I will design arduino, raspberry pi, iot enclosures 3d printable pcb housing solidworks


About this gig
Need a custom enclosure for your Arduino, Raspberry Pi, IoT device, or PCB project?
I will design a professional 3D printable electronics enclosure in SolidWorks, tailored to your board, components, connectors, and assembly requirements.
My service is suitable for:
- Arduino, Raspberry Pi, ESP32, ESP8266 & custom PCBs
- IoT and smart devices
- Sensor, battery, BMS & power housings
- Electronic prototypes
- Small batch products
Your enclosure can include precise PCB mounting, connector cutouts, button and LED openings, ventilation, cable routing, snap fit or screw assembly, wall/DIN rail mounting, and access covers.
Deliverables can include:
- STL for 3D printing
- STEP for manufacturing or modification
- SolidWorks CAD files
- 2D technical drawings
- High quality product renders
To get started, send your PCB dimensions, board images/CAD files, connector locations, and any special requirements. I can also adapt designs for 3D printing or injection molding.
I consider clearances, wall thickness, print orientation, tolerances, component access, and manufacturability to create a functional and professional design.
Message me with your requirements and lets create a professional enclosure
Delivery style preference
Please inform the freelancer of any preferences or concerns regarding the use of AI tools in the completion and/or delivery of your order.
Get to know Kelly Memeus
Bringing your product ideas to life with precision CAD and rendering design
- FromFrance
- Member sinceAug 2026
- Avg. response time1 hour
Languages
English, French, German, Spanish, Italian
Other Industrial & Product Design Services I Offer
FAQ
What do I need to send to start the enclosure design?
Please provide your PCB dimensions, STEP/DXF/CAD file if available, mounting-hole locations, and the positions of ports, buttons, displays, or other components. For standard boards such as Arduino or Raspberry Pi, simply provide the exact model.
Can you design enclosures for Arduino, Raspberry Pi, and custom PCBs?
Yes. I can design housings for Arduino, Raspberry Pi, ESP32/ESP8266, STM32, custom PCBs, and other electronic development boards.
Will the enclosure be ready for 3D printing?
Yes. I can optimize the design for FDM or SLA 3D printing, considering wall thickness, clearances, tolerances, print orientation, and support requirements. STL files can be provided for printing.
Can you design precise PCB mounting and connector cutouts?
Yes. I use your PCB dimensions and hole coordinates to create accurate mounting bosses, standoffs, connector openings, button access, LED windows, and component clearances.
Can you design snap-fit or screw-based enclosures?
Absolutely. I can create snap-fit joints, screw bosses, removable covers, sliding battery compartments, or other assembly methods based on your project requirements.
Will I receive the SolidWorks source files?
Yes. Native SolidWorks files such as SLDPRT and SLDASM can be included depending on the selected package, along with formats such as STEP and STL where required.
Can you design the enclosure for injection molding?
Yes. I can prepare designs with manufacturing considerations such as appropriate wall thickness, draft angles, parting considerations, and other DFM requirements for injection molding.
Can you add ventilation or thermal management features?
Yes. I can incorporate ventilation slots, airflow openings, heat sink provisions, & other thermal management features while maintaining the enclosure's functionality and appearance.
Can you sign an NDA for my confidential electronics project?
Yes. I understand that product and PCB designs can be confidential. I can review and sign your NDA when appropriate. Your project information and design files will be handled confidentially.
Can you design a waterproof or weather-resistant enclosure?
Yes. I can design enclosures with features such as gasket grooves, sealing interfaces, cable gland provisions, and protected openings for splash or weather resistance. The final protection level depends on the materials, seals, manufacturing process, and assembly.

