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Power Management IC Market: Global Industry Analysis, Trends, Market Size, and Forecasts up to 2032

  • Report

  • 300 Pages
  • September 2025
  • Region: Global
  • Infinium Global Research
  • ID: 6180462
The report on the global power management IC market provides qualitative and quantitative analysis for the period from 2022-2032. The global power management IC market was valued at USD 41.23 billion in 2023 and is expected to reach USD 73.29 billion in 2032, with a CAGR of 6.70% during the forecast period 2024-2032. The study on power management IC market covers the analysis of the leading geographies such as North America, Europe, Asia Pacific, and RoW for the period of 2022-2032.

The report on power management IC market is a comprehensive study and presentation of drivers, restraints, opportunities, demand factors, market size, forecasts, and trends in the global power management IC market over the period of 2022-2032. Moreover, the report is a collective presentation of primary and secondary research findings.

Porter's five forces model in the report provides insights into the competitive rivalry, supplier and buyer positions in the market and opportunities for the new entrants in the global power management IC market over the period of 2022-2032. Furthermore, the growth matrix given in the report brings an insight into the investment areas that existing or new market players can consider.

Report Findings

1) Drivers

  • The increasing adoption of smart homes is expected to propel market growth.
  • Incorporation of IoT technology with energy control devices is fostering the growth of the power management IC market.

2) Restraints

  • High development expenses and complicated design procedures are expected to hamper market growth.

3) Opportunities

  • The rising electric vehicle demand will create market growth opportunities.

Research Methodology

A) Primary Research

The primary research involves extensive interviews and analysis of the opinions provided by the primary respondents. The primary research starts with identifying and approaching the primary respondents, the primary respondents are approached include
1. Key Opinion Leaders
2. Internal and External subject matter experts
3. Professionals and participants from the industry

The primary research respondents typically include

1. Executives working with leading companies in the market under review
2. Product/brand/marketing managers
3. CXO level executives
4. Regional/zonal/ country managers
5. Vice President level executives.

B) Secondary Research

Secondary research involves extensive exploring through the secondary sources of information available in both the public domain and paid sources. Each research study is based on over 500 hours of secondary research accompanied by primary research. The information obtained through the secondary sources is validated through the crosscheck on various data sources.

The secondary sources of the data typically include

1. Company reports and publications
2. Government/institutional publications
3. Trade and associations journals
4. Databases such as WTO, OECD, World Bank, and among others.
5. Websites and publications by research agencies

Segment Covered

The global power management IC market is segmented on the basis of product, and industry vertical.

The Global Power Management IC Market by Product

  • Linear Regulators
  • Switching Regulators
  • Battery Management ICs (BMICs)
  • Power Supply ICs
  • LED Drivers
  • Reset ICs
  • Others

The Global Power Management IC Market by Industry Vertical

  • Consumer Electronics
  • Automotive
  • Industrial
  • IT & Telecommunications
  • Healthcare
  • Others

Company Profiles

The companies covered in the report include

  • Analog Devices, Inc.
  • Diodes Incorporated
  • Infineon Technologies AG
  • Microchip Technology Inc.
  • NXP Semiconductors
  • Renesas Electronics Corporation
  • ROHM Co., Ltd.
  • Semiconductor Components Industries, LLC
  • Semtech Corporation
  • Texas Instruments Incorporated

What does this report deliver?

1. Comprehensive analysis of the global as well as regional markets of the power management IC market.
2. Complete coverage of all the segments in the power management IC market to analyze the trends, developments in the global market and forecast of market size up to 2032.
3. Comprehensive analysis of the companies operating in the global power management IC market. The company profile includes analysis of product portfolio, revenue, SWOT analysis and latest developments of the company.
4. Growth Matrix presents an analysis of the product segments and geographies that market players should focus to invest, consolidate, expand and/or diversify.

