Automotive Actuator Market

Automotive Actuator Market: Enabling Precision Control for Vehicle Systems, Comprehensive Market Segmentation Analysis, Evaluation of Technological Advancements, and Competitive Environment Assessment

An Extensive Study on the Automotive Actuator Market, focusing on market dynamics, types of actuators, and regional trends

Category: Mobility Published Date : May-23 ID: CVC-26632 Format: PDF Pages: 295

Report Highlights According to a research survey conducted by ChemView Consulting, the Automotive Actuator Market was worth US$ 14.35 Bn. The market is expected to grow at a CAGR of 7.10% between 2023 and 2033 to reach US$ 28.5 Bn by 2033 end.



Report Includes

Research Scope/Taxonomy:

  • Market Analysis by Actuator Type:
    • Throttle Actuators
    • Brake Actuators
    • Exhaust Gas Recirculation (EGR) Actuators
    • Wastegate Actuators
    • Variable Valve Timing (VVT) Actuators
    • Electric Power Steering (EPS) Actuators
    • Transmission Actuators
    • Others
  • Market Analysis by Vehicle Type:
    • Passenger Vehicles
    • Commercial Vehicles
  • Market Analysis by Application:
    • Engine Management System
    • Brake System
    • Transmission System
    • Exhaust System
    • Steering System
    • Others
  • Market Analysis by Region:
    • North America
    • Europe
    • Asia-Pacific
    • Latin America
    • Middle East and Africa






Analyst Credentials

Research Scope/Taxonomy:

  • Continental AG
  • Robert Bosch GmbH
  • Denso Corporation
  • Valeo SA
  • BorgWarner Inc.
  • Hella KGaA Hueck & Co.
  • Mitsubishi Electric Corporation
  • Hitachi, Ltd.
  • Eaton Corporation
  • Johnson Electric Holdings Limited
  • Nidec Corporation
  • Wabtec Corporation
  • Mahle GmbH
  • Delphi Technologies
  • APTIV
  • Mikuni Corporation
  • Stoneridge, Inc.
  • KSPG AG (Rheinmetall Automotive AG)
  • Knorr-Bremse AG
  • NKK Switches Co., Ltd.
  • SKF Group
  • Dura Automotive Systems, LLC
  • NSK Ltd.
  • Broad-Ocean Motor Co., Ltd.
  • Brose Fahrzeugteile GmbH & Co. KG

1.1. Global Market Snapshot

1.2. Key Success Factors

1.3. Strategic Analysis and Recommendations

2.1. Market Taxonomy

2.2. Market Definitions

3.1. Preliminary Investigation & Research Design

3.2. Secondary Research & Primary Research

3.3. Data Analysis & Econometric Modelling

3.4. Expert Data Validation

4.1. Supply-Side Trends

4.2. Demand-Side Trends

5.1. Global Market Value (US$ Mn) Analysis, 2017 – 2032

5.2. Incremental $ Opportunity Index, 2022-2032

5.3. Global Market Volume (Tons) Analysis, 2017 – 2032

6.1. Regional Level Pricing Analysis and Forecast

6.1.1. Manufacturers Level Pricing

6.1.2. Distributor Level Pricing

6.2. Global Pricing Analysis Benchmark

6.3. Cost Breakdown Analysis

7.1. Cross Analysis of Vehicle Type W.R.T. Type

8.1. Regional Supply Vs. Demand Gap Assessment

8.2. Top Producing Countries Analysis

9.1. Macroeconomic Factors

9.2. Forecast Factors

9.3. Market Dynamics

9.3.1. Driver

9.3.2. Restraint

9.3.3. Opportunity

9.4. Supply Chain Analysis

9.4.1. List Raw Material Suppliers

9.4.2. List of Manufacturers

9.4.3. List of Distributors

9.4.4. List of End-Users

9.4.5. End-Users Consumption Analysis

9.4.6. Average Profitability Margin Analysis

9.5. Covid-19 Impact Assessment

9.5.1. Economy/Cluster Projections

9.5.2. Covid-19 Economic Assessment

9.5.3. Impact on Target Market

9.5.4. Recovery Scenario

9.6. Regulatory Framework

9.6.1. Regulations of Key Countries

9.6.2. Potential Impact of Regulations

9.7. Porter’s Five Forces Analysis

9.8. Technology Landscape

10.1. Introduction

10.2. Key Market Trends

10.3. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Actuator Type [Value (US$ Mn) and Volume (Tons) Analysis]

10.3.1. Throttle Actuators

10.3.2. Brake Actuators

10.3.3. Exhaust Gas Recirculation (EGR) Actuators

10.3.4. Wastegate Actuators

10.3.5. Variable Valve Timing (VVT) Actuators

10.3.6. Electric Power Steering (EPS) Actuators

10.3.7. Transmission Actuators

10.3.8. Others

10.4. Market Attractiveness Analysis by Actuator Type

11.1. Introduction

11.2. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Vehicle Type [Value (US$ Mn) and Volume (Tons) Analysis]

11.2.1. Passenger Vehicles

11.2.2. Commercial Vehicles

11.3. Market Attractiveness Analysis by Vehicle Type

12.1. Introduction

12.2. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Application [Value (US$ Mn) and Volume (Tons) Analysis]

