乾式変圧器の世界市場2020–2027:種類別(コンバータトランス、整流トランス)、技術別(キャスト樹脂、真空圧含浸)、相別(単相、三相)、電圧範囲別(低電圧、中電圧)、エンドユース産業別(工業、商業、その他)、地域別

【英語タイトル】Dry Type Transformer Market, by Type (Converter Transformer, Rectifier Transformer), Technology (Cast Resin, Vacuum Pressure Impregnated ), Phase (Single-Phase, Three-Phase), Voltage Range (Low, Medium), End-Use ( Industrial, Commercial and others) , Region (North America, Europe, Asia Pacific, LAMEA): Global Opportunity Analysis and Industry Forecast, 2020–2027

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・発行日:2020年10月
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本市場調査レポートでは、乾式変圧器の世界市場について調査・分析し、調査手法、エグゼクティブサマリー、市場概要、種類別(コンバータトランス、整流トランス)分析、技術別(キャスト樹脂、真空圧含浸)分析、相別(単相、三相)分析、エンドユース産業別(工業、商業、その他)分析、地域別分析、企業情報などの項目を掲載しています。
・調査手法
・エグゼクティブサマリー
・市場概要
・乾式変圧器の世界市場規模:種類別(コンバータトランス、整流トランス)
・乾式変圧器の世界市場規模:技術別(キャスト樹脂、真空圧含浸)
・乾式変圧器の世界市場規模:相別(単相、三相)
・乾式変圧器の世界市場規模:エンドユース産業別(工業、商業、その他)
・乾式変圧器の世界市場規模:地域別
・企業情報
【レポートの概要】

The global dry type transformer market is estimated to generate a revenue of $6,556.7 million by 2027, increasing from $4,822.4 million in 2019, at a 6.1% healthy CAGR.
Impact Analysis of COVID-19 on the Global Dry Type Transformer Market
The global dry type transformer market is predicted to slow down in terms of production and experience the covid-19 impact in the first half of 2020. Moreover, China is the known source of this pandemic and most of the countries are dependent on China in terms of material supply and material transport. Lack of supplies from countries will cause delaying in projects that are on going for renewable source of energy. These elements are creating a negative impact on the global dry type transformer market, during the forecast period.
However, key market players are applying several business strategies to holdup their presence globally. For instance, Schneider Electric, a leading company in transformers market is planning to build next generation smart grid network systems in Egypt to supply electricity to industries and customers. Moreover, the company made a planned partnership with Egyptian Electricity Holding Company for inauguration of four control centres for optimizing electrical network systems in the country. All these factors positively accelerate the dry type transformer market.
Dry Type Transformer Market Analysis:
The growth in the demand of dry type transformer is attributed to its applicability in almost every industry where safety is a great concern. It is designed in such a way that it uses natural air for cooling and therefore, they are environmentally safe, with no moving parts and low maintenance, offering reliability and long run cycle. Owing to benefits, they are mostly used in hospitals, factories, schools, chemical plants and socities where fire safety is a great concern. All these advantages attract customers and eventually foster the growth of the global dry type transformer market, throughout the forecast period.
However, the complex construction of dry type transformer makes it costlier than wet type or oil immersed transformers. Also, dry type transformer like cast resin transformer has low heat control performance compared to oil based transformer. These type of factors may hamper the market of dry type transformers.
The dry type transformer industry is growing at a fast pace owing to the demand for digital dry type transformer in which power grids are replaced with smarts grids; this will helpful to analyze the data of maintaining a dry type transformer which will eventually increase productivity and profitability of dry type transformer. All these factors have the potential to offer fresh opportunities in the dry type transformer market.
Based on the type, the global dry type transformer market is mainly classified into converter transformer and rectifier transformer. The rectifier transformer is expected to register a revenue of $2,557.7 million by 2027, increasing from $1,851.7 million in 2019 owing to its applications in industries, as they require direct current. Also, it offers offers flawless operations, sturdy construction and long-life service.
On the other hand, converter transformer type will have a significant share and is estimated to generate a revenue of $3,999.0 million, during the forecast years.
Depending on technology, the global market is classified into cast resin and vacuum pressure impregnated technology. The vacuum pressure impregnated technology sub segment for the dry type transformer market will have rapid growth and it is predicted to generate a revenue of $2,118.5 million by 2027, during the forecast period owing to its higher mechanical support and strength to short circuits due to varnish coating of polyester all over this type of transformers. However, the cast resin technology sub segment is expected to generate a revenue of $4,438.2 million, during the forecast period.
On the basis of phase, the global dry type transformer market is bifurcated into single-phase and three-phase. The three-phase subsegment for the dry type transformer market will have rapid growth and it is predicted to generate a revenue of $643.2 million by 2027, during the forecast period. However, the single-phase sub segment is expected to generate revenue of $5,913.5 million, throughout forecasting.
The low voltage sub-segment shall have rapid growth and is anticipated to generate a revenue of $4,665.2 million by 2027, during the forecast period; this is mainly because of the increasing adoption of eco-friendly transformers.
The industrial sub-segment may experience significant growth during the forecast period with a revenue of $3,590.1 million with a CAGR of 5.9%. However, the commercial sub-segment of dry type transformers will have the fastest growth and it is projected to surpass $2,181.2 million by 2027, with an increase from $1,563.3 million in 2019.
The North America dry type transformer market was valued at $1,210.4 million in 2019 and is expected to generate a revenue of $1,708.0 million by 2027. Asia-Pacific dry type transformer market share is expected to surge at a growth rate of 5.7% by generating revenue of $2,622.7 million by 2027.
Some of the key players involved dry type transformer market include ABB Limited, General Electric, Eaton Corporation, Schneider Electric, Siemens AG, CG Power and Industrial Solutions Ltd, Toshiba Corporation, Bharat Heavy Electricals Limited and Raychem RPG.

