Oshkosh HEMTT M985 Tactical Truck with Spare Tire Camo Rigged
Oshkosh HEMTT M985 Tactical Truck with Spare Tire Camo Rigged is one of the Vehicles models in the 3D Molier catalog, listed at $219. Poly count sits at 37,690; vertex count at 547,436. That figure reads differently on desktop, on mobile and in WebXR, so weigh it against the target platform and the number of instances in the scene.
Expect 404.35 x 953.93 x H420.38 cm on import - the units travel with the file. The model is watertight where it should be and open where it should be, so it behaves in both rendering and simulation. Naming and hierarchy are consistent, so the model behaves predictably when it is merged into a larger scene alongside other assets.
The listing flags driving simulation, automotive advertising and game traffic as the intended applications. Common uses are automotive advertising, film and TV backgrounds, game traffic and architectural visualization.
Questions About This Model
What should I search for to find models like the Oshkosh HEMTT M985 Tactical Truck with Spare Tire Camo Rigged?
Useful search terms are m985, military and truck. Browsing the Vehicles category shows the closest alternatives at a range of prices.
Which industries use the Oshkosh HEMTT M985 Tactical Truck with Spare Tire Camo Rigged model?
This listing is cataloged for Simulation, Advertising, Game Development, Film & Video Production and Architecture. Those are the sectors the model was tagged for on TurboSquid, based on how comparable assets in the Vehicles range are bought.
How heavy is the Oshkosh HEMTT M985 Tactical Truck with Spare Tire Camo Rigged mesh?
37,690 polygons and 547,436 vertices, built as polygonal quads/tris. That figure reads differently on desktop, on mobile and in WebXR, so weigh it against the target platform and the number of instances in the scene.
How clean is the geometry on the Oshkosh HEMTT M985 Tactical Truck with Spare Tire Camo Rigged model?
It is built as an organized scene, not a single welded mesh - parts are separable, named and sized to real-world dimensions.