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Power electronics market
1. Power Electronics Market Set to RegisterHealthy CAGR and Competitive Outlook to 2027
Market Research Engine has published a new report titled as “Power Electronics Market by
Material, Device Type (Discrete, Module, and IC), Application, Vertical (ICT, Consumer
Electronics, Energy and Power, Industrial, Automotive, and Aerospace & Defense), and
Geography - Global Forecast to 2021-2026-Executive Data Report.”
Power electronics is a solid-state circuitry device that converts and controls electrical power
from the source to the load in an efficient and convenient manner. It's wont to control the
fluctuated power from one device to other power devices like diodes, transistors, and thyristors.
It enables power management to support energy conservation in numerous applications like
industrial systems, consumer electronic, and electric vehicles. Additionally, power electronics
can control the flow of energy in unidirectional also as bidirectional manner, depending upon the
usage.
Browse Full Report: https://www.marketresearchengine.com/power-electronics-market-
size
The global power electronics market is expected to cross more than US$ 44 billion by 2026, at a
CAGR of 4.6%.
Government push from various economies has amplified the adoption of renewable power
sources across the economic and residential sector and is driving the market revenue. To control
the flow of energy, the switching electronic circuits are used. These switching electronic circuits
are called power electronics. Power electronics also are considered for the conversion of
electrical power. Such conversions are performed by semiconductor devices like diodes,
transistors and thyristors etc. Power electronics devices have several advantages including
optimum forward and reverse backing capabilities, simplified circuits, compact designs etc.
Additionally, power electronics find its applications in connection of renewable energy resources
to power grids, transport in electric trains, motor drives and lighting. The main use of power
electronics devices is heat sinking also as soft starting of an equipment deploying power
electronic devices.
On the basis of Device Type, the global Power Electronics market is segregated as, Power
Discrete, Power Modules and Power ICs. Global Power Electronics market is segmented based
on the Material as, Silicon, Silicon Carbide, Gallium Nitride, Sapphire and Others. On the basis
of Application, the global Power Electronics market is segregated as, Drives, UPS, Rail Traction,
Transportation, Renewable and Others. Global Power Electronics market is segmented based on
the Vertical as, ICT, Consumer Electronics, Energy & Power, Industrial, Automotive, Aerospace
& Defense and Others
Global Power Electronics market report covers various regions including North America,
Europe, Asia Pacific, and Rest of World. The regional Power Electronics market is further
bifurcated for major countries including U.S., Canada, Germany, UK, France, Italy, China, India,
Japan, Brazil, South Africa and others.
2. ResearchMethodology:
To calculate the market size, the report considers the revenue generated from the sales of Power
Electronics market manufacturers. The revenue generated from the sales of Power Electronics
manufacturer has been calculated through primary and secondary research.
The market size estimation also considered leading players revenues as part of triangulation the
key players considered are Infineon Technologies (Germany), Texas Instruments (US), On
Semiconductor (US), STMicroelectronics (Switzerland), Mitsubishi Electric (Japan), Fuji
Electric (Japan), Renesas Electronics (Japan), Toshiba (Japan), NXP Semiconductors (The
Netherland), Vishay Intertechnology (US), Maxim Integrated Products (US), SEMIKRON
(Germany), ABB (Switzerland), Hitachi (Japan), Analog Devices (US), ROHM Semiconductor
(Japan), Microsemi (US), Littelfuse (US), Microchip Technology (US), and Danfoss (Denmark).
Availability Services among others operating in the Power Electronics market across the globe
identified through secondary research and a corresponding detailed analysis of the top vendors in
the market. The market size calculation also includes types of segmentation determined using
secondary sources and verified through primary sources.
The Power Electronics Market has been segmented as below:
Power Electronics Market, By Device Type
Power Discrete
Power Modules
Power ICs
Power Electronics Market, By Material
Silicon
Silicon Carbide
Gallium Nitride
Sapphire
Others
Power Electronics Market, By Voltage
Low Voltage (up to 1 KV)
Medium Voltage (1.1 to 2.0 KV)
High Voltage (above 2.0 KV)
Power Electronics Market, By Application
Power Management
Power Generation & Storage
Sensing & Measurement
Drives
3. UPS
Rail Traction
Transportation
Renewable
Others
Power Electronics Market, By Vertical
ICT
Consumer Electronics
Energy & Power
Industrial
Automotive
Aerospace & Defense
Others
Power Electronics Market, By Region
North America
Europe
Asia Pacific
Rest of World
Report scope:
The global Power Electronics market report covers detailed study with the underlying
influencing factors for the variations in the industry growth trends. The report scope includes
market analysis on regional as well as country level.
