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Synchronous Condenser Market Research Report Information By Cooling Type (Hydrogen, Air, Water), By Reactive Power Rating (Up to 100 MVAr, Between 100MVAr-200 MVAr, Above 200 MVAr), By Type (New, Refurbished), By Starting Method (Static Frequency Converter, Pony Motor, Others), By End-Use (Electric Utilities, Industries) And By Region (North America, Europe, Asia-Pacific, And Rest Of The World) โ€“Market Forecast Till 2032


ID: MRFR/E&P/2291-CR | 165 Pages | Author: Anshula Mandaokar| October 2020

Synchronous Condenser Market Segmentation Tab:

Synchronous Condenser Cooling Type Outlook (USD Billion, 2019-2032)

  • Hydrogen

  • Air

  • Water

Synchronous Condenser Reactive Power Rating Outlook (USD Billion, 2019-2032)

  • Up to 100 MVAr

  • Between 100MVAr-200 MVAr

  • ABOVE 200 MVAR

Synchronous Condenser Type Outlook (USD Billion, 2019-2032)

  • New

  • Refurbished

Synchronous Condenser Starting Method Outlook (USD Billion, 2019-2032)

  • Static Frequency Converter

  • Pony Motor

  • Others

Synchronous Condenser End-Use Outlook (USD Billion, 2019-2032)

  • Electric Utilities

  • Industries

Synchronous Condenser Regional Outlook (USD Billion, 2019-2032)

  • North America Outlook (USD Billion, 2019-2032)

    • North America Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • North America Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • North America Synchronous Condenser by Type

      • New

      • Refurbished

    • North America Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • North America Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • US Outlook (USD Billion, 2019-2032)

    • US Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • US Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • US Synchronous Condenser by Type

      • New

      • Refurbished

    • US Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • US Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • CANADA Outlook (USD Billion, 2019-2032)

    • CANADA Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • CANADA Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • CANADA Synchronous Condenser by Type

      • New

      • Refurbished

    • CANADA Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • CANDA Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

  • Europe Outlook (USD Billion, 2019-2032)

    • Europe Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Europe Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Europe Synchronous Condenser by Type

      • New

      • Refurbished

    • Europe Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Europe Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Germany Outlook (USD Billion, 2019-2032)

    • Germany Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Germany Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Germany Synchronous Condenser by Type

      • New

      • Refurbished

    • Germany Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Germany Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • France Outlook (USD Billion, 2019-2032)

    • France Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • France Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • France Synchronous Condenser by Type

      • New

      • Refurbished

    • France Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • France Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • UK Outlook (USD Billion, 2019-2032)

    • UK Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • UK Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • UK Synchronous Condenser by Type

      • New

      • Refurbished

    • UK Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • UK Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • ITALY Outlook (USD Billion, 2019-2032)

    • ITALY Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • ITALY Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • ITALY Synchronous Condenser by Type

      • New

      • Refurbished

    • ITALY Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • ITALY Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • SPAIN Outlook (USD Billion, 2019-2032)

    • Spain Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Spain Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Spain Synchronous Condenser by Type

      • New

      • Refurbished

    • Spain Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Spain Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Rest Of Europe Outlook (USD Billion, 2019-2032)

    • Rest Of Europe Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • REST OF EUROPE Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Rest Of Europe Synchronous Condenser by Type

      • New

      • Refurbished

    • Rest Of Europe Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Rest Of Europe Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

  • Asia-Pacific Outlook (USD Billion, 2019-2032)

    • Asia-Pacific Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Asia-Pacific Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Asia-Pacific Synchronous Condenser by Type

      • New

      • Refurbished

    • Asia-Pacific Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Asia-Pacific Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • China Outlook (USD Billion, 2019-2032)

    • China Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • China Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • China Synchronous Condenser by Type

      • New

      • Refurbished

    • China Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • China Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Japan Outlook (USD Billion, 2019-2032)

    • Japan Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Japan Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Japan Synchronous Condenser by Type

      • New

      • Refurbished

    • Japan Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Japan Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • India Outlook (USD Billion, 2019-2032)

    • India Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • India Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • India Synchronous Condenser by Type

      • New

      • Refurbished

    • India Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • India Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Australia Outlook (USD Billion, 2019-2032)

