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I’m building a compact board whose sole mission is clean, reliable power distribution. I already have the system requirements mapped out at a high level; now I need an experienced PCB and embedded engineer who can turn those requirements into production-ready hardware and firmware. The job covers the full design flow: capturing the schematic, creating the PCB layout with attention to thermal paths and EMI, selecting components for efficiency and availability, and writing the embedded code that supervises voltage rails, fault flags, and soft-start logic. I expect good engineering practices—proper net-naming, clear documentation, and design files that open without issue in KiCad or Altium. Deliverables • Complete schematic (PDF + source) • PCB layout files and Gerbers ready for fabrication • Bill of materials with supplier links and alternates • Embedded C/C++ source and compiled binary • Brief test procedure outlining how I can verify the board on the bench Acceptance criteria: the design must power up and distribute all specified rails within ±3 % accuracy under a 2 A load, report faults via I²C, and stay within 40 °C rise at ambient 25 °C during a 30-minute burn-in. If you have shipped power boards before and can demonstrate clean, well-documented work, I’d love to see your proposal.
Project ID: 40636213
15 proposals
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Active 2 days ago
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15 freelancers are bidding on average ₹1,272 INR/hour for this job

Sshare the full spec to understand input out requirements. I am equally qualified for this product design in terms of schematic design as well as firmware development. I can also assist in the product testing if needed.
₹1,250 INR in 40 days
7.3
7.3

Hi, I can help take your power distribution concept from requirements to a production-ready PCB and firmware. I have experience with custom PCB design, power management, ESP32/STM32 firmware, I²C communication, and hardware bring-up. I can handle the schematic, component selection, thermal/EMI-conscious PCB layout, embedded fault monitoring and soft-start logic, along with the BOM, Gerbers, source code, and bench test procedure. I'll focus on reliable rail regulation, clean documentation, and making the design easy to manufacture and debug. Please share the required input/output rails and system requirements so I can review the design and get started. Thanks!
₹3,000 INR in 40 days
7.5
7.5

Hello, I’m an Electrical/Electronics Engineer experienced in PCB design, power electronics, embedded systems, and hardware development. I can handle the complete design flow of your power distribution board, from schematic capture and component selection through PCB layout, firmware development, testing, and production-ready documentation. For this project, I will focus on efficient power distribution, thermal management, EMI-aware layout, proper grounding and routing, component availability, and reliable fault/rail monitoring. The embedded firmware will implement voltage-rail supervision, fault detection/reporting through I²C, and controlled soft-start logic. The project will include: - Complete schematic with source files and PDF - Production-ready PCB layout and Gerber files - BOM with supplier links and alternative components - Embedded C/C++ firmware and compiled binary - Clear net naming and design documentation - Bench test and verification procedure - Thermal and power integrity considerations for the 2A load and 30-minute burn-in requirement I have experience designing multilayer PCBs and power electronics, and examples of my PCB work are available in my portfolio. Based on the described requirements, I estimate approximately 80 hours to complete the project, including hardware design, PCB layout, firmware development, verification, debugging, and documentation. I’m confident I can deliver a clean, reliable, and well-documented design that meets your ±3% rail accuracy, I²C fault reporting, and thermal requirements. I’d be happy to review the detailed requirements and start with the power architecture and schematic design.
₹800 INR in 40 days
6.7
6.7

Hi, I can design your compact power distribution PCB and firmware, including schematic, PCB layout, BOM, embedded C/C++ code, fault monitoring, soft-start logic, and bench-test procedure. The best solution is to first review your rail requirements, input source, current limits, load profile, I²C fault-reporting needs, thermal constraints, and preferred KiCad/Altium workflow. Then I’ll design the power architecture, select efficient available components, route the PCB with proper copper width, grounding, EMI control, thermal paths, and add firmware to monitor voltage rails, faults, and startup sequencing. I’m comfortable with power distribution boards, PCB layout, embedded C/C++, voltage rail monitoring, I²C communication, soft-start control, thermal-aware routing, EMI-conscious layout, component selection, BOM preparation, and bench validation procedures. Deliverables will include: * Complete schematic * PCB layout and Gerbers * BOM with supplier links * Component alternates * Embedded C/C++ firmware * Compiled binary * Fault flag monitoring * I²C reporting logic * Soft-start sequencing * Bench test procedure * Design documentation I’ll focus on clean, reliable, and production-ready design files that meet the ±3% rail accuracy, 2A load, fault reporting, and thermal-rise requirements. Best regards Ankit
₹1,000 INR in 40 days
3.9
3.9

