Electric Coolant Pump Market by Type (Sealed, Seal less), Seal less (Electric, Magnetic), Power Output (<100W, >100W), Vehicle Type (PV, 48V, CV, BEV, PHEV), Communication Interface (LIN, CAN, PWM) Global Opportunity Analysis and Industry Forecast, 2021-2027

ID: VPR/A&T/181 Publishing Year: January 2021 Pages: 52 Format:   


The Global Electric Coolant Pump Market was valued at $XX million in 2019, and is expected to reach $XX billion by 2027, registering a CAGR of XX% from 2021 to 2027.

An Electric Coolant Pump is mainly used to provide coolant for engine cooling but it also does other activities such as cuts frictional losses, reduces power requirements, fuel consumption and pollutant emissions. Electric Coolants are more efficient for the vehicle as the mechanical Coolant Pumps are cam-driven they use a belt mechanism to operate, this uses the power of mechanical components (engine belt) and thus can reduce cars horse power and fuel economy because engine have to do both works of operating pump and keeping car at its constant speed however, an Electric Coolant Pump doesn’t needs belt power instead it runs on car battery hence saving the energy of engine. There are two types of electric coolant pumps that are sealed and seal less amongst which seal less comes in two types that is electric powered and magnetic powered also Electric Coolant Pumps comes in different power outputs which are <100W >100W and they also differ according to vehicles PV, CV, BEV, PHEV furthermore, an Electrical Coolant Pump operates through a communication interface which can be classified into LIN, CAN, PWM  

DRO:

An Electric Coolant Pump has a many benefits over traditional mechanical pump and thus manufacturers are extensively using electric coolant pumps there by boosting its market moreover, Electric Coolant Pumps as the name suggests uses electric power to operate unlike mechanical pumps which operates through engine belt because of this the electric coolant pumps helps in saving fuel and power loss from engine. The sea less type of pumps are most used by the manufactures because it has minimum amount of leakage and hence demand for it is more. Up to 100W is used for auxiliary cooling in many cars for power electronic cooling and is expected to hold more market share then >100W pumps. The 48V vehicles and passenger electric car market is expected to be largest market for electric coolants pump as electric car needs both auxiliary and main coolant system.

However electric coolant pumps have relatively high cost for manufacturing and installation moreover, the high maintenance cost of electric coolant pumps and unreliability can impact on market.

Partnerships or collaboration between the OEMs and developing technologies in Electric Coolant Pumps can give the boost to market also evolving market of battery electric vehicles and strict government laws regarding emissions will force to change the tradition mechanical pumps with Electric Pumps hence giving an opportunity for growth of market.

Segment Insight:

The Electric Coolant Pump Market is based on types, seal less, power output, vehicle type and communication interface. Based on type it is further classified into sealed and seal less. Based on seal less it is classified into electric and magnetic. Based on power output it is classified into <100W and >100W. Based on vehicle type it is classified into passenger vehicle (PV), 48V, commercial vehicle (CV), battery electric vehicle (BEV), plug in hybrid electric vehicle (PHEV) and Based on communication interface it is classified into LIN (local interconnect network), CAN (controller area network) and PWM (pulse width modification).

By Type Insight:

The Electric Coolant Pump Market is segmented by type into sealed and seal less. As seal less pumps have better efficiency and offer negligible leakage compared to sealed pumps they are highly preferred by OEMs and are currently hold largest market share and are expected to grow fastest in the market.

By Seal Less Type Insight:

The Electric Coolant Pump Market is segmented by seal less into electric and magnetic. If there are even small amount of solids then magnetic pump is not suitable in such conditions and electric pumps get head over the magnetic pump

By Power Output Insight:

The electric coolant pump market is segmented by power output into <100W and >100W. <100W pumps are expected to hold more market share then >100W pumps.

By vehicle type insight:

The Electric Coolant Pump Market is segmented by vehicle type into passenger vehicle (PV), 48V, commercial vehicle (CV), battery electric vehicle (BEV), plug in hybrid electric vehicle (PHEV). The 48V vehicles and battery electric vehicles are expected to hold largest market share in Electric Coolant Pumps Market.

By Communication Interface Insight:

The Electric Coolant Pump Market is segmented by communication interface into LIN (local interconnect network), CAN (controller area network) and PWM (pulse width modification).

