhanced chemical vapor deposition (ICP-PECVD) 65 6.7.1.2 Catalytic Chemical Vapor Deposition (CCVD) for Carbon nanotubes 65 6.7.1.3 Pulsed-pressure metal organic CVD 66 6.7.1.4 Advancement in atomic layer deposition 66 TABLE 7 ADVANCEMENT IN ALD APPLICATION 67 6.7.1.5 Spray pyrolysis 67 6.7.2 PHYSICAL VAPOR DEPOSITION 68 6.7.2.1 Ion beam assisted deposition (IBAD) 68 6.7.2.2 Magnetron sputtering 68 6.7.2.3 Dual source physical vapor deposition 68 6.7.2.4 Hybrid vapor deposition 69 6.8 TARIFF AND REGULATORY LANDSCAPE 70 6.8.1 TARIFFS 70 TABLE 8 MOST-FAVORED NATION (MFN) TARIFFS FOR PRODUCTS UNDER HS CODE 848620 EXPORTED BY US 70 6.9 REGULATIONS 70 6.9.1 RESTRICTION OF HAZARDOUS SUBSTANCES (ROHS) DIRECTIVE 70 6.9.2 ELECTRONIC WASTE 70 6.10 STANDARDS 71 6.10.1 INTERNATIONAL ORGANIZATION FOR STANDARDIZATION (ISO) 71 6.10.2 OSHA STANDARD 71 6.11 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 71 TABLE 9 VAPOR DEPOSITION MARKET: REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 71 6.12 KEY STAKEHOLDERS & BUYING CRITERIA 74 6.12.1 KEY STAKEHOLDERS IN BUYING PROCESS 74 FIGURE 20 INFLUENCE OF STAKEHOLDERS ON BUYING PROCESS 74 TABLE 10 INFLUENCE OF STAKEHOLDERS ON BUYING PROCESS IN VAPOR DEPOSITION MARKET 74 6.12.2 BUYING CRITERIA 75 FIGURE 21 KEY BUYING CRITERIA IN VAPOR DEPOSITION MARKET 75 TABLE 11 KEY BUYING CRITERIA IN VAPOR DEPOSITION MARKET 75 6.13 TRADE ANALYSIS 75 TABLE 12 MACHINES AND APPARATUS FOR MANUFACTURING SEMICONDUCTOR DEVICES OR ELECTRONIC INTEGRATED CIRCUITS WITH EXPORT VALUES FOR MAJOR COUNTRIES, 2022 (USD BILLION) 76 TABLE 13 MACHINES AND APPARATUS FOR MANUFACTURING SEMICONDUCTOR DEVICES OR ELECTRONIC INTEGRATED CIRCUITS WITH IMPORT VALUES FOR MAJOR COUNTRIES, 2022 (USD BILLION) 77 6.14 CASE STUDY ANALYSIS 77 6.14.1 ITALIAN SMES INVEST IN INNOVATION 77 6.14.2 NON-CONDUCTIVE COATING FOR DELPHI INJECTORS 78 6.14.3 VSIMPD CASE STUDY 78 6.14.4 APPLICATION OF ATOMIC LAYER DEPOSITION AND CHEMICAL VAPOR DEPOSITION FOR PEROVSKITE SOLAR CELLS 79 6.15 KEY CONFERENCES & EVENTS 80 TABLE 14 VAPOR DEPOSITION MARKET: DETAILED LIST OF CONFERENCES & EVENTS, 2023–2024 80 6.16 PRICING ANALYSIS 81 7 VAPOR DEPOSITION MARKET, BY TECHNOLOGY 83 7.1 INTRODUCTION 84 FIGURE 22 CHEMICAL VAPOR DEPOSITION TO LEAD OVERALL VAPOR DEPOSITION MARKET DURING FORECAST PERIOD 84 TABLE 15 VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 85 7.2 PHYSICAL VAPOR DEPOSITION 85 7.2.1 GROWING DEMAND IN DECORATIVE, AUTOMOTIVE, AND MEDICAL APPLICATIONS TO DRIVE MARKET 85 7.2.2 CATHODIC ARC DEPOSITION 86 7.2.3 ELECTRON BEAM PVD 87 7.2.4 MAGNETRON SPUTTERING DEPOSITION 87 7.2.5 OTHERS 88 7.3 CHEMICAL VAPOR DEPOSITION 88 7.3.1 CVD TO BE LARGER AND FASTER-GROWING TECHNOLOGY DURING FORECAST PERIOD 88 7.3.2 LOW PRESSURE CVD 89 7.3.3 ATMOSPHERIC PRESSURE CVD 90 7.3.4 PLASMA ENHANCED CVD 90 7.3.5 METAL ORGANIC CVD 91 7.3.6 OTHERS 91 8 VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY 92 8.1 INTRODUCTION 93 FIGURE 23 ELECTRONICS & SEMICONDUCTOR SEGMENT TO DOMINATE VAPOR DEPOSITION MARKET DURING FORECAST PERIOD 93 TABLE 16 VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 94 8.2 