Training Facility

UAV Assembly, Debugging and Maintenance Training Platform

Jul 1,2026

Product Features

  • Full-Process Training System

Covers the complete skill development workflow from UAV selection and integration, virtual simulation, and flight operation to fault detection, maintenance, and repair.

  • Multi-Frame Compatibility

Supports three frame layouts - cross, X, and H - to meet different UAV system assembly and debugging training needs.

  • Virtual-Physical Training

Equipped with a virtual simulation platform that supports multiple weather and terrain scenarios, supporting repeated practice before real flight training.

  • Modular Teaching Design

Divides the training content into independent modules, including theory learning, virtual simulation, hands-on practice, and fault diagnosis, making it suitable for different teaching stages.

  • Industry Standards Alignment

The content is closely aligned with occupational skill standards for UAV assembly, debugging, inspection, and maintenance, helping learners develop core job-related skills.

  • Intelligent Assessment System

Equipped with a digital assessment system that supports theory-based computer testing, practical process recording, automatic scoring, and quantitative evaluation of teaching outcomes.

Technical Specifications

Software Configuration

Software Name

Version Requirement

UAV flight control parameter tuning software

V4.0 or above

UAV virtual simulation platform

Tianyi / TY-Advanced SIM V2.0

Theory assessment system

V3.0

Scoring management system

V2.5

Hardware Configuration (Recommended)

Equipment Name

Specifications

Selection and Debugging Platform

Three frame layout models: cross, X, and H

Five motor specifications, 20 motors in total

Three ESC specifications: 20 A, 30 A, and 40 A, 12 units in total

Four propeller specifications, 8 pairs in total

Three 4S / 5000 mAh / 30C batteries

High-performance STM32H743VIT6 flight control processor

UAV Assembly and Debugging Toolbox

Includes 22 categories of professional tools, such as hex screwdrivers, needle-nose pliers, wire strippers, soldering iron, multimeter, and leveling measuring columns.

UAV Operation Platform

Wheelbase: 650-1050 mm

Maximum payload: >= 2.7 kg

Hovering accuracy: +/- 0.1 m

Maximum flight time: >= 50 minutes (no-load)

Maximum image transmission distance: >= 15 km

UAV Maintenance and Inspection Platform

Brushless motor: stator >= 23 mm, KV >= 1000 KV

30 A brushless ESC: instantaneous current >= 40 A

2200 mAh / 25C lithium battery

8-channel remote controller

Supports setup and detection of 9 common UAV fault types

Application Scenarios

Vocational Education Scenarios

  • UAV core course teaching
  • Skills certificate assessment training
  • Construction of practical training bases for vocational colleges
  • Teacher capability development training

Enterprise Training Scenarios

  • Skills training for employees of UAV manufacturing enterprises
  • Operation and maintenance training for UAV application enterprises
  • Skills upgrading for industry practitioners
  • Technical onboarding training for new employees

Science Popularization Education Scenarios

  • UAV science and technology education for young learners
  • Demonstration and experience activities in science education bases
  • Innovation practice activities
  • Programs for improving scientific literacy

FAQ

Q: Can beginners quickly learn UAV assembly and debugging skills?

A: Yes. The platform uses a modular teaching design that progresses from basic theory to hands-on training. The virtual simulation platform helps reduce the difficulty of initial practice. Detailed training guides and operation videos are provided so beginners can gradually build assembly and debugging skills.

Q: Does the teaching platform support training with multiple UAV types?

A: Yes. The platform supports three frame layouts: cross, X, and H. It can be used for assembly and debugging training of multiple UAV types, including quadrotor and hexacopter systems, meeting different teaching needs and industry application scenarios.

Q: How is flight safety ensured during teaching and training?

A: Training follows the principle of virtual simulation before real flight. Learners first complete training and assessment in the virtual simulation platform before conducting actual flight operations. Training sites should be equipped with appropriate safety protection facilities, and all operations are performed according to safety procedures.

Q: Does the teaching platform include an assessment and evaluation system?

A: Yes. The platform is equipped with an intelligent assessment system that supports theory-based computer testing, practical process recording, and quantitative evaluation of skill performance. It can generate assessment reports and skill level evaluation results for teaching evaluation and skill assessment needs.

Q: Can course system development support be provided?

A: Yes. A complete course solution can be provided, including curriculum standards, teaching plans, practical training guides, teaching courseware, and assessment question banks. This helps institutions build UAV-related course systems and support structured UAV course delivery and practical training assessment.