Hi, I’m an experienced PCB and embedded engineer with hands-on experience designing power distribution boards, DC/DC systems, protection circuits, thermal management, EMI/EMC, and embedded firmware. I can take your requirements through the complete design flow: • Schematic capture and component selection • Production-ready PCB layout with thermal/EMI considerations • BOM with supplier links and alternatives • Embedded C/C++ firmware for voltage monitoring, fault reporting, and soft-start • Gerbers and manufacturing files • I²C fault/status interface • Bench test procedure and validation documentation I can work in KiCad or Altium and will provide clean, well-organized source files with proper net naming and documentation. I’ll also design with component availability, efficiency, thermal performance, and manufacturability in mind. The ±3% rail accuracy, 2 A load, 40 °C maximum temperature rise, and 30-minute burn-in requirements can be incorporated directly into the design and validation process. I’d be happy to review your system requirements and start with the schematic architecture. Best regards,
₹2,500 INR in 40 days
1.1
1.1

Having studied RF and Electronics Engineering with a focus on high-frequency PCB design, I am confident that my experience aligns perfectly with your needs for power distribution. Not only have I dealt extensively in circuit and PCB design, but I’m also an expert in creating customized solutions using KiCad, Altium, and Proteus -- the same software you mentioned. This means I'm poised to hit the ground running and can expedite project workflow, ensuring timely and yet quality deliverables. Throughout my career, I've demonstrated an unwavering commitment to adhering to good engineering practices and paying attention to minute details. For your project, this translates into schematics that are meticulously captured, layouts that have efficient thermal paths for maintaining temperature, a well-curated bill of materials, along with an embedded code that ensures seamless supervising of voltage rails, fault flags, and soft-start logic as you need it. Furthermore, I have an acute understanding of the need for continuous improvement in power boards to meet the market’s increasing demands. With me on board, you are assured not just a clean, reliable power distribution system but one that performs within ±3 % accuracy under 2 A load and maintains low temperatures during burn-in. Given my comprehensive grasp of smart power management designs and firm commitment to meeting stringent acceptance criteria, I am confident I can deliver just what you need – and more!
₹750 INR in 40 days
0.8
0.8

Hello, I'm bharghav, an Electrical Engineer with 10 years of experience in C/C++ programming for embedded systems and robust PCB design. My background perfectly aligns with developing reliable power distribution solutions. I understand you need a production-ready compact power distribution board, including schematic capture, PCB layout with thermal and EMI considerations, component selection, and embedded firmware for voltage supervision, fault flags, and soft-start logic. My expertise in C/C++ and Electrical Engineering ensures I can deliver a solution meeting your ±3% accuracy, 2A load, I²C fault reporting, and thermal rise requirements using KiCad or Altium.
₹875 INR in 3 days
0.4
0.4

We recently helped a business achieve a similar goal, and the results exceeded expectations. I’d love to do the same for you. I’ll create a clean, professional, user-friendly solution focused on making your goal easier to achieve. Your focus on reliable power distribution stood out to me. That’s exactly where we excel. We have 75+ 5-star reviews on similar projects and rank in the top 1% among 75 million users! I already have a few ideas that could make this project stand out. My experience in designing power distribution boards ensures adherence to good engineering practices, including proper documentation and component selection for efficiency. By utilizing KiCad or Altium, I will deliver a complete schematic, PCB layout files, a comprehensive bill of materials, and embedded C/C++ code tailored to your specifications. Happy to share my portfolio showcasing previous power boards. Regards, VutomiM1.
₹750 INR in 7 days
0.0
0.0

Hello, I’m interested in developing your compact power-distribution board from schematic through PCB, firmware, bring-up and testing. My background is in embedded systems and hardware/software integration, including ESP32/STM32, Embedded C/C++, Raspberry Pi/Linux, KiCad, DC/DC power systems, sensors, communication interfaces, custom PCB design and hardware bring-up. I can handle the complete design flow including power-tree design, component selection, schematic capture, PCB layout, thermal management, EMI-conscious routing, protection, filtering and manufacturing documentation. For firmware, I can implement voltage-rail monitoring, fault detection, I²C status reporting, soft-start and power-sequencing logic using Embedded C/C++. I would structure the firmware for reliable diagnostics and easy bench testing. I would validate the prototype progressively: power-up, individual rails, sequencing, I²C communication, load testing and thermal burn-in. The design would be tested against your requirements of ±3% rail accuracy at 2 A, reliable fault reporting and <40 °C temperature rise at 25 °C ambient. Deliverables can include KiCad/Altium source, PDF schematic, Gerbers, BOM with alternates, firmware source/binary and a complete bench-test procedure. Best regards, Yashaj Gupta
₹750 INR in 40 days
0.0
0.0

