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Wireless Power Transmission Market Research Report Information By Technology (Inductive, Magnetic Resonance, Conductive, RF, Infrared), By Receiver (Smartphones, Tablets, Wearable Electronics, Notebook), and By Region (Europe, Asia-Pacific, North America, And Rest Of The World) – Market Forecast Till 2032


ID: MRFR/SEM/1725-HCR | 100 Pages | Author: Aarti Dhapte| November 2024

Wireless Power Transmission Market Segmentation


Wireless Power Transmission Technology Outlook (USD Billion, 2019-2032)




  • Inductive




  • Magnetic Resonance




  • Conductive




  • RF




  • Infrared




Wireless Power Transmission Receiver Outlook (USD Billion, 2019-2032)




  • Smartphones




  • Tablets




  • Wearable Electronics




  • Notebook




Citrus Fiber Regional Outlook (USD Billion, 2019-2032)




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







    • North America Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • North America Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • US Outlook (USD Billion, 2019-2032)




    • US Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • US Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • CANADA Outlook (USD Billion, 2019-2032)




    • CANADA Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • CANADA Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook







  • Europe Outlook (USD Billion, 2019-2032)




    • Europe Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Europe Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • Germany Outlook (USD Billion, 2019-2032)




    • Germany Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Germany Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • France Outlook (USD Billion, 2019-2032)




    • France Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • France Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook








  • UK Outlook (USD Billion, 2019-2032)




    • UK Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • UK Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • ITALY Outlook (USD Billion, 2019-2032)




    • ITALY Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • ITALY Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • SPAIN Outlook (USD Billion, 2019-2032)




    • SPAIN Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • SPAIN Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






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




    • Rest Of Europe Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Rest Of Europe Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook








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




    • Asia-Pacific Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Asia-Pacific Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • China Outlook (USD Billion, 2019-2032)




    • China Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • China Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • Japan Outlook (USD Billion, 2019-2032)




    • Japan Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Japan Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • India Outlook (USD Billion, 2019-2032)




    • India Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • India Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • Australia Outlook (USD Billion, 2019-2032)




    • Australia Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Australia Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






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




    • Rest of Asia-Pacific Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Rest of Asia-Pacific Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook








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




    • Rest of the World Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Rest of the World Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






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




    • Middle East Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Middle East Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






    • Africa Outlook (USD Billion, 2019-2032)




    • Africa Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Africa Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook






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




    • Latin America Wireless Power Transmission Technology




      • Inductive




      • Magnetic Resonance




      • Conductive




      • RF




      • Infrared






    • Latin America Wireless Power Transmission Receiver




      • Smartphones




      • Tablets




      • Wearable Electronics




      • Notebook










Research Methodology on Wireless Power Transmission Market


Introduction


Wireless power transmission (WPT) has revolutionized the way energy is transmitted across the globe. It is based on the principle of transferring energy with radio frequency signals. This process has revolutionized the way energy is consumed and how it is stored. WPT offers solutions that are suitable for alternative energy sources such as solar, wind, and hydropower. It is a major breakthrough in alternative energy resource utilization and utilization by limiting transmission losses. For example, wireless power transmission can minimize transmission losses between cells and storage devices in large-scale distributed energy storage systems.


The Global Wireless Power Transmission Market is prominently driven by the growing renewable energy resource utilization, the rising need for uninterrupted power grid solutions, advancements in communication technologies, and the capability to reduce energy losses in the field of power transmission. In addition, the rising usage of mobile and stationary devices in various industries is anticipated to rising the number of applications that require WPT solutions. For instance, the development of solutions suitable for long-distance applications, such as in the transmission of solar or wind power, is expected to drive the demand.


Hence, the Global Wireless Power Transmission Market is projected to have a strong compounded annual growth rate of 14.5% throughout the forecast period 2023 to 2030.


Research Aim


The general aim of the research is to understand the drivers, restraints, and trends affecting the Global Wireless Power Transmission Market.


Research Objectives



  • To analyze and study the Global Wireless Power Transmission Market size by technology, application and region.

  • To study the market value and segment forecasts for different regions.

  • To analyze and study different types of technology used in WPT.

  • To analyze and understand the impact of different driving and restraining factors on the Global Wireless Power Transmission Market.

  • To detect opportunities, challenges and Porter’s Five Forces analysis of the Global Wireless Power Transmission Market.


