Impedyme-Software
Request InformationImpedyme is a developer of real-time Hardware-in-the-Loop (HIL) and Power Hardware-in-the-Loop (PHIL) testing software built for engineers and researchers working on next-generation power systems. Its flagship environment, Power HIL Studio, is designed to configure, control, and automate real-time HIL and Power HIL testing, giving users specialized applications such as a Grid Emulator, Impedance Analyzer, Motor Emulator, and Battery Emulator, along with MATLAB scripting to automate workflows, run test cases, capture measurements, and generate reports. Around this core platform, Impedyme has built a suite of purpose-specific tools — including GridSim Studio for configuring, controlling, and visualizing real-time grid emulation, MotorSim Studio for accelerating inverter and drive testing through real-time motor emulation and fault injection, and BatterySim Studio, which combines real-time HIL and Power-HIL emulation with integrated Electrochemical Impedance Spectroscopy and automated equivalent circuit model fitting for battery validation. Together, these software tools let engineers in industries such as electric vehicles, aerospace, robotics, and renewable energy replace costly, risky physical test setups with safe, repeatable, and scalable simulation-driven validation.
Built for the engineers who validate power electronics
Sub-microsecond FPGA solving
Deterministic steps down to hundreds of nanoseconds — fast enough for the fastest switching converters.
One unified ecosystem
Every studio runs on a single hardware platform — the CHP Series — so tools, models and workflows stay consistent.
Import models from Simulink
Bring your existing plant models straight from Simulink with the Impedyme Blockset — no rewrite, no re-derivation.
Scalable by design
Start with a single converter and grow to a full grid model — the same tools scale with your ambition.
Impedyme software
From Simulink model to real-time test in four steps
1
Model in Simulink
Build or import your plant model using the Impedyme Simulink Blockset.
2
Deploy to CHP
One-click compile and deploy to CHP Series FPGA hardware.
3
Run HIL / PHIL
Execute deterministic real-time hardware- and power-in-the-loop tests.
4
Analyze with FPGA Scope
Capture, measure and iterate with high-resolution real-time signals.
Which studio is right for you?
| SOFTWARE | TYPICAL USERS | KEY FEATURES |
|---|---|---|
| PowerHIL Studio | Power-electronics & controls engineers | Sub-µs switching, controller HIL, fault tests |
| BatterySim Studio | Battery & BMS engineers | Cell/pack emulation, BMS validation, thermal |
| Gridsim Studio | Utility & microgrid engineers | Protection, DER integration, stability |
| MotorSim Studio | Drive & motor-control engineers | PMSM/induction emulation, drive HIL |
| DroneSim Studio: | eVTOL & UAV powertrain engineers | Propulsion & ESC emulation, motor HIL |
Anwendungen
1
EV powertrain
Validate inverters, traction drives and on-board chargers before touching a prototype vehicle.
2
Energy storage
Emulate packs and stress-test BMS logic across fault, thermal and aging scenarios.
3
Renewables & grid
Study inverter-based resources, microgrids and protection under realistic grid dynamics.
4
Aerospace & eVTOL
De-risk electric propulsion and ESC control for advanced air mobility programs.
5
Industrial drives
Develop and validate PMSM and induction drive controllers with high-fidelity machine models.