【レポートの目次】

1. Research Methodology

1.1. Desk Research
1.2. Real time insights and validation
1.3. Forecast model
1.4. Assumptions and forecast parameters

1.4.1. Assumptions
1.4.2. Forecast parameters

1.5. Data sources

1.5.1. Primary
1.5.2. Secondary

2. Executive Summary

2.1. 360° summary
2.2. By Type trends
2.3. By Technology trends
2.4. By Phase trends
2.5. By Voltage range trends
2.6. By End-use trends

3. Market Overview

3.1. Market segmentation & definitions
3.2. Key takeaways

3.2.1. Top investment pockets
3.2.2. Top winning strategies

3.3. Porter’s five forces analysis

3.3.1. Bargaining power of consumers
3.3.2. Bargaining power of suppliers
3.3.3. Threat of new entrants
3.3.4. Threat of substitutes
3.3.5. Competitive rivalry in the market

3.4. Market dynamics

3.4.1. Drivers
3.4.2. Restraints
3.4.3. Opportunities

3.5. Technology landscape
3.6. Regulatory landscape
3.7. Patent landscape
3.8. Pricing overview

3.8.1. By Vehicle Type
3.8.2. By Application
3.8.3. By Sales Channel

3.9. Market value chain analysis

3.9.1. Stress point analysis
3.9.2. Raw material analysis
3.9.3. Manufacturing process
3.9.4. Distribution channel analysis
3.9.5. Operating vendors

3.9.5.1. Raw material suppliers
3.9.5.2. Product manufacturers
3.9.5.3. Product distributors

3.10. Strategic overview

4. Dry Type Transformer Market, by Type

4.1. Converter Transformer

4.1.1. Key market trends, growth factors and opportunities
4.1.2. Market size and forecast, by region
4.1.3. Market share analysis, by country

4.2. Rectifier Transformer

4.2.1. Key market trends, growth factors and opportunities
4.2.2. Market size and forecast, by region
4.2.3. Market share analysis, by country

5. Dry Type Transformer Market, by Technology

5.1. Cast Resin

5.1.1. Key market trends, growth factors and opportunities
5.1.2. Market size and forecast, by region
5.1.3. Market share analysis, by country

