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Commercial Standby Generator Sets Market Report

RA03672

Commercial Standby Generator Sets Market, by Complexity (Diesel, Natural Gas, Others), Waste Heat Source (<75 kVA, 75-375 kVA, 375-750 kVA, >750 kVA), Process (Telecom, Healthcare, Data Centers, Educational Institutions, Government Centers, Hospitality, Retail Sales, Agriculture, Aquaculture, Others): Global Opportunity Analysis and Industry Forecast, 2020-2027

RA03672

Pages: 460

Mar 2023

The global commercial standby generator sets market is estimated to surpass $5,656.1 million by 2027, exhibiting a CAGR of 7.2% from 2020 to 2027.

This report provides detailed insights on the present position and future perspective of the industry by deeply analyzing key factors of the market including major segments and regions, market drivers and restraints, rewarding investment opportunities, major players, and competitive outlook.

The report also furnishes the significant forces that are impacting market growth. Moreover, the report provides Porter’s Five Forces analysis which reveals the forte of prevailing players and the condition of the market in terms of growth and future opportunities. Furthermore, the report offers clear insights on the market size and scope by analyzing the global commercial standby generator sets market across different segments and sub-segments. The report offers detailed insights on the regional market condition of these segments and each segment is meticulously analyzed at regional as well as country level to get a broader scenario of the global commercial standby generator sets market. The report divides the global commercial standby generator sets market into four key regions including North America, Europe, Asia-Pacific, and LAMEA which are further segmented into major countries to cover the commercial standby generator sets market lookout in respective areas.

Additionally, competitive landscape of the global commercial standby generator sets market is deliberated in the report. Key players active in the global commercial standby generator sets market are also evaluated to understand their position in the global market. The report also provides information on product portfolio, company initiatives, winning business strategies, novel developments, and financial position of these players.

Research Methodology

We claim to offer our clients with reliable research and analysis garnered from various industry parameters and inputs such as recent trends, interview with participants of the industry, trustworthy sources of information & statistics, and regional acumen. Our expert market analysts have formulated this report by keenly scrutinizing every aspect of the market. Moreover, various top research and analysis approaches and tools have been used to draft this report with fine points, quality, and precision.

Various activities such as detailed deliberations and interviews with various leading investors and market professionals have been performed to collate every detail as well as driving forces of the global market. Both primary as well as secondary research techniques have been implemented for capturing detailed market predictions and forecasts. A huge variety of industry related documents such as industry releases, product type literatures, yearly reports, and others have been keenly studied for obtaining a clearer picture of the global commercial standby generator sets market scenario. Moreover, certified and renowned resources such as independent studies, medical journals, technical journals, releases by trade association, materials published by government & regulatory authorities, and others have been reviewed to better understand the global market condition.

KEY MARKET BENEFITS

  • This report caters detailed analysis, information, and valid inputs from industry specialists & contributors across the value chain
  • The report offers an inclusive breakdown along with the latest trends and developments in the market during the forecast period from 2019 to 2027, thus highlighting upcoming investment opportunities and future scope of the market
  • The report highlights all the major factors and events in the market from 2019 to 2027 and reveals the qualitative impact of other forces on market segments and geographies
  • The report delivers reliable market forecasts and size by deeply scrutinizing key segments, driving and restraining factors, and recent & key developments by major players in the commercial standby generator sets market
  • The report presents winning growth tactics and plans adopted by the key industry players for understanding the competitive landscape of the global commercial standby generator sets market

KEY MARKET SEGMENTS

The report deliberates the following segments of the market:

  • Complexity: Diesel, Natural Gas, Others
  • Waste Heat Source: <75 kVA, 75-375 kVA, 375-750 kVA, >750 kVA
  • Process: Telecom, Healthcare, Data Centers, Educational Institutions, Government Centers, Hospitality, Retail Sales, Agriculture, Aquaculture, Others

Region:

The global commercial standby generator sets market was evaluated across North America, Europe, Asia Pacific, and LAMEA.

The above-mentioned regions are further dived in countries as follows:

  • North America
    • U.S.
    • Canada
    • Mexico
  • Europe
    • Germany
    • UK
    • France
    • Spain
    • Italy
    • Rest of Europe
  • Asia-Pacific
    • Japan
    • China
    • India
    • Australia
    • South Korea
    • Rest of Asia-Pacific
  • LAMEA
    • Brazil
    • Argentina
    • Saudi Arabia
    • South Africa
    • UAE
    • Rest of LAMEA

 

KEY MARKET PLAYERS

The report provides in-depth insights on the key players operating in the global commercial standby generator sets market. The major players enlisted in the report include C&S Electric, Ashok Leyland, Yamaha, Cummins.