Hi there, You need a production-ready power distribution board designed from your existing system requirements, including schematic capture, PCB layout, component selection, thermal/EMI considerations, and embedded firmware for rail supervision, fault handling, and soft-start. I’ve worked on embedded hardware projects involving power management, PCB design, microcontroller firmware, I²C communication, and hardware validation. I’m comfortable taking a design from requirements through schematic, layout, fabrication files, firmware, and bench testing. My approach: * Convert your requirements into a complete schematic with proper protection, net naming, and component selection. * Design the PCB with thermal paths, grounding, current capacity, and EMI in mind. * Develop the embedded C/C++ firmware for voltage monitoring, fault flags, I²C reporting, and soft-start. * Validate the board under the specified 2 A load and document the test procedure and results. I can provide the KiCad/Altium source, Gerbers, BOM with alternates, firmware, binary, and documentation. Could you share the specified voltage rails and input voltage range so I can confirm the component and PCB requirements before quoting accurately? Best regards, Shuvadeep
₹1,000 INR in 40 days
0.0
0.0

I’m a Senior Full Stack Developer with 8+ years of experience building scalable, secure, and high-performance web applications and business solutions. I have hands-on experience across the full development lifecycle, including frontend, backend, databases, REST APIs, third-party integrations, cloud, system architecture, performance optimization, and data-driven applications. I work with modern technologies and frameworks based on project requirements and focus on delivering clean, maintainable, and scalable solutions. I can handle projects end-to-end — from requirement analysis and development to testing, deployment, optimization, and ongoing support. My goal is to understand the business requirement, solve technical challenges effectively, and deliver reliable, high-quality solutions on time. 9099553434
₹750 INR in 40 days
0.0
0.0

Dear Client, Power distribution boards usually fail for reasons that do not show up in the schematic—voltage drop, thermal bottlenecks, startup sequencing, noisy fault sensing, or protection that behaves differently under load. I have 11+ years of electronics design experience and 500+ completed assignments involving power management, DC/DC conversion, protection circuits, MCU supervision, high-current PCB layout, EMI/EMC and production support. For your board, I would first lock the rail architecture, load profile, sequencing and fault behaviour before selecting parts or routing copper. The ±3% regulation at 2 A and <40°C rise are measurable targets, so I would design around them rather than treat them as post-layout checks. I would pay particular attention to current-path resistance, copper/via sizing, thermal spreading, regulator efficiency, startup/inrush behaviour, sensing accuracy and I²C fault reporting. My flow would be: Architecture → Schematic → Calculations → PCB Layout → Firmware → Bring-Up → Load Test → Manufacturing Handover You will receive editable KiCad/Altium files, Gerbers, BOM with alternates, embedded source/binary and a practical bench-test procedure. I can also support the first prototype during power-up and fault validation. Please share the input voltage, required output rails, maximum load per rail and preferred controller. Kind Regards, Avi Gupta Quality is never an accident
₹2,500 INR in 40 days
0.0
0.0

PCB & Embedded Engineer | Power Distribution Board Hey there, I understand you're looking for an experienced engineer to take your power-distribution requirements through schematic, PCB design, component selection, firmware, and bench validation. Tech Stack: ■ KiCad / Altium ■ Embedded C/C++ ■ Power Management & Rail Monitoring ■ I²C, Fault Detection & Soft-Start ■ Thermal & EMI-aware PCB Design My Approach: ■ Design the schematic and select efficient, readily available components ■ Create a production-ready PCB with proper thermal paths, grounding, and EMI considerations ■ Develop firmware for voltage monitoring, fault reporting, and soft-start control ■ Provide complete manufacturing files, BOM, firmware, and a clear bench-test procedure Query: Do you already have the exact output voltage/current requirements for each power rail? Guarantee: ■ End-to-end technical support ■ Transparent communication and regular updates ■ Clean, editable design files ■ Support through prototype testing and validation Let's connect and discuss your requirements and the best approach for the power distribution board. Regards, Milan
₹900 INR in 40 days
0.0
0.0

Hello, I can review and refine your compact power-distribution board, checking schematic integrity, protection, grounding, thermal paths, component selection, and PCB layout. I can also support the required embedded firmware and deliver clear manufacturing files. My Upwork profile has earned over $300,000 on Upwork with account Paul.P. Best regards, Paul.
₹1,250 INR in 40 days
0.0
0.0

Chennai, India
Member since Aug 9, 2026
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