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