Reasons to Buy this Report:
Gain comprehensive insights on the industry trends
Identify industry opportunities and key growth segments
Obtain complete market study on the Power Electronics market
Request Sample Report from here: https://www.marketresearchengine.com/power-electronics-
market-size
Table of Contents:
1. Introduction
1.1. Key Points
1.2. Report Description
1.3. Markets Covered
1.4. Stakeholders
2. ResearchMethodology
4. 2.1. Research Scope
2.2. Market Research Process
2.3. Research Data Analysis
2.3.1. Secondary Research
2.3.2. Primary Research
2.3.3. Models for Estimation
2.4. Market Size Estimation
2.4.1. Bottom-Up Approach
2.4.2. Top-Down Approach
3. Executive Summary
4. Power Electronics Market, By Device Type
4.1. Key Points
4.2. Power Discrete
4.2.1. Market Overview
4.2.2. Market Size & Forecast
4.3. Power Modules
4.3.1. Market Overview
4.3.2. Market Size & Forecast
4.4. Power ICs
4.4.1. Market Overview
4.4.2. Market Size & Forecast
5. Power Electronics Market, By Material
5.1. Key Points
5.2. Silicon
5.2.1. Market Overview
5.2.2. Market Size & Forecast
5.3. Silicon Carbide
5.3.1. Market Overview
5.3.2. Market Size & Forecast
5.4. Gallium Nitride
5.4.1. Market Overview
5.4.2. Market Size & Forecast
5.5. Sapphire
5.5.1. Market Overview
5.5.2. Market Size & Forecast
5.6. Others
5.6.1. Market Overview
5.6.2. Market Size & Forecast
6. Power Electronics Market, By Application
6.1. Key Points
6. 8.3. Consumer Electronics
8.3.1. Market Overview
8.3.2. Market Size & Forecast
8.4. Energy & Power
8.4.1. Market Overview
8.4.2. Market Size & Forecast
8.5. Industrial
8.5.1. Market Overview
8.5.2. Market Size & Forecast
8.6. Automotive
8.6.1. Market Overview
8.6.2. Market Size & Forecast
8.7. Aerospace & Defense
8.7.1. Market Overview
8.7.2. Market Size & Forecast
8.8. Others
8.8.1. Market Overview
8.8.2. Market Size & Forecast
9. Power Electronics Market, By Region
9.1. North America
9.1.1. North America Industrial Floor Coating, By Device Type
9.1.2. North America Industrial Floor Coating, By Component
9.1.3. North America Industrial Floor Coating, By Application
9.1.4. North America Industrial Floor Coating, By Voltage
9.1.5. North America Industrial Floor Coating, By Vertical
9.1.6. By Country
9.1.6.1. U.S
9.1.6.2. Canada
9.1.6.3. Mexico
9.2. Europe
9.2.1. Europe Industrial Floor Coating, By Device Type
9.2.2. Europe Industrial Floor Coating, By Component
9.2.3. Europe Industrial Floor Coating, By Application
9.2.4. Europe Industrial Floor Coating, By Voltage
9.2.5. Europe Industrial Floor Coating, By Vertical
9.2.6. By Country
9.2.6.1. U.K
9.2.6.2. Germany
9.2.6.3. Italy
9.2.6.4. France
7. 9.2.6.5. Rest of Europe
9.3. Asia Pacific
9.3.1. Asia Pacific Industrial Floor Coating, By Device Type
9.3.2. Asia Pacific Industrial Floor Coating, By Component
9.3.3. Asia Pacific Industrial Floor Coating, By Application
9.3.4. Asia Pacific Industrial Floor Coating, By Voltage
9.3.5. Asia Pacific Industrial Floor Coating, By Vertical
9.3.6. By Country
9.3.6.1. China
9.3.6.2. Australia
9.3.6.3. Japan
9.3.6.4. South Korea
9.3.6.5. India
9.3.6.6. Rest of Asia Pacific
9.4. Rest of World
9.4.1. Rest of World Industrial Floor Coating, By Device Type
9.4.2. Rest of World Industrial Floor Coating, By Application
9.4.3. Rest of World Industrial Floor Coating, By Component
9.4.4. Rest of World Industrial Floor Coating, By Voltage
9.4.5. Rest of World Industrial Floor Coating, By Vertical
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