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What’s Driving the Power Optimizer Market Trends? | Top Key Players are SolarEdge Technologies, SMA Solar Technology AG, Tigo Energy, Huawei Technologies, Texas Instruments, ABB

07-01-2019 12:40 PM CET | Energy & Environment

Press release from: Global Market Insights, Inc.

Power Optimizer Market

Power Optimizer Market

Power Optimizer Market from residential applications is estimated to surpass an annual installation 10 million units by 2025. Net metering, FiT's and government subsidies influenced by the manufacture and integration of advanced optimizer solutions will further enhance penetration of the product. Furthermore, government schemes and rollout plans such as energy efficiency grant to favor roof-top installations in the residential sector will further augment the business outlook.

Request for a sample of this research report @ www.gminsights.com/request-sample/detail/3075

In the wake of stringent government measures subjugated to FiT's and incentive capping has led to decline in solar installations across European nations. However, through the provision of incentive grants, regulators have continuously been focused towards the integration of distributed energy storage technology besides PV installations. Similar legislative schemes imposed by the European Commission with an objective of sustainable technology integration will drive the power optimizer market.

Company profiled in this report based on Business overview, Financial data, Product landscape, Strategic outlook & SWOT analysis:

1. SolarEdge Technologies
2. SMA Solar Technology AG
3. Tigo Energy
4. Huawei Technologies
5. Maxim Integrated
6. Texas Instruments
7. ABB
8. Fronius International GmbH