    • Australia Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Australia Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Australia Synchronous Condenser by Type

      • New

      • Refurbished

    • Australia Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Australia Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Rest of Asia-Pacific Outlook (USD Billion, 2019-2032)

    • Rest of Asia-Pacific Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Rest of Asia-Pacific Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Rest of Asia-Pacific Synchronous Condenser by Type

      • New

      • Refurbished

    • Rest of Asia-Pacific Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Rest of Asia-Pacific Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

  • Rest of the World Outlook (USD Billion, 2019-2032)

    • Rest of the World Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Rest of the World Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Rest of the World Synchronous Condenser by Type

      • New

      • Refurbished

    • Rest of the World Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Rest of the World Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Middle East Outlook (USD Billion, 2019-2032)

    • Middle East Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Middle East Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Middle East Synchronous Condenser by Type

      • New

      • Refurbished

    • Middle East Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Middle East Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Africa Outlook (USD Billion, 2019-2032)

    • Africa Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Africa Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Africa Synchronous Condenser by Type

      • New

      • Refurbished

    • Africa Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Africa Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

    • Latin America Outlook (USD Billion, 2019-2032)

    • Latin America Synchronous Condenser by Cooling Type

      • Hydrogen

      • Air

      • Water

    • Latin America Synchronous Condenser by Reactive Power Rating

      • Up to 100 MVAr

      • Between 100MVAr-200 MVAr

      • ABOVE 200 MVAR

    • Latin America Synchronous Condenser by Type

      • New

      • Refurbished

    • Latin America Synchronous Condenser by Starting Method

      • Static Frequency Converter

      • Pony Motor

      • Others

    • Latin America Synchronous Condenser by End-Use

      • Electric Utilities

      • Industries

Research Methodology on Synchronous Condenser Market


Introduction


A synchronous condenser is an electromechanical device used in electrical power systems mainly to improve power factor, voltage regulation, dampening of mechanical oscillations and buffering the reactive power demands of the system. The synchronous condenser has a wide range of applications across various industries such as power generation, oil and gas, metal, chemical and mining. The growth of the synchronous condenser market is attributed to factors such as the high demand for power, the growing number of legislations in order to reduce GHG emissions, the installation of renewable energy sources, need for grid reliability and sustainability.


Scope of the Study


This research report will provide a comprehensive study of the global synchronous condenser market with detailed information on market segmentation in terms of application, geography and region. In addition, Porterโ€™s Five Force Analysis, value chain analysis, market dynamics including market drivers, restraints and opportunities, competitive landscape and company profiles of key players are also included for a better understanding of the global synchronous condenser market.


Research Methodology


The primary goal of this research study is to provide an in-depth analysis of the global synchronous condenser market and the various factors that influence it. The market analysis is conducted using both primary and secondary research methods. Primary research included a wide array of activities such as interviews with industry experts, surveys and focus groups. Secondary research included studying analyst reports, company websites and other secondary sources. This research study was conducted using a combination of top-down and bottom-up approaches.


Data Collection and Analysis


Data collected for the research study was used to form an opinion about the industry trends, product pricing strategies, market size and potential users. The data was collected from a variety of sources including primary and secondary research. Primary sources such as interviews, industry experts and industry analysts were used to gain insights and perspectives about the industry and market. Secondary sources included industry reports, technical journals, company websites and company data.


All of the qualitative and quantitative data collected for the research study was analyzed and used to form an opinion on the market for synchronous condensers. Statistical techniques such as mean, average, median, mode and standard deviation were used to analyze the data. For qualitative data, content analysis and theme identification were used to develop a clear understanding of the industry and market.


Market Forecasting


To forecast the market for synchronous condensers, several assumptions were taken into account for various factors such as market growth rate, market drivers and restraints, market size, demand and supply analysis and competitive landscape. These assumptions were made after thoroughly analyzing the market and its key playersโ€™ strategies.


After analyzing the assumptions and data, a market forecast was made to analyze the market size and expected growth rate. An in-depth and comprehensive market analysis was conducted to estimate the expected value for the synchronous condenser market in the next few years.


