Isolated Gate Drive Strength - Higher Frequency for Lower Losses
Why do you need an isolated gate driver? With Analog Devices, learn the basics to lower your switching losses through faster edge transitions possible with SiC. Understand peak drive current and thermal requirements for proper MOSFET operation.
Video Player is loading.
Current Time 0:00
Duration 8:36
Loaded: 0%
Stream Type LIVE
Remaining Time 8:36
 
1x
  • Chapters
  • descriptions off, selected
  • captions off, selected
  • en (Main), selected

Isolated Gate Drive Strength - Higher Frequency for Lower Losses

Nov 16 2020

Why do you need an isolated gate driver? With Analog Devices, learn the basics to lower your switching losses through faster edge transitions possible with SiC. Understand peak drive current and thermal requirements for proper MOSFET operation.

Isolated Gate Drive Strength - Higher Frequency for Lower Losses
Why do you need an isolated gate driver? With Analog Devices, learn the basics to lower your switching losses through faster edge transitions possible with SiC. Understand peak drive current and thermal requirements for proper MOSFET operation.
Video Player is loading.
Current Time 0:00
Duration 8:36
Loaded: 0%
Stream Type LIVE
Remaining Time 8:36
 
1x
  • Chapters
  • descriptions off, selected
  • captions off, selected
  • en (Main), selected

Isolated Gate Drive Strength - Higher Frequency for Lower Losses

Nov 16 2020
Why do you need an isolated gate driver? With Analog Devices, learn the basics to lower your switching losses through faster edge transitions possible with SiC. Understand peak drive current and thermal requirements for proper MOSFET operation.