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MH-6 Little Bird Helicopter with Rocket Pod Rigged for Cinema 4D is a three-dimensional model of a light military helicopter equipped with rocket pods, designed for reconnaissance, light attack, and special operations missions.
This model features a detailed helicopter structure including main and tail rotors, compact fuselage, landing skids, and mounted rocket pods. It is fully rigged, allowing animation of rotors and key components for dynamic simulations. The design reflects modern military rotorcraft engineering with realistic proportions and surface detailing, making it suitable for high-quality rendering and technical visualization.
For military simulation projects, defense technology visualization, aerospace engineering presentations, training materials, combat scenario animations, game development, and virtual reality applications.
MH-6 Little Bird Helicopter with Rocket Pod Rigged for Cinema 4D is fully rigged and is ready to be animated in Cinema 4D. You can easily position it the way you need or animate it the way your project requires. See the screenshots to get an idea of how rigging works. The pose of the model on the render images is an example and can be recreated using rig, it is not initially included into the product.
Hope you like it!
Features:
- High quality polygonal model, correctly scaled for an accurate representation of the original object.
- Models resolutions are optimized for polygon efficiency. (In Cinema 4D, the Subdivision Surface function can be used to increase mesh resolution if necessary.)
- All colors can be easily modified.
- Model is fully textured with all materials applied.
- No part-name confusion when importing several models into a scene.
- No cleaning up necessary just drop your models into the scene and start rendering.
- No special plugin needed to open scene.
- Model does not include any backgrounds or scenes used in preview images.
- Units: cm
Textures Formats:
- 15 png (8192x8192)
- Dimensions 10,58 x 12,98 x H3,77m
(c) 3d_molier International
REVIEWS & COMMENTS
accuracy, and usability.
