EXIFLY

Corporate History
Technological milestones

2018 | The core team delved deeply into the drone field, making breakthroughs in flight control systems, high-precision GPS positioning, binocular SLAM real-time modeling, AI dynamic obstacle avoidance, and FOC electric control technology, laying the foundation for technical expertise.

January 2025 | Zhongshan Yixing Innovation Technology Co., Ltd. was officially established, focusing on the industrialization of consumer-grade intelligent drones.

2025 | Globally launched the first micro-tethered drone "FLOAT X1", redefining the standard for portable, long-endurance lighting drones.

01
Enterprise
Development​​
Future Prospects

2026 | Complete the R&D and industrialization of three breakthrough modules: AI 3D Obstacle Avoidance, Safety Parachute System, and Self-stabilizing Gimbal Technology.

2027-2028 | Focus on building modular payload capabilities and a global compliance system, while upgrading the AI-driven nighttime operations platform.

Long-term Plan | Build an integrated aerial intelligence ecosystem. Through continuous innovation and cross-industry collaboration, we aim to make nighttime productivity benefit more users.

02
Business Scope &
Application Fields
EXIFLY's core product is the tethered lighting drone system,
a new drone solution that can provide lighting to the ground from high altitude.

EXIFLY's core product is the tethered lighting drone system, a new drone solution that can provide lighting to the ground from high altitude.

The system consists of three main parts: the drone platform, LED lighting group, and tethered power supply system. Through continuous power supply from the ground system, it can achieve 24 hours of uninterrupted hovering, completely solving the industry challenge of insufficient endurance of conventional drones.

This product is mainly suitable for rescue personnel to break through environmental and geographical limitations when conducting firefighting and rescue, emergency search and rescue, emergency repair operations, providing ground and aerial lighting. Its application industries include:

Business Empowerment
Outdoor Exploration
Emergency Mission
Agriculture and Fisheries
03
Technical Development Capability
and Product Features
EXIFLY's tethered lighting drone demonstrates a series of advanced
technical features and performance advantages:
Aerial Lighting Performance:
Utilizes brand LED light source with a three-dimensional lamp bead structure, power ≥100W, illumination range up to 1000 square meters, high brightness, meeting the brightness requirements for on-site rescue and other operations.
Multiple power supply methods:
Supports generator power supply or mains power supply; when using mains power, it can achieve 24 hours of uninterrupted lighting operation.
Rapid Deployment Capability:
Can be deployed and airborne for illumination within 3 minutes of arriving on site, significantly enhancing emergency response efficiency.
Intelligent Control System:
Equipped with visual positioning, further improving safety.
Multi-functional Integration:
Intelligent following: airborne lighting follows the ground terminal in real-time. Dual-control safety: APP + ground control box dual redundant system.
Environmental Adaptability Protection:
Stable performance.
04
Future
Development Direction
and Exploration
With the continuous development of drone technology,
EXIFLY is also actively exploring future development directions:
Hardware for extreme environments
is our pursuit
We are committed to creating hardware that copes with extreme environments, from high temperature and cold to humid and dusty scenarios, all passing rigorous tests to ensure stable operation, providing reliable hardware support for equipment needs in complex working conditions.
AI integration
is also a key direction for future development
Utilizing emerging artificial intelligence technology and big data analysis, manufacturing enterprises can not only monitor the processing process in real time but also autonomously optimize based on data feedback, improving production efficiency while greatly reducing risks caused by human error.