Chapter 3 Global Power Optimizer Industry Insights

3.1 Industry segmentation

3.2 Industry landscape, 2014 – 2025 (USD Million)

3.3 Industry ecosystem analysis

3.3.1 Vendor Matrix

3.4 Technology & innovation landscape

3.4.1 SolarEdge

3.4.2 Tigo

3.4.3 GreenBrilliance

3.5 Regulatory Landscape

3.5.1 U.S.

3.5.1.1 U.S. Feed-in Tariff Programs

3.5.2 Brazil

3.5.2.1 Brazil Renewable Energy Targets

3.5.3 Japan

3.5.4 UK

3.5.4.1 The UK’s National Energy Efficiency Action Plan

3.5.4.2 Feed-In Tariff (FIT)

3.5.4.3 Export Feed-In Tariff (FIT)

3.5.5 Spain

3.5.5.1 Spain’s Second Renewable Energy Auction 2017

3.5.5.2 Support schemes

3.5.5.3 Policies

3.5.6 Mexico

3.5.7 Smart Inverters

3.5.7.1 Rule 21

3.5.7.1.1 Applicability

3.5.7.1.2 Overview of Tariff Provisions

3.6 Feed in Tariff landscape

3.7 Price trend analysis

3.7.1 Cost structure analysis

3.7.2 Price Learning Curve for PV technologies

3.7.3 Capital cost breakdown analysis for solar PV plant, 2018

3.8 Leading investment scenario in the solar industry, 2018 & 2017

3.8.1 India

3.8.2 China

3.8.3 Chile

3.8.4 Saudi Arabia

3.8.5 Egypt

3.8.6 Russia

3.8.7 Australia

3.9 Invested capital in RE Market, 2018

3.10 Investments across the global clean energy sector (USD Billion), 2017

3.10.1 Investments across the global clean energy sector (USD Billion)

3.10.2 Investments across the global clean energy sector, by region (USD Billion)

3.10.3 Investments across the global clean energy sector, by technology (USD Billion)

3.10.4 Investments across the global clean energy sector, by investment stage (USD Billion)

3.10.5 VC/PE investments in clean energy sector, (USD Billion)

3.10.6 Major VC/PE transactions, 2016

3.10.7 Major VC/PE transactions, 2017

3.11 Capex & Opex trend prevailing across solar PV industry

3.11.1 U.S.

3.11.1.1 Capex

3.11.1.2 Opex

3.11.2 Brazil

3.11.2.1 Capex

3.11.2.2 Opex

3.11.3 Australia

3.11.3.1 Capex

3.11.3.2 Opex

3.11.4 Indonesia

3.11.4.1 Capex

3.11.4.2 Opex

3.11.5 Mexico

3.11.5.1 Capex

3.11.5.2 Opex

3.11.6 Vietnam

3.11.6.1 Capex

3.11.6.2 Opex

3.12 LCOE trend

3.12.1 U.S.

3.12.2 Brazil

3.12.3 Australia

3.12.4 Japan

3.12.5 Indonesia

3.12.6 Mexico

3.12.7 Vietnam

3.13 Equity IRRs/financial returns of PV plants across major countries

3.13.1 U.S.

3.13.1.1 Assumptions

3.13.2 Brazil

3.13.2.1 Assumptions

3.13.3 Australia

3.13.3.1 Assumption

3.13.3.2 IRR prevailing across key region (Australia)

3.13.4 Japan

3.13.4.1 Assumption

3.14 Global average energy cost

3.15 Average Solar PV CUF/PLF trend across leading countries

3.15.1 U.S.

3.15.2 Brazil

3.15.3 Australia

3.15.4 Japan

3.16 Solar grid parity status

3.17 Key Investors across solar PV industry

3.18 Key Customer requirements

3.19 Customer group requirement

3.19.1 Residential & Commercial

3.19.2 Industrial

3.20 Entry barrier

3.21 Degree of industrial competition

3.21.1 North America

3.21.2 Europe

3.21.3 Asia Pacific

3.21.4 Middle East

3.21.5 Africa

3.21.6 Latin America

3.22 Industry impact forces

3.22.1 Growth drivers

3.22.1.1 North America & Europe

3.22.1.1.1 Positive clean energy outlook

3.22.1.1.2 Favorable regulatory inclination towards sustainable energy

3.22.1.2 Asia Pacific

3.22.1.2.1 Large-scale renewable integration

3.22.1.2.2 Growing energy demand across isolated areas

3.22.1.3 Middle East & Africa

3.22.1.3.1 Restructuring & revamping of existing electrical infrastructure

3.22.1.3.2 Large scale renewable integration prospects

3.22.1.4 Latin America

3.22.1.4.1 Integration of a sustainable energy infrastructure

3.22.2 Restraint

3.22.2.1 Availability of auxiliary technologies

3.23 Growth potential analysis

3.24 Porter’s Analysis

3.25 Competitive landscape, 2018

3.25.1 Strategy Dashboard

3.25.1.1 SolarEdge Technologies

3.25.1.2 ABB

3.25.1.3 SMA Solar Technology

3.25.1.4 Tigo Energy

3.25.1.5 igrenEnergi

3.26 PESTEL analysis

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Buck convertor market by 2025, is estimated to grow over USD 900 Million. Buck units are DC-DC power convertor that step-down voltage from input to output. The power supply technology is based on switched mode containing one element of energy storage, a capacitor and two semiconductors (diode & transistor, although for synchronous modification, new generation convertors replace diode with transistor), an inductor or a combination of two. Prominent manufacturers with R&D capabilities and technological expertise have been investing continuously to enhance product performance which in turn will boost the power optimizer market growth.

Optimizers have been characterized as an effective alternative for module level management and power monitoring, concentrating the MPPT benefits with superior operational efficiencies of string invertors. Additional features that include module shading alleviation, module mismatch resonance and under or over performance operating modules will strengthen the power optimizer market dynamics.

Eminent key players participants in power optimizer market include SolarEdge Technologies, SMA Solar Technology AG, Tigo Energy, Ampt, LLC, igrenEnergi, Inc., Huawei Technologies, Kuby Renewable Energy, Darfon, Maxim Integrated, Texas Instruments, GreenBrilliance, Ferroamp Elektronik AB, Alencon Systems LLC, ABB, and Fronius International GmbH.

Browse key industry insights spread across 575 pages with 893 market data tables & 45 figures & charts from the report, “Power Optimizer Market in detail along with the table of contents:

www.gminsights.com/industry-analysis/power-optimizer-market

About Global Market Insights
Global Market Insights, Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider; offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.

Contact Us
Arun Hegde
Corporate Sales, USA
Global Market Insights, Inc.
Phone: 1-302-846-7766
Toll Free: 1-888-689-0688
Email: sales@gminsights.com
Web: www.gminsights.com
Blog: www.industry-source.org

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