3D preview of Modular Desktop Charging Dock and Organizer
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Interactive 3D model of Modular Desktop Charging Dock and Organizer

Brackets and mounts

Modular Desktop Charging Dock and Organizer

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Bounding box
160.0 × 100.0 × 35.0 mm
Engine
Precision B-rep
Parameters
25
Published
September 10, 2026

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The prompt

Design a functional 3D-printable modular desktop charging dock and organizer. The object should be a compact, modern, premium-looking desk accessory designed specifically for FDM 3D printing. FUNCTION: - Hold one smartphone upright at a comfortable viewing angle. - Create a wide central phone slot that can accommodate phones with or without a thin case. - Add a cable-routing channel underneath the phone so a charging cable can pass through cleanly. - Add 3 flexible cable-holder slots on the front edge to keep charging cables from falling off the desk. - Add a small recessed tray on one side for wireless earbuds or small accessories. - Add 2 small circular/rectangular compartments for USB drives, SD cards, or small adapters. - Make the cable slots flexible enough to grip common USB-C and Lightning-style cables without damaging them. - Keep the center of gravity low so the dock does not tip when a phone is inserted or removed. DESIGN: - Minimalist futuristic industrial design. - Smooth rounded edges and comfortable curves. - No unnecessary decorative details. - Strong, clean geometry that looks like a real commercial product. - Slightly angled phone support. - Wide stable base. - Symmetrical and visually balanced. - Avoid thin fragile walls or tiny unsupported features. 3D PRINTING REQUIREMENTS: - Designed for FDM 3D printing. - PLA and PETG compatible. - Print flat on the build plate. - No supports required. - Avoid overhangs greater than approximately 45 degrees. - Minimum wall thickness around 2.5–3 mm. - Reinforce areas that experience stress. - Avoid extremely small holes or slots. - Use fillets on stress points. - Keep the design reasonably lightweight and filament-efficient. - Prefer one main printable body rather than many separate parts. - Make all components functional and manufacturable. TARGET: Create an approximately 160 mm × 100 mm × 35 mm desktop organizer. The final model must be a real functional object, not just a decorative concept. Output clean watertight solid geometry suitable for direct export as STL/STEP for 3D printing.

Parameters

NameValueRange
Overall Length (X)160 mm100 – 240
Overall Depth (Y)100 mm70 – 160
Overall Height (Z)35 mm20 – 60
Front / Rear Shelf Height20 mm10 – 40
Riser Front Face Y-18 mm-40 – 0
Riser Back Face Y28 mm10 – 45
Outer Wall Margin3 mm2.5 – 10
Phone Slot Width (X)90 mm60 – 140
Phone Slot Thickness14 mm9 – 22
Phone Lean-Back Angle12 deg0 – 25
Phone Slot Centre Y4 mm-10 – 20
Phone Slot Floor Height14 mm6 – 26
Cable Channel Width14 mm8 – 30
Cable Channel Floor7 mm3 – 14
Cable Grip Slot Width3.6 mm2.5 – 8
Cable Grip Slot Depth4.5 mm2 – 8
Cable Grip Slot Length12 mm6 – 25
Cable Grip Slot Spacing22 mm12 – 40
Tray Width (X)30 mm15 – 50
Tray Length (Y)22 mm12 – 40
Tray Pocket Depth8 mm3 – 14
Compartment Width (X)18 mm10 – 35
Compartment Length (Y)20 mm10 – 35
Compartment Depth8 mm3 – 14
Gap Between Compartments5 mm3 – 20

Every value above is a live dimension. Open a model like this in the editor and each one becomes a slider you can drag before exporting.

Modular Desktop Charging Dock and Organizer - Free CAD Model (STEP, STL) | TextoCAD