세계의 전동 냉각수 펌프 시장 : 유형별, 씰리스별, 출력별, EV 유형별, 통신 인터페이스별, 용도별, 지역별 예측(-2030년)
Electric Coolant Pump Market by Type (Sealed, Sealless), Sealless (Electrical, Magnetic), Power Output (<150W, 150-200 W, >250 W), 48V & Electric Vehicle Type, Communication Interface (LIN, CAN, PWM), Application and Region - Global Forecast to 2030
상품코드 : 1465227
리서치사 : MarketsandMarkets
발행일 : 2024년 04월
페이지 정보 : 영문 319 Pages
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한글목차

전동 냉각수 펌프(Electric Coolant Pump) 시장 규모는 예측 기간 동안 12.8%의 CAGR로 확대되고 2024년 19억 달러에서 2030년에는 39억 달러로 성장할 것으로 예측됩니다.

전동 냉각수 펌프는 엔진 부하를 줄임으로써 배출 가스를 줄이고 연비를 향상시킵니다. 따라서 향후 배기가스 규제에 있어서의 배기가스 규제치의 인하와 하이브리드차 및 플러그인 하이브리드차 수요가 증가함에 따라 전동 냉각수 펌프 수요는 확대될 것으로 예측됩니다. 예를 들어, Euro VI와 China VI의 도입으로 자동차 제조업체는 전동 냉각수 펌프와 같은 저연비 기술을 자동차에 채택하게 되었습니다. 그러나 상대적으로 높은 비용과 유지 보수는 전동 냉각수 펌프 시장 전체의 성장을 방해할 수 있습니다.

조사 범위
조사 대상연도 2024-2030년
기준연도 2023년
예측 기간 2024-2030년
검토 단위 금액(10억 달러)
부문 유형별, 씰리스별, 출력별, EV 유형별, 통신 인터페이스별, 용도별, 지역별
대상 지역 아시아태평양, 유럽, 북미 및 기타 지역

전동 냉각수 펌프 시장 수요는 저전력 소비와 소형 냉각으로 인한 것입니다. 와트 수가 150W 미만인 전동 냉각수 펌프는 일반적으로 소비 전력과 유량이 작으면 충분한 소형 차량 또는 보조 냉각 시스템에 사용됩니다.

높은 차량 성능에 대한 수요가 증가함에 따라 48V 차량의 인기가 높아지고 있습니다. 이들 차량은 60V 컷오프 이하의 상한 전압에도 불구하고 높은 효과를 발휘하기 때문입니다. 48V 시스템은 안전-초저전압(SELV)을 발생시키지 않고 EV 부품에 전력을 분배하여 구리 손실을 최소화할 수 있습니다. 또한 48V 시스템에서는 4개의 12V 배터리를 직렬로 배치할 수 있으므로 납 배터리가 필요하지 않습니다. 또한 48V 시스템은 전류 레벨을 올리지 않고도 부품에 전원을 공급할 수 있다는 장점이 있습니다. 필요한 전력이 증가하기 때문에 48V 시스템은 12V보다 많은 전동 냉각수 펌프를 사용합니다.

세계의 전동 냉각수 펌프(Electric Coolant Pump) 시장에 대해 조사했으며, 유형별·씰리스별·출력별·EV 유형별·통신 인터페이스별·용도별·지역별 동향/시장 진출기업 프로파일 등을 정리했습니다.

목차

제1장 서론

제2장 조사 방법

제3장 주요 요약

제4장 중요 인사이트

제5장 시장 개요

제6장 전동 냉각수 펌프 시장, 와트별

제7장 전동 냉각수 펌프 시장, 전압 유형별

제8장 전동 냉각수 펌프 시장, 용도별

제9장 전동 냉각수 펌프 시장, 유형별

제10장 전동 냉각수 펌프 시장, 씰리스별

제11장 전동 냉각수 펌프 시장, 차량 유형별

제12장 전동 냉각수 펌프 시장, EV 유형별

제13장 전동 냉각수 펌프 시장, 전동 자동차 이용별

제14장 전동 냉각수 펌프 시장, 통신 인터페이스별

제15장 전동 냉각수 펌프 시장, 지역별

제16장 경쟁 구도

제17장 기업 프로파일

제18장 MARKETSANDMARKETS의 권장사항

제19장 부록

LYJ
영문 목차

영문목차

The electric coolant pump market is estimated to grow from USD 1.9 billion in 2024 to USD 3.9 billion by 2030 at a CAGR of 12.8% during the forecast period. Electric coolant pumps help reduce emissions by reducing the engine load, thus improving fuel efficiency. Therefore, with the decreasing emission limits in the upcoming emission regulations and growing demand for hybrid & plug-in hybrid vehicles, the demand for electric coolant pumps is projected to grow. For instance, introducing Euro VI and China VI has pushed automakers to employ fuel-efficient technologies such as electric coolant pumps in their vehicles. However, relatively high costs and maintenance can hinder the overall growth of the electric coolant pump market.

