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High Voltage EV Power Solutions

High voltage EV power solutions are designed for the evolving requirements of electric vehicle platforms, supporting higher power demands, advanced energy conversion, and complex onboard electrical architectures. By addressing diverse vehicle requirements, these solutions help establish reliable and efficient power systems for modern electric vehicles.

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High Voltage Power Solutions for Diverse EV Platforms

As electric vehicle platforms continue to move toward higher voltage architectures, onboard power systems face increasing demands in charging performance, energy conversion efficiency, and electrical system coordination. Higher voltage platforms bring new requirements for component selection, thermal management, and system integration.


Developing high voltage power systems requires coordinated solutions across charging, power conversion, thermal management, and vehicle-level integration. This requires careful consideration of electrical performance, system reliability, and application requirements throughout vehicle development.

High Voltage Product Portfolio

Key Advantages


1.High Voltage Platform Compatibility (1)

High Voltage Platform Compatibility

Different EV platforms require different battery voltage ranges, electrical architectures, and power system configurations. Proper voltage compatibility helps ensure suitable matching between onboard power systems and vehicle requirements.

The portfolio covers different voltage architectures with dedicated OBC and DC/DC configurations developed for specific vehicle applications and operating conditions, supporting integration across diverse vehicle architectures.

Efficient Power Conversion

Efficient energy conversion is essential for transferring power between charging infrastructure, high-voltage battery systems, and vehicle electrical loads. OBC and DC/DC technologies manage energy transfer between different voltage domains while supporting stable power delivery for vehicle operation.

Optimized power conversion design helps maintain efficient energy transfer and stable operation under different vehicle operating conditions.

2.Efficient Power Conversion
3.High Voltage Safety Architecture

High Voltage Safety Architecture

Higher voltage platforms place greater demands on electrical safety throughout vehicle operation. Insulation design, protection strategies, monitoring functions, and fault response mechanisms help maintain stable system performance under different operating conditions.

These safety-oriented designs support reliable onboard power operation throughout vehicle development and long-term usage.

Thermal & Operating Reliability

High voltage power systems often operate under continuous charging, high power demand, and changing environmental conditions, requiring effective thermal management and long-term reliability.

Through thermal design, environmental protection, and validation processes, solutions are developed to maintain consistent performance across different vehicle applications.

4.Thermal & Operating Reliability
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Applications Across EV Platforms

1.Passenger EVs

Passenger EVs

Passenger EV designs continue to evolve toward higher charging performance, more complex electrical architectures, and optimized onboard layouts. These requirements make high voltage power systems increasingly important for vehicles where electrical integration and efficient use of available space are key considerations.

2.Commercial EVs

Commercial EVs

Commercial EVs such as buses and trucks typically operate with higher energy demands, extended duty cycles, and continuous auxiliary power requirements. Their onboard power systems need to maintain stable operation while supporting efficient energy utilization and reliable performance during daily vehicle operation.

3.Electrified Off-highway Vehicles

Electrified Off-road

Electrified off-road equipment, including construction machinery and industrial vehicles, often operates under demanding conditions with specific requirements for power availability, system durability, and environmental protection. High voltage power solutions provide a foundation for integrating electrical functions and supporting reliable operation across complex working environments.

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Engineering Support for High Voltage EV Projects

Vehicle Requirement Evaluation

High voltage projects require alignment between battery voltage, charging requirements, auxiliary loads, and vehicle electrical architecture. Landworld evaluates these project requirements to help identify suitable OBC, DC/DC, and integrated power configurations for different vehicle platforms.

Communication & Control Alignment

Modern EV platforms require effective communication between onboard power systems and vehicle controllers. Landworld supports communication interfaces, diagnostics, and control requirements to help ensure proper coordination between power products and vehicle electrical architectures.

System Integration Coordination

During vehicle integration, onboard power systems need to consider electrical interfaces, cooling conditions, installation requirements, and communication needs. Landworld supports engineering coordination across these factors to help align power solutions with vehicle system requirements.

Validation & Verification

From engineering evaluation to production preparation, high voltage power systems require systematic validation to confirm performance under different operating conditions. Landworld supports project development through design verification, functional testing, and validation activities focused on electrical performance, reliability, and vehicle-level requirements.

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Planning a new EV platform or replacing an existing power module? Contact Landworld to compare standalone, two-in-one, and three-in-one solutions with your electrical and mechanical requirements.

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FAQs

1. How do I select a high-voltage EV power solution?
Selection depends on multiple vehicle-level requirements, including traction-battery voltage, charging power, low-voltage load, vehicle type, cooling capacity, installation space, communication protocol, and bidirectional requirements. Based on these conditions, suitable configurations can be evaluated, including standalone DC/DC converters, onboard chargers, two-in-one, and three-in-one systems.
2. Which battery-voltage platforms can these products support?
Landworld’s high voltage portfolio covers different vehicle voltage architectures with dedicated OBC, DC/DC, and integrated power configurations developed for specific platform requirements. Available solutions include products designed for different voltage ranges, such as 400V-class and higher-voltage EV platforms. Final compatibility depends on the selected model, battery system, and vehicle electrical architecture.
3. What is the difference between two-in-one and three-in-one systems?
A two-in-one system combines the on-board charger and DC/DC converter. A three-in-one system adds a PDU, bringing charging, low-voltage auxiliary supply, and selected high-voltage distribution functions into one integrated liquid-cooled assembly.
4. When should a project use a 22kW or 44kW OBC?
The selection between a 22kW and 44kW OBC depends on vehicle power requirements, battery capacity, charging expectations, and operating conditions. A 22kW OBC is commonly selected for vehicles requiring higher charging power and bidirectional functionality, while a 44kW OBC is better suited for larger battery systems, heavy commercial vehicles, and applications requiring higher onboard AC charging capacity.
5. Can Landworld customize electrical and mechanical interfaces?
Project evaluation can address battery-voltage matching, output requirements, communication settings, wake-up logic, connectors, installation dimensions, mounting arrangement, and cooling interfaces. The available customization scope should be confirmed after Landworld reviews the complete vehicle and system requirements.

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Share your vehicle type, battery-voltage range, target charging power, auxiliary output, cooling conditions, and installation limits. Landworld will evaluate a suitable high-voltage EV power configuration for your project.

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