PowerFlow

Design Power Electronics 10x Faster

The only platform with native SST/DAB simulation, real-time ZVS optimization, and integrated HIL testing. Revolutionizing power electronics design with AI-driven optimization and comprehensive simulation capabilities.

Project Overview

PowerFlow is a cutting-edge power electronics design platform that accelerates the development cycle from concept to hardware. By combining advanced simulation algorithms, AI-driven optimization, and seamless hardware-in-the-loop (HIL) testing, PowerFlow enables engineers to design, validate, and optimize power converters with unprecedented speed and accuracy.

Project Status: In Active Development

PowerFlow is currently in active development with core simulation engines operational. We're expanding our component library, refining optimization algorithms, and building out the HIL testing framework. Early access program launching Q2 2024.

Live Platform Demo

Experience PowerFlow in action - explore our power electronics design platform with real-time simulation capabilities.

Launch PowerFlow Platform
Beta version - Features are being actively added
10x
Faster Design
99.2%
Peak Efficiency
<1μs
Simulation Step
500+
Component Models

Core Features

SST/DAB Simulation

Native support for Solid State Transformers and Dual Active Bridge converters with accurate high-frequency modeling

ZVS Optimization

Real-time Zero Voltage Switching optimization across entire operating range for maximum efficiency

HIL Testing

Integrated Hardware-in-the-Loop testing with seamless transition from simulation to hardware validation

AI-Driven Design

Machine learning algorithms for topology selection, component sizing, and control parameter optimization

Thermal Analysis

Coupled electrical-thermal simulation for accurate loss modeling and heatsink design

EMI/EMC Compliance

Built-in EMI prediction and filter design tools ensuring first-pass compliance

Advanced Capabilities

  • Multi-Domain Simulation: Simultaneous electrical, thermal, and mechanical stress analysis
  • Wide Bandgap Support: Optimized models for SiC and GaN devices with accurate switching behavior
  • Control Auto-Tuning: Automated control loop design and stability analysis
  • Modular Design Library: Pre-validated converter modules for rapid prototyping
  • Cloud Computing: Distributed simulation for large-scale parametric sweeps
  • Digital Twin Integration: Real-time model updates from deployed hardware
  • Compliance Checking: Automated verification against industry standards (IEC, IEEE, UL)
  • Cost Optimization: BOM cost analysis with component availability tracking

Live Simulation Demo

Technology Stack

Python C++ MATLAB/Simulink PLECS TensorFlow CUDA OpenMP FEA/FEM SPICE React WebGL Docker Kubernetes AWS