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Mercedes Sprinter Passenger Step Location Scan - 3D Scans
STL

Mercedes Sprinter Passenger Step Location Scan

A$200.00

File Size

217.9 MB

Category

3D Scans

License

Personal & Commercial

Secure Payment
Instant Download
Licensed
Mercedes Sprinter Passenger Step Location Scan 3D scan of the Mercedes Sprinter passenger-side step area including the sill plate profile, chassis attachment points, and body-to-frame transition. Designed for fabricators building custom entry steps, fold-out step assemblies, or accessibility ramp mounting solutions. Scan Specifications: - Point distance: 0.8mm - Scanner accuracy: 0.02mm - File format: STL - CAD compatible: SolidWorks, Fusion 360, CATIA, FreeCAD Applications: - Custom entry step design and fabrication - Fold-out step mechanism engineering - Accessibility ramp mounting bracket design - Sill plate reinforcement fabrication Scanned at JDL Innovations, Jimboomba QLD.

Technical Specifications

File FormatsSTL
File Size217.9 MB
Scan Accuracy0.1 – 0.5mm
LicensePersonal & Commercial
DeliveryInstant Digital Download

Compatible Software

This scan can be opened in any CAD or 3D modelling software that supports STL formats, including:

Fusion 360SolidWorksFreeCADBlenderMeshmixerCuraPrusaSlicer

Applications

  • Reverse engineering
  • Custom fabrication
  • 3D printing
  • CNC machining
  • Fitment checking
  • Conversion adapters

Frequently Asked Questions

What file formats are included?

This scan includes STL format. All formats are included with your purchase for use in CAD software like Fusion 360, SolidWorks, and FreeCAD.

How do I download after purchase?

After completing your purchase, you'll receive an instant download link via email. You can also access your downloads from your account dashboard at any time.

Can I use this for commercial projects?

Yes, all scans include a Personal & Commercial license. Use them for reverse engineering, fabrication, 3D printing, CNC machining, and other commercial applications.

What scan accuracy do you provide?

Our scans are captured with professional-grade equipment with typical accuracy of 0.1–0.5mm, suitable for reverse engineering and precision fabrication.