ELECTRONICS & SEMICONDUCTOR 94 8.2.1 TECHNOLOGICAL ADVANCEMENTS FUELING MARKET FOR VAPOR DEPOSITION 94 8.3 AUTOMOTIVE 95 8.3.1 DEMAND FOR IMPROVED ENGINE EFFICIENCY AND RISE OF ELECTRIC VEHICLES TO DRIVE MARKET 95 8.4 AEROSPACE & DEFENSE 96 8.4.1 NEED FOR FUEL-EFFICIENT, RELIABLE MATERIALS LIKE CERAMIC MATRIX COMPOSITES TO DRIVE DEMAND 96 8.5 ENERGY & POWER 96 8.5.1 INCLINATION TOWARD RENEWABLE ENERGY SOURCES TO AUGMENT MARKET GROWTH 96 8.6 MEDICAL & HEALTHCARE 97 8.6.1 AGING POPULATION AND NEED FOR IMPROVED IMPLANT PERFORMANCE TO SUPPORT MARKET GROWTH 97 8.7 PACKAGING 97 8.7.1 INCREASED AWARENESS AND STRINGENT REGULATIONS ON SUSTAINABLE PACKAGING TO BOOST DEMAND 97 8.8 OPTICS & OPTOELECTRONICS 98 8.8.1 NEED FOR PRECISION IN MINIATURIZATION AND RISE OF IMMERSIVE TECHNOLOGIES TO FUEL DEMAND 98 8.9 CUTTING TOOLS & WEAR PARTS 98 8.9.1 INCREASING DEMAND FOR HIGH-PERFORMANCE AND DURABLE TOOLS TO FUEL ADOPTION OF VAPOR DEPOSITION TECHNOLOGIES 98 8.10 OTHERS 99 9 VAPOR DEPOSITION MARKET, BY REGION 100 9.1 INTRODUCTION 101 FIGURE 24 ASIA PACIFIC TO BE FASTEST-GROWING VAPOR DEPOSITION MARKET 101 TABLE 17 VAPOR DEPOSITION MARKET, BY REGION, 2021–2028 (USD MILLION) 102 9.2 NORTH AMERICA 102 FIGURE 25 NORTH AMERICA: VAPOR DEPOSITION MARKET SNAPSHOT 103 TABLE 18 NORTH AMERICA: VAPOR DEPOSITION MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 103 TABLE 19 NORTH AMERICA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 104 TABLE 20 NORTH AMERICA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 104 9.2.1 US 105 9.2.1.1 Growing demand for renewable energy to boost market 105 TABLE 21 US: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 105 TABLE 22 US: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 106 9.2.2 CANADA 106 9.2.2.1 Government investments to support market growth 106 TABLE 23 CANADA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 107 TABLE 24 CANADA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 107 9.2.3 MEXICO 108 9.2.3.1 Government initiative and increasing solar power generation to augment market growth 108 TABLE 25 MEXICO: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 108 TABLE 26 MEXICO: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 109 9.3 EUROPE 109 TABLE 27 EUROPE: VAPOR DEPOSITION MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 110 TABLE 28 EUROPE: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 110 TABLE 29 EUROPE: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 111 9.3.1 RECESSION IMPACT ON EUROPE 111 9.3.2 GERMANY 111 9.3.2.1 Favorable government initiatives and presence of established automotive and semiconductor sectors to drive market 111 TABLE 30 GERMANY: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 112 TABLE 31 GERMANY: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 112 9.3.3 UK 113 9.3.3.1 Robust electronics industry to drive demand for vapor deposition technologies 113 TABLE 32 UK: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 113 TABLE 33 UK: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 114 9.3.4 FRANCE 114 9.3.4.1 Growing adoption of advanced components and