What are the Power Electronic configuration supported with HSCS?

People are asking us, ok, what are the already supported configuration with HSCS, here is the full list :

:battery: DC-DC Converters
LLC Resonant Converter (Single-Phase & Three-Phase) — EV charging, On-Board Chargers (OBC). Captures resonant dynamics, soft-switching, and high switching frequency accuracy. Timestep: 32–36 ns

**Dual Active Bridge (DAB) — **EV charging, OBC, Solid-State Transformers, data centers. Supports bidirectional power flow, phase-shift control, and high-frequency bridge synchronization. Timestep: 32–36 ns

****Phase-Shifted Full Bridge (PSFB) — ****Low-voltage EV charging/OBC (e.g., 12V auxiliary battery). Handles soft-switching transitions and dead-time sensitivity. Timestep: 32–36 ns

Interleaved Buck/Boost Converter — Battery systems, PV, DC fast charging. Provides deterministic timing and multi-phase synchronization. Timestep: 32–36 ns

**Half Bridge Converter — **Standard composite block, general-purpose DC-DC. Optimized to run accurately without additional iterations. Timestep: 32 ns

:high_voltage: AC-DC / DC-AC Inverters & Rectifiers
3-Phase 2-Level Inverter — Micro-grids, Inverter-Based Resources (IBR). Switching-level modeling of standard grid-tied inverters. Timestep: 32–36 ns

**T-Type PFC + T-Type Inverter + ACAC Bidirectional **— UPS, data centers. High-performance 3-level bridge support. Timestep: 32–36 ns

3-Level NPC Arm — Industrial drives, grid-tied converters. Standard composite block, optimized without extra iterations. Timestep: 32 ns

3-Level ANPC (Active NPC) — Medium-voltage drives, renewable energy. Improved loss distribution vs. standard NPC. Timestep: 32–36 ns

3-Level T-Type Arm — UPS, PV inverters. Combines 2-level simplicity with 3-level efficiency. Timestep: 32 ns

Quasi-Z-Source Inverter — Renewable energy, motor drives. Handles shoot-through operation and transient accuracy. Timestep: 32–36 ns

:counterclockwise_arrows_button: Resonant & Matrix Topologies
3-Phase Matrix Resonant Converter (Cyclo-converter) — Ultra-high switching frequency matrix topologies (up to 700 kHz) for EV charging/OBC R&D. Timestep: 32–36 ns

:building_construction: Modular / Stacked Architectures
**Solid-State Transformers (SSTs) **— Data centers, industrial. Combines ANPC + 3-winding MAB (NPC primary, FB secondary) or FB + LLC per sub-module. May require custom firmware/NRE for complex stacked SFP control or deadtime features. Timestep: depends on stacking depth

MMC / STATCOM / Stacked MVSC — HVDC, FACTS, grid applications. Supports modular execution and stacked architectures. Timestep: scales with number of sub-modules

@PFA007 Is the SST model example available in eHs?

Hello Vincent, here are the example we have with eHS for SST topologies, please do note that for SST applications, eHS typically serves as the system-level coupling layer (grid side, transformer magnetizing branch, auxiliary circuits) while HSCS as it has been developped for it handles the high-speed converter cells.

HSCS — Supported SST Topologies (High-Speed Converter Solver)

HSCS extends eHS for fast-switching, resonant, and complex topologies that are difficult to model at conventional eHS time steps. It runs on OP4815 / OP4810 (AMD Versal) platforms.

If you would like to explore a demo in particular, we would be more than delighted to guide you over.

@PFA007 Thank you for your help. I have eHs. Now, I want to build a SST for AI data center.