Table of Contents

Chapter 1. Preface
1.1. Report Description
1.2. Research Methods
1.3. Research Approaches
Chapter 2. Executive Summary
2.1. Power Electronics For E-mobility Market Highlights
2.2. Power Electronics For E-mobility Market Projection
2.3. Power Electronics For E-mobility Market Regional Highlights
Chapter 3. Global Power Electronics for E-mobility Market Overview
3.1. Introduction
3.2. Market Dynamics
3.2.1. Drivers
3.2.2. Restraints
3.2.3. Opportunities
3.3. Porter's Five Forces Analysis
3.4. Growth Matrix Analysis
3.4.1. Growth Matrix Analysis by Component
3.4.2. Growth Matrix Analysis by Vehicle Type
3.4.3. Growth Matrix Analysis by Power Device Material
3.4.4. Growth Matrix Analysis by Region
3.5. Value Chain Analysis of Power Electronics For E-mobility Market
Chapter 4. Power Electronics For E-mobility Market Macro Indicator Analysis
Chapter 5. Company Profiles and Competitive Landscape
5.1. Competitive Landscape in the Global Power Electronics For E-mobility Market
5.2. Companies Profiles
5.2.1. Infineon Technologies
5.2.2. STMicroelectronics
5.2.3. ROHM Semiconductor
5.2.4. ON Semiconductor (onsemi)
5.2.5. Texas Instruments
5.2.6. Mitsubishi Electric
5.2.7. NXP Semiconductors
5.2.8. Renesas Electronics
5.2.9. Valeo
5.2.10. Dana Incorporated
Chapter 6. Global Power Electronics for E-mobility Market by Component
6.1. Inverters
6.2. DC-DC Converters
6.3. On-board Chargers
6.4. Battery Management Systems
6.5. Motor Controllers
6.6. Power Modules
6.7. Thermal Management Systems
Chapter 7. Global Power Electronics for E-mobility Market by Vehicle Type
7.1. Battery Electric Vehicles (BEV)
7.2. Plug-in Hybrid Electric Vehicles (PHEV)
7.3. Hybrid Electric Vehicles (HEV)
7.4. Fuel Cell Electric Vehicles (FCEV)
Chapter 8. Global Power Electronics for E-mobility Market by Power Device Material
8.1. Silicon (Si)
8.2. Silicon Carbide (SiC)
8.3. Gallium Nitride (GaN)
Chapter 9. Global Power Electronics for E-mobility Market by Region 2024-2032
9.1. North America
9.1.1. North America Power Electronics For E-mobility Market by Component
9.1.2. North America Power Electronics For E-mobility Market by Vehicle Type
9.1.3. North America Power Electronics For E-mobility Market by Power Device Material
9.1.4. North America Power Electronics For E-mobility Market by Country
9.1.4.1. The U.S. Power Electronics For E-mobility Market
9.1.4.1.1. The U.S. Power Electronics For E-mobility Market by Component
9.1.4.1.2. The U.S. Power Electronics For E-mobility Market by Vehicle Type
9.1.4.1.3. The U.S. Power Electronics For E-mobility Market by Power Device Material
9.1.4.2. Canada Power Electronics For E-mobility Market
9.1.4.2.1. Canada Power Electronics For E-mobility Market by Component
9.1.4.2.2. Canada Power Electronics For E-mobility Market by Vehicle Type
9.1.4.2.3. Canada Power Electronics For E-mobility Market by Power Device Material
9.1.4.3. Mexico Power Electronics For E-mobility Market
9.1.4.3.1. Mexico Power Electronics For E-mobility Market by Component
9.1.4.3.2. Mexico Power Electronics For E-mobility Market by Vehicle Type
9.1.4.3.3. Mexico Power Electronics For E-mobility Market by Power Device Material
9.2. Europe
9.2.1. Europe Power Electronics For E-mobility Market by Component
9.2.2. Europe Power Electronics For E-mobility Market by Vehicle Type
9.2.3. Europe Power Electronics For E-mobility Market by Power Device Material
9.2.4. Europe Power Electronics For E-mobility Market by Country
9.2.4.1. Germany Power Electronics For E-mobility Market
9.2.4.1.1. Germany Power Electronics For E-mobility Market by Component
9.2.4.1.2. Germany Power Electronics For E-mobility Market by Vehicle Type
