Sony SRS-X88 Low-poly 3D model
cgtrader
It's the high-quality, low-poly 3D model used by Sony SRS-X88 in various fields like game development, advertising, interior design, motion picture art, visualization, and more. Modeling was done using ortho-photos of real speakers, ensuring all design details are recreated authentically. Ease of use is a plus with this model consisting of three meshes, it's low-poly (saving system resources), and has just one material. Whatever renderer you choose, this model looks realistic due to high-resolution photo-textures. A competently designed topology combines well with detailed textures to minimize polygons while achieving maximum quality, perfect for even close-ups. Advanced realism is enhanced using additional textures like Specular, Glossiness, Bump, and Emission, especially for luminous elements (screens, indicators). To achieve optimal Bump depth, use a Bump Multiplier of 0.1-0.2 in Maya Software materials or V-Ray MTL materials for Maya. Five main textures complete the package: resolution is 4096 pixels square in .png format, with original PSD files available too. Opening and closing the antenna involve simple rotation and translation. This model was created in the 'Maya 2009' 3D program. Dimensions are accurate in real-world scale (centimeters). All parts are grouped correctly and named for ease of use. For added convenience, there's an adjusted render-scene in Maya 2014 with V-Ray 2.40, saving as a .ma file compatible up to Maya 2012 and V-Ray 2.0. This scene includes six V-Ray Rect Lights and reflectors, with V-Ray MTL materials assigned. To use the model in other programs, save scenes in .fbx, .obj, .DAE, or .max (2010 version) formats. Note: this is a Low-Poly model and should not be used with smoothing modifiers.
With this file you will be able to print Sony SRS-X88 Low-poly 3D model with your 3D printer. Click on the button and save the file on your computer to work, edit or customize your design. You can also find more 3D designs for printers on Sony SRS-X88 Low-poly 3D model.