I will design battery management system pcb with dc dc converter and power electronics
About this Gig
HELLO AND WELCOME!!
A reliable battery system requires more than cell monitoringit needs intelligent power conversion, protection, balancing, and efficient energy management. I will design a custom BMS PCB with integrated DC-DC converter and power electronics for lithium battery packs, portable power systems, robotics, EV applications, and energy-storage projects.
I can engineer the system around your battery chemistry, cell configuration, pack voltage, charging requirements, load current, converter topology, efficiency target, and communication interface.
What I Will Provide:
- Custom BMS PCB
- Battery monitoring
- Cell voltage sensing
- Cell balancing
- DC-DC converter
- Power MOSFET selection
- Temperature monitoring
- Overcurrent protection
- Overvoltage protection
- Short-circuit protection
- Power regulation
- MCU/BMS IC integration
- Professional schematic
- PCB layout and routing
- BOM and component selection
- Gerber manufacturing files
Why Choose Me:
- BMS expertise
- Power electronics skills
- DC-DC converter knowledge
- Embedded systems experience
Send me your battery specifications, cell configuration, voltage/current requirements, converter needs, and power targets, and let's build your custom BMS PCB.
Other Electronics Engineering Services I Offer
FAQ
Can you design a BMS with an integrated DC-DC converter?
Yes. I can develop the battery-management and power-conversion architecture around your voltage, current, efficiency, and load requirements.
Can you include cell balancing?
Yes. Suitable passive or active balancing approaches can be selected based on your battery configuration and BMS requirements.
What protection features can you implement?
The design can include appropriate overcharge, over-discharge, overcurrent, short-circuit, temperature, and cell-monitoring protection.
Can you design high-efficiency power electronics?
Yes. I can develop suitable switching stages, MOSFET selection, gate-drive circuits, current sensing, thermal considerations, and power routing.

