Created today
Remixed once
Description
An enclosure is only as good as the snarl of wires it prevents. This is a heavy-duty two-part monitor housing built specifically for FDM printing, designed to group, separate, and anchor a complete suite of biofloc water-quality electronics without turning into a bird's nest inside.
The layout isolates the battery compartment at the bottom and keeps the DC buck converters and relay in a ventilated top section, leaving the central deck clear for the ESP32 and an array of sensor interfaces. Internal divider walls double as cable routing channels, forcing the wiring to stay orderly.
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This is a comprehensive, dimensionally accurate parametric enclosure designed for DIY electronics. Laid out to securely house a 16×2 character LCD and four tactile push buttons, it uses standard M3 machine screws with captive nut traps for secure and repeatable assembly. The design separates the tactile switch bodies from the actual visible button caps, ensuring a clean and professional appearance. Features Locating Lip: Recessed rabbet ensures the top cover nests tightly and squarely onto the bottom shell. Component-Specific Pockets: 12×12 mm push-button switches are secured from the underside, operated by independent retained caps. Hidden Mounting: The 16×2 LCD is held flush against the top window from the inside via a custom bezel, keeping the surrounding PCB hidden. Directed Ventilation: Cooling slots are restricted to the lower front face, allowing flush wall mounting at the rear. Hardware Needed 4 × M3 × 12 mm machine screws 4 × M3 hex nuts (5.5 mm across flats) 4 × 12×12×7.3 mm tactile switches 1 × 16×2 Character LCD (JHD162A style)
A custom-engineered, fully playable acoustic enclosure designed for the Fender Blues Deluxe 10-hole diatonic harmonica. This silencer creates a miniature acoustic labyrinth directly behind the harmonica while leaving the entire metal mouthpiece exposed through a smooth, continuous lip opening. You can play normally—including bends and fast sweeps—without any rigid plastic interfering with your embouchure. Acoustic Architecture Direct Lip Access: A 94x9mm heavily rounded opening lets you play directly on the harmonica's surface. Three-Chamber Labyrinth: Sound exiting the back of the harmonica is forced through a tortuous path (Chamber 1 → 90° split → Chamber 2 → Chamber 3) before reaching the external exhaust vents. Foam-Ready: Generous internal tolerances (up to 4mm) on the back wall and first baffle allow for the manual installation of standard acoustic foam. Vibration Isolation: The harmonica is held precisely in place by six tiny internal ribs with a calibrated 0.4mm clearance, eliminating rattle without clamping the instrument. Tool-Free Assembly: Six internal cantilever snap-fits lock the top and bottom shells securely together and can be separated by hand.
A custom-designed acoustic enclosure built to fit a standard 10-hole diatonic harmonica (specifically dimensioned for the Fender Blues Deluxe). This silencer is built to drop external volume during practice while preserving a totally natural playing feel. The enclosure features a wide front opening that allows direct lip contact with the harmonica body, avoiding any forced embouchure changes. The rear of the enclosure acts as a miniature acoustic labyrinth, forcing outgoing air through staggered baffles and multi-chamber pathways to break up sound waves before they exit the exhaust ports. Remixing and Assembly Clearances: The default harmonica cavity includes a 0.4mm clearance, with 4mm of allocated depth at the rear for installing your own acoustic foam. Two-Piece Shell: The model splits into a top and bottom shell, joined by integrated friction-fit alignment pins. Print Settings: Prints completely support-free when the large flat mating surfaces are placed face-down on the build plate. PLA or PETG recommended for rigidity and snap-fit durability.
A classic flat wall brush profile, completely customizable for your shop or prop box. It prints as a solid piece, designed to be dropped flat on its back in the slicer so the text and profile print cleanly without supports. Remix Hooks The Text: Currently running a 1.25mm deboss. If you change the font, watch the spacing and depth. The Handle: Sized at 35x14mm with a heavy 6.5mm round-over for comfort. You can scale the Z-height for a longer beaver-tail handle. The Ferrule: Features triple 1.2mm crimp grooves for that authentic hardware-store look.
These four independent sleeves snap over the shaft of a screwdriver (or hex bit) and grip the screw from the sides, making overhead installation much safer. The driver bit drops straight through the open top to engage the screw head directly. As the screw bites into the material, the flexible jaws slide back up the driver shaft, releasing the screw automatically without jamming against the ceiling. What it's for Holding screws securely to a driver for overhead work Accommodates four size ranges (1–8 mm screw diameters) Slides freely on the driver shaft as the screw drives home Dimensions Tiny: Fits 1–2.5 mm screws (red) Small: Fits 2.5–4 mm screws (yellow) Standard: Fits 4–6 mm screws (green) Large: Fits 6–8 mm screws (blue) Wall thickness tapers down to ~1.5 mm at the jaws for optimal FDM flexibility. Print notes Print them standing vertically (as oriented) so the layer lines follow the curve of the C-clip. This ensures maximum lateral flexibility when snapping screws in from the side. No supports required.

Conveyor belts don't ask before they drift, and a shredded belt stops the whole line. This is a watchdog that mounts rigidly to a steel frame and actually looks at the belt. It features an adjustable heavy-duty C-clamp, a rigid enclosure for an ESP32, a telescoping sensor boom that spans the belt width, and a drop-down arm for proximity speed sensing. The modular design lets you swap out the laser inspection head or IR edge sensors without unbolting the main unit. Assembly & Installation Clearances: Mating faces on the boom base and telescoping arm include a 0.4mm tolerance to ensure a sliding fit straight off the plate. Hardware: Designed for M4 socket head screws on the front cover and M8 bolts for the main structural clamp. Material: Print in PETG or ASA for impact resistance and thermal stability. Support Strategy: The C-clamp and enclosure bodies print upright without supports; the sensor arms require minimal bridging support under the drop-down elements.