The report profiles several facts of all these key players as follows:

    1. Cummins

    2. Kirloskar

    3. Briggs & Stratton

    4. SDMO Industries

    5. Generac

    6. Yamaha

    7. Powerica

    8. Escorts Group

    9. Himoinsa

    10. Caterpillar

    11. Ingersoll-Rand

    12. Atlas Copco

    13. C&S Electric

    14. JCB

    15. Mahindra Powerol

    16. MTU Onsite Energy

    17. John Deere

    18. Ashok Leyland

    19. Mitsubishi and W

  • 1. RESEARCH METHODOLOGY

    • 1.1. Desk Research

    • 1.2. Real time insights and validation

    • 1.3. Forecast model

    • 1.4. Assumptions and forecast parameters

    • 1.5. Market size estimation

      • 1.5.1. Top-down approach

      • 1.5.2. Bottom-up approach

  • 2. REPORT SCOPE

    • 2.1. Market definition

    • 2.2. Key objectives of the study

    • 2.3. Report overview

    • 2.4. Market segmentation

    • 2.5. Overview of the impact of COVID-19 on Global Commercial Standby Generator Sets Market

  • 3. EXECUTIVE SUMMARY

  • 4. MARKET OVERVIEW

    • 4.1. Introduction

    • 4.2. Growth impact forces

      • 4.2.1. Drivers

      • 4.2.2. Restraints

      • 4.2.3. Opportunities

    • 4.3. Market value chain analysis

      • 4.3.1. List of raw material suppliers

      • 4.3.2. List of manufacturers

      • 4.3.3. List of distributors

    • 4.4. Innovation & sustainability matrices

      • 4.4.1. Technology matrix

      • 4.4.2. Regulatory matrix

    • 4.5. Porter’s five forces analysis

      • 4.5.1. Bargaining power of suppliers

      • 4.5.2. Bargaining power of consumers

      • 4.5.3. Threat of substitutes

      • 4.5.4. Threat of new entrants

      • 4.5.5. Competitive rivalry intensity

    • 4.6. PESTLE analysis

      • 4.6.1. Political

      • 4.6.2. Economical

      • 4.6.3. Social

      • 4.6.4. Technological

      • 4.6.5. Environmental

    • 4.7. Impact of COVID-19 on Commercial Standby Generator Sets Market

      • 4.7.1. Pre-covid market scenario

      • 4.7.2. Post-covid market scenario

  • 5. Commercial Standby Generator Sets Market, By Complexity

    • 5.1. Overview

    • 5.2 Diesel

      • 5.2.1 Definition, key trends, growth factors, and opportunities

      • 5.2.2 Market size analysis, by region, 2020-2027

      • 5.2.3 Market share analysis, by country, 2020-2027

    • 5.3 Natural Gas

      • 5.3.1 Definition, key trends, growth factors, and opportunities

      • 5.3.2 Market size analysis, by region, 2020-2027

      • 5.3.3 Market share analysis, by country, 2020-2027

    • 5.4 Others

      • 5.4.1 Definition, key trends, growth factors, and opportunities

      • 5.4.2 Market size analysis, by region, 2020-2027

      • 5.4.3 Market share analysis, by country, 2020-2027

    • 5.5 Research Dive Exclusive Insights

      • 5.5.1 Market attractiveness

      • 5.5.2 Competition heatmap

  • 6. Commercial Standby Generator Sets Market, By Waste Heat Source

    • 6.1. Overview

    • 6.2 <75 kVA

      • 6.2.1 Definition, key trends, growth factors, and opportunities

      • 6.2.2 Market size analysis, by region, 2020-2027

      • 6.2.3 Market share analysis, by country, 2020-2027

    • 6.3 75-375 kVA

      • 6.3.1 Definition, key trends, growth factors, and opportunities

      • 6.3.2 Market size analysis, by region, 2020-2027

      • 6.3.3 Market share analysis, by country, 2020-2027

    • 6.4 375-750 kVA

      • 6.4.1 Definition, key trends, growth factors, and opportunities

      • 6.4.2 Market size analysis, by region, 2020-2027

      • 6.4.3 Market share analysis, by country, 2020-2027

    • 6.5 >750 kVA

      • 6.5.1 Definition, key trends, growth factors, and opportunities

      • 6.5.2 Market size analysis, by region, 2020-2027

      • 6.5.3 Market share analysis, by country, 2020-2027

    • 6.6 Research Dive Exclusive Insights

      • 6.6.1 Market attractiveness

