TABLE OF CONTENTS
1 EXECUTIVE SUMMARY 13
1.1 MARKET ATTRACTIVENESS ANALYSIS 16
1.2 AMERICA TRANSFORMERS MARKET, BY TYPE 17
1.3 AMERICA TRANSFORMERS MARKET, BY POWER RATING 18
1.4 AMERICA TRANSFORMERS MARKET, BY PHASE 19
1.5 AMERICA TRANSFORMERS MARKET, BY VOLTAGE 20
1.6 AMERICA TRANSFORMERS MARKET, BY MOUNTING 21
1.7 AMERICA TRANSFORMERS MARKET, BY END-USE INDUSTRY 22
1.8 AMERICA TRANSFORMERS MARKET, BY COUNTRY 23
2 MARKET INTRODUCTION 24
2.1 DEFINITION 24
2.2 SCOPE OF THE STUDY 24
2.3 RESEARCH OBJECTIVE 24
2.4 MARKET STRUCTURE 25
3 RESEARCH METHODOLOGY 26
3.1 RESEARCH PROCESS 26
3.2 PRIMARY RESEARCH 27
3.3 SECONDARY RESEARCH 28
3.4 MARKET SIZE ESTIMATION 28
3.5 TOP-DOWN & BOTTOM-UP APPROACH 29
3.6 FORECAST MODEL 30
3.7 LIST OF ASSUMPTIONS 31
4 MARKET DYNAMICS 32
4.1 OVERVIEW 32
4.2 DRIVERS 34
4.2.1 INCREASING ENERGY DEMANDS FROM INDUSTRIES AND UPGRADING OLD TRANSMISSION AND
DISTRIBUTION SYSTEMS 34
4.2.2 RAPID ADOPTION OF SMART GRID TECHNOLOGY 36
4.3 RESTRAINTS 37
4.3.1 INSTABILITY IN RAW MATERIAL PRICES 37
4.4 OPPORTUNITIES 39
4.4.1 ESCALATING POPULATION AND ELECTRICITY DEMAND 39
4.5 CHALLENGES 40
4.5.1 RISK ASSOCIATED WITH DC VOLTAGE 40
5 MARKET FACTOR ANALYSIS 42
5.1 SUPPLY CHAIN ANALYSIS 42
5.1.1 RAW MATERIALS 42
5.1.2 MANUFACTURERS 43
5.1.3 DISTRIBUTION AND SALES CHANNEL 43
5.1.4 END USERS 43
5.2 PORTER’S FIVE FORCES MODEL 44
5.2.1 THREAT OF NEW ENTRANTS 44
5.2.2 BARGAINING POWER OF SUPPLIERS 45
5.2.3 THREAT OF SUBSTITUTES 45
5.2.4 BARGAINING POWER OF BUYERS 45
5.2.5 INTENSITY OF RIVALRY 45
5.3 IMPACT OF COVID-19 ON THE AMERICA TRANSFORMERS MARKET 46
6 AMERICA TRANSFORMER MARKET, BY TYPE 47
6.1 OVERVIEW 47
6.1.1 AMERICA TRANSFORMER: MARKET ESTIMATES & FORECAST BY TYPE, 2019–2030 48
6.2 DRY-TYPE TRANSFORMERS 48
6.2.1 CAST RESIN DRY TYPE TRANSFORMER (CRT) 48
6.2.2 VACUUM PRESSURE IMPREGNATED TRANSFORMER (VPI) 49
6.2.3 VACUUM PRESSURE ENCAPSULATED (VPE) TRANSFORMERS 49
6.2.4 OTHERS 49
6.3 OIL-FILLED TRANSFORMER 49
7 AMERICA TRANSFORMER MARKET, BY POWER RATING 50
7.1 OVERVIEW 50
7.1.1 AMERICA TRANSFORMER: MARKET ESTIMATES & FORECAST BY POWER RATING, 2019–2030 51
7.2 <500 KVA 51
7.3 500 KVA – 2500 KVA 51
7.4 2500 KVA – 10000 KVA 51
