Small-company attention. Senior-level engineering.

Power electronics development from concept through layout, simulation, prototype, and test.

Electronic Development LLC supports embedded power, inverter, EMI/EMC, protection, and control projects where practical engineering matters more than buzzwords.

Services

Development support where details matter

Power Electronics Design

Converter, inverter, protection, filtering, and control hardware design from requirements through schematic and design review.

PCB Layout Support

Practical layout guidance for high-current paths, switching loops, isolation, creepage/clearance, thermal paths, EMI boundaries, and chassis bonding.

Simulation

SPICE modeling for circuit behavior, protection stress, startup, transients, and loss estimates. PLECS support for system-level switching and controls.

Reverse Engineering

Board inspection, schematic reconstruction, failure analysis support, component identification, documentation, and design intent recovery.

Prototype Bring-Up

Bench debug, controlled first-power testing, instrumentation setup, fault isolation, and design iteration support.

In-House Testing

Functional, thermal, transient, signal, motor/inverter, and pre-compliance-style evaluations before outside lab testing.

Process

Simple project flow

Projects can be scoped as full designs, focused design reviews, reverse engineering packages, simulation studies, or troubleshooting engagements.

  1. Review requirementsElectrical, mechanical, environmental, regulatory, schedule, and documentation needs.
  2. Define architectureBlock diagrams, risk areas, protection strategy, simulation plan, and test approach.
  3. Design and verifySchematic, layout review, models, calculations, prototype testing, and documentation.
  4. Deliver filesReports, schematics, simulation files, test data, drawings, and client-specific documentation.

In-house testing

Bench-level validation before expensive surprises

Testing can include controlled power-up, waveform capture, thermal observations, transient/protection checks, load testing, motor-drive evaluation, and pre-compliance investigation.

Typical outputs

  • Test plan and setup notes
  • Oscilloscope captures and observations
  • Thermal and stress findings
  • Failure mode notes
  • Recommended design changes

Reverse engineering

Recover the circuit when documentation is missing, incomplete, or wrong.

Reverse engineering can range from a quick component identification effort to a complete schematic reconstruction and theory-of-operation report.

Useful for

  • Legacy product support
  • Obsolete or unavailable assemblies
  • Failure analysis
  • Second-source redesign
  • Design verification and documentation recovery

Contact

Discuss a project

Replace the placeholders below with your actual contact information.

Email: info@example.com

Phone: (555) 555-0100

Location: United States