10月 24, 2018
Rick Pierson, Senior Manager, Digital Marketing
eGaN® FET能够比Si MOSFET更快地切换,因此需要更加仔细地考虑PCB布局设计,以最大限度地减少寄生电感。寄生电感会导致更高的过冲电压和较慢的切换过渡。本应用说明回顾了设计具有eGaN FET的最佳功率级布局的关键步骤,以避免这些不良影响并最大化转换器性能。
10月 27, 2016
Steve Colino, Vice President, Strategic Technical Sales
Class-D audio amplifiers have traditionally been looked down upon by audiophiles, and in most cases, understandably so. Switching transistors for Class-D amplifiers have never had the right combination of performance parameters to produce an amplifier with sufficient open-loop linearity to satisfy the most critical listeners. This restricted the classical analog modulator Class-D systems to lower-power, lower-quality sound systems.
To accomplish the required headline marketing THD+N performance targets, Class-D amplifiers have had to resort to using large amounts of feedback to compensate for their poor open-loop performance. By definition, large amounts of feedback introduce transient intermodulation distortion (TIM), which introduces a ‘harshness’ that hides the warm subtleties and color of the music that were intended for the listening experience.
对设计实例有疑问吗? 向氮化镓专家提问
GaN FET 及集成电路
评估板
The Growing Ecosystem for eGaN FET Power Conversion (How2AppNote 005)
How to Design an eGaN FET-Based Power Stage with an Optimal Layout (How2AppNote 007)