Conclusion


This research study provides an in-depth analysis of the global synchronous condenser market. It covers the market dynamics, segmentation and geographical information of the market. It concludes with a market forecast (2023 -2030) which provides an estimated value for the synchronous condenser market in the next few years. The information provided in this research report is reliable and can be used to make sound decisions in the synchronous condenser industry.

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1 EXECUTIVE SUMMARY

1.1 MARKET ATTRACTIVENESS ANALYSIS 17

1.1.1 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY COOLING TYPE 18

1.1.2 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY REACTIVE POWER RATING 19

1.1.3 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY TYPE 20

1.1.4 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY STARTING METHOD 21

1.1.5 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY END USE 22

1.1.6 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY REGION 23

2 MARKET INTRODUCTION

2.1 DEFINITIONS 24

2.2 SCOPE OF THE STUDY 24

2.3 RESEARCH OBJECTIVE 24

2.4 MARKET STRUCTURE 25

3 RESEARCH METHODOLOGY

3.1 RESEARCH PROCESS 26

3.2 PRIMARY RESEARCH 27

3.3 SECONDARY RESEARCH 28

3.4 MARKET SIZE ESTIMATION 29

3.5 FORECAST MODEL 30

3.6 LIST OF ASSUMPTIONS 31

4 MARKET INSIGHTS

5 MARKET DYNAMICS

5.1 INTRODUCTION 35

5.2 DRIVERS 36

5.2.1 INCREASING DEMAND IN THE UTILITIES 36

5.2.2 APPLICATIONS IN RENEWABLE ENERGY 36

5.3 RESTRAINTS 37

5.3.1 HIGH INITIAL COSTS 37

5.4 OPPORTUNITIES 38

5.4.1 INCREASE IN USE OF SYNCHRONOUS CONDENSER IN HVDC SYSTEMS 38

6 MARKET FACTOR ANALYSIS

6.1 SUPPLY CHAIN ANALYSIS 39

6.1.1 DESIGN & DEVELOPMENT 40

6.1.2 RAW MATERIAL SUPPLY 40

6.1.3 MANUFACTURE & ASSEMBLY 40

6.1.4 SUPPLY & DISTRIBUTION 40

6.1.5 END USE 40

6.2 PORTERโ€™S FIVE FORCES MODEL 41

6.2.1 THREAT OF NEW ENTRANTS 41

6.2.2 BARGAINING POWER OF SUPPLIERS 42

6.2.3 BARGAINING POWER OF BUYERS 42

6.2.4 THREAT OF SUBSTITUTES 42

6.2.5 INTENSITY OF RIVALRY 42

7 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY COOLING TYPE

7.1 OVERVIEW 43

7.2 HYDROGEN 44

7.3 WATER 44

7.4 AIR 44

8 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY REACTIVE POWER RATING

8.1 OVERVIEW 45

8.2 UP TO 100 MVAR 46

8.3 BETWEEN 100 MVARโ€“200 MVAR 46

8.4 ABOVE 200 MVAR 46

9 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY TYPE

9.1 OVERVIEW 47

9.2 NEW 48

9.3 REFURBISHED 48

10 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY STARTING METHOD

10.1 OVERVIEW 49

10.2 STATIC FREQUENCY CONVERTER 50

10.3 PONY MOTOR 50

10.4 OTHERS 50

11 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY END USE

11.1 OVERVIEW 51

11.2 ELECTRIC UTILITIES 52

11.3 INDUSTRIES 52

12 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY REGION

12.1 OVERVIEW 53

12.2 NORTH AMERICA 55

12.2.1 US 57

12.2.2 CANADA 59

12.2.3 MEXICO 61

12.3 EUROPE 63

12.3.1 UK 65

12.3.2 GERMANY 67

12.3.3 ITALY 69

12.3.4 REST OF EUROPE 71

12.4 ASIA-PACIFIC 73

12.4.1 CHINA 75

12.4.2 INDIA 77

12.4.3 AUSTRALIA 78

12.4.4 REST OF ASIA-PACIFIC 80

12.5 MIDDLE EAST & AFRICA 83

12.5.1 SAUDI ARABIA 85

12.5.2 QATAR 87

12.5.3 SOUTH AFRICA 89

12.5.4 REST OF MIDDLE EAST & AFRICA 91

12.6 SOUTH AMERICA 93

12.6.1 BRAZIL 95

12.6.2 REST OF SOUTH AMERICA 96

13 COMPETITIVE LANDSCAPE

