A car's engine can run more efficiently with an electronic vacuum pump. It is powered by the engine's camshaft. Automobile braking systems are equipped with servo-assistance. For a specific braking effect, it lightens the pressure on the brake pedal. In most cases, vacuum assistance is provided by means of a vacuum brake booster. The depression created by the engine's intake manifold or engine mechanically drives a vacuum pump.

The popularity of automotive electric vacuum pumps (EVPs) has been on the rise recently, though, because these pumps do not rely on the vehicle's engine. This gives designers more leeway in how they put the engine compartment to use. To prevent the electric vacuum pump from running continually at high speeds without demand, it only activates when the brakes are engaged. Electric vacuum pumps for automobiles work with any engine and are compatible with the idea of a versatile vehicle platform. The use of automotive EVPs is on the rise due to these reasons.
In order to power the brakes, many automotive applications make use of electric vacuum pumps, often known as automotive electric vacuum pumps (EVPs). Another way the vehicle vacuum pump keeps the oil clean for longer is by extending the engine's lifespan. Automotive vacuum pumps also generate a vacuum that is used for a variety of brake applications, which allows them to evacuate air from the engine.
Competition in the automotive vacuum pump industry has been heating up thanks to the rising popularity of electric vehicles. Since creating effective braking systems is a major focus for electric vehicle makers, newly-introduced EVPs contribute to improving overall vehicle performance. This is why manufacturers are investing more in R&D to provide rigorous testing protocols that check EVP operation under extreme heat. So, producers in the automobile electric vacuum pump industry are coming up with new, efficient ways to use non-electronic robust brush motors to make EVPs stronger and last longer. As an accessory to today's gasoline engines, they're working on EVPs that make braking easy and safe.
Vehicles that have adopted automotive EVPs have seen significant improvements in fuel efficiency, which is a major driver of the electric vacuum pump business. You can turn it on and off as needed. Therefore, mechanical pumps that are not in use can not waste energy by idling. In addition, the motor's lifespan is increased and the pump's service life is prolonged by on-demand pump operation. Another benefit of not having a mechanical pump is that the engine's lubrication system doesn't have to work as hard to keep the vacuum pump lubricated. This opens the door to a smaller pump design, which improves engine efficiency. Reducing excessive CO₂ emissions and conserving fuel by avoiding inappropriate braking, especially in poor driving situations, improves fuel efficiency. Developments in automotive EVPs that enable vacuum generation for brake boosters independent of engines are expected to drive market growth during the forecast period. In addition, more people are concerned about climate change and vehicle safety, which is fueling the adoption of fuel-efficient automobiles with automotive EVPs, as well as the increasing demand for mobility services worldwide.
Problems with pushing the brake pedal and inadequate vacuum generation result from automotive EVP failure. Because they were not designed to be utilized in an oily environment, OEM pumps perform without issue for a limited while. To make these pumps suitable for use with oil, a few adjustments are required. Pump components are engineered for air cooling without oil. Some of the factors that are anticipated to slow the growth of this market include the rapid improvement of mechanical pumps, which allows them to deliver stronger braking forces and improve vacuum-free braking systems. As an example, GM is aiming to equip its pickup trucks with vacuum-free braking systems. An improved and simplified braking system design with enhanced performance possibilities has been created by ZF Friedrichshafen: a vacuum independent integrated brake control system.
Report Coverage
Global Automotive Electric Vacuum Pump (EVP) research report categorizes the market for global based on various segments and regions, forecasts revenue growth, and analyzes trends in each submarket. Global Automotive Electric Vacuum Pump (EVP) report analyses the key growth drivers, opportunities, and challenges influencing the global market. Recent market developments and Automotive Electric Vacuum Pump (EVP) competitive strategies such as expansion, product launch and development, partnership, merger, and acquisition have been included to draw the competitive landscape in the market. The report strategically identifies and profiles the key Automotive Electric Vacuum Pump (EVP) market players and analyses their core competencies in each global market sub-segments.
REPORT ATTRIBUTES | DETAILS |
---|---|
Study Period | 2017-2031 |
Base Year | 2024 |
Forecast Period | 2024-2031 |
Historical Period | 2017-2023 |
Unit | Value (USD Billion) |
Key Companies Profiled | Continental AG, Dalain Haina New Energy Auto Parts Manufacturing Co., Ltd., HELLA GmbH & Co. KGaA, Johnson Electric, Magna International Inc., Toupo Grop, Rheinmetall Automotive AG, Robert Bosch GmbH, Valeo SA, WABCO, Youngshin Precision, Co., Ltd., YT STABLE TECH. CORP. |
Segments Covered | • By Product |
Customization Scope | Free report customization (equivalent to up to 3 analyst working days) with purchase. Addition or alteration to country, regional & segment scope |
Key Points Covered in the Report
- Market Revenue of Automotive Electric Vacuum Pump (EVP) Market from 2023 to 2031.
- Market Forecast for Automotive Electric Vacuum Pump (EVP) Market from 2023 to 2031.
- Regional Market Share and Revenue from 2023 to 2031.
- Country Market share within region from 2023 to 2031.
- Key Type and Application Revenue and forecast.
- Company Market Share Analysis, Automotive Electric Vacuum Pump (EVP) competitive scenario, ranking, and detailed company
profiles. - Market driver, restraints, and detailed COVID-19 impact on Automotive Electric Vacuum Pump (EVP)
Market
Competitive Environment:
The research provides an accurate study of the major organisations and companies operating in the global Automotive Electric Vacuum Pump (EVP) market, along with a comparative evaluation based on their product portfolios, corporate summaries, geographic reach, business plans, Automotive Electric Vacuum Pump (EVP) market shares in specific segments, and SWOT analyses. A detailed analysis of the firms' recent news and developments, such as product development, inventions, joint ventures, partnerships, mergers and acquisitions, strategic alliances, and other activities, is also included in the study. This makes it possible to assess the level of market competition as a whole.
List of Major Market Participants
Continental AG, Dalain Haina New Energy Auto Parts Manufacturing Co., Ltd., HELLA GmbH & Co. KGaA, Johnson Electric, Magna International Inc., Toupo Grop, Rheinmetall Automotive AG, Robert Bosch GmbH, Valeo SA, WABCO, Youngshin Precision, Co., Ltd., YT STABLE TECH. CORP.
Primary Target Market
- Market Players of Automotive Electric Vacuum Pump (EVP)
- Investors
- End-users
- Government Authorities
- Consulting And Research Firm
- Venture capitalists
- Third-party knowledge providers
- Value-Added Resellers (VARs)
Market Segment:
This study forecasts global, regional, and country revenue from 2019 to 2031. INFINITIVE DATA EXPERT has segmented the global Automotive Electric Vacuum Pump (EVP) market based on the below-mentioned segments:
Global Automotive Electric Vacuum Pump (EVP) Market, By Electric Vehicle Type
Hybrid Electric Vehicle (HEV)
Plug-In Hybrid Electric Vehicle (PHEV)
Battery Electric Vehicle (BEV)
Global Automotive Electric Vacuum Pump (EVP) market, By Vehicle Type
Passenger Cars
Light Commercial Vehicles (LCV)
Heavy Commerical Vehicles (HCV)
Global Automotive Electric Vacuum Pump (EVP) market, Regional Analysis
- Europe: Germany, Uk, France, Italy, Spain, Russia, Rest of Europe
- The Asia Pacific: China,Japan,India,South Korea,Australia,Rest of Asia Pacific
- South America: Brazil, Argentina, Rest of South America
- Middle East & Africa: UAE, Saudi Arabia, Qatar, South Africa, Rest of Middle East & Africa
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