9.2.4.1.3. Germany Power Electronics For E-mobility Market by Power Device Material
9.2.4.2. United Kingdom Power Electronics For E-mobility Market
9.2.4.2.1. United Kingdom Power Electronics For E-mobility Market by Component
9.2.4.2.2. United Kingdom Power Electronics For E-mobility Market by Vehicle Type
9.2.4.2.3. United Kingdom Power Electronics For E-mobility Market by Power Device Material
9.2.4.3. France Power Electronics For E-mobility Market
9.2.4.3.1. France Power Electronics For E-mobility Market by Component
9.2.4.3.2. France Power Electronics For E-mobility Market by Vehicle Type
9.2.4.3.3. France Power Electronics For E-mobility Market by Power Device Material
9.2.4.4. Rest of Europe Power Electronics For E-mobility Market
9.2.4.4.1. Rest of Europe Power Electronics For E-mobility Market by Component
9.2.4.4.2. Rest of Europe Power Electronics For E-mobility Market by Vehicle Type
9.2.4.4.3. Rest of Europe Power Electronics For E-mobility Market by Power Device Material
9.3. Asia Pacific
9.3.1. Asia Pacific Power Electronics For E-mobility Market by Component
9.3.2. Asia Pacific Power Electronics For E-mobility Market by Vehicle Type
9.3.3. Asia Pacific Power Electronics For E-mobility Market by Power Device Material
9.3.4. Asia Pacific Power Electronics For E-mobility Market by Country
9.3.4.1. China Power Electronics For E-mobility Market
9.3.4.1.1. China Power Electronics For E-mobility Market by Component
9.3.4.1.2. China Power Electronics For E-mobility Market by Vehicle Type
9.3.4.1.3. China Power Electronics For E-mobility Market by Power Device Material
9.3.4.2. Japan Power Electronics For E-mobility Market
9.3.4.2.1. Japan Power Electronics For E-mobility Market by Component
9.3.4.2.2. Japan Power Electronics For E-mobility Market by Vehicle Type
9.3.4.2.3. Japan Power Electronics For E-mobility Market by Power Device Material
9.3.4.3. India Power Electronics For E-mobility Market
9.3.4.3.1. India Power Electronics For E-mobility Market by Component
9.3.4.3.2. India Power Electronics For E-mobility Market by Vehicle Type
9.3.4.3.3. India Power Electronics For E-mobility Market by Power Device Material
9.3.4.4. Rest of Asia-Pacific Power Electronics For E-mobility Market
9.3.4.4.1. Rest of Asia-Pacific Power Electronics For E-mobility Market by Component
9.3.4.4.2. Rest of Asia-Pacific Power Electronics For E-mobility Market by Vehicle Type
9.3.4.4.3. Rest of Asia-Pacific Power Electronics For E-mobility Market by Power Device Material
9.4. RoW
9.4.1. RoW Power Electronics For E-mobility Market by Component
9.4.2. RoW Power Electronics For E-mobility Market by Vehicle Type
9.4.3. RoW Power Electronics For E-mobility Market by Power Device Material
9.4.4. RoW Power Electronics For E-mobility Market by Sub-region
9.4.4.1. Latin America Power Electronics For E-mobility Market
9.4.4.1.1. Latin America Power Electronics For E-mobility Market by Component
9.4.4.1.2. Latin America Power Electronics For E-mobility Market by Vehicle Type
9.4.4.1.3. Latin America Power Electronics For E-mobility Market by Power Device Material
9.4.4.2. Middle East Power Electronics For E-mobility Market
9.4.4.2.1. Middle East Power Electronics For E-mobility Market by Component
9.4.4.2.2. Middle East Power Electronics For E-mobility Market by Vehicle Type
9.4.4.2.3. Middle East Power Electronics For E-mobility Market by Power Device Material
9.4.4.3. Africa Power Electronics For E-mobility Market
9.4.4.3.1. Africa Power Electronics For E-mobility Market by Component
9.4.4.3.2. Africa Power Electronics For E-mobility Market by Vehicle Type
9.4.4.3.3. Africa Power Electronics For E-mobility Market by Power Device Material