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Performance of Lateral 4H-SiC Photoconductive Semiconductor Switches by Extrinsic Backside Trigger
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作者 WANG Hao LIU Xuechao +8 位作者 ZHENG Zhong PAN Xiuhong XU Jintao ZHU Xinfeng CHEN Kun DENG Weijie TANG Meibo GUO Hui GAO Pan 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第9期1070-1076,共7页
Photoconductive semiconductor switch(PCSS)can be applied in pulsed high power systems and microwave techniques.However,reducing the damage and increasing the lifetime of silicon carbide(SiC)PCSS are still faced severe... Photoconductive semiconductor switch(PCSS)can be applied in pulsed high power systems and microwave techniques.However,reducing the damage and increasing the lifetime of silicon carbide(SiC)PCSS are still faced severe challenges.In this study,PCSSs with various structures were prepared on 4-inch diameter,500μm thick high-purity semi-insulating 4H-SiC substrates and their on-state resistance and damage mechanisms were investigated.It was found that the PCSS of an Au/TiW/Ni electrode system annealed at 950℃had a minimum on-state resistance of 6.0Ωat 1 kV bias voltage with a 532 nm and 170 mJ pulsed laser by backside illumination single trigger.The backside illumination single trigger could reduce on-state resistance and alleviate the damage of PCSS compared to the frontside trigger when the diameter of the laser spot was larger than the channel length of PCSS.For the 200 s trigger test by a 10 Hz laser,the black branch-like ablation on Au/TiW/Ni PCSS was mainly caused by thermal stress owing to hot carriers.Replacing metal Ni with boron gallium co-doped zinc oxide(BGZO)thin films annealed at 400℃,black branch-like ablation was alleviated while concentric arc damage was obvious at the anode.The major causes of concentric arc are both pulsed laser diffraction and thermal effect. 展开更多
关键词 silicon carbide photoconductive semiconductor switch on-state resistance failure analysis
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Transient Characteristics of a Nonlinear GaAs Photoconductive Semiconductor Switch
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作者 王馨梅 施卫 +1 位作者 屈光辉 田立强 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2008年第6期1108-1110,共3页
The transient resistance,voltage,and power of a nonlinear GaAs photoconductive semiconductor switch (PCSS) are presented by the finite difference formula to deal with the experiment data, based on the conversation o... The transient resistance,voltage,and power of a nonlinear GaAs photoconductive semiconductor switch (PCSS) are presented by the finite difference formula to deal with the experiment data, based on the conversation of energy in the switch circuit. This method resolves the problem of directly measuring the transient characteristics of PCSS in nonlinear mode. The curve of transient voltage shows that the average electric field of PCSS in the lock-on period is always higher than the Gunn threshold,and increases monotonically. By comparing the transient power curves of the PCSS and the electrical source,it is demonstrated directly that the power shortage leads to the PCSS from the lock-on state into the selfturnoff state,so a controllable turnoff of the PCSS in lock-on by changing the distribution of the circuit power is predicted. 展开更多
关键词 photoconductive semiconductor switch lock-on effect nonlinear mode controllable turnoff
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Gain Switch of an AlGaInP Red Light Semiconductor Laser Diode
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作者 刘运涛 宋国锋 陈良惠 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2008年第7期1274-1277,共4页
We solve the single mode coupled rate equations by computer,simulate the behavior of a gain switch of an AlGaInP red light semiconductor laser diode,and find the characteristic of FWHM of pulses changing with the ampl... We solve the single mode coupled rate equations by computer,simulate the behavior of a gain switch of an AlGaInP red light semiconductor laser diode,and find the characteristic of FWHM of pulses changing with the amplitude of modulation signal, the bias current, and the modulated frequency. On this basis, we conduct experiments. The experiment results accord with the simulations well. 展开更多
关键词 red light semiconductor laser diode gain switch PULSE
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Photoconductive semiconductor switch-based triggering with 1 ns jitter for trigatron 被引量:7
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作者 Langning Wang Yongsheng Jia Jinliang Liu 《Matter and Radiation at Extremes》 SCIE EI CAS 2018年第5期256-260,共5页
