Apple iPhone 15 Pro Max Silicone Case Red Packaging
Apple iPhone 15 Pro Max Silicone Case Red Packaging is a detailed Electronics & Gadgets asset built for professional 3D pipelines, available at $19. Straight from the source file: 704 polygons, 696 vertices. Read that against your engine and your shot: a hero close-up and a background prop have very different budgets.
StemCell means one authored master and several honest exports, with PBR values that hold their meaning in each of them. The outliner reads cleanly: no stray nulls, no leftover helpers, nothing to untangle before work starts. It is cataloged for technical visualization, software demos and film & TV VFX.
2024 is when this one first went up, and it has stayed in the catalog since. It is aimed at product rendering, UI and app mockups and game and film props.
Questions About This Model
Can the Apple iPhone 15 Pro Max Silicone Case Red Packaging model be modified after purchase?
Yes. The license allows editing the geometry, retopologising, changing materials and adapting the asset to a project. What it does not allow is reselling or redistributing the model file itself, or using the result commercially: this listing is Editorial Uses Only.
Does the Apple iPhone 15 Pro Max Silicone Case Red Packaging model include materials and textures?
Material and texture contents are listed per file on the TurboSquid product page. As a StemCell asset it ships with PBR materials that stay consistent across the delivered formats.
Which industries use the Apple iPhone 15 Pro Max Silicone Case Red Packaging model?
Hardware, Software Development and Film & Video Production are the primary industries on this listing. The license, however, is Editorial Uses Only: the model depicts a real branded product, so it may appear in editorial work in those fields, but not in advertising or in products for sale.
What does StemCell mean for the Apple iPhone 15 Pro Max Silicone Case Red Packaging model?
StemCell covers both geometry and shading: the model is delivered across formats with materials that stay equivalent instead of needing per-engine conversion.