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Electronics enclosure 3D Models

Find the best Electronics enclosure 3D Models, free download in STL, FBX, GLB, OBJ, 3MF, USDZ for 3D modeling and creation in Blender, 3D printing, game developing, animation, eCommerce, AR/VR and etc. Generated by Tripo AI 3D Generator.

Object: Create only the main body (base) of a rugged, two-part rectangular electronics enclosure. The final output must be a single, print-ready STL file named enclosure_base.stl.

Style and Core Dimensions:

Style: A functional, robust, open-topped box with slightly rounded external edges for durability.

External Dimensions: 195mm in Length, 85mm in Width, and 35mm in Height.

Material Properties: Design with a uniform wall thickness of 3mm throughout.

Internal Features:

Floor-Mounted Standoffs: All standoffs must be cylindrical, 5mm tall, with a 5mm diameter, and feature a central hole sized for an M2.5 screw.

Standoff Set 1 (for HackRF One): Create a set of four standoffs arranged in a rectangle measuring 150mm x 65mm. Center this rectangular pattern along the 195mm length of the enclosure. Position it so that one of the long edges of the pattern is exactly 10mm away from the enclosure's inner wall.

Standoff Set 2 (for Raspberry Pi): Create a second set of four standoffs arrang
3D Model
3D Design Request – Snap-fit Assembly

Design a 3D model of the attached device, divided into separate parts with snap-fit joints (no screws), showing internal wiring for educational purposes.

Parts:

Base plate (Arduino, wires, battery).

Front panel (LCD, buttons, PIR sensor cutouts).

Back cover (removable).

Buttons: Red (Stress), Green (Heart), Blue (Tension), Black (ON/OFF).

LCD holder.

PIR sensor mount.

Battery holder.

Deliverables:

STL for each part.

Assembly file.

Exploded view.

Wiring diagram.

Notes:

Colors match reference image.

Easy assembly/disassembly for training.
3D Model
A rectangular 3D-printable electronics box, size 150x150x90 mm, with thick walls and flat surfaces. On the front panel, include a shallow rectangular cavity (30x20 mm) to mount a small display module — not a hole, just a mounting recess. Next to it, add a narrow slit (1x10 mm) to pass through a flat ribbon cable from a membrane keypad. Below them, add a rectangular hole (14x8 mm) for a USB Type-C charging module. On the back side, add a circular hole 20 mm in diameter for an ON/OFF rocker switch. Leave the right wall open for a removable door. The inside should be hollow to fit electronics like ESP32, wires, battery and servo. Designed to be printed in one piece. No decorative features.
3D Model
Generate an STL file for a 3D printable electronics enclosure with the following specifications:

Overall Dimensions:

Length: 130 mm
Width: 70 mm
Height: 30 mm
Design and Components:

The enclosure must consist of two separate parts: a base and a lid.
The entire case should have a smooth, minimalist aesthetic with rounded corners for a clean look.
The interior of both the base and the lid must be hollow to house electronic components.
Base Features:

Integrate four (4) mounting tabs extending from the sides of the base.
Each tab should have a hole suitable for a screw to mount the case to a wall.
Lid and Closure:

The lid should fit precisely onto the base.
Design a single screw closure system. There should be a hole in the center of the lid and a corresponding screw boss on the inside of the base to fasten both parts together securely.
The final output should be two STL files: one for the base and one for the lid
3D Model