increasing demand for ICs and transistors to drive demand 114 TABLE 34 FRANCE: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 115 TABLE 35 FRANCE: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 115 9.3.5 ITALY 116 9.3.5.1 Strong growth of semiconductor industry to fuel demand for vapor deposition equipment 116 TABLE 36 ITALY: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 117 TABLE 37 ITALY: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 117 9.3.6 RUSSIA 118 9.3.6.1 Expanding automotive and semiconductor industries to propel market 118 TABLE 38 RUSSIA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 118 TABLE 39 RUSSIA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 119 9.3.7 REST OF EUROPE 119 TABLE 40 REST OF EUROPE: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 120 TABLE 41 REST OF EUROPE: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 120 9.4 ASIA PACIFIC 121 9.4.1 RECESSION IMPACT ON ASIA PACIFIC 121 FIGURE 26 ASIA PACIFIC: VAPOR DEPOSITION MARKET SNAPSHOT 122 TABLE 42 ASIA PACIFIC: VAPOR DEPOSITION MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 122 TABLE 43 ASIA PACIFIC: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 123 TABLE 44 ASIA PACIFIC: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 123 9.4.2 SOUTH KOREA 124 9.4.2.1 High manufacturing capacity of semiconductors and presence of IDMs to propel demand 124 TABLE 45 SOUTH KOREA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 124 TABLE 46 SOUTH KOREA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 125 9.4.3 JAPAN 125 9.4.3.1 Robust electronics & semiconductor industry to be major driver of vapor deposition market 125 TABLE 47 JAPAN: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 126 TABLE 48 JAPAN: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 126 9.4.4 CHINA 127 9.4.4.1 Favorable government initiatives and availability of inexpensive workforce to drive market 127 TABLE 49 CHINA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 128 TABLE 50 CHINA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 128 9.4.5 INDIA 129 9.4.5.1 Increasing investments in semiconductor industry to boost market growth 129 TABLE 51 INDIA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 129 TABLE 52 INDIA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 130 9.4.6 VIETNAM 130 9.4.6.1 Growth in semiconductor industry to fuel demand 130 TABLE 53 VIETNAM: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 131 TABLE 54 VIETNAM: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 131 9.4.7 REST OF ASIA PACIFIC 132 TABLE 55 REST OF ASIA PACIFIC: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 132 TABLE 56 REST OF ASIA PACIFIC: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 133 9.5 MIDDLE EAST & AFRICA 133 TABLE 57 MIDDLE EAST & AFRICA: VAPOR DEPOSITION MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 134 TABLE 58 MIDDLE EAST & AFRICA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 134 TABLE 59 MIDDLE EAST & AFRICA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 135 9.5.1 RECESSION IMPACT ON MIDDLE EAST & AFRICA 