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Asia Solid State Transformer (SST) Market

  • Report Code: SO 1001
  • Publish Date: Upcoming
  
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The Solid State (Smart) Transformer market is currently in an introductory phase, but in a couple of years, it is expected to experience high growth due to its advantages. Solid state transformer has a capability to operate at higher frequency range. Its physical size and weight ratio to the legacy transformer is more than 1:100. The new solid state transformers are quite flexible. They use diodes and transistors and other semiconductor-based devices (power electronics); which unlike the transistors used in computer chips, are engineered for handling high power levels and happen to be fast switching. In response to signals from home or utility, they can change the voltage and other characteristics of the power they generate. They can put out either DC or AC power, or take in DC and AC power from wind turbines and solar panels and change the frequency and voltage to what is needed for the grid. They have processors and communications’ hardware built in, thereby allowing them to communicate with utility operators, the other smart transformers, and consumers.

 

Major Players-

The major companies in smart sensor market are ABB (Switzerland), Siemens AG (Germany), Schneider Electric SA (France), Alstom (France), Avago Technologies Limited (U.S.), Bombardier Inc (Canada) ,Cooper power systems (U.S.), Mitsubishi electric Corporation (Japan) , CREE Inc (U.S.) , Infineon Technologies (Germany), STMicroelectronics (U.S.), SPX Transformers (U.S.), GE (U.S.), Duke energy (U.S.), Plasmatechnics Inc. (U.S.), Selco (U.S.), Varentec (U.S.), and Gridco Systems (U.S.).

 

Strong growth in APAC Region:

APAC region is expected to contribute the market share of $118.63 million in 2014 which is 11.19% of overall global Solid State Transformer market. APAC region is expected to grow upto $881.87 million by 2018 at a CAGR of 65.12%.

 

On the basis of Products:

  • Broadly defining conventional transformers and their types
  • Solid sate transformers are explained with their comparison with the traditional transformers.

 

On the basis of Application:

  • Power grid
  • Traction locomotives,
  • Electric vehicle charging stations and others.

 

On the basis of Components:

  • Converters
  • Switches
  • High frequency transformers drives and others

 

Key Insights:

  • Allowing bidirectional flow of power
  • Power loss reduction

 

Key Developments:

  • Introduction of Solid State transformer in Civil and Military aviation application.
  • High Power transmission and Traditional transformer.

 

Customization Options:

Along with the market data, you can also customize MMM assessments that meet your company’s specific needs. Customize to get comprehensive industry standard and deep dive analysis of the following parameters:

Product Analysis

  • Product Matrix which provides comparison of product portfolio of each company mapped at country as well as  sub segment level
  • Segment wise and Country wise analysis of usage of products at end user level

 

Technological Data

  • Region wise end-user Adoption rate analysis of the technology
  • Emerging New technology (company and country wise)
  • Technology Matrix which gives a detailed comparison of technologies mapped at country and sub segment level

 

Data from key players

  • Key revenue pockets for the manufacturing firms
  • Opinion of different firm  about different upcoming market and trends
  • Qualitative inputs on macro-economic indicators, mergers and acquisition

 

Component Analysis

  • In depth trend analysis of raw materials in competitive scenario
  • Raw material/ Component Matrix which gives a detailed comparison of Raw material/ Component portfolio of each company mapped at country level

 

 