7.5 >10000 KVA 52
8 AMERICA TRANSFORMER MARKET, BY PHASE 53
8.1 OVERVIEW 53
8.1.1 AMERICA TRANSFORMER: MARKET ESTIMATES & FORECAST BY PHASE, 2019–2030 53
8.2 SINGLE PHASE 54
8.3 THREE PHASE 54
9 AMERICA TRANSFORMER MARKET, BY VOLTAGE 55
9.1 OVERVIEW 55
9.1.1 AMERICA TRANSFORMER: MARKET ESTIMATES & FORECAST BY VOLTAGE, 2019–2030 55
9.2 LOW 56
9.3 MEDIUM 56
9.4 HIGH 56
10 AMERICA TRANSFORMER MARKET, BY MOUNTING 57
10.1 OVERVIEW 57
10.1.1 AMERICA TRANSFORMER: MARKET ESTIMATES & FORECAST BY MOUNTING, 2019–2030 57
10.2 PAD 58
10.3 POLE 58
10.4 OTHERS 58
11 AMERICA TRANSFORMER MARKET, BY END-USE INDUSTRY 59
11.1 OVERVIEW 59
11.1.1 TRANSFORMER: MARKET ESTIMATES & FORECAST BY END-USE INDUSTRY, 2019–2030 59
11.2 INDUSTRIAL 60
11.3 RESIDENTIAL & COMMERCIAL 60
11.4 UTILITY 60
12 AMERICA TRANSFORMER MARKET, BY COUNTRY 61
12.1 OVERVIEW 61
12.2 US 63
12.3 CANADA 65
12.4 MEXICO 67
12.5 CENTRAL AMERICA 69
12.6 REST OF AMERICA 71
13 COMPETITIVE LANDSCAPE 73
13.1 MARKET INTRODUCTION 73
13.2 RECENT DEVELOPMENTS 73
13.2.1 PARTNERSHIP/COLLBORATION/AGREEMENT 73
13.2.2 EXPANSION 74
13.2.3 PRODUCT DEVELOPMENT 75
13.2.4 ACQUISITION/MERGER 75
13.3 AMERICA MARKET STRATEGY ANALYSIS 76
13.4 MARKET SHARE ANALYSIS 77
13.5 COMPETITIVE BENCHMARKING 78
14 COMPANY PROFILES 79
14.1 EATON 79
14.1.1 COMPANY OVERVIEW 79
14.1.2 FINANCIAL OVERVIEW 80
14.1.3 PRODUCTS OFFERED 81
14.1.4 KEY DEVELOPMENTS 83
14.1.5 SWOT ANALYSIS 84
14.1.6 KEY STRATEGIES 84
14.2 FUJI ELECTRIC CO., LTD. 85
14.2.1 COMPANY OVERVIEW 85
14.2.2 FINANCIAL OVERVIEW 86
14.2.3 PRODUCTS OFFERED 86
14.2.4 KEY DEVELOPMENTS 87
14.2.5 SWOT ANALYSIS 87
14.2.6 KEY STRATEGIES 87
14.3 GENERAL ELECTRIC (GE) 88
14.3.1 COMPANY OVERVIEW 88
14.3.2 FINANCIAL OVERVIEW 89
14.3.3 PRODUCTS OFFERED 89
14.3.4 KEY DEVELOPMENTS 90
14.3.5 SWOT ANALYSIS 90
14.3.6 KEY STRATEGIES 91
14.4 HAMMOND POWER SOLUTION 92
14.4.1 COMPANY OVERVIEW 92
14.4.2 FINANCIAL OVERVIEW 93
14.4.3 PRODUCTS OFFERED 93
14.4.4 KEY DEVELOPMENTS 94
14.4.5 SWOT ANALYSIS 95
14.4.6 KEY STRATEGIES 95
14.5 HITACHI, LTD. 96
14.5.1 COMPANY OVERVIEW 96
14.5.2 FINANCIAL OVERVIEW 97
14.5.3 PRODUCTS OFFERED 97
14.5.4 KEY DEVELOPMENTS 98
14.5.5 SWOT ANALYSIS 99