135 9.5.2 SAUDI ARABIA 135 9.5.2.1 Growth in semiconductor industry and government incentives to propel demand 135 TABLE 60 SAUDI ARABIA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 136 TABLE 61 SAUDI ARABIA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 137 9.5.3 EGYPT 137 9.5.3.1 Government initiatives and robust ICT sector to support market growth 137 TABLE 62 EGYPT: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 138 TABLE 63 EGYPT: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 138 9.5.4 SOUTH AFRICA 139 9.5.4.1 Growing demand for advanced electronics, automotive coatings, and healthcare materials to fuel market 139 TABLE 64 SOUTH AFRICA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 139 TABLE 65 SOUTH AFRICA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 140 9.5.5 REST OF MIDDLE EAST & AFRICA 140 TABLE 66 REST OF MIDDLE EAST & AFRICA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 141 TABLE 67 REST OF MIDDLE EAST & AFRICA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 141 9.6 SOUTH AMERICA 142 TABLE 68 SOUTH AMERICA: VAPOR DEPOSITION MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 142 TABLE 69 SOUTH AMERICA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 143 TABLE 70 SOUTH AMERICA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 143 9.6.1 RECESSION IMPACT ON SOUTH AMERICA 144 9.6.2 BRAZIL 144 9.6.2.1 Improved economy and government initiatives to drive market 144 TABLE 71 BRAZIL: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 145 TABLE 72 BRAZIL: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 145 9.6.3 ARGENTINA 146 9.6.3.1 Renewable energy initiatives to boost demand for vapor deposition 146 TABLE 73 ARGENTINA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 146 TABLE 74 ARGENTINA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 147 9.6.4 REST OF SOUTH AMERICA 147 TABLE 75 REST OF SOUTH AMERICA: VAPOR DEPOSITION MARKET, BY TECHNOLOGY, 2021–2028 (USD MILLION) 148 TABLE 76 REST OF SOUTH AMERICA: VAPOR DEPOSITION MARKET, BY END-USE INDUSTRY, 2021–2028 (USD MILLION) 148 10 COMPETITIVE LANDSCAPE 149 10.1 OVERVIEW 149 TABLE 77 STRATEGIES ADOPTED BY KEY PLAYERS DURING FORECAST PERIOD 149 10.2 REVENUE ANALYSIS OF KEY PLAYERS 152 FIGURE 27 REVENUE ANALYSIS OF KEY COMPANIES IN VAPOR DEPOSITION MARKET 152 10.3 MARKET SHARE ANALYSIS 152 FIGURE 28 VAPOR DEPOSITION MARKET: MARKET SHARE ANALYSIS 152 10.4 COMPANY EVALUATION MATRIX 153 10.4.1 STARS 153 10.4.2 EMERGING LEADERS 153 10.4.3 PARTICIPANTS 153 10.4.4 PERVASIVE PLAYERS 153 FIGURE 29 VAPOR DEPOSITION MARKET: COMPANY EVALUATION MATRIX, 2022 154 10.5 STARTUP/SME EVALUATION MATRIX 155 10.5.1 PROGRESSIVE COMPANIES 155 10.5.2 RESPONSIVE COMPANIES 155 10.5.3 DYNAMIC COMPANIES 155 10.5.4 STARTING BLOCKS 155 FIGURE 30 VAPOR DEPOSITION MARKET: STARTUP/SME MATRIX, 2022 156 10.6 COMPETITIVE BENCHMARKING 157 TABLE 78 VAPOR DEPOSITION MARKET: DETAILED LIST OF KEY PLAYERS 157 TABLE 79 VAPOR DEPOSITION MARKET: COMPETITIVE BENCHMARKING OF KEY PLAYERS, BY TYPE 157 TABLE 80 VAPOR DEPOSITION MARKET: COMPETITIVE BENCHMARKING OF KEY PLAYERS, BY REGION 158 