Major Key Players of Electric Coolant Pump Market:

The report provides a comprehensive analysis of the key players operating in the global electric coolant pump market, such as Rheinmetall automotive AG, Robert bosch gmbh, Aisin Seiki CO., LTD., Continental ag, Mahle gmbh, Denso corporation, Johnson electric holdings limited, Hanon systems, Industrie saleri italo s.p.a, Concentric ab.

Most of the key players in electric vehicle market are focusing on business expansion to gain a higher revenue share through the adoption of strategies, such as mergers and acquisitions and new product development.

Electric Coolant Pump Market Key Segments:

By Type

  • Sealed
  • Seal less

By Seal less Type:

  • Electric
  • Magnetic

By power output Type:

  • <100W
  • >100W

By vehicle type insight:

  • Passenger vehicle (PV)
  • 48V
  • Commercial vehicle (CV)
  • Battery electric vehicle (BEV)
  • Plug in hybrid electric vehicle (PHEV)

By communication interface Type:

  • LIN (local interconnect network)
  • CAN (controller area network)
  • PWM (pulse width modification)

By Region:

North America

  • U.S.
  • Canada
  • Mexico

Europe

  • Germany
  • UK
  • France
  • Italy
  • Spain
  • Rest of Europe

Asia-Pacific

  • Japan
  • China
  • India
  • Australia
  • Rest of Asia-Pacific

LAMEA

  • Brazil
  • Argentina
  • Turkey
  • South Africa
  • Rest of LAMEA

TABLE OF CONTENTS:

