객실 202, C 빌딩, 나진 클라우드 기술 공원, 373 베타이 도로, 광저우 사립 과학 기술 공원, 바이연 구, 광저우 시
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1. System Overview & Training Value This operational pure electric vehicle drive system training platform provides complete automotive professional training by demonstrating actual EV drivetrain architecture and dynamic working processes. Designed for technical education, it offers: Fully functional EV propulsion system replication Real-world component interaction and operation Comprehensive hands-on learning experience for automotive professional training programs Industry
1. Core Configuration & Functional Features This Automotive Educational Vocational Equipment is designed as a Model for CAN Bus System Training , replicating the authentic CAN network architecture of a Volkswagen Passat. As a comprehensive Vehicle Training System , it is ideal for vocational institutes and technical colleges to deliver hands-on instruction in automotive network diagnostics and repair. Key Component Specifications Core Components Qty Description Diagnostic
I. Immersive Learning with Vehicle Integrated Training System This state - of - the - art automotive educational equipment, the Vehicle Integrated Training System, offers a hands - on exploration of real - world Electrical Vehicle Systems. With straightforward operations, it vividly demonstrates the intricate workings of crucial systems, including ignition, lighting, and charging. Equipped with detection terminals for precise electrical signal measurement and a diagnostic
Electric Vehicle Drive Motor Dissection Display Platform 1. Product Overview The Drive Motor Dissection Display Educational Equipment is specifically designed for technical training on electric vehicle drive motor structure and operational principles. This professional training apparatus provides an authentic and intuitive demonstration of both the drive motor assembly and main controller operation, making it ideal for vocational education and technical certification programs
Automotive Central Control & Anti-Theft System Teaching and Training Equipment 1. Product Overview This equipment is based on real automotive central control and anti-theft systems, fully demonstrating their structural composition and operational process. It is designed for Educational Demonstration Board applications, meeting the theoretical and practical training needs of automotive engineering students in schools and vocational institutions. 2. Key Features Realistic
Product Introduction This training equipment is based on the complete electrical system of the Toyota Land Cruiser, integrating key components such as the engine ignition system, instrument panel system, lighting system, wiper system, horn system, power window system, central locking system, audio system, starting system, and charging system . It provides a realistic representation of automotive electrical architecture and operational processes. Ideal for vocational
New Energy Auto Dissection Mould Equipment Product Overview This new energy auto dissection mold equipment is an anatomical display platform designed specifically for teaching new energy vehicle power systems. It uses an original hybrid powertrain (including engine, generator, and electric motor) for three-dimensional dissection, and clearly displays the internal structure through multi-color layered spraying technology. Core Features Dynamic demonstration function: equipped
1. Robust and Compact Design for Hands-On Learning The Car Electric Controlled Flipping Frame is engineered for durability and efficiency, with dimensions of 1000×600×1100mm (L×W×H) . Constructed from high-strength 60×40×3mm steel tubing , it ensures stability while supporting intensive training sessions. The frame’s MOPA70减速机 (1:70 ratio) provides smooth and controlled flipping, allowing students to rotate and lock the gearbox at any angle for easy disassembly and assembly.
1. Realistic Vehicle Electrical Teaching Board Features Fully Functional Systems : This Vehicle Electrical Teaching Board accurately replicates all major automotive electrical systems including ignition, lighting, wipers, power windows, and central locking in operational condition. Interactive Learning : With a 12V DC power supply, students can operate switches and buttons to activate systems like engine ignition, while a 2.2KW AC motor realistically simulates the charging