Next-generation Thermal Management Strategies in Electric Vehicles
OEMs’ Adoption of Standard Heat Pump Systems and Streamlined Circuits Enhanced by Advanced Actuators and Sophisticated Control Strategies Driving Transformational Growth
This research service provides an in-depth analysis of the thermal management system strategies OEMs adopt for electric vehicles (EVs). It includes an overview of the main EV propulsion system components requiring thermal management and explores different cooling techniques, with a particular focus on battery thermal management systems. The switch to fully electric propulsion systems has significantly altered the thermal management needs and capabilities of vehicles, introducing new components and circuit layouts compared to traditional internal combustion engine vehicles. This study analyzes the key components and layouts of thermal management systems and highlights how critical trends in battery and propulsion system components will impact thermal management systems in the future. The core of this study illuminates different thermal management solutions that leading OEMs, including traditional and EV-native industry players, have adopted. It also provides a comprehensive view of prominent industry suppliers' product offerings and innovative new technologies.
Key Issues Addressed
What are the key drivers and restraints for the EV thermal management system market? What are the key trends affecting EV thermal management systems? What strategies do OEMs employ for effective thermal management systems? How are key suppliers shaping their future product portfolios? What growth opportunities does the EV thermal management system market present globally?
Strategic Imperatives
Why is it Increasingly Difficult to Grow?
The Strategic Imperative 8™
The Impact of the Top 3 Strategic Imperatives on Thermal Management Strategies for Electric Vehicles (EVs)
Growth Opportunities Fuel the Growth Pipeline Engine™
Growth Opportunity Analysis
Scope of Analysis
Research Aims and Objectives
Key Competitors
Competitive Environment
Summary of the Thermal Management Systems Market—Global
Growth Drivers
Growth Restraints
Electric Vehicle Propulsion System Components Overview
EV Propulsion System Components Overview
EV Propulsion System Components Overview
HVBS
eAxles
Power Electronics
Thermal Management System Strategies
Thermal Management System Types
Thermal Management System Loops
Battery Thermal Management Systems
Battery Thermal Management System Types
EV Configurations and Thermal Management System Variants
Thermal Management System Components and Generic Layout
Thermal Management System: Cooling System Components
Thermal Management System: HVAC System
Thermal Management System: HVAC System Components
Thermal Management System: Generic System Diagram
Heat Pump System
Heat Pump System: Example
Key Trends Impacting Thermal Management Systems
Battery Systems: Trends in Cells, Modules, and Chemistry
Battery Systems: Trends in Internal Configuration
Battery Systems: Trends in Integration with the Vehicle
Charging Technology: Trends in Power and Capabilities
Trends in Electrical and Electronic Architectures
Next-generation Thermal Management Systems
Next-generation Thermal Management Systems
Cost Analysis of Thermal Management System Components
OEM Profiles
Thermal Management System Types Adopted by OEMs
VW ID.4
VW ID.4: Operating Mode Example 1
VW ID.4: Operating Mode Example 2
VW ID.4: Operating Mode Example 3
2024 Toyota bZ4X
Toyota bZ4X: Operating Mode Example 1
Toyota bZ4X: Operating Mode Example 2
Tesla Model Y
Tesla Model Y: Operating Mode Example 1
Tesla Model Y: Operating Mode Example 2
Tesla Model Y: Operating Mode Example 3
BYD Seal
BYD Seal: Operating Mode Example 1
BYD Seal: Operating Mode Example 2
BYD Seal: Operating Mode Example 3
BYD Seal: Operating Mode Example 4
Key Suppliers’ Profiles
Thermal Management System Suppliers
Valeo
Schaeffler
Modine
Marelli Corporation/Highly Marelli
Sanhua Automotive
Growth Opportunity Universe Next-generation Thermal Management Strategies in Electric Vehicles
Growth Opportunity 1: High-performance CO2 HVAC Systems
Growth Opportunity 2: Complex Hardware Systems Design and Integration Capabilities
Growth Opportunity 3: Leverage Next-generation EE Architecture Capabilities