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1 Introduction
1.1 Objective of the study
1.2 Market Definitions
1.3 Market Segmentation & Aspects Covered
1.4 Research Methodology
1.4.1 Assumptions (Market Size, Forecast, etc)
2 Executive Summary
3 Market Overview
4 Solid State Transformer (SST)-Asia, By Applications
4.1 Split By Geography
4.1 Solid State Transformer (SST)-China by Applications
4.1 Solid State Transformer (SST)-Japan by Applications
4.2 Solid State Transformer (SST)-Asia-Smart Grid Technology
4.2.1 Solid State Transformer (SST)-Asia-Smart Grid Technology, By Geographies
4.2.1.1 Solid State Transformer (SST)-China-Smart Grid Technology
4.2.1.2 Solid State Transformer (SST)-Japan-Smart Grid Technology
4.3 Solid State Transformer (SST)-Asia-EVCS
4.3.1 Solid State Transformer (SST)-Asia-EVCS, By Geographies
4.3.1.1 Solid State Transformer (SST)-China-EVCS
4.3.1.2 Solid State Transformer (SST)-Japan-EVCS
4.4 Solid State Transformer (SST)-Asia-High speed trains
4.4.1 Solid State Transformer (SST)-Asia-High speed trains, By Geographies
4.4.1.1 Solid State Transformer (SST)-China-High speed trains
4.4.1.2 Solid State Transformer (SST)-Japan-High speed trains
4.5 Solid State Transformer (SST)-Asia-EMU
4.5.1 Solid State Transformer (SST)-Asia-EMU, By Geographies
4.5.1.1 Solid State Transformer (SST)-China-EMU
4.5.1.2 Solid State Transformer (SST)-Japan-EMU
4.6 Solid State Transformer (SST)-Asia-Electric Locomotive
4.6.1 Solid State Transformer (SST)-Asia-Electric Locomotive, By Geographies
4.6.1.1 Solid State Transformer (SST)-China-Electric Locomotive
4.6.1.2 Solid State Transformer (SST)-Japan-Electric Locomotive
5 Solid State Transformer (SST)-Asia, By Geographies
5.1 Solid State Transformer (SST)-China
5.1.1 Solid State Transformer (SST)-China, By Applications
5.1.1.1 Solid State Transformer (SST)-China-Smart Grid Technology
5.1.1.2 Solid State Transformer (SST)-China-EVCS
5.1.1.3 Solid State Transformer (SST)-China-High speed trains
5.1.1.4 Solid State Transformer (SST)-China-EMU
5.1.1.5 Solid State Transformer (SST)-China-Electric Locomotive
5.1.2 Solid State Transformer (SST)-China, By Companies
5.1.2.1 Solid State Transformer (SST)-China-Siemens AG
5.1.2.2 Solid State Transformer (SST)-China-Alstom
5.1.2.3 Solid State Transformer (SST)-China-ABB LTD
5.2 Solid State Transformer (SST)-Japan
5.2.1 Solid State Transformer (SST)-Japan, By Applications
5.2.1.1 Solid State Transformer (SST)-Japan-Smart Grid Technology
5.2.1.2 Solid State Transformer (SST)-Japan-EVCS
5.2.1.3 Solid State Transformer (SST)-Japan-High speed trains
5.2.1.4 Solid State Transformer (SST)-Japan-EMU
5.2.1.5 Solid State Transformer (SST)-Japan-Electric Locomotive
5.2.2 Solid State Transformer (SST)-Japan, By Companies
5.2.2.1 Solid State Transformer (SST)-Japan-Siemens AG
5.2.2.2 Solid State Transformer (SST)-Japan-Alstom
5.2.2.3 Solid State Transformer (SST)-Japan-ABB LTD
6 Solid State Transformer (SST)-Asia, By Companies
6.1 Competitive landscape
6.2 Split By Geography
6.2 Solid State Transformer (SST)-China by Companies
6.1 Solid State Transformer (SST)-Japan by Companies
6.3 Solid State Transformer (SST)-Asia-Siemens AG
6.3.1 Solid State Transformer (SST)-Asia-Siemens AG, By Geographies
6.3.1.1 Solid State Transformer (SST)-China-Siemens AG
6.3.1.2 Solid State Transformer (SST)-Japan-Siemens AG
6.4 Solid State Transformer (SST)-Asia-Alstom
6.4.1 Solid State Transformer (SST)-Asia-Alstom, By Geographies
6.4.1.1 Solid State Transformer (SST)-China-Alstom
6.4.1.2 Solid State Transformer (SST)-Japan-Alstom
6.5 Solid State Transformer (SST)-Asia-ABB LTD
6.5.1 Solid State Transformer (SST)-Asia-ABB LTD, By Geographies
6.5.1.1 Solid State Transformer (SST)-China-ABB LTD
6.5.1.2 Solid State Transformer (SST)-Japan-ABB LTD
6.6 Solid State Transformer (SST)-Asia-General Electric
6.7 Solid State Transformer (SST)-Asia-Mitsubishi Electric

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