I will design esp32 enclosure, custom pcb housing and iot device prototype cad
EMBEDDED SYSTEM AND FIRMWARE DEVELOPMENT
About this Gig
Enclosure design according to your PCB?
From your ESP32, IoT or electronic hardware idea, I will develop for you a functional 3D CAD enclosure that will make your design a perfect fit for a prototype.
With my experience in developing custom enclosures for electronics, I will design an enclosure that will match your specific PCB, hardware components, mounting points, connectors and will meet all the requirements related to usability.
Enclosures I can design:
- Enclosures for ESP32 and MCU-based devices
- Custom enclosures for PCBs and electronics
- Enclosures for IoT devices and embedded systems
- 3D printable prototypes
- Mounting holes, standoffs, clips, screw holes
- Openings for USB, power, sensors, antennas and connectors
- Ventilation and cable access points
- Production ready 3D CAD model
I will be able to work from PCB files, dimensions, sketches, component layout, references and technical specifications. The final design will be based on practical considerations related to the manufacturing process.
Send me your PCB dimensions or project description and we will develop a professional enclosure for your IoT device.
FAQ
What do you need to start the enclosure design?
I need your PCB dimensions, component layout, reference images, sketches, or existing CAD files. Detailed requirements are also helpful.
Can you design an enclosure specifically for my ESP32 PCB?
Yes. I can create a custom ESP32 enclosure with accurate mounting points, openings, standoffs, ventilation, and access for connectors.
Can you design housings for other IoT devices?
Absolutely. I can design custom housings for IoT, embedded, sensor, wearable, and other electronic devices.
What CAD file formats do you provide?
Depending on your requirements, I can provide STEP, STL, and other suitable 3D CAD formats for prototyping or manufacturing.
Can you make the enclosure 3D printing ready?
Yes. I can optimize the enclosure for 3D printing while considering wall thickness, clearances, supports, assembly, and fastening.

