Parametric Modular Storage System

This is a parametric modular storage system designed to organize an office drawer. Its main design goal was to be able to have 2 layers of storage in a drawer of a desk. So, on the top layer, you can use the trays (Trays.scad) which let you organize the most used stuff. The boxes with a cover (SimpleBox.scad) let you create boxes that lies on the bottom of the drawer underneath of the trays. You can use them to store your overstock.

You can customize the size of the objects to make them fit snugly in your drawer. It let use all the space in your drawer efficiently.

Support material is not needed. An infill of 30% is recommended.

This object was designed using openSCAD.

Printable Files

  Trays Generator
  Boxes Generator

This object is also published on the following site(s):
Prusa Printers

The source files are available:

You may request the source file(s) of this object. Ask for it by posting a comment below. Your email address will NOT be used for any other purposes than delivering you the source files. By doing so:

You are free to:

* Share — copy and redistribute the material except the source files in any medium or format
* Adapt — remix, transform, and build upon the material

You agree to:

* give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use.
* not use the material for commercial purposes
* distribute your contributions under the same license as the original if you remix, transform, or build upon the material
* not apply legal terms or technological measures that legally restrict others from doing anything the license permits.
* not upload the source files or modified source files on any sites. They are made available for your personal usage only. Nevertheless, you are allowed to upload the resulting STL or OBJ files.

If you do not agree to any of these conditions, do NOT request the source files.

Copyright 2012-2022 by Claude “Tryphon” Théroux

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