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Structural and Electrical Characterization of 2 Ammonothermal Free-Standing GaN Wafers. Progress toward Pilot Production

机译:2氨热自立式GaN晶片的结构和电气特性。试生产进展

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摘要

Free-standing gallium nitride (GaN) substrates are in high demand for power devices, laser diodes, and high-power light emitting diodes (LEDs). SixPoint Materials Inc. has begun producing 2” GaN substrates through our proprietary Near Equilibrium AmmonoThermal (NEAT) growth technology. In a single 90 day growth, eleven c-plane GaN boules were grown from free-standing hydride vapor phase epitaxy (HVPE) GaN substrates. The boules had an average X-ray rocking curve full width at half maximum (FWHM) of 33 ± 4 in the 002 reflection and 44 ± 6 in the 201 reflection using 0.3 mm divergence slits. The boules had an average radius of curvature of 10.16 ± 3.63 m. The quality of the boules was highly correlated to the quality of the seeds. A PIN diode grown at Georgia Tech on a NEAT GaN substrate had an ideality factor of 2.08, a high breakdown voltage of 1430 V, and Baliga’s Figure of Merit of >9.2 GW/cm2. These initial results demonstrate the suitability of using NEAT GaN substrates for high-quality MOCVD growth and fabrication of high-power vertical GaN switching devices.
机译:对于功率器件,激光二极管和大功率发光二极管(LED),自立式氮化镓(GaN)基板的需求量很大。 SixPoint Materials Inc.已开始通过我们专有的近平衡AmmonoThermal(NEAT)生长技术生产2英寸GaN衬底。在一个90天的生长过程中,从独立的氢化物气相外延(HVPE)GaN衬底生长了11个c面GaN圆棒。使用0.3毫米的发散狭缝,该球团的平均X射线摇摆曲线半峰全宽(FWHM)在002反射中为33±4,在201反射中为44±6。圆棒的平均曲率半径为10.16±3.63 m。圆面包的质量与种子的质量高度相关。乔治亚理工学院在NEAT GaN衬底上生长的PIN二极管的理想因子为2.08,击穿电压为1430 V,Baliga的品质因数> 9.2 GW / cm 2 。这些初步结果证明了使用NEAT GaN衬底进行高质量MOCVD生长和制造高功率垂直GaN开关器件的适用性。

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