Compact PCB Design for IoT Device
Budget: ₹3,000 – ₹5,000 INR
I'm seeking a skilled PCB designer with experience in IoT devices. The task is to design a compact PCB (4x3cm or smaller) incorporating the STM32 microchip for UART, SIM800L (GSM), and NEO-6M (GPS). The design should also accommodate a buzzer, mini LEDs, and USB-C charging, with provisions for battery integration (details to be finalized).
Key Tasks:
- Optimize the antenna design for GSM and GPS to ensure the best performance.
- Create compact and efficient layouts that can withstand the rigors of a prototype.
- Transition existing code from ESP32 to STM32.
Key Considerations:
- The primary focus of the PCB design is compactness. The smaller the PCB, the better.
- The IoT device will be powered by a rechargeable battery, so consideration for this power source is crucial.
- GPS accuracy is the most critical feature of the device, so the design should facilitate this.
Ideal Skills and Experience:
- Proven experience in PCB design for compact IoT devices.
- Proficiency with STM32, SIM800L, and NEO-6M components.
- Strong skills in antenna design optimization.
- Experience in transitioning code between different platforms.
- Understanding of designing for power efficiency and durability.
Key Tasks:
- Optimize the antenna design for GSM and GPS to ensure the best performance.
- Create compact and efficient layouts that can withstand the rigors of a prototype.
- Transition existing code from ESP32 to STM32.
Key Considerations:
- The primary focus of the PCB design is compactness. The smaller the PCB, the better.
- The IoT device will be powered by a rechargeable battery, so consideration for this power source is crucial.
- GPS accuracy is the most critical feature of the device, so the design should facilitate this.
Ideal Skills and Experience:
- Proven experience in PCB design for compact IoT devices.
- Proficiency with STM32, SIM800L, and NEO-6M components.
- Strong skills in antenna design optimization.
- Experience in transitioning code between different platforms.
- Understanding of designing for power efficiency and durability.