5.2. Vacuum Pressure Impregnated

5.2.1. Key market trends, growth factors and opportunities
5.2.2. Market size and forecast, by region
5.2.3. Market share analysis, by country

6. Dry Type Transformer Market, by Phase

6.1. Single-Phase

6.1.1. Key market trends, growth factors and opportunities
6.1.2. Market size and forecast, by region
6.1.3. Market share analysis, by country

6.2. Three-Phase

6.2.1. Key market trends, growth factors and opportunities
6.2.2. Market size and forecast, by region
6.2.3. Market share analysis, by country

7. Dry Type Transformer Market, by Voltage Range

7.1. Low

7.1.1. Key market trends, growth factors and opportunities
7.1.2. Market size and forecast, by region
7.1.3. Market share analysis, by country

7.2. Medium

7.2.1. Key market trends, growth factors and opportunities
7.2.2. Market size and forecast, by region
7.2.3. Market share analysis, by country

8. Dry Type Transformer Market, by End-use

8.1. Industrial

8.1.1. Key market trends, growth factors and opportunities
8.1.2. Market size and forecast, by region
8.1.3. Market share analysis, by country

8.2. Commercial

8.2.1. Key market trends, growth factors and opportunities
8.2.2. Market size and forecast, by region
8.2.3. Market share analysis, by country

8.3. Others

8.3.1. Key market trends, growth factors and opportunities
8.3.2. Market size and forecast, by region
8.3.3. Market share analysis, by country

9. Dry Type Transformer Market, by Region

9.1. North America

9.1.1. Market size and forecast, by type, 2020-2027
9.1.2. Market size and forecast, by technology, 2020-2027
9.1.3. Market size and forecast, by phase, 2020-2027
9.1.4. Market size and forecast, by voltage range, 2020-2027
9.1.5. Market size and forecast, by end-use, 2020-2027
9.1.6. Market size and forecast, by country, 2020-2027
9.1.7. Comparative market share analysis, 2020 & 2027
9.1.8. U.S.

9.1.8.1. Comparative market share analysis, 2020& 2027

9.1.9. Canada

9.1.9.1. Market size and forecast, by type, 2020-2027
9.1.9.2. Market size and forecast, by technology, 2020-2027
9.1.9.3. Market size and forecast, by phase, 2020-2027
9.1.9.4. Market size and forecast, by voltage range, 2020-2027
9.1.9.5. Market size and forecast, by end-use, 2020-2027
9.1.9.6. Comparative market share analysis, 2020 & 2027

9.1.10. Mexico

9.1.10.1. Market size and forecast, by type, 2020-2027
9.1.10.2. Market size and forecast, by technology, 2020-2027
9.1.10.3. Market size and forecast, by phase, 2020-2027
9.1.10.4. Market size and forecast, by voltage range, 2020-2027
9.1.10.5. Market size and forecast, by end-use, 2020-2027
9.1.10.6. Comparative market share analysis, 2020 & 2027

9.2. Europe

9.2.1. Market size and forecast, by type, 2020-2027
9.2.2. Market size and forecast, by technology, 2020-2027
9.2.3. Market size and forecast, by phase, 2020-2027
9.2.4. Market size and forecast, by voltage range, 2020-2027
9.2.5. Market size and forecast, by end-use, 2020-2027
9.2.6. Market size and forecast, by country, 2020-2027
9.2.7. Comparative market share analysis, 2020 & 2027
9.2.8. UK

9.2.8.1. Market size and forecast, by type, 2020-2027
9.2.8.2. Market size and forecast, by technology, 2020-2027
9.2.8.3. Market size and forecast, by phase, 2020-2027
9.2.8.4. Market size and forecast, by voltage range, 2020-2027
9.2.8.5. Market size and forecast, by end-use, 2020-2027
9.2.8.6. Comparative market share analysis, 2020 & 2027