CHAPTER 1 MARKET INTRODUCTION

1.1. REPORT OVERVIEW

1.2. SCOPE OF THE STUDY

1.3. PRIMARY MARKET SEGMENTS

1.4. RESEARCH METHODOLOGY

CHAPTER 2 EXECUTIVE SUMMARY

2.1. C-LEVEL EXECUTIVE’S OVERVIEW AND PERSPECTIVES

CHAPTER 3 MARKET OVERVIEW

3.1. MARKET DEFINITION AND SCOPE

3.2. PRINCIPAL FINDINGS

3.2.1. Key investment pockets

3.2.2. Leading winning strategies

  3.2.3 Key Player Positioning

3.3. PORTERS FIVE FORCES OF COMPETITIVE ANALYSIS

 3.4. MARKET DYNAMICS

3.4.1. Drivers

3.4.2. Restraints

3.4.3. Opportunities

3.4.4. Impact Analysis

3.5. IMPACT OF COVID-19 ON THIS MARKET

CHAPTER 4 ELECTRIC COOLANT PUMP MARKET, BY TYPE

4.1. SYNOPSIS

4.1.1. Market size and forecast

4.2. SEALED

4.2.1. Key market trends

4.2.2. Growth factors and opportunities

4.2.3. Market size and forecast

4.3. SEAL LESS

4.3.1. Key market trends

4.3.2. Growth factors and opportunities

4.3.3. Market size and forecast

CHAPTER 5 ELECTRIC COOLANT PUMP MARKET, BY SEAL LESS

5.1. SYNOPSIS

5.1.1. Market size and forecast

5.2. ELECTRIC

5.2.1. Key market trends

5.2.2. Growth factors and opportunities

5.2.3. Market size and forecast

5.3. MAGNETIC

5.3.1. Key market trends

5.3.2. Growth factors and opportunities

5.3.3. Market size and forecast

CHAPTER 6 ELECTRIC COOLANT PUMP MARKET, BY POWER OUTPUT

6.1. SYNOPSIS

6.1.1. Market size and forecast

6.2. <100W

6.2.1. Key market trends

6.2.2. Growth factors and opportunities

6.2.3. Market size and forecast

6.3. >100W

6.3.1. Key market trends

6.3.2. Growth factors and opportunities

6.3.3. Market size and forecast

CHAPTER 7 ELECTRIC COOLANT PUMP MARKET, BY VEHICLE TYPE

7.1. SYNOPSIS

7.1.1. Market size and forecast

7.2. PASSENGER VEHICLE (PV)

7.2.1. Key market trends

7.2.2. Growth factors and opportunities

7.2.3. Market size and forecast

7.3. 48V

7.3.1. Key market trends

7.3.2. Growth factors and opportunities

7.3.3. Market size and forecast

7.4. COMMERCIAL VEHICLE (CV)

7.4.1. Key market trends

7.4.2. Growth factors and opportunities

7.4.3. Market size and forecast

7.5. BATTERY ELECTRIC VEHICLE (BEV)

7.5.1. Key market trends

7.5.2. Growth factors and opportunities

7.5.3. Market size and forecast

7.6. PLUG IN HYBRID ELECTRIC VEHICLE (PHEV)

7.5.1. Key market trends

7.5.2. Growth factors and opportunities

7.5.3. Market size and forecast

CHAPTER 8 ELECTRIC COOLANT PUMP MARKET, BY COMMUNICATION INTERFACE

8.1. SYNOPSIS

8.1.1. Market size and forecast

8.2. LIN (LOCAL INTERCONNECT NETWORK)

8.2.1. Key market trends

8.2.2. Growth factors and opportunities

8.2.3. Market size and forecast

8.3. CAN (CONTROLLER AREA NETWORK)

8.3.1. Key market trends

8.3.2. Growth factors and opportunities

8.3.3. Market size and forecast

8.4. PWM (PULSE WIDTH MODIFICATION)

8.4.1. Key market trends

8.4.2. Growth factors and opportunities

8.4.3. Market size and forecast

CHAPTER 9 ELECTRIC COOLANT PUMP MARKET, BY REGION

9.1 SYNOPSIS

9.2 North America

9.2.1 Key market trends

9.2.2 Competitive scenario

9.2.3 Key growth factors and opportunities

9.2.4 Market size and forecast

9.3 Europe

9.3.1 Key market trends

9.3.2 Competitive scenario

9.3.3 Key growth factors and opportunities

9.3.4 Market size and forecast

9.4 Asia Pacific

9.4.1 Key market trends

9.4.2 Competitive scenario

9.4.3 Key growth factors and opportunities

9.4.4 Market size and forecast

9.5 LAMEA

9.5.1 Key market trends

9.5.2 Key growth factors and opportunities

9.5.3 Market size and forecast

CHAPTER 10 COMPANY PROFILES

10.1. Rheinmetall automotive AG

10.1.1. Company overview

10.1.2. Company snapshot

10.1.3. Product portfolio

10.1.4. Business performance

10.1.5. Key strategic moves and developments

10.2. Robert bosch gmbh

10.2.1. Company overview

10.2.2. Company snapshot

10.2.3. Operating business segments

10.2.4. Product portfolio

10.2.5. Business performance

10.2.6. Key strategic moves and developments

10.3. Aisin Seiki CO. LTD.

10.3.1. Company overview

10.3.2. Company snapshot

10.3.3. Operating business segments

10.3.4. Product portfolio

10.3.5. Business performance

10.3.6. Key strategic moves and developments

10.4. Continental ag

10.4.1. Company overview

10.4.2. Company snapshot

10.4.3. Operating business segments

10.4.4. Product portfolio

10.4.5. Business performance

10.4.6. Key strategic moves and developments

10.5. Mahle gmbh

10.5.1. Company overview

10.5.2. Company snapshot

10.5.3. Operating business segments

10.5.4. Product portfolio

10.5.5. Business performance

10.5.6. Key strategic moves and developments

10.6. Denso corporation

10.6.1. Company overview

10.6.2. Company Snapshot

10.6.3. Operating business segments

10.6.4. Product portfolio

10.6.5. Business performance

10.6.6. Key strategic moves and developments

10.7. Johnson electric holdings limited

10.7.1. Company overview

10.7.2. Company snapshot

10.7.3. Operating business segments

10.7.4. Product portfolio

10.7.5. Business performance

10.7.6. Key strategic moves and developments

10.8. Hanon systems

10.8.1. Company overview

10.8.2. Company snapshot

10.8.3. Operating business segments

10.8.4. Product portfolio

10.8.5. Business performance

10.8.6. Key strategic moves and developments

10.9. Industrie saleri italo s.p.a

10.9.1. Company overview

10.9.2. Company snapshot

10.9.3. Operating business segments

10.9.4. Product portfolio

10.9.5. Business performance

10.9.6. Key strategic moves and developments

10.10. Concentric ab

10.10.1. Company overview

10.10.2. Company snapshot

10.10.3. Product portfolio

10.10.4. Key strategic moves and developments


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