I will debug circuit for raspberry pi compute module cm4 cm5 and kicad eagle
Designing reliable PCBs and embedded control systems
About this Gig
Welcome to a professional engineer services!
I have experience working with Raspberry Pi Compute Modules, Nvidia Jetson platforms, NXP i.MX processors, Rockchip SoCs, Toradex modules, Radxa modules, Orange Pi modules, Banana Pi modules, and other embedded computing solutions and other embedded computing platforms used in AI, IoT, industrial automation, robotics, edge computing, and smart device development.
I can also design custom carrier boards and embedded hardware solutions for Nvidia Jetson Nano, Jetson Xavier NX, AGX Xavier, AGX Orin, NXP i.MX8 SoM, Rockchip-based SoM platforms, and various industrial embedded systems.
These boards are commonly referred to as:
CM4 Carrier Board
CM5 Carrier Board
CM4 IO Board
CM5 IO Board
Compute Module Baseboard
Embedded Linux Carrier Board
SoM Baseboard Design
My services include:
Custom Schematic Design
High-Speed PCB Layout
Carrier Board Development
Baseboard Design
Power Supply Design
Prototype and Production Support
Before placing an order, please contact me to discuss your project, so I can recommend the best solution for your application.
Thank you.
Other Electronics Engineering Services I Offer
FAQ
How do I know my carrier board design will actually work before manufacturing?
I follow industry-standard design practices, perform thorough design verification, and check power, signal integrity, interfaces, and component compatibility before delivering manufacturing files.
What if I only have a product idea and no technical documentation?
That's completely fine. Many clients come with only a concept. I can help translate your requirements into a practical hardware architecture and design plan.
Can you design the board around specific components or parts I already use?
Yes. If you have preferred processors, sensors, connectors, displays, or other components, I can design the board around them while considering availability, performance, and manufacturing feasibility.
What happens if some components become unavailable after the design is completed?
Component shortages are common in hardware development. If needed, I can recommend compatible alternatives or design with sourcing flexibility in mind to help avoid future production delays.