9.2.9. France

9.2.9.1. Market size and forecast, by type, 2020-2027
9.2.9.2. Market size and forecast, by technology, 2020-2027
9.2.9.3. Market size and forecast, by phase, 2020-2027
9.2.9.4. Market size and forecast, by voltage range, 2020-2027
9.2.9.5. Market size and forecast, by end-use, 2020-2027
9.2.9.6. Comparative market share analysis, 2020 & 2027

9.2.10. Spain

9.2.10.1. Market size and forecast, by type, 2020-2027
9.2.10.2. Market size and forecast, by technology, 2020-2027
9.2.10.3. Market size and forecast, by phase, 2020-2027
9.2.10.4. Market size and forecast, by voltage range, 2020-2027
9.2.10.5. Market size and forecast, by end-use, 2020-2027
9.2.10.6. Comparative market share analysis, 2020 & 2027

9.2.11. Italy

9.2.11.1. Market size and forecast, by type, 2020-2027
9.2.11.2. Market size and forecast, by technology, 2020-2027
9.2.11.3. Market size and forecast, by phase, 2020-2027
9.2.11.4. Market size and forecast, by voltage range, 2020-2027
9.2.11.5. Market size and forecast, by end-use, 2020-2027
9.2.11.6. Comparative market share analysis, 2020 & 2027

9.2.12. Rest of Europe

9.2.12.1. Market size and forecast, by type, 2020-2027
9.2.12.2. Market size and forecast, by technology, 2020-2027
9.2.12.3. Market size and forecast, by phase, 2020-2027
9.2.12.4. Market size and forecast, by voltage range, 2020-2027
9.2.12.5. Market size and forecast, by end-use, 2020-2027
9.2.12.6. Comparative market share analysis, 2020 & 2027

9.3. Asia Pacific

9.3.1. Market size and forecast, by type, 2020-2027
9.3.2. Market size and forecast, by technology, 2020-2027
9.3.3. Market size and forecast, by phase, 2020-2027
9.3.4. Market size and forecast, by voltage range, 2020-2027
9.3.5. Market size and forecast, by end-use, 2020-2027
9.3.6. Market size and forecast, by country, 2020-2027
9.3.7. Comparative market share analysis, 2020 & 2027
9.3.8. China

9.3.8.1. Market size and forecast, by type, 2020-2027
9.3.8.2. Market size and forecast, by technology, 2020-2027
9.3.8.3. Market size and forecast, by phase, 2020-2027
9.3.8.4. Market size and forecast, by voltage range, 2020-2027
9.3.8.5. Market size and forecast, by end-use, 2020-2027
9.3.8.6. Comparative market share analysis, 2020 & 2027

9.3.9. India

9.3.9.1. Market size and forecast, by type, 2020-2027
9.3.9.2. Market size and forecast, by technology, 2020-2027
9.3.9.3. Market size and forecast, by phase, 2020-2027
9.3.9.4. Market size and forecast, by voltage range, 2020-2027
9.3.9.5. Market size and forecast, by end-use, 2020-2027
9.3.9.6. Comparative market share analysis, 2020 & 2027

9.3.10. Australia

9.3.10.1. Market size and forecast, by type, 2020-2027
9.3.10.2. Market size and forecast, by technology, 2020-2027
9.3.10.3. Market size and forecast, by phase, 2020-2027
9.3.10.4. Market size and forecast, by voltage range, 2020-2027
9.3.10.5. Market size and forecast, by end-use, 2020-2027
9.3.10.6. Comparative market share analysis, 2020 & 2027

9.3.11. Rest of Asia Pacific

9.3.11.1. Market size and forecast, by type, 2020-2027
9.3.11.2. Market size and forecast, by technology, 2020-2027
9.3.11.3. Market size and forecast, by phase, 2020-2027
9.3.11.4. Market size and forecast, by voltage range, 2020-2027
9.3.11.5. Market size and forecast, by end-use, 2020-2027
9.3.11.6. Comparative market share analysis, 2020 & 2027

