Industrial
We build gate-driver solutions for efficient motor drives and DC/DC conversion from ASIC to SiP and plug-and-play modules, with controlled switching behavior, robust protection, and faster integration
Industrial
Gate-Driver ASICs for GaN Power Stages
Built for high-reliability motor-drive and DC/DC systems where switching behavior, protection, and integration discipline directly impact performance, validation effort, and system risk.
- Controlled switching behavior (dv/dt and EMI-conscious design)
- Higher efficiency, less heat, simpler cooling, and lower system cost
- Robust protection and fault management
Target Industrial Systems
Gate-driver ASICs, SiP and plug-and-play modules for motor-drive and DC/DC subsystems where switching control, protection and integration speed directly affect performance, heat and system cost

Motor Drive & Motion Control Systems
For electric motor-based systems where switching control, protection and integration quality directly impact performance, efficiency and reliability including pumps, fans, compressors, tools and mechatronic subsystems.

Drone Propulsion & Onboard Power
For UAV/drone propulsion drives and onboard DC/DC power stages, where power density, thermal behavior and integration discipline directly affect endurance, weight and reliability.
Servo Drives, Actuators & Robotics
For servo drives, actuators and robotic joints, where predictable switching behavior, fault management and compact integration support precision, uptime and repeatable performance.
Industrial DC/DC Power Conversion
For intermediate bus, point-of-load and distributed power rails, where efficient switching and controlled parasitics help reduce heat, size and overall system cost.
Common Use-cases
Common Use-cases
- Compact BLDC / PMSM inverter stages for embedded systems
- High-frequency switching designs where layout, EMI and dv/dt control matter
- Robust protection behavior for startup, transients and real-world faults
DC/DC Power Conversion
- Compact conversion stages for embedded and distributed power architectures
- Intermediate bus and point-of-load rails for compute, control and sensing boards
- Thermal-constrained designs where efficient switching reduces heat, size and system cost
From ASIC to Module

Gate Driver IC
Custom switching control and protection for application-specific power stages.

SiP (Driver + Power Die)
Higher density and controlled parasitics for compact, repeatable integration.

Plug-and-Play Module
Faster evaluation, prototypes and pilot deployment with lower integration effort.

Reference Designs
Accelerated bring-up, cleaner layouts and fewer debug iterations.
WHY teams choose Minysa
- Reduced size and weight through higher power density
- Higher efficiency with less cooling effort and lower losses
- Cleaner switching behavior with fewer validation surprises
- Faster time-to-market through evaluation hardware and reference guidance