10.7 COMPETITIVE SCENARIO 159 10.7.1 DEALS 159 TABLE 81 DEALS, 2018–2023 159 10.7.2 PRODUCT LAUNCHES 164 TABLE 82 PRODUCT LAUNCHES, 2018–2023 164 11 COMPANY PROFILES 167 11.1 KEY PLAYERS 167 (Business overview, Products/Solutions/Services offered, Recent Developments, MNM view, Right to win, Strategic choices, Weaknesses and competitive threats) * 11.1.1 APPLIED MATERIALS, INC. 167 TABLE 83 APPLIED MATERIALS, INC.: COMPANY OVERVIEW 167 FIGURE 31 APPLIED MATERIALS, INC.: COMPANY SNAPSHOT 168 TABLE 84 APPLIED MATERIALS, INC.: DEALS 170 TABLE 85 APPLIED MATERIALS, INC.: PRODUCT/SERVICE LAUNCHES 171 TABLE 86 APPLIED MATERIALS, INC.: OTHERS 171 11.1.2 LAM RESEARCH CORPORATION 174 TABLE 87 LAM RESEARCH CORPORATION: COMPANY OVERVIEW 174 FIGURE 32 LAM RESEARCH CORPORATION: COMPANY SNAPSHOT 175 TABLE 88 LAM RESEARCH CORPORATION: DEALS 177 TABLE 89 LAM RESEARCH CORPORATION: PRODUCT/SERVICE LAUNCHES 177 TABLE 90 LAM RESEARCH CORPORATION: OTHERS 178 11.1.3 TOKYO ELECTRON LIMITED 180 TABLE 91 TOKYO ELECTRON LIMITED: COMPANY OVERVIEW 180 FIGURE 33 TOKYO ELECTRON LIMITED: COMPANY SNAPSHOT 181 TABLE 92 TOKYO ELECTRON LIMITED: DEALS 182 TABLE 93 TOKYO ELECTRON LIMITED: PRODUCT/SERVICE LAUNCHES 183 TABLE 94 TOKYO ELECTRON LIMITED: OTHERS 183 11.1.4 IHI CORPORATION 185 TABLE 95 IHI CORPORATION: COMPANY OVERVIEW 185 FIGURE 34 IHI CORPORATION: COMPANY SNAPSHOT 186 TABLE 96 IHI CORPORATION: DEALS 188 TABLE 97 IHI CORPORATION: PRODUCT/SERVICE LAUNCHES 188 TABLE 98 IHI CORPORATION: OTHERS 189 11.1.5 AIXTRON 191 TABLE 99 AIXTRON: COMPANY OVERVIEW 191 FIGURE 35 AIXTRON: COMPANY SNAPSHOT 192 TABLE 100 AIXTRON: DEALS 193 TABLE 101 AIXTRON: PRODUCT/SERVICE LAUNCHES 194 TABLE 102 AIXTRON: OTHERS 194 11.1.6 OC OERLIKON MANAGEMENT AG 196 TABLE 103 OC OERLIKON MANAGEMENT AG: COMPANY OVERVIEW 196 FIGURE 36 OC OERLIKON MANAGEMENT AG: COMPANY SNAPSHOT 197 TABLE 104 OC OERLIKON MANAGEMENT AG: DEALS 198 TABLE 105 OC OERLIKON MANAGEMENT AG: PRODUCT/SERVICE LAUNCHES 199 TABLE 106 OC OERLIKON MANAGEMENT AG: OTHERS 200 11.1.7 ASM INTERNATIONAL N.V. 202 TABLE 107 ASM INTERNATIONAL N.V.: COMPANY OVERVIEW 202 FIGURE 37 ASM INTERNATIONAL N.V.: COMPANY SNAPSHOT 203 TABLE 108 ASM INTERNATIONAL N.V.: DEALS 204 TABLE 109 ASM INTERNATIONAL N.V.: PRODUCT/SERVICE LAUNCHES 205 TABLE 110 ASM INTERNATIONAL N.V.: OTHERS 205 11.1.8 VOESTALPINE AG 207 TABLE 111 VOESTALPINE AG: COMPANY OVERVIEW 207 FIGURE 38 VOESTALPINE AG: COMPANY SNAPSHOT 208 TABLE 112 VOESTALPINE AG: OTHERS 209 11.1.9 ULVAC, INC. 211 TABLE 113 ULVAC, INC.: COMPANY OVERVIEW 211 FIGURE 39 ULVAC, INC.: COMPANY SNAPSHOT 212 TABLE 114 ULVAC, INC.: DEALS 215 TABLE 115 ULVAC, INC.: PRODUCT/SERVICE LAUNCHES 215 11.1.10 VEECO INSTRUMENTS INC. 217 TABLE 116 VEECO INSTRUMENTS INC.: COMPANY OVERVIEW 217 FIGURE 40 VEECO INSTRUMENTS INC.: COMPANY SNAPSHOT 218 TABLE 117 VEECO INSTRUMENTS INC.: DEALS 220 TABLE 118 VEECO INSTRUMENTS INC.: PRODUCT/SERVICE LAUNCHES 221 *Details on Business overview, Products/Solutions/Services offered, Recent Developments, MNM view, Right to win, Strategic choices, Weaknesses and competitive threats might not be captured in case of unlisted companies. 