14.5.6 KEY STRATEGIES 99
14.6 KIRLOSKAR ELECTRIC COMPANY 100
14.6.1 COMPANY OVERVIEW 100
14.6.2 FINANCIAL OVERVIEW 101
14.6.3 PRODUCTS OFFERED 101
14.6.4 KEY DEVELOPMENTS 102
14.6.5 SWOT ANALYSIS 102
14.6.6 KEY STRATEGIES 102
14.7 SCHNEIDER ELECTRIC 103
14.7.1 COMPANY OVERVIEW 103
14.7.2 FINANCIAL OVERVIEW 104
14.7.3 PRODUCTS OFFERED 104
14.7.4 KEY DEVELOPMENTS 105
14.7.5 SWOT ANALYSIS 106
14.7.6 KEY STRATEGIES 106
14.8 SIEMENS ENERGY 107
14.8.1 COMPANY OVERVIEW 107
14.8.2 FINANCIAL OVERVIEW 108
14.8.3 PRODUCTS OFFERED 108
14.8.4 KEY DEVELOPMENTS 109
14.8.5 SWOT ANALYSIS 110
14.8.6 KEY STRATEGIES 110
14.9 WEG 111
14.9.1 COMPANY OVERVIEW 111
14.9.2 FINANCIAL OVERVIEW 112
14.9.3 PRODUCTS OFFERED 112
14.9.4 KEY DEVELOPMENTS 113
14.9.5 SWOT ANALYSIS 114
14.9.6 KEY STRATEGIES 114
14.10 ABB 115
14.10.1 COMPANY OVERVIEW 115
14.10.2 FINANCIAL OVERVIEW 116
14.10.3 PRODUCTS OFFERED 116
14.10.4 KEY DEVELOPMENTS 117
14.10.5 SWOT ANALYSIS 118
14.10.6 KEY STRATEGIES 118
15 APPENDIX 119
15.1 REFERENCES 119
15.2 RELATED REPORTS 120
TABLE 1 LIST OF ASSUMPTIONS 31
TABLE 2 AMERICA TRANSFORMER MARKET ESTIMATES & FORECAST, BY TYPE, 2019–2030 (USD MILLION) 48
TABLE 3 AMERICA TRANSFORMER MARKET ESTIMATES & FORECAST, BY POWER RATING, 2019–2030 (USD MILLION) 51
TABLE 4 AMERICA TRANSFORMER MARKET ESTIMATES & FORECAST, BY PHASE, 2019–2030 (USD MILLION) 53
TABLE 5 AMERICA TRANSFORMER MARKET ESTIMATES & FORECAST, BY VOLTAGE, 2019–2030 (USD MILLION) 55
TABLE 6 AMERICA TRANSFORMER MARKET ESTIMATES & FORECAST, BY MOUNTING, 2019–2030 (USD MILLION) 57
TABLE 7 TRANSFORMER MARKET ESTIMATES & FORECAST, BY END-USE INDUSTRY, 2019–2030 (USD MILLION) 59
TABLE 8 AMERICA TRANSFORMER MARKET, BY COUNTRY, 2019–2030 (USD MILLION) 62
TABLE 9 US: TRANSFORMER MARKET, BY TYPE, 2019–2030 (USD MILLION) 63
TABLE 10 US: TRANSFORMER MARKET, BY POWER RATING, 2019–2030 (USD MILLION) 63
TABLE 11 US: TRANSFORMER MARKET, BY PHASE, 2019–2030 (USD MILLION) 63
TABLE 12 US: TRANSFORMER MARKET, BY VOLTAGE, 2019–2030 (USD MILLION) 64
TABLE 13 US: TRANSFORMER MARKET, BY MOUNTING, 2019–2030 (USD MILLION) 64
TABLE 14 US: TRANSFORMER MARKET, BY END-USE INDUSTRY, 2019–2030 (USD MILLION) 64
