Mini Cottage Appearance, Hidden Wire Slot 3D Printed Office Supplies For Desktop Cable Arrangement
Product Description
This cottage-shaped cable storage box is a delicate 3D printed office supply designed to tidy messy desk wires. It adopts a cute miniature house outline with embossed window and chimney decorative details. The hollow large-capacity inner space can hold coiled charging cords, lamp wires and small power lines. A movable side door and reserved bottom wire outlet make wire winding and extraction convenient, while the compact cuboid size fits neatly on desktops, shelf corners and bedside tables without occupying extra space.
Parameter Table
| Environmental Impact | Biodegradable options available (e.g., PLA) |
| Durability | Moderate to high, depending on material and print quality |
| Printing Technology | Fused Deposition Modeling (FDM), Stereolithography (SLA), Selective Laser Sintering (SLS) |
| Safety | Non-toxic materials, child-safe designs |
| Assembly Required | Usually no, but some models may require minor assembly |
| Material | PLA, PETG or other 3D printing filaments |



Application scenarios
Precautions
FAQ
Q: What material is this house cable storage box made from?
A: It is crafted from lightweight solid plastic via 3D printing molding technology.
Q: What kinds of wires can this storage box hold?
A: It fits coiled charging cables, desk lamp wires, and small low-power electrical connecting cords.
Q: Does the side door affect wire access during daily use?
A: The flexible movable door can be opened freely for winding or taking out internal wires.
Q: Will wires get tangled inside the storage box easily?
A: The independent enclosed inner space concentrates scattered wires and effectively reduces tangling.
Q: Can this house wire organizer be placed on narrow shelf corners?
A: Its compact mini cuboid structure adapts to most narrow desktop and shelf corner spaces.
Q: Are multiple color selections supported for this 3D printed storage box?
A: Multiple solid pastel color options can be customized according to personalized demands.