Critical-Conduction Mode (CCM) totem pole PFC is a low cost and high efficiency solution using GaN. This reference design uses GaNPower device GPI65015TO and TI controller DSP28XX....
Read MoreCritical-Conduction Mode (CCM) totem pole PFC is a low cost and high efficiency solution using GaN. This reference design uses GaNPower device GPI65015TO and TI controller DSP28XX....
Read More[vc_row][vc_column][vc_column_text]Ganpower International (GPI) is pleased to announce a major technical breakthrough: the successful design and tapeout of a power GaN device monolithically integrated with a gate over-voltage protection (patent-pending) circuit. The integrated GaN power device includes an IC module with functionality of over-voltage protection and level shifting and it shall be named OVP-GaN (or over-voltage protected GaN).[/vc_column_text][vc_empty_space height="30px"][qodef_blockquote text="We believe the invention holds the key...
Read MoreGaNPower’s half-bridge evaluation board GPIEVBOPT uses separate isolated optocoupler and auxiliary DC power supply for both high and low sides. It enables users of GaNFET to investigate the optimal driving parameters without the worry of bootstrap circuit interfering with high side driving. The EVB can be conveniently converted to double pulse testing board and it is designed to withstand a maximum bus voltage of 1000V....
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Read MoreLorem ipsum dolor sit amet, consectetuer adipiscing elit, sed diam nonummy nibh euismod tincidunt ut laoreet dolore magna aliquam erat volutpat. Ut wisi enim ad minim veniam, quis nostrud exerci tation ullamcorper suscipit lobortis nisl ut aliquip ex ea commodo consequat. Duis autem vel eum iriure dolor in hendrerit in vulputate velit esse molestie consequat, vel illum dolore eu feugiat nulla facilisis at vero eros...
Read MoreLorem ipsum dolor sit amet, consectetuer adipiscing elit, sed diam nonummy nibh euismod tincidunt ut laoreet dolore magna aliquam erat volutpat. Ut wisi enim ad minim veniam, quis nostrud exerci tation ullamcorper suscipit lobortis nisl ut aliquip ex ea commodo consequat. Duis autem vel eum iriure dolor in hendrerit in vulputate velit esse molestie consequat, vel illum dolore eu feugiat nulla facilisis at vero eros...
Read MoreLorem ipsum dolor sit amet, consectetuer adipiscing elit, sed diam nonummy nibh euismod tincidunt ut laoreet dolore magna aliquam erat volutpat. Ut wisi enim ad minim veniam, quis nostrud exerci tation ullamcorper suscipit lobortis nisl ut aliquip ex ea commodo consequat. Duis autem vel eum iriure dolor in hendrerit in vulputate velit esse molestie consequat, vel illum dolore eu feugiat nulla facilisis at vero eros...
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