9.4. LAMEA

9.4.1. Market size and forecast, by type, 2020-2027
9.4.2. Market size and forecast, by technology, 2020-2027
9.4.3. Market size and forecast, by phase, 2020-2027
9.4.4. Market size and forecast, by voltage range, 2020-2027
9.4.5. Market size and forecast, by end-use, 2020-2027
9.4.6. Market size and forecast, by country, 2020-2027
9.4.7. Comparative market share analysis, 2020 & 2027
9.4.8. Latin America

9.4.8.1. Market size and forecast, by type, 2020-2027
9.4.8.2. Market size and forecast, by technology, 2020-2027
9.4.8.3. Market size and forecast, by phase, 2020-2027
9.4.8.4. Market size and forecast, by voltage range, 2020-2027
9.4.8.5. Market size and forecast, by end-use, 2020-2027
9.4.8.6. Comparative market share analysis, 2020 & 2027

9.4.9. Middle East

9.4.9.1. Market size and forecast, by type, 2020-2027
9.4.9.2. Market size and forecast, by technology, 2020-2027
9.4.9.3. Market size and forecast, by phase, 2020-2027
9.4.9.4. Market size and forecast, by voltage range, 2020-2027
9.4.9.5. Market size and forecast, by end-use, 2020-2027
9.4.9.6. Comparative market share analysis, 2020 & 2027

9.4.10. Africa

9.4.10.1. Market size and forecast, by type, 2020-2027
9.4.10.2. Market size and forecast, by technology, 2020-2027
9.4.10.3. Market size and forecast, by phase, 2020-2027
9.4.10.4. Market size and forecast, by voltage range, 2020-2027
9.4.10.5. Market size and forecast, by end-use, 2020-2027
9.4.10.6. Comparative market share analysis, 2020 & 2027

10. Company Profiles

10.1. ABB LIMITED

10.1.1. Business overview
10.1.2. Financial performance
10.1.3. Product portfolio
10.1.4. Recent strategic moves & developments
10.1.5. SWOT analysis

10.2. GENERAL ELECTRIC

10.2.1. Business overview
10.2.2. Financial performance
10.2.3. Product portfolio
10.2.4. Recent strategic moves & developments
10.2.5. SWOT analysis

10.3. EATON

10.3.1. Business overview
10.3.2. Financial performance
10.3.3. Product portfolio
10.3.4. Recent strategic moves & developments
10.3.5. SWOT analysis

10.4. SCHENEIDER ELECTRIC

10.4.1. Business overview
10.4.2. Financial performance
10.4.3. Product portfolio
10.4.4. Recent strategic moves & developments
10.4.5. SWOT analysis

10.5. SIEMENS

10.5.1. Business overview
10.5.2. Financial performance
10.5.3. Product portfolio
10.5.4. Recent strategic moves & developments
10.5.5. SWOT analysis

10.6. CG POWER AND INDUSTRIAL SOLUTIONS LIMITED

10.6.1. Business overview
10.6.2. Financial performance
10.6.3. Product portfolio
10.6.4. Recent strategic moves & developments
10.6.5. SWOT analysis

10.7. TOSHIBA CORPORATION

10.7.1. Business overview
10.7.2. Financial performance
10.7.3. Product portfolio
10.7.4. Recent strategic moves & developments
10.7.5. SWOT analysis

10.8. BHARAT HEAVY ELECTRICALS LIMITED

10.8.1. Business overview
10.8.2. Financial performance
10.8.3. Product portfolio
10.8.4. Recent strategic moves & developments
10.8.5. SWOT analysis

10.9. RAYCHEM RPG PRIVATE LIMITED

10.9.1. Business overview
10.9.2. Financial performance
10.9.3. Product portfolio
10.9.4. Recent strategic moves & developments
10.9.5. SWOT analysis

10.10. INSTRUMENT TRANSFORMER EQUIPMENT CORPORATION

10.10.1. Business overview
10.10.2. Financial performance
10.10.3. Product portfolio
10.10.4. Recent strategic moves & developments
10.10.5. SWOT analysis



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