But what exactly is "2.5D"? It isn't true 3D rendering (like you’d see in Cadence Virtuoso 3D or Siemens Calibre 3DSTACK). Instead, the 2.5D view in KLayout gives you a pseudo-3D perspective where 2D polygons are extruded vertically based on layer information. This article dives deep into how to activate, configure, and leverage the KLayout 2.5D view to debug your designs faster than ever before. Before clicking buttons, let’s clarify the terminology. A true 3D view requires volume rendering (height, width, depth). KLayout does not natively do this because it is a layout tool, not a mechanical CAD tool.
Enter —the open-source, high-performance layout viewer and editor. While KLayout is famous for its speed handling massive GDS/OASIS files, its hidden superpower for many users is the 2.5D View . klayout 25d view
By spending 10 minutes configuring your layer heights and learning the camera controls, you transform KLayout from a static plotting tool into a dynamic visualization engine. Whether you are verifying a MEMS device, a Silicon Photonics chip, or a standard CMOS block, the "2.5D view" brings your layout to life—literally lifting your polygons off the screen to reveal the true vertical complexity of your design. But what exactly is "2
Run this script, and your 2.5D view configures itself instantly. Problem: The 3D view is completely black. Solution: You are likely looking from inside the substrate. Reset the camera ( View > Reset 3D Camera ). Also, ensure your "Background color" in preferences is not black (set it to dark grey). This article dives deep into how to activate,
# This script sets heights based on layer name keywords layout_view = RBA::Application.instance.main_window.current_view lv = layout_view.active_layerview for layer_index in lv.each_layer do layer_info = lv.layer(layer_index) name = layer_info.name.to_s.lower