E-Mobility Motors & Li-Ion Battery Cut-Section Display Workbench -IES-EV-353
The E-Mobility Motors & Li-Ion Battery Cut-Section Display Workbench is an educational demonstration platform designed for identification and understanding of electric vehicle components used in electric bikes and electric cars. The system includes real EV components and cut-section models mounted on a stand-type display frame for classroom and laboratory training.
The setup allows students and trainees to observe the internal construction of motors, battery systems and electronic modules used in electric mobility applications. Components are arranged in a clear and accessible layout, enabling explanation of EV architecture, electrical connections and subsystem interaction.
IES-EV-353
KEY TECHNICAL SPECIFICATIONS
Display Workbench StructureStand-mounted demonstration frame designed for mounting EV components and training displays.
Cut-Section Motor ModelsCut-section hub motor and mid-drive motor models for studying internal construction of EV traction motors.
Motor Controller ModuleEV motor controller unit used for demonstration of motor control electronics and power modules.
Battery & Energy Storage SystemLithium-ion battery pack with battery management system module for understanding battery protection and monitoring functions.
Charging System ComponentsEV onboard charger and multiple charging connectors for demonstration of different charging interfaces.
Power Electronics ModulesDC-DC converter and associated power electronics modules used in electric vehicle auxiliary systems.
Control InterfacesThrottle control units and electrical switches used for vehicle operation and input control.
Vehicle Electrical ComponentsLighting and indicator modules used for demonstration of auxiliary electrical systems.
Sensors & Monitoring DevicesTypical EV sensors such as Hall sensors and pedal assist sensors for studying sensing mechanisms.
Wiring & Electrical ConnectionsDemonstration wiring harness and connection points for understanding electrical routing and subsystem integration.
RANGE OF EXPERIMENTS
Identification of major electric vehicle drivetrain components
Study of internal motor construction using cut-section models
Understanding of lithium battery pack and BMS operation
Identification of EV charging connectors and charging systems
Study of EV sensors and control input devices
Analysis of vehicle electrical components and auxiliary systems
Understanding wiring harness routing and subsystem connections
FEATURES
Real EV components mounted for educational demonstration
Cut-section motor and battery models for internal visualization
Stand-type display structure suitable for classroom instruction
Clear component layout for easy identification and explanation
Multiple EV charging connectors for training and familiarization
Suitable for EV laboratories, classrooms and training workshops
MAECENAS IACULIS
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ADIPISCING CONVALLIS BULUM
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