Scope of the Report
Years Considered for the Study2024-2030
Base Year2023
Forecast Period2024-2030
Units ConsideredValue (USD Billion)
SegmentsType, Sealless, Power Output, 48V & Electric Vehicle Type, Communication Interface, Application and Region
Regions coveredAsia Pacific, Europe, North America, and Rest of the World

"<150 W electric coolant pump holds the largest market share during the forecast period".

The market demand for <150 W electric coolant pumps is attributed to their compact cooling with low power consumption. Electric coolant pumps with a wattage range of <150 W are typically used in smaller vehicles or auxiliary cooling systems where lower power consumption and flow rates are sufficient. Rheinmetall Automotive classifies these pumps into two segments: 15 W and 50-150 W. The 15 W electric coolant pumps are used mainly for ancillary assembly cooling, air conditioning for ICE passenger vehicles, turbocharged engines, and cooling emission control systems. The 50-150 W electric coolant pumps are used for air conditioning in electric and hybrid vehicles, battery cooling, DC-DC converter, and power electronics cooling. Electric coolant pumps of <150 W wattage range are primarily installed in compact and mid-size electric passenger cars due to their lower power requirements, optimized thermal management systems, noise reduction, and cost-effectiveness. The demand for <150 W electric coolant pumps is higher in the Asia Pacific mainly due to the growing sales of economy electric vehicles in emerging economies of the region. Economy electric vehicles have less than 150 W electric coolant pumps for auxiliary applications, central battery cooling, and DC-AC converter cooling.

"The 48 V mild hybrid vehicle market is analyzed as the largest segment for electric coolant pumps."

The growing demand for high vehicle performance has led to the popularity of 48 V vehicles since these vehicles are highly effective despite capping voltages below a 60 V cut-off. 48 V systems can distribute power to EV components without causing Safety-Extra Low-Voltage (SELV) and minimizing copper losses. 48 V systems also allow four 12V batteries to be placed in series, eliminating the need for lead-acid batteries. Further, 48 V systems also benefit from providing increased power to the components without raising the current level. Due to increased power requirements, 48 V systems employ more electric coolant pumps than 12 V. 48 V mild-hybrid vehicle architecture, which is increasingly adopted in ICE vehicles. Hyundai Santa FE and KIA Sportage are examples of 48 V mild hybrid vehicles with turbodiesel engines. Europe is estimated to lead the most significant market during the forecast period due to increasing sales of 48 V hybrid passenger cars in the region. Additionally, considering the stringency in emission norms globally, 48 V hybrid systems demonstrate 28% fuel savings, a NOx reduction of 46%, and a particulate decrease of 93%. Thus, considering these factors, the demand for 48 V mild hybrid electric vehicles is expected to grow in the coming years, ultimately driving the demand for the electric coolant pump market.

"Sealless Electric coolant pump is the largest and fastest-growing segment during the Forecast Period."

Sealless pumps are increasingly becoming popular as they eliminate the need for dynamic seals, reducing the wear and tear of the pump. This also eliminates the periodic seal replacement cost. As coolant leakage can be dangerous to EV components, sealless pumps provide increased safety to the vehicle. Also, the coupling between the motor and pump is easy and requires no alignment, making the installation convenient for sealless pumps. Thus, sealless electric coolant pumps exhibit high efficiency in reduced emissions and better reliability, making them particularly desirable for electric and hybrid vehicle models.

Furthermore, sealless electric coolants can be electrically/canned or magnetically driven, and electrically driven coolant pumps hold the prominent market due to their several technical benefits over mechanically driven pumps. Given the significant space occupied by batteries, automotive OEMs favor less expensive electric coolant pumps with their compact size. Thus, increasing sales of electric vehicles coupled with continuous research and developments in sealless electric pump technology to produce lower maintenance and leak-proof products, the sealless pump market is anticipated to remain dominant in the coming future.

"Europe accounted for the second largest electric coolant pump market during the forecast period."

Europe is estimated to be the second largest electric coolant pump market after Asia Pacific, where Germany dominates the regional market. This is owing to the increasing demand for electric vehicles and the growing preference for premium cars fitted with electric coolant pumps. The presence of established OEMs such as BMW AG (Germany), Daimler AG (Germany), Fiat (Italy), PSA/Peugeot-Citroen (France), and Volkswagen Group (Germany) also drives the demand for electric coolant pumps in this region. The European region is an early adopter of regulations and mandates of automotive technologies. Thus, the penetration of electric coolant pumps in Europe is higher than in all other areas. The major drivers for the European electric pump market are the high focus on emission norms, rising demand for electric and luxury vehicles, and higher penetration of electric cars. Manufacturers are focusing their R&D activities on developing robust EVs, hybrid vehicles, and 48V mild hybrid vehicles, boosting the demand for electric coolant pumps in the region. The growing demand for EVs has prompted OEMs to partner with electric coolant pump manufacturers, which has led to the increased production of pumps and, thereby, market growth. Further, the region is mainly dominated by market players such as Robert Bosch GmbH (Germany), Continental AG (Germany), Rheinmetall AG (Germany), Mahle GmbH (Germany), Schaeffler AG (Germany), Valeo SA (France), and Hella GmbH & Co. KgAa (Germany).