TABLE 15 CANADA: TRANSFORMER MARKET, BY TYPE, 2019–2030 (USD MILLION) 65
TABLE 16 CANADA: TRANSFORMER MARKET, BY POWER RATING, 2019–2030 (USD MILLION) 65
TABLE 17 CANADA: TRANSFORMER MARKET, BY PHASE, 2019–2030 (USD MILLION) 65
TABLE 18 CANADA: TRANSFORMER MARKET, BY VOLTAGE, 2019–2030 (USD MILLION) 66
TABLE 19 CANADA: TRANSFORMER MARKET, BY MOUNTING, 2019–2030 (USD MILLION) 66
TABLE 20 CANADA: TRANSFORMER MARKET, BY END-USE INDUSTRY, 2019–2030 (USD MILLION) 66
TABLE 21 MEXICO: TRANSFORMER MARKET, BY TYPE, 2019–2030 (USD MILLION) 67
TABLE 22 MEXICO: TRANSFORMER MARKET, BY POWER RATING, 2019–2030 (USD MILLION) 67
TABLE 23 MEXICO: TRANSFORMER MARKET, BY PHASE, 2019–2030 (USD MILLION) 67
TABLE 24 MEXICO: TRANSFORMER MARKET, BY VOLTAGE, 2019–2030 (USD MILLION) 68
TABLE 25 MEXICO: TRANSFORMER MARKET, BY MOUNTING, 2019–2030 (USD MILLION) 68
TABLE 26 MEXICO: TRANSFORMER MARKET, BY END-USE INDUSTRY, 2019–2030 (USD MILLION) 68
TABLE 27 CENTRAL AMERICA: TRANSFORMER MARKET, BY TYPE, 2019–2030 (USD MILLION) 69
TABLE 28 CENTRAL AMERICA: TRANSFORMER MARKET, BY POWER RATING, 2019–2030 (USD MILLION) 69
TABLE 29 CENTRAL AMERICA: TRANSFORMER MARKET, BY PHASE, 2019–2030 (USD MILLION) 69
TABLE 30 CENTRAL AMERICA: TRANSFORMER MARKET, BY VOLTAGE, 2019–2030 (USD MILLION) 70
TABLE 31 CENTRAL AMERICA: TRANSFORMER MARKET, BY MOUNTING, 2019–2030 (USD MILLION) 70
TABLE 32 CENTRAL AMERICA: TRANSFORMER MARKET, BY END-USE INDUSTRY, 2019–2030 (USD MILLION) 70
TABLE 33 REST OF AMERICA: TRANSFORMER MARKET, BY TYPE, 2019–2030 (USD MILLION) 71
TABLE 34 REST OF AMERICA: TRANSFORMER MARKET, BY POWER RATING, 2019–2030 (USD MILLION) 71
TABLE 35 REST OF AMERICA: TRANSFORMER MARKET, BY PHASE, 2019–2030 (USD MILLION) 71
TABLE 36 REST OF AMERICA: TRANSFORMER MARKET, BY VOLTAGE, 2019–2030 (USD MILLION) 72
TABLE 37 REST OF AMERICA: TRANSFORMER MARKET, BY MOUNTING, 2019–2030 (USD MILLION) 72
TABLE 38 REST OF AMERICA: TRANSFORMER MARKET, BY END-USE INDUSTRY, 2019–2030 (USD MILLION) 72
TABLE 39 PARTNERSHIP/COLLABORATION/AGREEMENT 73
TABLE 40 EXPANSION 74
TABLE 41 PRODUCT DEVELOPMENT 75
TABLE 42 ACQUISITION/MERGER 75
TABLE 43 EATON: PRODUCTS OFFERED 81