13.1 COMPETITIVE OVERVIEW 99

13.2 COMPETITIVE BENCHMARKING 100

13.3 MARKET SHARE ANALYSIS 101

14 COMPANY PROFILES

14.1 SIEMENS 102

14.1.1 COMPANY OVERVIEW 102

14.1.2 FINANCIAL OVERVIEW 102

14.1.3 PRODUCTS OFFERED 103

14.1.4 KEY DEVELOPMENTS 103

14.1.5 SWOT ANALYSIS 104

14.1.6 KEY STRATEGIES 104

14.2 EATON 105

14.2.1 COMPANY OVERVIEW 105

14.2.2 FINANCIAL OVERVIEW 105

14.2.3 PRODUCTS OFFERED 106

14.2.4 KEY DEVELOPMENTS 106

14.2.5 SWOT ANALYSIS 106

14.2.6 KEY STRATEGIES 107

14.3 ABB 108

14.3.1 COMPANY OVERVIEW 108

14.3.2 FINANCIAL OVERVIEW 108

14.3.3 PRODUCTS OFFERED 109

14.3.4 KEY DEVELOPMENTS 109

14.3.5 SWOT ANALYSIS 109

14.3.6 KEY STRATEGIES 110

14.4 GENERAL ELECTRIC 111

14.4.1 COMPANY OVERVIEW 111

14.4.2 FINANCIAL OVERVIEW 111

14.4.3 PRODUCTS OFFERED 112

14.4.4 KEY DEVELOPMENTS 112

14.4.5 SWOT ANALYSIS 112

14.4.6 KEY STRATEGIES 113

14.5 VOITH GROUP 114

14.5.1 COMPANY OVERVIEW 114

14.5.2 FINANCIAL OVERVIEW 114

14.5.3 PRODUCTS OFFERED 115

14.5.4 KEY DEVELOPMENTS 115

14.5.5 SWOT ANALYSIS 116

14.5.6 KEY STRATEGIES 116

14.6 SUSTAINABLE POWER SYSTEMS, INC. 117

14.6.1 COMPANY OVERVIEW 117

14.6.2 FINANCIAL OVERVIEW 117

14.6.3 PRODUCTS OFFERED 117

14.6.4 KEY DEVELOPMENTS 117

14.7 ELECTROMECHANICAL ENGINEERING ASSOCIATES, INC. 118

14.7.1 COMPANY OVERVIEW 118

14.7.2 FINANCIAL OVERVIEW 118

14.7.3 PRODUCTS OFFERED 118

14.7.4 KEY DEVELOPMENTS 118

14.8 TOSHIBA CORPORATION 119

14.8.1 COMPANY OVERVIEW 119

14.8.2 FINANCIAL OVERVIEW 120

14.8.3 PRODUCTS OFFERED 120

14.8.4 KEY DEVELOPMENTS 120

14.9 WEG 121

14.9.1 COMPANY OVERVIEW 121

14.9.2 FINANCIAL OVERVIEW 121

14.9.3 PRODUCTS OFFERED 122

14.9.4 KEY DEVELOPMENTS 122

14.10 IDEAL ELECTRIC COMPANY 123

14.10.1 COMPANY OVERVIEW 123

14.10.2 FINANCIAL OVERVIEW 123

14.10.3 PRODUCTS OFFERED 123

14.10.4 KEY DEVELOPMENTS 123

14.11 POWER SYSTEMS & CONTROLS, INC. 124

14.11.1 COMPANY OVERVIEW 124

14.11.2 FINANCIAL OVERVIEW 124

14.11.3 PRODUCTS OFFERED 124

14.11.4 KEY DEVELOPMENTS 124

14.12 ANSALDO ENERGIA 125

14.12.1 COMPANY OVERVIEW 125

14.12.2 FINANCIAL OVERVIEW 126

14.12.3 PRODUCTS OFFERED 126

14.12.4 KEY DEVELOPMENTS 126

14.13 ANDRITZ 127

14.13.1 COMPANY OVERVIEW 127

14.13.2 FINANCIAL OVERVIEW 128

14.14 PRODUCTS OFFERED 129

14.14.1 KEY DEVELOPMENT 129

15 LIST OF TABLES

TABLE 1 PRIMARY INTERVIEWS 27

TABLE 2 LIST OF ASSUMPTIONS 31

TABLE 3 GLOBAL SYNCHRONOUS CONDENSER: MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 44

TABLE 4 GLOBAL SYNCHRONOUS CONDENSER: MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032

(USD MILLION) 46

TABLE 5 GLOBAL SYNCHRONOUS CONDENSER: MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 48

TABLE 6 GLOBAL SYNCHRONOUS CONDENSER: MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 50

TABLE 7 GLOBAL SYNCHRONOUS CONDENSER: MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 52

TABLE 8 GLOBAL SYNCHRONOUS CONDENSER MARKET, BY REGION, 2023-2032 (USD MILLION) 54

TABLE 9 NORTH AMERICA: SYNCHRONOUS CONDENSER MARKET, BY COUNTRY, 2023-2032 (USD MILLION) 55

TABLE 10 NORTH AMERICA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032

(USD MILLION) 55

TABLE 11 NORTH AMERICA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING,

2023-2032 (USD MILLION) 56

TABLE 12 NORTH AMERICA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 56

