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Three Funding Rounds in Three Months: EagleSight Dynamic Targets Bionic Flapping-Wing Robots

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Shenzhen-based EagleSight Dynamic, founded just five months ago, announced the completion of a Series A round worth tens of millions of yuan. The company completed four funding rounds—Seed, Angel, Pre-A, and Series A—within just three months. As the world's first company dedicated to embodied AI bionic flapping-wing robots, its products operate below 45 decibels with 3-5 times the endurance of comparable rotary-wing aircraft. Its self-developed Vortrix fluid simulation engine boosts computing efficiency by approximately 1000 times.

Funding Milestone: Four Rounds in Three Months Sets Record in Embodied Intelligence Hardware

EagleSight Dynamic, a Shenzhen-based company founded just five months ago, announced the completion of a Series A round worth tens of millions of yuan. Within just three months, the company completed four consecutive funding rounds—Seed, Angel, Pre-A, and Series A—setting a rare record in the embodied intelligence hardware sector.

Founded in March 2025 in Shenzhen, EagleSight Dynamic is the world's first company dedicated to embodied AI bionic flapping-wing robots. The business covers two core pillars:

  • R&D and commercialization of bionic flapping-wing robots
  • Self-developed Vortrix fluid simulation engine

The latter builds virtual fluid environments to train flight strategies, creating a closed-loop optimization system by feeding real-world flight data back into the system.

Technical Advantages: Generational Gap Between Flapping-Wing and Rotary Drones

The core difference between bionic flapping-wing robots and rotary-wing drones lies in how they interact with air:

DimensionBionic Flapping-WingRotary Drone
Noise Level<45 dB>60 dB
SafetyFlexible wings, human-safeHigh-speed blades, risk
Gliding PowerZero consumptionContinuous power draw
Endurance3-5x same sizeBaseline

This difference gives flapping-wing robots significant advantages in scenarios requiring proximity to humans and long endurance, such as ecological monitoring and urban inspection.

Product Portfolio: From Consumer Eagle X to Embodied Intelligence White Eagle

The company's first consumer product, Eagle X, has completed over 3,000 hours of flight testing and is now in mass production. It will be launched globally through Kickstarter for developers. The open platform supports:

  • Wing replacement
  • Firmware flashing
  • Payload mounting

Meanwhile, the company is developing "White Eagle", an embodied AI bionic flapping-wing robot:

  • Weight: approximately 3 kg
  • Degrees of freedom: approximately 15
  • Wings capable of independent complex motions

Core Technology Moat: Vortrix Fluid Simulation Engine

The Vortrix fluid simulation engine is EagleSight Dynamic's core technology moat. Addressing the industry pain points of traditional CFD's low computational efficiency and inability to support large-scale reinforcement learning, Vortrix combines particle modeling with AI technology to boost computational efficiency by approximately 1000 times.

Key breakthroughs:

  • Control strategies can be directly transferred to physical robots through zero-shot learning
  • Reduces aerodynamic design cycles from months to days
  • The world's first integrated fluid-control simulation training platform designed specifically for robots

Commercialization Path: Three-Stage Progressive Strategy

Stage 1: Establish brand influence through consumer product exports Stage 2: Leverage long endurance and low noise advantages to enter industrial markets such as urban inspection and ecological monitoring Stage 3: Transition to platform model, opening power modules and Vortrix engine to all aerial and underwater robot development teams

The Series A funding will be used for production stocking and market expansion of the first product, team expansion, and R&D of next-generation flapping-wing robots and fluid simulation engines. As the embodied intelligence wave sweeps the globe, EagleSight Dynamic's unique bionic flight approach opens a differentiated competitive track for the robotics industry.

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