TABLE 44 EATON: KEY DEVELOPMENTS 83
TABLE 45 FUJI ELECTRIC CO., LTD..: PRODUCTS OFFERED 86
TABLE 46 FUJI ELECTRIC CO., LTD..: KEY DEVELOPMENTS 87
TABLE 47 GE: PRODUCTS OFFERED 89
TABLE 48 GE: KEY DEVELOPMENTS 90
TABLE 49 HAMMOND POWER SOLUTION: PRODUCTS OFFERED 93
TABLE 50 HAMMOND POWER SOLUTION: KEY DEVELOPMENTS 94
TABLE 51 HITACHI, LTD.: PRODUCTS OFFERED 97
TABLE 52 HITACHI, LTD.: KEY DEVELOPMENTS 98
TABLE 53 KIRLOSKAR ELECTRIC COMPANY: PRODUCTS OFFERED 101
TABLE 54 SCHNEIDER ELECTRIC: PRODUCTS OFFERED 104
TABLE 55 SCHNEIDER ELECTRIC: KEY DEVELOPMENTS 105
TABLE 56 SIEMENS ENERGY: PRODUCTS OFFERED 108
TABLE 57 SIEMENS ENERGY: KEY DEVELOPMENTS 109
TABLE 58 WEG: PRODUCTS OFFERED 112
TABLE 59 WEG.: KEY DEVELOPMENTS 113
TABLE 60 ABB: PRODUCTS OFFERED 116
TABLE 61 ABB: KEY DEVELOPMENTS 117
| ※参考情報 変圧器は、電力の送電や配電において重要な役割を果たす装置です。その主な機能は、電圧を変換することであり、電力の効率的な輸送と利用を実現します。変圧器は主に交流電圧の変換に利用され、入力端子に接続された電源から得られる電圧を、出力端子で異なる電圧に変換します。この変換により、電力が効率的に遠距離へ送られたり、適切な電圧で消費者に配電されたりします。 変圧器の主な種類としては、昇圧変圧器、降圧変圧器、分巻変圧器、アイソレーション変圧器などがあります。昇圧変圧器は、入力される電圧を上昇させるために用いられ、主に長距離送電に使用されます。長距離送電では電圧を高くして電流を低くすることで、送電損失を減少させることが可能です。一方、降圧変圧器は高電圧から低電圧へ変換するもので、住宅や商業施設への電力供給に利用されます。 分巻変圧器は、複数の巻線を持っており、異なる電圧の出力を得ることができます。これにより、異なる電圧を必要とする機器や回路に対して、多様な電圧供給が実現できます。アイソレーション変圧器は、電気的に絶縁された二つの巻線を持ち、入力電圧と出力電圧は直接的に接続されていません。この構造により、電源側と負荷側の絶縁が確保され、特に安全性が求められる環境で利用されます。 変圧器の主な用途としては、電力供給ネットワーク、工場やビルでの電力管理、電子機器の電源供給などがあります。特に電力供給ネットワークでは、発電所から変電所、さらには各家庭や企業へと電力を送る際の中継役として機能し、安定した電力供給を実現します。また、工場やビルにおいては、設置された変圧器が機器に必要な電圧を供給することで、効率的な運用をサポートします。 変圧器の関連技術としては、変圧器の冷却技術があります。高出力の変圧器は運転時に発熱するため、適切な冷却が必要です。空冷式と油冷式の2つの方法が一般的であり、空冷式はファンを利用して冷却を行いますが、油冷式は変圧器内の油を利用し、熱を逃がすことで冷却します。また、最近では、より効率的な冷却技術として、ナノ流体冷却や二酸化炭素を用いた冷却方法などの研究も進められています。 さらに、変圧器のデジタル化やスマートグリッドの導入も進んでいます。これにより、変圧器の状態をリアルタイムで監視し、異常発生時のトラブルシューティングが可能になります。これらの技術革新は、電力供給の信頼性を高めるだけでなく、メンテナンスコストの削減や運用効率の向上にも寄与します。 近年、再生可能エネルギーの普及に伴い、変圧器にも新たな役割が求められています。特に、太陽光発電や風力発電などの分散型電源が増える中、これらの電源を既存の電力網に統合するための変圧器が必要とされています。このような変圧器は、逆変圧器機能を備えたものや、より高い効率を追求した設計が求められています。 このように、変圧器は電力システムにおける基盤技術として、様々な種類と用途を持ち、将来的な電力供給においても重要な役割を担うことが期待されています。技術の進化とともに変圧器の機能や性能も向上し、より安全かつ効率的な電力供給が実現されることでしょう。 |
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