Created 3 months ago
Description
Mounts under desk with two screws, holds one pair of over-ear headphones
Images

What it's for A robust under-desk mount designed to keep headphones off the keyboard and safely out of the way. The resting arm features a wide, flat U-shaped profile specifically engineered to support heavy headsets without denting or creasing soft headband material. Designed to be printed flat on its side, the model aligns the layer lines for maximum structural strength, eliminating the risk of snapping under load. Dimensions Resting area: 35mm wide by 25mm deep, providing ample flat-bottomed clearance for typical headbands. Mounting tab: 50mm long, flush-cut to sit flush against the underside of a desk. Hardware: Features two countersunk screw holes (4.5mm shaft clearance, 9mm flat counterbore) designed to print cleanly without supports. Remix ideas Extend the front retaining lip for headsets with unusually thick padding. Adjust the internal depth of the U-channel to accommodate wider audiophile headbands. Expand the mounting tab width or hole spacing for use with heavy-duty lag screws.
A stepped geometric desk organizer designed with an asymmetric internal divider. It serves as an alternative to standard, single-height store-bought cups by offering two distinct storage zones within an 80mm hexagonal footprint. The rear compartment supports tall items like pens and markers, while the front compartment is scaled for smaller desk supplies like paper clips and erasers. Dimensions: 80mm outer diameter, 80mm maximum height. Rear Compartment: Full height (80mm), allocating approximately 60% of the internal floor area. Front Compartment: Partial height (26.6mm), allocating approximately 40% of the internal floor area. Wall Thickness: 2mm external and internal dividing walls.

A rigid 8-slot cable comb designed to flatten out chaotic PC cable bundles. Spaced precisely for standard 18AWG PSU wires, it includes mounting flanges on either side to pin the whole run tight against a case wall or back panel. Remix Variables Channel Dimensions: Currently set to a 3.5mm width on a 4.5mm pitch. Expand the width to 4mm or higher if you are working with thick sleeved cables. Slot Count: Built for an 8-pin run (like a GPU or EPS cable). Extending the pattern to 24 slots for a 24-pin motherboard main power cable is a straightforward parameter update. Mounting Hardware: The end flanges are drilled for M3 screws with a simple countersink. These can easily be scaled for M4 hardware or removed entirely if you prefer mounting with double-sided tape.
A minimalist desktop stand that holds a standard 4x6-inch index card in landscape orientation. The frame is tilted back at 15 degrees for optimal reading from a seated position, and features an open-top U-shape slot so cards can be dropped in or swapped out instantly. No Supports Required: Prints perfectly flat on its base, with the frame angled to avoid steep overhangs on the inner cavity. Drop-In Fit: Sized at 154mm x 103mm internally to easily accommodate standard and slightly oversized cards. 4mm Retaining Lip: Overlaps the bottom and sides of the card just enough to hold it flat without covering your text.
A rigid phone stand angled at 65 degrees, proportioned to clear lower screen content while retaining devices in thick cases. Requisite bracing is extruded into a single dimension to maintain a flat footprint and minimize material usage. Features: 24mm deeper retaining ledge for armored or wallet cases. Reduced 9mm front lip height to prevent screen obstruction. 65-degree optimal viewing incline. Rigid 6mm profile. Overall capacity accommodates devices around 3 by 7 inches.

A single-octave, print-in-place keyboard array. Built on a common back-rail using living hinges, allowing each key to travel independently when pressed. Specifications Action: 1.0mm flexure (living hinge) Clearances: 0.6mm gap between neighboring keycaps Dimensions: Standard octave proportioning, miniaturized for rapid printing Material Note: Requires PETG or a reasonably ductile PLA to prevent flexure snapping after repeated cycles.