11.2 OTHER PLAYERS 222 11.2.1 PLASMA-THERM 222 TABLE 119 PLASMA-THERM: COMPANY OVERVIEW 222 11.2.2 CVD EQUIPMENT CORPORATION 223 TABLE 120 CVD EQUIPMENT CORPORATION: COMPANY OVERVIEW 223 11.2.3 HEF DURFERRIT 223 TABLE 121 HEF DURFERRIT: COMPANY OVERVIEW 223 11.2.4 IMPACT COATINGS AB 224 TABLE 122 IMPACT COATINGS AB: COMPANY OVERVIEW 224 11.2.5 MUSTANG VACUUM SYSTEMS 224 TABLE 123 MUSTANG VACUUM SYSTEMS: COMPANY OVERVIEW 224 11.2.6 TECHMETAL, INC. 225 TABLE 124 TECHMETAL, INC.: COMPANY OVERVIEW 225 11.2.7 KURT J. LESKER COMPANY 225 TABLE 125 KURT J. LESKER COMPANY: COMPANY OVERVIEW 225 11.2.8 JUSUNG ENGINEERING CO., LTD. 226 TABLE 126 JUSUNG ENGINEERING CO., LTD.: COMPANY OVERVIEW 226 11.2.9 DENTON VACUUM 227 TABLE 127 DENTON VACUUM: COMPANY OVERVIEW 227 11.2.10 OXFORD INSTRUMENTS 228 TABLE 128 OXFORD INSTRUMENTS: COMPANY OVERVIEW 228 11.2.11 AURORA SCIENTIFIC CORP. 229 TABLE 129 AURORA SCIENTIFIC CORP.: COMPANY OVERVIEW 229 11.2.12 INTEVAC, INC. 230 TABLE 130 INTEVAC, INC.: COMPANY OVERVIEW 230 11.2.13 PVD PRODUCTS, INC. 230 TABLE 131 PVD PRODUCTS, INC.: COMPANY OVERVIEW 230 11.2.14 CRYSTALLUMEPVD 231 TABLE 132 CRYSTALLUMEPVD: COMPANY OVERVIEW 231 11.2.15 ADEKA CORPORATION 231 TABLE 133 ADEKA CORPORATION: COMPANY OVERVIEW 231 12 APPENDIX 232 12.1 DISCUSSION GUIDE 232 12.2 KNOWLEDGESTORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 235 12.3 CUSTOMIZATION OPTIONS 237 12.4 RELATED REPORTS 237 12.5 AUTHOR DETAILS 238
SummaryThe vapor deposition market is projected to grow from USD 42.6 billion in 2023 to USD 66.1 billion by 2028, recording a CAGR of 9.2% during the forecast period. Technological advancements have made deposition processes more efficient and versatile, driving increased adoption. Industries like semiconductors, optics, and medical devices heavily rely on vapor deposition, with growing demand in these sectors. Additionally, the energy industry sees applications in thin-film solar cells and energy-efficient coatings. Vapor deposition is also crucial in aerospace, automotive, and nanotechnology. As environmental concerns rise, its eco-friendly nature may further boost its usage. Customization capabilities and the ability to cater to niche markets contribute to its growth. However, market projections can vary based on economic conditions and emerging trends, so up-to-date industry reports are essential for accurate insights.Chemical Vapor Depsotion segment is likely to drive the global market during the forecast periodThe global Chemical Vapor Deposition (CVD) market is set to drive overall industry growth in the forecast period. This is due to its widespread application in key sectors such as semiconductors, solar energy, aerospace, and biotechnology. The demand for advanced materials, particularly in the semiconductor industry, is pushing the need for CVD processes. It's also crucial for producing thin-film solar cells, enhancing medical devices, and creating nanoscale materials. Continuous technological advancements and the trend towards miniaturization further contribute to its expanding adoption globally. As industries seek more