      • 6.6.2 Competition heatmap

  • 7. Commercial Standby Generator Sets Market, By Process

    • 7.1. Overview

    • 7.2 Telecom

      • 7.2.1 Definition, key trends, growth factors, and opportunities

      • 7.2.2 Market size analysis, by region, 2020-2027

      • 7.2.3 Market share analysis, by country, 2020-2027

    • 7.3 Healthcare

      • 7.3.1 Definition, key trends, growth factors, and opportunities

      • 7.3.2 Market size analysis, by region, 2020-2027

      • 7.3.3 Market share analysis, by country, 2020-2027

    • 7.4 Data Centers

      • 7.4.1 Definition, key trends, growth factors, and opportunities

      • 7.4.2 Market size analysis, by region, 2020-2027

      • 7.4.3 Market share analysis, by country, 2020-2027

    • 7.5 Educational Institutions

      • 7.5.1 Definition, key trends, growth factors, and opportunities

      • 7.5.2 Market size analysis, by region, 2020-2027

      • 7.5.3 Market share analysis, by country, 2020-2027

    • 7.6 Government Centers

      • 7.6.1 Definition, key trends, growth factors, and opportunities

      • 7.6.2 Market size analysis, by region, 2020-2027

      • 7.6.3 Market share analysis, by country, 2020-2027

    • 7.7 Hospitality

      • 7.7.1 Definition, key trends, growth factors, and opportunities

      • 7.7.2 Market size analysis, by region, 2020-2027

      • 7.7.3 Market share analysis, by country, 2020-2027

    • 7.8 Retail Sales

      • 7.8.1 Definition, key trends, growth factors, and opportunities

      • 7.8.2 Market size analysis, by region, 2020-2027

      • 7.8.3 Market share analysis, by country, 2020-2027

    • 7.9 Agriculture

      • 7.9.1 Definition, key trends, growth factors, and opportunities

      • 7.9.2 Market size analysis, by region, 2020-2027

      • 7.9.3 Market share analysis, by country, 2020-2027

    • 7.10 Aquaculture

      • 7.10.1 Definition, key trends, growth factors, and opportunities

      • 7.10.2 Market size analysis, by region, 2020-2027

      • 7.10.3 Market share analysis, by country, 2020-2027

    • 7.11 Others

      • 7.11.1 Definition, key trends, growth factors, and opportunities

      • 7.11.2 Market size analysis, by region, 2020-2027

      • 7.11.3 Market share analysis, by country, 2020-2027

    • 7.12 Research Dive Exclusive Insights

      • 7.12.1 Market attractiveness

      • 7.12.2 Competition heatmap

  • 8. Commercial Standby Generator Sets Market, By Region

    • 8.1 North America

      • 8.1.1 U.S

        • 8.1.1.1 Market size analysis, By Complexity , 2020-2027

        • 8.1.1.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.1.1.3 Market size analysis, By Process , 2020-2027

      • 8.1.2 Canada

        • 8.1.2.1 Market size analysis, By Complexity , 2020-2027

        • 8.1.2.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.1.2.3 Market size analysis, By Process , 2020-2027

      • 8.1.3 Mexico

        • 8.1.3.1 Market size analysis, By Complexity , 2020-2027

        • 8.1.3.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.1.3.3 Market size analysis, By Process , 2020-2027

      • 8.1.4 Research Dive Exclusive Insights

        • 8.1.4.1 Market attractiveness

        • 8.1.4.2 Competition heatmap

    • 8.2 Europe

      • 8.2.1 Germany

        • 8.2.1.1 Market size analysis, By Complexity , 2020-2027

        • 8.2.1.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.2.1.3 Market size analysis, By Process , 2020-2027

      • 8.2.2 UK

        • 8.2.2.1 Market size analysis, By Complexity , 2020-2027

        • 8.2.2.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.2.2.3 Market size analysis, By Process , 2020-2027

      • 8.2.3 France

        • 8.2.3.1 Market size analysis, By Complexity , 2020-2027

        • 8.2.3.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.2.3.3 Market size analysis, By Process , 2020-2027