Research Methodology


This report is based on an in-depth analysis of the Global Wireless Power Transmission Market. To gain a deeper insight into the dynamics of the market, a mix of primary and secondary research has been used. The market size is estimated by interfacing with industry experts and an extensive quantitative analysis of historical and forecast data. Secondary research studies have been conducted through sources such as press releases, company websites, paid databases, and publications. Primary research has been conducted through surveys, interviews, and various discussions conducted with industry experts and professionals.


Secondary Research


Secondary research involves extensively scanning through periodicals, journals, books, databases, websites, and other publicly available documents to gain insights into the Global Wireless Power Transmission Market. Sources crucial to our secondary research include company websites, annual reports, financial reports, broker reports, investor briefings, Conference Proceedings, SEC filings, and internal and external proprietary databases. Once the secondary research is completed, the collected information is gathered to define and scope the research objectives. The scope of the study is narrowed down to regions, application areas, and types of technology used in WPT.


Primary Research


The primary research is conducted to obtain market value for the marketplace as a whole. To gain comprehensive insights into the market, detailed primary interviews were conducted with respondents such as industry experts, executives, decision-makers, and C-level executives from the key market players. In addition to primary research, a comprehensive analysis of the secondary research was conducted. Both qualitative and quantitative analysis of the research data was used to come up with the research report.


Market Structure


The Market Structure analysis provides a detailed analysis of the Global Wireless Power Transmission Market. The segmentation of the market is done based on technology, application, and region. This segmentation provides better insights into the dynamics of the Global Wireless Power Transmission Market.


Data Mining


Data mining is used to come up with factors that affect the Global Wireless Power Transmission Market. The data mining process involves the analysis of various macro and microeconomic conditions and their impact on the Global Wireless Power Transmission Market. This process is done with the help of market surveys and surveys of industry experts about the Global Wireless Power Transmission Market.


Data Analysis


The data gathered from the primary and secondary research was analyzed by using the triangulation method. This method involves using the closed-loop research process, wherein the primary and secondary research data are merged to come up with decisive data. Then the qualitative and quantitative data gathered from the primary and secondary sources is analyzed to gain insight into the market.


The analysis of the data is done by using Porter’s Five Forces Model, SWOT Analysis, market attractiveness analysis and market growth opportunity analysis. All these techniques are used to analyze the data and to come up with final results regarding the drivers, restraints, and opportunities affecting the Global Wireless Power Transmission Market.


Results


The Global Wireless Power Transmission Market is expected to grow at a staggering CAGR during the forecast period 2023 to 2030 owing to the factors driving the market. These include rising demand for uninterrupted power grid solutions, advancements in communication technologies, the capability to reduce energy losses in the field of power transmission, and the increasing usage of mobile and stationary devices. The key restraining factor for the market is the lack of standardization.


Conclusion


This report provides an in-depth analysis of the Global Wireless Power Transmission Market. The research is conducted by using primary and secondary research techniques. The data gathered through primary and secondary research was analyzed by using the triangulation method. The drivers, restraints, and trends of the Global Wireless Power Transmission Market have been identified based on the data analysis. This report provides a comprehensive understanding of the Global Wireless Power Transmission Market.