TABLE 13 NORTH AMERICA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032

(USD MILLION) 56

TABLE 14 NORTH AMERICA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 57

TABLE 15 US: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 57

TABLE 16 US: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032 (USD MILLION) 58

TABLE 17 US: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 58

TABLE 18 US: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 58

TABLE 19 US: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 59

TABLE 20 CANADA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 59

TABLE 21 CANADA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032

(USD MILLION) 60

TABLE 22 CANADA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 60

TABLE 23 CANADA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 60

TABLE 24 CANADA: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 61

TABLE 25 MEXICO: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 61

TABLE 26 MEXICO: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032

(USD MILLION) 61

TABLE 27 MEXICO: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 62

TABLE 28 MEXICO: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 62

TABLE 29 MEXICO: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 62

TABLE 30 EUROPE: SYNCHRONOUS CONDENSER MARKET, BY COUNTRY, 2023-2032 (USD MILLION) 63

TABLE 31 EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 63

TABLE 32 EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032

(USD MILLION) 64

TABLE 33 EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 64

TABLE 34 EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 64

TABLE 35 EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 65

TABLE 36 UK: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 65

TABLE 37 UK: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032 (USD MILLION) 66

TABLE 38 UK: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 66

TABLE 39 UK: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 66

TABLE 40 UK: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 67

TABLE 41 GERMANY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 67

TABLE 42 GERMANY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032

(USD MILLION) 68

TABLE 43 GERMANY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 68

TABLE 44 GERMANY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 68

TABLE 45 GERMANY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 69

TABLE 46 ITALY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032 (USD MILLION) 69

TABLE 47 ITALY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING, 2023-2032

(USD MILLION) 70

TABLE 48 ITALY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY TYPE, 2023-2032 (USD MILLION) 70

TABLE 49 ITALY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY STARTING METHOD, 2023-2032 (USD MILLION) 70

TABLE 50 ITALY: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY END USE, 2023-2032 (USD MILLION) 71

TABLE 51 REST OF EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY COOLING TYPE, 2023-2032

(USD MILLION) 71

TABLE 52 REST OF EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATES & FORECAST, BY REACTIVE POWER RATING,

2023-2032 (USD MILLION) 71

TABLE 53 REST OF EUROPE: SYNCHRONOUS CONDENSER MARKET ESTIMATE

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