Simulations & Analysis — Novertronics Technologies
Virtual Prototyping

Simulation &
Analysis Services

Predicting real-world behavior and optimizing efficiency before committing to physical hardware build.

De-risk Your Projects

Novertronics uses a simulation-driven approach to validate control stability, thermal performance, and EMI characteristics. We reduce time-to-market by 30-50% through "first-time-right" hardware design.

  • Identify design flaws early
  • Predict Efficiency & Heat levels
  • Explore design alternatives quickly
  • Validate complex control stability

Circuit-Level

Accurate device models (SiC/GaN) to predict switching losses and electromagnetic stresses.

Thermal Analysis

Junction temperature estimation and heatsink modeling to eliminate hot spots.

Magnetics Design

Transformer modeling with core/copper loss and leakage inductance optimization.

Control Design

Digital implementation in Simulink with stability margin calculation and Bode plots.

EMI/EMC Prediction

Conducted noise analysis and filter optimization for standards compliance.

Hardware-in-the-Loop

Real-time simulation for firmware validation using SP2000 RCP systems.

PLECSCircuit & Thermal
PSIMMotor & Magnetics
MATLABSimulink Control
ANSYSFEA Electromagnetics
LTspiceAnalog Analysis
Report TypeDescriptionTypical Use Case
Simulation ModelsEditable source files (PLECS/Simulink)Design iterations
Efficiency MapsContour plots of Load vs. EfficiencyPerformance proof
Bode PlotsFrequency response and phase marginsControl tuning
Harmonic SpectraFFT analysis to IEEE 519 standardsGrid compliance

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10kW Bidirectional DC-DC

Efficiency optimization for EV applications.

  • Optimized phase-shift angle for minimum reactive power
  • Achieved 97.8% peak efficiency using SiC Cos/Qrr data
  • Validated liquid cooling elimination via 3D heatsink modeling

800V AI LLC Converter

Power density optimization for AI GPU clusters.

  • ZVS range analysis from 25% to 100% load
  • Planar magnetics design with integrated 16:1 turns ratio
  • Predicted MTBF >200,000 hours via thermal stress simulation

Start Simulating?

Contact us to receive a detailed proposal for your next simulation project.

Request Consultation