Infineon Gate Driver Recommendation Tool

Allows designers to select the right gate driver based on switches and helps them perform firsthand technical analysis with a simple click.

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About

The Infineon Gate Driver Recommendation Tool helps you select the right gate driver based on your chosen switch and supports firsthand technical analysis with a simple click:

  • It speeds up gate driver selection, guides newcomers, accelerates prototyping, and reduces risk with click-driven analysis before lab validation.
  • The tool automatically matches optimal gate drivers, calculates critical design parameters in real time, and provides structured electrical/thermal outputs - also for non‑Infineon switches via the Other Switch option.
  • The interface is designed for simplified navigation for both experienced engineers and new designers.

Start by selecting a switch (Infineon Switch or Other Switch) and set your gate driver feature filters (e.g., with/without Short Circuit Protection and/or Miller Clamp):

  • Then enter application inputs such as voltage class, isolation type, supply voltages, target gate resistances, switching frequency, and ambient temperature to fine-tune the results.
  • The tool will show only suitable driver options; compare key fields like product name, channels, output current, isolation type, features, and package, and open the product page/datasheet from the list if needed 
  • Finally, review the Results section for estimated peak current. requirement, gate driver parameters, and power dissipation/thermal metrics (e.g., total circuit power losses and junction temperature rise).

Note: Calculated values are preliminary and should be verified by lab measurements.

Discover EiceDRIVER™ gate driver ICs and experience the difference for designs using MOSFETs, IGBTs, SiC MOSFETs, and GaN HEMTs. The Gate Driver Recommendation Tool supports galvanic-isolated gate drivers in its initial release and helps narrow down suitable options based on your switch and application inputs.

Use the tool to compare isolation types, output current, and protection/features, then move faster from concept to prototyping with structured electrical and thermal insights.

The Infineon Gate Driver Recommendation Tool helps you select the right gate driver based on your chosen switch and supports firsthand technical analysis with a simple click:

  • It speeds up gate driver selection, guides newcomers, accelerates prototyping, and reduces risk with click-driven analysis before lab validation.
  • The tool automatically matches optimal gate drivers, calculates critical design parameters in real time, and provides structured electrical/thermal outputs - also for non‑Infineon switches via the Other Switch option.
  • The interface is designed for simplified navigation for both experienced engineers and new designers.

Start by selecting a switch (Infineon Switch or Other Switch) and set your gate driver feature filters (e.g., with/without Short Circuit Protection and/or Miller Clamp):

  • Then enter application inputs such as voltage class, isolation type, supply voltages, target gate resistances, switching frequency, and ambient temperature to fine-tune the results.
  • The tool will show only suitable driver options; compare key fields like product name, channels, output current, isolation type, features, and package, and open the product page/datasheet from the list if needed 
  • Finally, review the Results section for estimated peak current. requirement, gate driver parameters, and power dissipation/thermal metrics (e.g., total circuit power losses and junction temperature rise).

Note: Calculated values are preliminary and should be verified by lab measurements.

Discover EiceDRIVER™ gate driver ICs and experience the difference for designs using MOSFETs, IGBTs, SiC MOSFETs, and GaN HEMTs. The Gate Driver Recommendation Tool supports galvanic-isolated gate drivers in its initial release and helps narrow down suitable options based on your switch and application inputs.

Use the tool to compare isolation types, output current, and protection/features, then move faster from concept to prototyping with structured electrical and thermal insights.

Documents

Design resources