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Required PBR textures:
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High-quality 3D assets at affordable prices — trusted by designers, engineers, and creators worldwide. Made with care to be versatile, accessible, and ready for your pipeline.
Included File Formats
This model is provided in 14 widely supported formats, ensuring maximum compatibility:
• - FBX (.fbx) – Standard format for most 3D software and pipelines
• - OBJ + MTL (.obj, .mtl) – Wavefront format, widely used and compatible
• - STL (.stl) – Exported mesh geometry; may be suitable for 3D printing with adjustments
• - STEP (.step, .stp) – CAD format using NURBS surfaces
• - IGES (.iges, .igs) – Common format for CAD/CAM and engineering workflows (NURBS)
• - SAT (.sat) – ACIS solid model format (NURBS)
• - DAE (.dae) – Collada format for 3D applications and animations
• - glTF (.glb) – Modern, lightweight format for web, AR, and real-time engines
• - 3DS (.3ds) – Legacy format with broad software support
• - 3ds Max (.max) – Provided for 3ds Max users
• - Blender (.blend) – Provided for Blender users
• - SketchUp (.skp) – Compatible with all SketchUp versions
• - AutoCAD (.dwg) – Suitable for technical and architectural workflows
• - Rhino (.3dm) – Provided for Rhino users
Model Info
• - All files are checked and tested for integrity and correct content
• - Geometry uses real-world scale; model resolution varies depending on the product (high or low poly)
• - Scene setup and mesh structure may vary depending on model complexity
• - Rendered using Luxion KeyShot
• - Affordable price with professional detailing
Buy with confidence. Quality and compatibility guaranteed.
If you have any questions about the file formats, feel free to send us a message — we're happy to assist you!
Sincerely,
SURF3D
Trusted source for professional and affordable 3D models.
More Information About 3D Model :
This professional-grade 3D model represents an advanced bionic hand and finger prosthetic prototype, meticulously designed to bridge the gap between biological function and robotic engineering. The model features a highly detailed anatomical structure, replicating the complex articulation of human phalanges and the metacarpal region. Each joint is engineered with realistic range-of-motion constraints, suitable for mechanical simulations or biomedical research visualizations. The prototype includes internal cavities for micro-actuators, tensioning cables that simulate human tendons, and integrated sensor nodes for haptic feedback loops. This cybernetic limb serves as a critical asset for developers working in the field of upper-limb rehabilitation and neuro-prosthetics. The surface geometry is optimized for high-resolution rendering, while the internal mechanical components provide an educational insight into the assembly of modern orthotic devices. Designed with a modular philosophy, the finger assemblies can be individually adjusted or scaled to fit various experimental parameters, making it an essential tool for medical students, roboticists, and industrial designers exploring the frontiers of human-machine interaction and artificial limbs.
KEYWORDS: prosthetic, hand, bionic, robotic, finger, limb, medical, anatomy, prototype, cybernetic, engineering, biomechanics, actuator, orthotic, artificial, mobility, rehabilitation, sensor, digital, electronics