Author Affiliations
Abstract
National Key Laboratory of Solid-State Microwave Devices and Circuits, Hebei Semiconductor Research Institute, Shijiazhuang 050051, China
In this letter, high power density AlGaN/GaN high electron-mobility transistors (HEMTs) on a freestanding GaN substrate are reported. An asymmetric Γ-shaped 500-nm gate with a field plate of 650 nm is introduced to improve microwave power performance. The breakdown voltage (BV) is increased to more than 200 V for the fabricated device with gate-to-source and gate-to-drain distances of 1.08 and 2.92 μm. A record continuous-wave power density of 11.2 W/mm@10 GHz is realized with a drain bias of 70 V. The maximum oscillation frequency (fmax) and unity current gain cut-off frequency (ft) of the AlGaN/GaN HEMTs exceed 30 and 20 GHz, respectively. The results demonstrate the potential of AlGaN/GaN HEMTs on free-standing GaN substrates for microwave power applications.
freestanding GaN substrates AlGaN/GaN HEMTs continuous-wave power density breakdown voltage Γ-shaped gate 
Journal of Semiconductors
2024, 45(1): 012501
作者单位
摘要
1 中国电子科技集团公司第十三研究所, 河北石家庄 050051
2 固态微波器件与电路全国重点实验室, 河北石家庄 050051
介绍了一款基于 GaAs肖特基二极管单片工艺的 220 GHz倍频器的设计过程以及测试结果。为提高输出功率, 倍频器采用多阳极结构, 8个二极管在波导呈镜像对称排列, 形成平衡式倍频器结构。采用差异式结电容设计解决了多阳极结构端口散射参数不一致问题, 提高了倍频器的转换效率和工作带宽。对设计的倍频器进行流片、装配和测试, 测试结果显示: 倍频器在 204~ 234 GHz频率范围内, 转化效率大于 15%; 226 GHz峰值频率下实现最大输出功率为 90.5 mW, 转换效率为 22.6%。设计的 220 GHz倍频器输出功率高, 转化效率高, 工作带宽大。
倍频器 太赫兹 肖特基二极管 结电容 单片 frequency doubler tearhertz Schottky barrier diode junction capacitance Microwave Monolithic Integrated Circuit 
太赫兹科学与电子信息学报
2023, 21(9): 1080
Author Affiliations
Abstract
National Key Laboratory of ASIC, Hebei Semiconductor Research Institute, Shijiazhuang 050051, China
In this work, high-stability 4H-SiC avalanche photodiodes (APDs) for ultraviolet (UV) detection at high temperatures are fabricated and investigated. With the temperature increasing from room temperature to 150°C, a very small temperature coefficient of 7.4 mV/°C is achieved for the avalanche breakdown voltage of devices. For the first time, the stability of 4H-SiC APDs is verified based on an accelerated aging test with harsh stress conditions. Three different stress conditions are selected with the temperatures and reverse currents of 175°C/100 µA, 200°C/100 µA, and 200°C/500 µA, respectively. The results show that our 4H-SiC APD exhibits robust high-temperature performance and can even endure more than 120 hours at the harsh aging condition of 200°C/500 µA, which indicates that 4H-SiC APDs are very stable and reliable for applications at high temperatures.
silicon carbide photodiode UV detector high temperature avalanche Geiger mode 
Chinese Optics Letters
2023, 21(3): 032502
Author Affiliations
Abstract
National Key Laboratory of Application Specific Integrated Circuit (ASIC), Hebei Semiconductor Research Institute, Shijiazhuang 050051, China
Ga2O3 metal–oxide–semiconductor field-effect transistors (MOSFETs) with high-breakdown characteristics were fabricated on a homoepitaxial n-typed β-Ga2O3 film, which was grown by metal organic chemical vapor deposition (MOCVD) on an Fe-doped semi-insulating (010) Ga2O3 substrate. The structure consisted of a 400 nm unintentionally doped (UID) Ga2O3 buffer layer and an 80 nm Si-doped channel layer. A high k HfO2 gate dielectric film formed by atomic layer deposition was employed to reduce the gate leakage. Moreover, a source-connected field plate was introduced to enhance the breakdown characteristics. The drain saturation current density of the fabricated device reached 101 mA/mm at Vgs of 3 V. The off-state current was as low as 7.1 × 10-11 A/mm, and the drain current ION/IOFF ratio reached 109. The transistors exhibited three-terminal off-state breakdown voltages of 450 and 550 V, corresponding to gate-to-drain spacing of 4 and 8 μm, respectively.
Journal of Semiconductors
2019, 40(1): 012803
Author Affiliations
Abstract
National Key Laboratory of ASIC, Hebei Semiconductor Research Institute, Shijiazhuang 050051, China
Ultraviolet (UV) detectors with large photosensitive areas are more advantageous in low-level UV detection applications. In this Letter, high-performance 4H-SiC p-i-n avalanche photodiodes (APDs) with large active area (800 μm diameter) are reported. With the optimized epitaxial structure and device fabrication process, a high multiplication gain of 1.4 × 106 is obtained for the devices at room temperature, and the dark current is as low as ~10 pA at low reverse voltages. In addition, record external quantum efficiency of 85.5% at 274 nm is achieved, which is the highest value for the reported SiC APDs. Furthermore, the rejection ratio of UV to visible light reaches about 104. The excellent performance of our devices indicates a tremendous improvement for large-area SiC APD-based UV detectors. Finally, the UV imaging performance of our fabricated 4H-SiC p-i-n APDs is also demonstrated for system-level applications.
040.1345 Avalanche photodiodes (APDs) 040.7190 Ultraviolet 040.6070 Solid state detectors 230.5160 Photodetectors 
Chinese Optics Letters
2019, 17(9): 090401
徐鹏 1杨大宝 1张立森 2梁士雄 2,**[ ... ]冯志红 2,*
作者单位
摘要
1 中国电子科技集团公司第十三研究所,河北 石家庄 050051
2 专用集成电路重点实验室,河北 石家庄 050051
基于反向串联型砷化镓平面肖特基容性二极管,采用平衡式二倍频结构,研制出了一种190 GHz大功率输出二倍频器。使用三维电磁场与非线性谐波平衡联合的方法进行了仿真,并根据仿真结果完成了倍频器的加工、装配和测试。倍频器在182~196 GHz输出频率范围内的倍频效率可达8%以上;当输出频率为187 GHz时,倍频效率和输出功率可分别达到15.4%和85 mW。
太赫兹 二倍频 肖特基二极管 大功率 
中国激光
2019, 46(6): 0614022
Author Affiliations
Abstract
National Key Laboratory of ASIC, Hebei Semiconductor Research Institute, Shijiazhuang 050051, China
In this Letter, we report large-area (600 μm diameter) 4H-SiC avalanche photodiodes (APDs) with high gain and low dark current for visible-blind ultraviolet detection. Based on the separate absorption and multiplication structure, 4H-SiC APDs passivated with SiNx instead of SiO2 are demonstrated for the first time, to the best of our knowledge. Benefitting from the SiNx passivation, the surface leakage current is effectively suppressed. At room temperature, high multiplication gain of 6.5×105 and low dark current density of 0.88 μA/cm2 at the gain of 1000 are achieved for our devices, which are comparable to the previously reported small-area SiC APDs.
040.1345 Avalanche photodiodes (APDs) 040.7190 Ultraviolet 040.6070 Solid state detectors 
Chinese Optics Letters
2018, 16(6): 060401

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