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AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system
AE34502WM hybrid petrol-electric system

AE34502WM Hybrid petrol-electric system cutaway

Reference: AE34502WM - Manufacturer: Autoedu

AutoEDU cutaway trainer for studying petrol-electric hybrid architecture, energy flow, and subsystem interaction in technical automotive education.

Educational use: support for theory lessons, practical demonstrations, and structured system analysis.

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AE34502WM Hybrid petrol-electric system cutaway

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Hybrid petrol-electric cutaway system

The AE34502WM from AutoEDU is a cutaway model of a hybrid petrol-electric system designed for technical training in hybrid propulsion technologies. The unit allows visual study of the architecture of a modern hybrid system and helps users understand the interaction between mechanical, electrical, and electronic subsystems.

With its educational focus, the model supports analysis of the key components of the hybrid system and their functional relationship within the vehicle. It is a valuable tool for automotive training centers that want to introduce or reinforce content related to electrification, energy management, and hybrid vehicle operation.

Training value for electrified mobility

The cutaway configuration helps visually identify key system elements and explain energy flow between the combustion engine, the electrical section, and the rest of the transmission or management system. This improves understanding of concepts such as system cooperation, energy efficiency, and transitions between operating modes.

Its format is intended for universities, technical colleges, and vocational centers that require durable teaching material for explaining petrol-electric hybrid systems in automotive education.

Application in technical education

The AE34502WM supports both theoretical sessions and practical demonstrations on hybrid components, system architecture, and operating principles. As an educational resource, it promotes global understanding of the assembly and structured observation of hybrid technology used in modern vehicles.

Specifications

  • Reference: AE34502WM.
  • Manufacturer: AutoEDU.
  • Product type: cutaway hybrid petrol-electric system model.
  • Training application: technical education in hybrid systems and electrified mobility.
  • Educational focus: visual study of hybrid architecture, energy flow, and subsystem interaction.
  • Represented technology: petrol-electric hybrid propulsion.
  • Target users: universities, technical colleges, and vocational automotive training centers.

This hybrid drive system trainer allows students to study the structure, operation, and energy flow of modern hybrid vehicles in a clear and practical way.

The system demonstrates how energy is transferred between the petrol engine, inverter, high-voltage battery, electric motors, transmission, and wheels. Students can observe the operation of the hybrid transmission, including the planetary gear set and motor generators.

The trainer also supports the study of key hybrid components such as the EV inverter and high-voltage battery, helping students understand the integration of mechanical and electrical systems.

With real-time simulation of five hybrid driving modes, the unit enables practical analysis of engine assistance, electric drive, battery charging, regenerative braking, and energy recovery during vehicle operation.

The electrically driven simulation makes hybrid system demonstrations more dynamic, visual, and interactive for students.

An integrated information board displays energy flow between the main components, helping instructors explain complex hybrid and electric vehicle principles more clearly.

This trainer is ideal for teaching hybrid technology, electric vehicle systems, mechatronics, and automotive engineering in technical education environments.

Its durable construction is designed for continuous classroom and workshop use, providing both theoretical instruction and hands-on learning opportunities.

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