Created 1 months ago
Remixed once
Description
Raspberry Pi Pico enclosure designed for the standard 51x21mm board footprint. It fits the Pico 1, Pico W, Pico 2, and Pico 2 W natively.
The top shell includes pass-through slots at standard 0.7-inch pitch to clear upward-facing headers, alongside a thumb-cut for the BOOTSEL button and a Micro-USB trench on the base.
Photos
Technical views
Aix — a minimal, precise protective shell engineered for the standard iPhone 16. Designed with generous button and port cutouts to ensure full tactile access to the new Camera Control and Action buttons without sacrificing corner protection. Design Details Fitment: Sized precisely for the 147.6 x 71.6 mm iPhone 16 chassis. Cutouts: Features full-clearance openings for the pill-shaped camera bump, USB-C port, and all side buttons. Lip: A subtle 1mm front overhang keeps the screen off flat surfaces when laid face-down. Print Notes Intended for TPU or flexible filaments to allow the phone to snap past the front lip. Print face-down (or back-down with supports for the lip) depending on your bridging confidence.
A True Wireless Stereo (TWS) earbud enclosure tailored for custom internals. The main exterior plate commands an exact 27 mm footprint, housing a domed chassis ergonomically tapered toward the ear canal. The structure includes exact hollows for: A Ø13 × 3 mm PCB A 401012 battery (4 × 10 × 12 mm) An 11.5 mm acoustic speaker The angled acoustic nozzle features a locking lip, allowing the included silicone ear tip to snap securely into place while remaining fully removable.
A hardshell housing for True Wireless Stereo (TWS) electronics, featuring a robust clamshell design. The base is sized exactly to the requested 52 × 48 × 24 mm footprint, finished with heavy corner rounding for pocketability and a recessed alignment lip for a clean seal. 1.8mm Hinge Channel: Sized to accept standard 1.75mm filament as a press-fit hinge pin. USB-C Port: Centred rear cutout ready for charging board alignment. Print-ready Orientation: The lid and body are separated and sit flush on the build plate for support-free printing.
A print-in-place desk plate that prints entirely flat and features an integrated hinged kickstand. Designed for easy setup, the outer frame swings backward to form a stable tripod base. Features of this design: Print-in-place captive hinge mechanism with a 0.4mm tolerance Heavyweight 4mm main card thickness for rigidity Recessed nested geometry allowing it to collapse back into a single flat sheet Embossed typography using Archivo Black for high legibility
A structured, dual-bay hardware enclosure tailored to house both an ESP32-CAM and an HX711 load cell amplifier. Built with a unified form factor to keep a vision-based smart scale or sensor node tidy, this shell manages the boards, wiring, and thermal exhaust in one place. Internal Layout: Features independent standoff patterns spaced for standard ESP32-CAM and HX711 module footprints. FDM Optimized: Horizontal ventilation tracks on the side walls print cleanly without supports. Cable Management: Drop-in U-slots on either end allow cables to be seated before securing the lid, avoiding tricky wire threading. Hardware Required: Fits standard M3 self-tapping screws for the lid, and features built-in outer flanges for securing to a bench or wall.
A rigid 4-slot cable clip profiled to seat directly onto a standard 25mm desk edge. The upper block features four 7mm circular channels to corral anything from USB cables to heavy power leads, utilizing a 5mm snap-in neck and flared entry lips to retain them once seated. Fitment Checklist Host Desk Thickness: 25.0mm exactly. The mounting bore incorporates dual 1mm tension bumps on the bottom face to grip the surface. Measure the board with calipers before printing; standard one-inch stock will seat tight, but the clip will not force over thicker material. Cable Capacity: Four 7mm bores. The 5mm entry neck requires slight cable jacket compression for insertion. Incompatibilities: Will not seat correctly on desks with deep edge bevels, metal trim bands, or severe rounded profiles.