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Table oF Contents

1. Executive Summary

2. Research Methodology

2.1 Scope of the study

2.1.1 Definition

2.1.2 Research Objective

2.1.3 Assumptions

2.1.4 Limitations

2.2 Research Process

2.2.1 Primary Research

2.2.2 Secondary Research

2.3 Market size Estimation

2.4 Forecast Model

3. Market Dynamics

3.1 Market Drivers

3.2 Market Inhibitors

3.3 Value Chain Analysis

3.4 Porter’s Five Forces Analysis

4. Global Wireless Power Transmission Market, by Technology

4.1 Introduction

4.2 Inductive

4.3 Magnetic Resonance

4.4 Conductive

4.5 RF

4.6 Other

5. Global Wireless Power Transmission Market, By Receiver

5.1 Introduction

5.2 Smartphones

5.3 Gadgets

5.4 Wearable Electronics

5.5 Other

6. Global Wireless Power Transmission Market, By Transmitter

6.1 Introduction

6.2 Standalone Charging

6.3 Electric Vehicle Charging

6.4 Industrial

6.5 Others

7. Global Wireless Power Transmission Market, By End-users

7.1 Healthcare

7.2 Automotive

7.3 Banking

7.4 Industrial

7.5 Consumer Electronics

7.6 Others

8. Regional Market Analysis

8.1 Introduction

8.2 North America

8.2.1 U.S.

8.2.2 Canada

8.3 Europe

8.3.1 U.K.

8.3.2 France

8.3.3 Germany

8.3.4 Russia

8.3.5 Rest of Europe

8.4 Asia-Pacific

8.4.1 China

8.4.2 Japan

8.4.3 India

8.4.5 South Korea

8.4.6 Rest of Asia-Pacific

8.5 Rest of the World

9. Competition Analysis

8.1 Introduction

8.2 Competitive Scenario

8.2.1 Market Share Analysis

8.3 Ossia, Inc.

8.3.1 Overview

8.3.2 Product/Service Offering

8.3.3 Strategy

8.4 Wi-Charge Ltd.

8.4.1 Overview

8.4.2 Product/Service Offering

8.4.3 Strategy

8.5 Energous Corporation

8.5.1 Overview

8.5.2 Product/Service Offering

8.5.3 Strategy

8.6 Humavox Ltd.

8.6.1 Overview

8.6.2 Product/Service Offering

8.6.3 Strategy

8.7 Fulton Innovation LLC

8.7.1 Overview

8.7.2 Product/Service Offering

8.7.3 Strategy

8.8 Qualcomm Inc.

8.8.1 Overview

8.8.2 Product/Service Offering

8.8.3 Strategy

8.9 Texas Instruments Inc.

8.9.1 Overview

8.9.2 Product/Service Offering

8.9.3 Strategy

8.10 Integrated Device Technology, Inc.

8.10.1 Overview

8.10.2 Product/Service Offering

8.10.3 Strategy

8.11 Semtech Corp.

8.11.1 Overview

8.11.2 Product/Service Offering

8.11.3 Strategy

8.12 Toshiba Corp.

8.12.1 Overview

8.12.2 Product/Service Offering

8.12.3 Strategy

List oF Tables

TABLE 1 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY

TABLE 2 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER

TABLE 3 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER

TABLE 4 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY END-USERS

TABLE 5 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY REGIONS

TABLE 6 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY

TABLE 7 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY

TABLE 8 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER

TABLE 9 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER

TABLE 10 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY END-USERS

TABLE 11 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY

TABLE 12 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY

TABLE 13 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER

TABLE 14 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER

TABLE 15 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY END-USERS

TABLE 16 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY

TABLE 17 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY

TABLE 18 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER

TABLE 19 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER

TABLE 20 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY END-USERS

TABLE 21 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY

TABLE 22 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY

TABLE 23 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER

TABLE 24 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER

TABLE 25 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY END-USERS

List oF Figures

FIGURE 1 RESEARCH TYPE

FIGURE 2 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY (%)

FIGURE 3 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER (%)

FIGURE 4 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER (%)

FIGURE 5 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY END-USERS (%)

FIGURE 6 GLOBAL WIRELESS POWER TRANSMISSION MARKET, BY REGIONS (%)

FIGURE 7 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY (%)

FIGURE 8 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY (%)

FIGURE 9 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER (%)

FIGURE 10 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER (%)

FIGURE 11 NORTH AMERICA WIRELESS POWER TRANSMISSION MARKET, BY END-USERS (%)

FIGURE 12 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY (%)

FIGURE 13 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY (%)

FIGURE 14 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER (%)

FIGURE 15 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER (%)

FIGURE 16 EUROPE WIRELESS POWER TRANSMISSION MARKET, BY END-USERS (%)

FIGURE 17 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY (%)

FIGURE 18 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY (%)

FIGURE 19 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER (%)

FIGURE 20 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER (%)

FIGURE 21 ASIA-PACIFIC WIRELESS POWER TRANSMISSION MARKET, BY END-USERS (%)

FIGURE 22 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY COUNTRY (%)

FIGURE 23 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY TECHNOLOGY (%)

FIGURE 24 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY RECEIVER (%)

FIGURE 25 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY TRANSMITTER (%)

FIGURE 26 REST OF THE WORLD WIRELESS POWER TRANSMISSION MARKET, BY END-USERS (%)

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