efficient and specialized coatings, CVD's role is expected to be pivotal in shaping the market's trajectory.Energy & Power segment is expected to account for the 2nd largest market share during the forecast periodThe maritime industry is under increasing pressure to reduce emissions and comply with stricter environmental regulations. LNG is considered a cleaner fuel compared to traditional marine fuels like heavy fuel oil and diesel. It offers significant emissions reductions in terms of sulfur oxides (SOx), nitrogen oxides (NOx), particulate matter, and greenhouse gases. This has led to a growing interest in LNG as a fuel for ships, particularly in emission-controlled areas such as coastal regions and ports. Additionally, LNG offers better energy efficiency compared to conventional marine fuels. LNG has a higher energy content per unit of weight, allowing ships to achieve longer voyage distances with the same fuel capacity. This becomes particularly advantageous for vessels involved in long-haul transportation, such as ferries, offshore support vessels, and even some bulk carriers. Europe accounts for the third largest market during the forecast periodThe semiconductor industry in Europe is expected to witness high growth in the next five years due to the increasing number of fabrication plants in the region. Moreover, Europe hosts many major semiconductor manufacturers such as STMicroelectronics (Switzerland), Infineon Technologies AG (Germany), and X-FAB Silicon Foundries (Germany), among others. The presence of such established semiconductor manufacturers and the increasing number of fabrication facilities are expected to create growth opportunities for market players offering vapor deposition equipment. Furthermore, government initiatives are a major factor driving the market growth in Europe. For instance, in February 2022, the European Commission outlined a Euro 43 billion plan in accordance with European Union’s (EU’s) aim to double its market share in semiconductor production by 2030. Such favorable initiatives to strengthen the semiconductor industry in this region are expected to increase the adoption of vapor deposition for various semiconductor applications.In-depth interviews were conducted with Chief Executive Officers (CEOs), marketing directors, other innovation and technology directors, and executives from various key organizations operating in the vapor deposition marketplace.Extensive primary interviews were conducted to determine and verify the market size for several segments and sub-segments and information gathered through secondary research. The break-up of primary interviews is given below:• By Company Type - Tier 1 – 30%, Tier 2 – 50%, and Tier 3 – 20%• By Designation – C level Executives – 40%, Director level – 20%, and Others* – 40%• By Region – North America – 20%, Europe – 20%, Asia Pacific – 40%, Middle East & Africa – 5%, Latin America – 15%.Notes: *Others include sales, marketing, and product managers.Notes: Tier 1: >USD 5 Billion; Tier 2: USD 1 Billion– USD 5 Billion; and Tier 3:
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