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Quadcopter drone 3D Models

Find the best Quadcopter drone 3D Models, free download in STL, FBX, GLB, OBJ, 3MF, USDZ for 3D modeling and creation in Blender, 3D printing, game developing, animation, eCommerce, AR/VR and etc. Generated by Tripo AI 3D Generator.

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Design a high-poly, photorealistic 3D model of a futuristic urban drone:

Form & Function: Sleek quadcopter with carbon-fiber frame, smooth aerodynamic curves, retractable landing gear, integrated LED navigation lights.

Topology & Optimization: Clean quad-based topology under 200k polygons; fully UV-unwrapped with non-overlapping islands.

Materials & Textures: Physically based rendering (PBR) materials—brushed metal for the frame, translucent plastic for prop guards, emissive maps for LEDs; include 4K Albedo, Normal, Roughness, Metallic and Emissive texture sets.

Deliverables: Final model exported as FBX and OBJ, with texture maps organized into named folders; ready for real-time rendering in Unreal Engine or Unity.

Reference & Style: Draw inspiration from current industrial drone prototypes; aim for a balance of realism and sci-fi flair.”**
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Design a futuristic quadcopter drone for a tech project. It should have 4 arms in an “X” layout, each with a brushless motor and propeller. Mount a forward-facing camera for hand gesture detection and a small onboard computer like Raspberry Pi with antennas for wireless control. On top, include a circular spinning LED or hologram fan display that simulates floating 3D videos or images. Show the display projecting a glowing image in mid-air. Add visible LiPo battery, wiring, and LED strips for a techy look. Use a semi-transparent cover to reveal internal electronics. Optionally, include a human hand nearby making a gesture to show control. The model should be lightweight, realistic, and optimized for animation or 3D printing. Use a sci-fi aesthetic with clear labeling of components like camera, hologram display, Pi, and power system.
Anonymous1753696165
Design a detailed, Blender-compatible 3D model of a quadcopter drone for a student tech project. The drone should include four brushless motors with red propellers, a lightweight carbon fiber or PLA body, and an Arduino Nano microcontroller mounted on top of the frame. Below the main body, integrate a realistic rotating LED hologram fan display, designed to project 3D images and videos in mid-air. Include visible wiring for ESCs, a Li-Po battery slot, and a mounted receiver module (e.g., HC-05 or NRF24L01). Use clean topology with quads and low-to-medium polycount for animation purposes. Apply procedural or PBR materials compatible with Blender's Cycles or Eevee renderer. Structure the model with organized collections/layers for easy animation, rigging, and texturing.
Anonymous1753696165
Create a high-quality 3D model of a compact quadcopter drone designed for a college project. The drone should feature four brushless motors with red propellers, a lightweight carbon fiber or plastic frame, and a visible Arduino Nano microcontroller mounted on top. Integrate a functional-looking hologram display unit beneath the drone — a circular or fan-style LED-based holographic projector — capable of projecting floating 3D images and videos in mid-air. Include detailed components such as ESC wiring, a Li-Po battery compartment, and a gesture-control receiver module (Bluetooth HC-05 or NRF24L01) on the frame. The drone should appear DIY-assembled, aerodynamically stable, and lightweight enough to realistically fly with the display attached. Display the drone in a clean, well-lit environment with accurate texturing and component realism
Anonymous1753696165
Design a realistic 3D model of a compact quadcopter drone for a college-level project. The drone should include four brushless motors with red propellers, a lightweight carbon fiber frame, and an Arduino Nano microcontroller visible on top. It should feature a mounted holographic LED fan display on the bottom front side capable of showing images and videos mid-air. Include visible wiring for ESCs, a small Li-Po battery holder, and a glove-based gesture control receiver (NRF24L01 or Bluetooth module). The drone must appear aerodynamic, balanced for stable flight, and designed for DIY assembly. Show the drone in a neutral studio background with realistic materials and clear structure
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Лопасти от дрона
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翱翔FLY
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