      • 8.2.4 Spain

        • 8.2.4.1 Market size analysis, By Complexity , 2020-2027

        • 8.2.4.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.2.4.3 Market size analysis, By Process , 2020-2027

      • 8.2.5 Italy

        • 8.2.5.1 Market size analysis, By Complexity , 2020-2027

        • 8.2.5.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.2.5.3 Market size analysis, By Process , 2020-2027

      • 8.2.6 Rest of Europe

        • 8.2.6.1 Market size analysis, By Complexity , 2020-2027

        • 8.2.6.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.2.6.3 Market size analysis, By Process , 2020-2027

      • 8.2.7 Research Dive Exclusive Insights

        • 8.2.7.1 Market attractiveness

        • 8.2.7.2 Competition heatmap

    • 8.3 Asia-Pacific

      • 8.3.1 China

        • 8.3.1.1 Market size analysis, By Complexity , 2020-2027

        • 8.3.1.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.3.1.3 Market size analysis, By Process , 2020-2027

      • 8.3.2 Japan

        • 8.3.2.1 Market size analysis, By Complexity , 2020-2027

        • 8.3.2.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.3.2.3 Market size analysis, By Process , 2020-2027

      • 8.3.3 India

        • 8.3.3.1 Market size analysis, By Complexity , 2020-2027

        • 8.3.3.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.3.3.3 Market size analysis, By Process , 2020-2027

      • 8.3.4 Australia

        • 8.3.4.1 Market size analysis, By Complexity , 2020-2027

        • 8.3.4.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.3.4.3 Market size analysis, By Process , 2020-2027

      • 8.3.5 South Korea

        • 8.3.5.1 Market size analysis, By Complexity , 2020-2027

        • 8.3.5.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.3.5.3 Market size analysis, By Process , 2020-2027

      • 8.3.6 Rest of Asia-Pacific

        • 8.3.6.1 Market size analysis, By Complexity , 2020-2027

        • 8.3.6.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.3.6.3 Market size analysis, By Process , 2020-2027

      • 8.3.7 Research Dive Exclusive Insights

        • 8.3.7.1 Market attractiveness

        • 8.3.7.2 Competition heatmap

    • 8.4 LAMEA

      • 8.4.1 Brazil

        • 8.4.1.1 Market size analysis, By Complexity , 2020-2027

        • 8.4.1.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.4.1.3 Market size analysis, By Process , 2020-2027

      • 8.4.2 Saudi Arabia

        • 8.4.2.1 Market size analysis, By Complexity , 2020-2027

        • 8.4.2.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.4.2.3 Market size analysis, By Process , 2020-2027

      • 8.4.3 UAE

        • 8.4.3.1 Market size analysis, By Complexity , 2020-2027

        • 8.4.3.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.4.3.3 Market size analysis, By Process , 2020-2027

      • 8.4.4 South Africa

        • 8.4.4.1 Market size analysis, By Complexity , 2020-2027

        • 8.4.4.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.4.4.3 Market size analysis, By Process , 2020-2027

