首页> 外文期刊>IEEE Electron Device Letters >A 1680-V (at 1 $hbox{mA/cm}^{2}$) 54-A (at 780 $hbox{W/cm}^{2}$) Normally ON 4H-SiC JFET With 0.143- $hbox{cm}^{2}$ Active Area
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A 1680-V (at 1 $hbox{mA/cm}^{2}$) 54-A (at 780 $hbox{W/cm}^{2}$) Normally ON 4H-SiC JFET With 0.143- $hbox{cm}^{2}$ Active Area

机译:1680-V(在1 $ hbox {mA / cm} ^ {2} $ 时)54-A(在780 $ hbox {W / cm} ^ {2} $ )通常为0.143-的4H-SiC JFET- $ hbox {cm} ^ {2} $ 活动区域

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A high-voltage normally ON 4H-SiC vertical junction field-effect transistor (VJFET) of 0.143- cm2 active area was manufactured in seven photolithographic levels with no epitaxial regrowth and with a single masked ion-implantation event. The VJFET exhibits low gate-to-source p-n-junction leakage current with relatively sharp onset of breakdown. At a drain-current density of 1 mA/cm2, the VJFET blocks 1680 V at a gate bias of -24 V. A self-aligned floating guard-ring structure provides edge termination that blocks 77% of the 11.8-mum SiC drift layer's limit. At a gate bias of 2.5 V and a corresponding gate current of 2 mA, the VJFET outputs 53.6 A (375 A/cm2) at a forward drain voltage drop of 2.08 V (780 W/cm2). The transistor current gain is ID / IG = 26 800, and the specific on-state resistance is 5.5 mOmegamiddotcm2. To our best knowledge, this is the largest area SiC vertical-channel JFET reported to date and outputs more drain current than any 1200-V class vertical-channel JFET under identical heat-load and gate biasing conditions.
机译:在没有外延长生和单次掩膜离子注入的七个光刻水平下,制造了有源面积为0.143- cm 2 的高压常开4H-SiC垂直结场效应晶体管(VJFET)事件。 VJFET的栅源极p-n结泄漏电流低,击穿开始较快。在漏极电流密度为1 mA / cm 2 时,VJFET在-24 V的栅极偏置下阻止了1680V。自对准浮动保护环结构提供了边缘终止功能,可阻止77% 11.8微米SiC漂移层的极限值。在2.5 V的栅极偏置和2 mA的相应栅极电流下,VJFET在正向漏极压降为2.08 V(780 W / cm <时)输出53.6 A(375 A / cm 2 ) sup> 2 )。晶体管电流增益为 ID / IG = 26 800,比通态电阻为5.5 mOmegamiddotcm 2 。据我们所知,这是迄今为止报道的面积最大的SiC垂直沟道JFET,在相同的热负载和栅极偏置条件下,其输出电流比任何1200 V级垂直沟道JFET都要大。

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