Priced at $149, the Sikorsky S97 Raider is a finished Aircraft model rather than a base mesh you have to build on. The mesh carries 81,363 polygons and 86,131 vertices. The count is honest; whether it is heavy is a decision only your target platform can make.
14 maps at 8192 x 8192 and 4096 x 4096 carry the materials. Topology is kept deliberately simple where detail would not read on camera, which keeps the scene light without visibly cheapening the silhouette. Pivot points sit where you would expect them, which matters as soon as the model needs to be instanced or parented to something else.
Buyers most often take it for aerospace visualization, flight simulation and film & TV VFX. Published in 2019, it has stayed in the range while a lot of other listings came and went. It works for airline and airport visualization, flight simulation, aviation sequences in film and TV and VR training.
Questions About This Model
Can the Sikorsky S97 Raider 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.
How much does the Sikorsky S97 Raider 3D model cost?
$149 USD, paid once. TurboSquid handles payment and delivery. The license is Editorial Uses Only, because the model depicts a real branded product: it covers editorial contexts such as news, commentary and education, but not advertising or products for sale.
Does the Sikorsky S97 Raider model include materials and textures?
Material and texture contents are listed per file on the TurboSquid product page. Where textures are included they are packaged with the download rather than linked externally.
What is the Sikorsky S97 Raider model typically used for?
The listing names aerospace visualization, flight simulation and film & TV VFX as the main applications. In practice it also works anywhere a finished aircraft object is needed without modeling it from scratch.