      • 8.4.5 Rest of LAMEA

        • 8.4.5.1 Market size analysis, By Complexity , 2020-2027

        • 8.4.5.2 Market size analysis, By Waste Heat Source, 2020-2027

        • 8.4.5.3 Market size analysis, By Process , 2020-2027

      • 8.4.6 Research Dive Exclusive Insights

        • 8.4.6.1 Market attractiveness

        • 8.4.6.2 Competition heatmap

  • 9. Competitive Landscape

    • 9.1 Top winning strategies, 2020-2027

      • 9.1.1 By strategy

      • 9.1.2 By year

    • 9.2 Strategic overview

    • 9.3 Market share analysis, 2020-2027

  • 10. Company Profiles

    • 10.1 Cummins

      • 10.1.1 Overview

      • 10.1.2 Business segments

      • 10.1.3 Product portfolio

      • 10.1.4 Financial performance

      • 10.1.5 Recent developments

      • 10.1.6 SWOT analysis

    • 10.2 Kirloskar

      • 10.2.1 Overview

      • 10.2.2 Business segments

      • 10.2.3 Product portfolio

      • 10.2.4 Financial performance

      • 10.2.5 Recent developments

      • 10.2.6 SWOT analysis

    • 10.3 Briggs & Stratton

      • 10.3.1 Overview

      • 10.3.2 Business segments

      • 10.3.3 Product portfolio

      • 10.3.4 Financial performance

      • 10.3.5 Recent developments

      • 10.3.6 SWOT analysis

    • 10.4 SDMO Industries

      • 10.4.1 Overview

      • 10.4.2 Business segments

      • 10.4.3 Product portfolio

      • 10.4.4 Financial performance

      • 10.4.5 Recent developments

      • 10.4.6 SWOT analysis

    • 10.5 Generac

      • 10.5.1 Overview

      • 10.5.2 Business segments

      • 10.5.3 Product portfolio

      • 10.5.4 Financial performance

      • 10.5.5 Recent developments

      • 10.5.6 SWOT analysis

    • 10.6 Yamaha

      • 10.6.1 Overview

      • 10.6.2 Business segments

      • 10.6.3 Product portfolio

      • 10.6.4 Financial performance

      • 10.6.5 Recent developments

      • 10.6.6 SWOT analysis

    • 10.7 Powerica

      • 10.7.1 Overview

      • 10.7.2 Business segments

      • 10.7.3 Product portfolio

      • 10.7.4 Financial performance

      • 10.7.5 Recent developments

      • 10.7.6 SWOT analysis

    • 10.8 Escorts Group

      • 10.8.1 Overview

      • 10.8.2 Business segments

      • 10.8.3 Product portfolio

      • 10.8.4 Financial performance

      • 10.8.5 Recent developments

      • 10.8.6 SWOT analysis

    • 10.9 Himoinsa

      • 10.9.1 Overview

      • 10.9.2 Business segments

      • 10.9.3 Product portfolio

      • 10.9.4 Financial performance

      • 10.9.5 Recent developments

      • 10.9.6 SWOT analysis

    • 10.10 Caterpillar

      • 10.10.1 Overview

      • 10.10.2 Business segments

      • 10.10.3 Product portfolio

      • 10.10.4 Financial performance

      • 10.10.5 Recent developments

      • 10.10.6 SWOT analysis

    • 10.11 Ingersoll-Rand

      • 10.11.1 Overview

      • 10.11.2 Business segments

      • 10.11.3 Product portfolio

      • 10.11.4 Financial performance

      • 10.11.5 Recent developments

      • 10.11.6 SWOT analysis

    • 10.12 Atlas Copco

      • 10.12.1 Overview

      • 10.12.2 Business segments

      • 10.12.3 Product portfolio

      • 10.12.4 Financial performance

      • 10.12.5 Recent developments

      • 10.12.6 SWOT analysis

    • 10.13 C&S Electric

      • 10.13.1 Overview

      • 10.13.2 Business segments

      • 10.13.3 Product portfolio

      • 10.13.4 Financial performance

      • 10.13.5 Recent developments

      • 10.13.6 SWOT analysis

    • 10.14 JCB

      • 10.14.1 Overview

      • 10.14.2 Business segments

      • 10.14.3 Product portfolio

      • 10.14.4 Financial performance

      • 10.14.5 Recent developments

      • 10.14.6 SWOT analysis

    • 10.15 Mahindra Powerol

      • 10.15.1 Overview

      • 10.15.2 Business segments

      • 10.15.3 Product portfolio

      • 10.15.4 Financial performance

      • 10.15.5 Recent developments

      • 10.15.6 SWOT analysis

    • 10.16 MTU Onsite Energy

      • 10.16.1 Overview

      • 10.16.2 Business segments

      • 10.16.3 Product portfolio

      • 10.16.4 Financial performance

      • 10.16.5 Recent developments

      • 10.16.6 SWOT analysis

    • 10.17 John Deere

      • 10.17.1 Overview

      • 10.17.2 Business segments

      • 10.17.3 Product portfolio

      • 10.17.4 Financial performance

      • 10.17.5 Recent developments

      • 10.17.6 SWOT analysis

    • 10.18 Ashok Leyland

      • 10.18.1 Overview

      • 10.18.2 Business segments

      • 10.18.3 Product portfolio

      • 10.18.4 Financial performance

      • 10.18.5 Recent developments

      • 10.18.6 SWOT analysis

    • 10.19 Mitsubishi and Wärtsilä

      • 10.19.1 Overview

      • 10.19.2 Business segments

      • 10.19.3 Product portfolio

      • 10.19.4 Financial performance

      • 10.19.5 Recent developments

      • 10.19.6 SWOT analysis

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