I will do esp32 firmware development and custom pcb design
Embedded Systems Engineer And Advanced PCB Layout Specialist
About this Gig
INDUSTRIAL-GRADE ESP32 FIRMWARE DEVELOPMENT AND CUSTOM PCB DESIGN
Are buggy communication stacks, trace noise, or power system instabilities stalling your hardware prototypes? Launching connected IoT systems requires clean low-level code synchronized with solid hardware routing rules. Poor memory management or mismatched track impedances will cause your microcontrollers to crash.
I deliver professional esp32 firmware development and custom pcb design services to transform your electronic ideas into functional, production-ready systems.
From hardware-level signal integrity to RTOS task structures, I build rock-solid architectures that clear assembly checks on your first factory run.
WHAT MY ENGINEERING COVERS:
- Multilayer custom pcb design layouts (Altium, KiCad, Cadence OrCAD)
- Optimized wireless traces (Wi-Fi, Bluetooth BLE, custom antenna loops)
- Clean esp32 firmware development written in embedded C / C++ logic
- Hardware communication protocols (SPI interface, I2C, UART, CAN Bus)
Let's build reliable connected tech.
Message me with your block diagrams before ordering!
File format:
Gerber
•
STEP
•
BRD
•
SCH
•
Software:
Cadence OrCAD
•
EasyEDA
•
KiCad
•
SolidWorks
Interface:
UART
•
SPI
•
I2C
•
Controller Area Network (CAN)
My Portfolio
FAQ
Q: What development environments do you utilize for writing firmware?
A: I write clean, documented, non-blocking C/C++ code tailored directly to your production workflow using ESP-IDF, VS Code (PlatformIO), or the Arduino framework.
Q: Do your circuit designs include wireless optimization metrics?
A: Yes. I calculate and design precise coplanar microstrip geometries to achieve exact 50-Ohm trace impedance matching for stable ESP32/ESP8266 Wi-Fi and Bluetooth BLE antenna networks.
Q: Can you help integrate cloud protocols into my custom firmware hardware?
A: Absolutely. I can write operational code paths to securely route your microchip data via MQTT, HTTP clients, or WebSocket frameworks into platforms like AWS IoT Core, Firebase, or custom web nodes.