Breakdown of Primaries

In-depth interviews were conducted with CXOs, marketing directors, other innovation and technology directors, and executives from various key organizations operating in this market.

The electric coolant pump market is led by established players such as Robert Bosch GmbH (Germany), Continental AG (Germany), Rheinmetall AG (Germany), Mahle GmbH (Germany), Denso Corporation (Japan), Aisin Seiki., Co. Ltd. (Japan), Schaeffler AG (Germany), Hanon Systems (South Korea), and Gates Corporation (US). The study includes an in-depth competitive analysis of these key players in the electric coolant pump market with their company profiles, MnM view of the top five companies, recent developments, and key market strategies.

Research Coverage:

The electric coolant pump market is segmented by region (Asia Pacific, Europe, North America, and Rest of the World), wattage range (<150 W, 150 W, 200 W, 250 W, and >250 W), voltage type (12 V and 24 V), Application (Powertrain & HVAC, Battery & Power Electronics, and Gearbox Cooling), By Type (Sealed and Sealless), Sealless by Type (Magnetically Driven and Electrically/Canned Driven), ICE by vehicle type (passenger cars, light vans, full-size vans, pick-up trucks, medium-duty trucks, heavy-duty trucks, and buses), electric vehicle type (battery electric vehicles (BEVs) and plug-in hybrid electric vehicles (PHEVs). Electric vehicle use (e-passenger cars, e-light vans, e-full-size vans, e-pick-up trucks, e-medium-duty trucks, e-heavy-duty trucks, and e-buses), and communication interface (LIN, CAN, and CAM).

The study also includes an in-depth competitive analysis of the key players in the market along with their company profiles, key observations related to product and business offerings, recent developments, and key market strategies.

Key Benefits of Buying the Report:

This report provides insights concerning the following points:

Country-level electric vehicle type-wise market: The report offers in-depth market sizing and forecasts for 2030 by electric vehicle types, such as battery electric vehicles (BEVs) and Plug-in hybrid vehicles (PHEVs). This study covers the market sizing for the electric coolant pump market at the country and regional levels.

By Electric Vehicle Use: The report offers in-depth market sizing and forecasts up to 2030 by electric vehicle use, such as e-passenger cars, e-light vans, e-full-size vans, e-pick-up trucks, e-medium-duty trucks, e-heavy-duty trucks, and e-buses at the regional level. In-depth analysis of different vehicle types at the regional level.

Sealless Electric Coolant Pump By Type: The report offers in-depth market sizing and forecasts up to 2030 by sealless electric coolant pump types, such as electrically/ canned driven and magnetically driven. The report provides market sizing and forecasting till 2030 by types, such as electrically/canned-driven and magnetically driven.

The report provides the "Market Share" of the leading electric coolant pump market players.

Market Development: The report provides comprehensive information about lucrative emerging markets for the electric coolant pump market across regions.

Product Development/Innovation: The report gives detailed insights into R&D activities, upcoming technologies, and new product launches in the electric coolant pump market.

Market Diversification: The report offers detailed information about untapped markets, investments, new products, and recent developments in the electric coolant pump market.

The report provides insights on the following pointers:

TABLE OF CONTENTS

1 INTRODUCTION

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 PREMIUM INSIGHTS

5 MARKET OVERVIEW

6 ELECTRIC COOLANT PUMP MARKET, BY WATTAGE RANGE

7 ELECTRIC COOLANT PUMP MARKET, BY VOLTAGE TYPE

8 ELECTRIC COOLANT PUMP MARKET, BY APPLICATION

9 ELECTRIC COOLANT PUMP MARKET, BY TYPE

10 SEALLESS ELECTRIC COOLANT PUMP MARKET, BY TYPE

11 ELECTRIC COOLANT PUMP MARKET, BY ICE VEHICLE TYPE

12 ELECTRIC COOLANT PUMP MARKET, BY ELECTRIC VEHICLE TYPE

13 ELECTRIC COOLANT PUMP MARKET, BY ELECTRIC VEHICLE USE

14 ELECTRIC COOLANT PUMP MARKET, BY COMMUNICATION INTERFACE

15 ELECTRIC COOLANT PUMP MARKET, BY REGION

16 COMPETITIVE LANDSCAPE

17 COMPANY PROFILES

18 RECOMMENDATIONS FROM MARKETSANDMARKETS

19 APPENDIX

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