Realistic Cyberpunk Easter Rabbit Bike 3D Model Low-poly 3D model
Home Catalog Realistic Cyberpunk Easter Rabbit Bike 3D Model Low-poly 3D model

Publication date: 2026-04-04

Buy Realistic Cyberpunk Easter Rabbit Bike 3D Model Low-poly 3D model

$4.99

License: Royalty Free

author:

Bolt-3D-Studio

All content related to this 3D asset—including renders, descriptions, and metadata — is credited to its original author, «Bolt-3D-Studio». CGhub does not claim copyright ownership over the content used.
  • Description
  • Formats

Asset BreakdownThe Overall ConceptThis asset is a high-fidelity, 3D-modeled realistic cyberpunk easter rabbit bike 3D model designed as a flagship player vehicle or premium environmental prop for neon-noir urban circuits, futuristic chase sequences, or cinematic near-future visualizations. Focusing on an aggressive light-cycle aesthetic and integrated playful tech, this model features a streamlined street-fighter silhouette with carbon fiber rabbit-ear aerodynamic fins, making it an ideal choice for high-end architectural renderings, hero vehicle transit, or as a top-tier performance bike in realistic 3D games.

Weathered Mint and Polished Chrome FinishThe motorcycle features a primary body finish of matte mint green paint, meticulously modeled with realistic surface tarnish, localized road-grime accumulation along the lower fairings, and high-quality material grain. This professional and grounded appearance provides a clear visual story of high-performance engineering and futuristic street racing, providing a sharp visual contrast against the vibrant cyan light elements and polished chrome accents.

High-Fidelity Neon Light-Ring Assembly and Carbon EarsA primary feature of this model is the integrated cyan-emissive light rings embedded within the wheel rims and side fairings. This is topped by dual woven carbon fiber rabbit-ear fins mounted above the dark-tinted windscreen. Every individual light-channel, the carbon-fiber weave pattern, and the recessed LED housing are modeled with significant surface depth, providing a clear visual indicator of advanced electric propulsion and adding incredible tactile detail for close-up inspection.

Performance Alloy Rims and Monoshock SuspensionThe vehicle is characterized by its high-detail multi-spoke alloy rims and a centralized rear monoshock coil featuring a vibrant orange spring. The structural design—complete with high-traction slick performance tires, a minimalist single-seat tail section with integrated lighting, and a streamlined front fork assembly with heavy-duty brake rotors—reinforces the asset's status as a functional and complete piece of professional-grade, high-performance futuristic automotive hardware.

Optimized High-Fidelity GeometryThe entire realistic cyberpunk easter rabbit bike 3D model is composed of efficient geometry designed for high-performance real-time rendering. Every element, from the individual handlebar controls and foot-pegs to the solid metallic battery casing and rubber tires, is modeled as solid, opaque geometry to maintain a consistent realistic look without the need for complex, resource-heavy transparency shaders.

Technical NotesFiles Included: FBX, GLB, OBJ, STL, ZIP (Textures).

Quick Tip: To enhance the realism in a sunset-drenched coastal highway or neon-lit city street scene, apply a high-intensity Emissive Map specifically to the cyan light rings and the horizontal headlamp. This will create a realistic futuristic glow and soft light-spill on the ground under dynamic lighting, showcasing the asset's diverse material quality and premium sci-fi design.

STL (Stereolithography, filesize: 2.38 MB), OBJ (OBJ, filesize: 37.8 MB), FBX (Autodesk FBX, filesize: 41.3 MB), OTHER (Other, filesize: 836 KB), PNG (PNG, filesize: 37.8 MB), GLTF (glTF, filesize: 42.8 MB)

3D Model details

  • cgtrader Platform
  • Animated
  • Rigged
  • Ready for 3D Printing
  • VR / AR / Low-poly
  • PBR
  • Textures
  • Materials
  • UV Mapping
  • Polygons: 0
  • Vertices: 0
  • Plugins used
  • Geometry: No N-gons | No faceted geometry | Manifold geometry |
Similar models