Depth from Vector Shapes
Build a three-dimensional form by adding depth to supported shapes in the SVG.
3D TOOLS / SVG TO STL
Create 3D geometry from supported SVG shapes and download the STL for inspection, editing, or slicing.
TOOL WORKSPACE
SVG extrusion is not implemented in the current browser converter. This page does not accept files or create an STL until that local capability is ready.
The page does not accept an SVG, generate geometry, or offer a download. It remains disabled until local SVG parsing and extrusion are implemented and tested.
FILES STAY LOCAL — Your SVG file is processed in your browser and is not uploaded to or retained by Crisp3D.
HOW IT WORKS
Select the SVG vector design you want to turn into a 3D model.
Add depth to supported vector shapes to build the 3D mesh.
Save the STL, then check its geometry and dimensions before editing, slicing, or printing.
FEATURES
Build a three-dimensional form by adding depth to supported shapes in the SVG.
Process the SVG in your browser without uploading the source file to Crisp3D.
Download the STL for inspection or continued work in compatible modeling, repair, or slicing software.
SVG TO 3D
SVG can store two-dimensional paths, shapes, text, images, and visual styling, while STL stores a three-dimensional surface made from triangles. The resulting STL represents new geometry created from supported SVG content; it does not recover unseen sides or turn every SVG element into editable 3D geometry.
For more predictable results, use simple artwork with clear, closed, filled vector shapes. Open paths, strokes, overlapping or self-intersecting shapes, text, masks, filters, gradients, and embedded images may require preparation or produce different results.
STL primarily stores surface geometry and does not preserve SVG colors, gradients, filters, or other visual styling as standard model appearance data.
A successful SVG-to-STL conversion does not confirm printability. Check the scale, watertightness, non-manifold geometry, minimum feature size, wall thickness, orientation, supports, and slicer settings before printing.
RELATED FILE TOOLS
Keep creating
Move from first concept to a clean, textured, production-ready asset without leaving Crisp3D.
SVG TO STL BASICS
An SVG to STL converter creates three-dimensional geometry from supported shapes in a two-dimensional SVG design and saves the result as an STL mesh. It adds depth to the vector artwork instead of simply changing the file extension.
Yes. You can give supported SVG shapes depth to create an extruded 3D model. The result is based on the visible vector design; it is not an automatic reconstruction of a complete object with unseen sides.
STL does not normally preserve SVG colors, gradients, or filters. SVG dimensions can also use different units, while STL does not reliably declare a real-world unit, so verify the final dimensions in your modeling or slicing software.
Choose an SVG file, create 3D geometry from its supported vector shapes, then download and inspect the STL in compatible 3D software or a slicer.
Simple SVG artwork with clear, closed, filled shapes is generally the most suitable input. Open paths, strokes, text, embedded images, overlapping shapes, masks, filters, and other complex features may require preparation or produce different results.
Not automatically. Check the dimensions, watertightness, non-manifold geometry, minimum feature size, wall thickness, orientation, supports, and slicer settings for your printer and material before printing.
3D TOOLS / SVG TO STL
Create 3D geometry from supported SVG shapes and download the STL for inspection, editing, or slicing.
TOOL WORKSPACE
SVG extrusion is not implemented in the current browser converter. This page does not accept files or create an STL until that local capability is ready.
The page does not accept an SVG, generate geometry, or offer a download. It remains disabled until local SVG parsing and extrusion are implemented and tested.
FILES STAY LOCAL — Your SVG file is processed in your browser and is not uploaded to or retained by Crisp3D.
HOW IT WORKS
Select the SVG vector design you want to turn into a 3D model.
Add depth to supported vector shapes to build the 3D mesh.
Save the STL, then check its geometry and dimensions before editing, slicing, or printing.
FEATURES
Build a three-dimensional form by adding depth to supported shapes in the SVG.
Process the SVG in your browser without uploading the source file to Crisp3D.
Download the STL for inspection or continued work in compatible modeling, repair, or slicing software.
SVG TO 3D
SVG can store two-dimensional paths, shapes, text, images, and visual styling, while STL stores a three-dimensional surface made from triangles. The resulting STL represents new geometry created from supported SVG content; it does not recover unseen sides or turn every SVG element into editable 3D geometry.
For more predictable results, use simple artwork with clear, closed, filled vector shapes. Open paths, strokes, overlapping or self-intersecting shapes, text, masks, filters, gradients, and embedded images may require preparation or produce different results.
STL primarily stores surface geometry and does not preserve SVG colors, gradients, filters, or other visual styling as standard model appearance data.
A successful SVG-to-STL conversion does not confirm printability. Check the scale, watertightness, non-manifold geometry, minimum feature size, wall thickness, orientation, supports, and slicer settings before printing.
RELATED FILE TOOLS
Keep creating
Move from first concept to a clean, textured, production-ready asset without leaving Crisp3D.
SVG TO STL BASICS
An SVG to STL converter creates three-dimensional geometry from supported shapes in a two-dimensional SVG design and saves the result as an STL mesh. It adds depth to the vector artwork instead of simply changing the file extension.
Yes. You can give supported SVG shapes depth to create an extruded 3D model. The result is based on the visible vector design; it is not an automatic reconstruction of a complete object with unseen sides.
STL does not normally preserve SVG colors, gradients, or filters. SVG dimensions can also use different units, while STL does not reliably declare a real-world unit, so verify the final dimensions in your modeling or slicing software.
Choose an SVG file, create 3D geometry from its supported vector shapes, then download and inspect the STL in compatible 3D software or a slicer.
Simple SVG artwork with clear, closed, filled shapes is generally the most suitable input. Open paths, strokes, text, embedded images, overlapping shapes, masks, filters, and other complex features may require preparation or produce different results.
Not automatically. Check the dimensions, watertightness, non-manifold geometry, minimum feature size, wall thickness, orientation, supports, and slicer settings for your printer and material before printing.