12.2.1. Engine Management System

12.2.2. Brake System

12.2.3. Transmission System

12.2.4. Exhaust System

12.2.5. Steering System

12.2.6. Others

12.3. Market Attractiveness Analysis by Application

13.1. Introduction

13.2. Key Market Trends

13.3. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Region [Value (US$ Mn) and Volume (Tons) Analysis]

13.3.1. North America

13.3.2. Latin America

13.3.3. Europe

13.3.4. Asia-Pacific

13.3.5. Middle East

13.3.6. Africa

13.4. Market Attractiveness Analysis by Region

14.1. Introduction

14.2. Key Market Trends

14.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

14.3.1. By Country

14.3.1.1. U.S.

14.3.1.2. Canada

14.3.2. By Actuator Type

14.3.3. By Vehicle Type

14.3.4. By Application

14.4. Market Attractiveness Analysis

14.4.1. By Country

14.4.2. By Actuator Type

14.4.3. By Vehicle Type

14.4.4. By Application

15.1. Introduction

15.2. Key Market Trends

15.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

15.3.1. By Country

15.3.1.1. Brazil

15.3.1.2. Mexico

15.3.1.3. Rest of Latin America

15.3.2. By Actuator Type

15.3.3. By Vehicle Type

15.3.4. By Application

15.4. Market Attractiveness Analysis

15.4.1. By Country

15.4.2. By Actuator Type

15.4.3. By Vehicle Type

15.4.4. By Application

16.1. Introduction

16.2. Key Market Trends

16.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

16.3.1. By Country

16.3.1.1. Germany

16.3.1.2. Italy

16.3.1.3. France

16.3.1.4. UK

16.3.1.5. Spain

16.3.1.6. Netherlands

16.3.1.7. Norway

16.3.1.8. Russia

16.3.1.9. Rest of Europe

16.3.2. By Actuator Type

16.3.3. By Vehicle Type

16.3.4. By Application

16.4. Market Attractiveness Analysis

16.4.1. By Country

16.4.2. By Actuator Type

16.4.3. By Vehicle Type

16.4.4. By Application

17.1. Introduction

17.2. Key Market Trends

17.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

17.3.1. By Country

17.3.1.1. China

17.3.1.2. Japan

17.3.1.3. South Korea

17.3.1.4. India

17.3.1.5. Indonesia

17.3.1.6. Thailand

17.3.1.7. Vietnam

17.3.1.8. Australia & New Zealand

17.3.1.9. Rest of Asia-Pacific

17.3.2. By Actuator Type

17.3.3. By Vehicle Type

17.3.4. By Application

17.4. Market Attractiveness Analysis

17.4.1. By Country

17.4.2. By Actuator Type

17.4.3. By Vehicle Type

17.4.4. By Application

18.1. Introduction

18.2. Key Market Trends

18.3. Pricing Analysis

18.4. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

18.4.1. By Country

18.4.1.1. Saudi Arabia

18.4.1.2. Turkey

18.4.1.3. U.A.E.

18.4.1.4. Rest of the Middle East

18.4.2. By Actuator Type

18.4.3. By Vehicle Type

18.4.4. By Application

18.5. Market Attractiveness Analysis

18.5.1. By Country

18.5.2. By Actuator Type

18.5.3. By Vehicle Type

18.5.4. By Application

19.1. Introduction

19.2. Key Market Trends

19.3. Pricing Analysis

19.4. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

19.4.1. By Country

19.4.1.1. South Africa

19.4.1.2. Nigeria

19.4.1.3. Egypt

19.4.1.4. Rest of Africa

19.4.2. By Actuator Type

19.4.3. By Vehicle Type

19.4.4. By Application

19.5. Market Attractiveness Analysis

19.5.1. By Country

19.5.2. By Actuator Type

19.5.3. By Vehicle Type

19.5.4. By Application

20.1. Tier Structure Breakdown

20.2. Market Share Analysis

20.3. Production Capacity Analysis

20.4. Company Footprint Analysis

20.4.1. Product Footprint of Players

20.4.2. Regional Footprint of Players

20.4.3. Channel Footprint of Players

20.5. Brand Preference Analysis

20.6. Competition Dashboard

21.1. Continental AG.

21.1.1. Company Overview

21.1.2. Product & Financial Portfolio

21.1.3. Manufacturing Facilities

21.1.4. Recent Developments

21.1.5. SWOT Analysis

21.1.6. Strategy Overview

21.2. Robert Bosch GmbH

21.3. Denso Corporation

21.4. Valeo SA

21.5. BorgWarner Inc.

21.6. Hella KGaA Hueck & Co.

21.7. Mitsubishi Electric Corporation

21.8. Hitachi, Ltd.

21.9. Eaton Corporation

21.10. Johnson Electric Holdings Limited

21.11. Nidec Corporation

21.12. Wabtec Corporation

21.13. Mahle GmbH

21.14. Delphi Technologies

21.15. APTIV

21.16. Mikuni Corporation

21.17. Stoneridge, Inc.

21.18. KSPG AG (Rheinmetall Automotive AG)

21.19. Knorr-Bremse AG

21.20. NKK Switches Co., Ltd.

21.21. SKF Group

21.22. Dura Automotive Systems, LLC

21.23. NSK Ltd.

21.24. Broad-Ocean Motor Co., Ltd.

21.25. Brose Fahrzeugteile GmbH & Co. KG.