Synchronization for multiple-pulse at nanosecond range shows a great value on the power multiplication and synchronous electric fieldsapplications. Nanosecond or sub-ns jitter synchronization is essential for the impr... Synchronization for multiple-pulse at nanosecond range shows a great value on the power multiplication and synchronous electric fieldsapplications. Nanosecond or sub-ns jitter synchronization is essential for the improved working efficiency of the large amounts of pulse modulesand accurate requirements for the power coherent combining applications. This paper presents a trigger generator based on a laser diodetriggered GaAs photoconductive semiconductor switch (PCSS) with low jitter and compact size characteristics. It avoids the high currentsthat are harmful to high-gain mode PCSSs. In the trigger circuit, a 200 pF capacitor is charged by a microsecond-scale 18 kV pulse and thendischarged via the high-gain mode GaAs PCSS to trigger the high-power trigatron switch. When triggered by the ~10 ns pulse generated by thePCSS, the DC-charged trigatron can operate in the 20e35 kV range with 10 ns rise time and 1 ns delay-time jitter. 展开更多
关键词 Pulsed power High power switches SYNCHRONIZATION Trigger generator Photoconductive semiconductor switch
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Solid-State Synthesis and Effect of Temperature on Optical Properties of CuO Nanoparticles 被引量:5
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作者 C.C.Vidyasagar Y.Arthoba Naik +1 位作者 T.G.Venkatesha R.Viswanatha 《Nano-Micro Letters》 SCIE EI CAS 2012年第2期73-77,共5页
Modulation of band energies through size control offers new ways to control photoresponse and photoconversion efficiency of the solar cell. The P-type semiconductor of copper oxide is an important functional material ... Modulation of band energies through size control offers new ways to control photoresponse and photoconversion efficiency of the solar cell. The P-type semiconductor of copper oxide is an important functional material used for photovoltaic cells. Cu O is attractive as a selective solar absorber since it has high solar absorbance and a low thermal emittance. The present work describes the synthesis and characterization of semiconducting Cu O nanoparticles via one-step, solid-state reaction in the presence of Polyethylene glycol400 as size controlling agent for the preparation of Cu O nanoparticles at different temperatures. Solid-state mechanochemical processing, which is not only a physical size reduction process in conventional milling but also a chemical reaction, is mechanically activated at the nanoscale during grinding. The present method is a simple and efficient method of preparing nanoparticles with high yield at low cost. The structural and chemical composition of the nanoparticles were analyzed by X-ray diffraction, field emission scanning electron microscopy and energy-dispersive spectrometer, respectively. Optical properties and band gap of Cu O nanoparticles were studied by UV-Vis spectroscopy. These results showed that the band gap energy decreased with increase of annealing temperature, which can be attributed to the improvement in grain size of the samples. 展开更多
关键词 Band gap CUO Polyethylene glycol 400 semiconductorS solid-state reaction
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Roles of voltage in semi-insulating GaAs photoconductive semiconductor switch 被引量:1
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作者 Hai-Juan Cui Hong-Chun Yang +2 位作者 Jun Xu Yu-Ming Yang Zi-Xian Yang 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第1期493-497,共5页
An experimental study of leakage current is presented in a semi-insulating(SI) Ga As photoconductive semiconductor switch(PCSS) with voltages up to 5.8 kV(average field is 19.3 kV/cm). The leakage current increa... An experimental study of leakage current is presented in a semi-insulating(SI) Ga As photoconductive semiconductor switch(PCSS) with voltages up to 5.8 kV(average field is 19.3 kV/cm). The leakage current increases nonlinearly with the bias voltage increasing from 1.2×10^-9 A to 3.6×10^-5A. Furthermore, the dark resistance, which is characterized as a function of electric field, does not monotonically decrease with the field but displays several distinct regimes. By eliminating the field-dependent drift velocity, the free-electron density n is extracted from the current, and then the critical field for each region of n(E) characteristic of PCSS is obtained. It must be the electric field that provides the free electron with sufficient energy to activate the carrier in the trapped state via multiple physical mechanisms, such as impurity ionization, fielddependent EL2 capture, and impact ionization of donor centers EL10 and EL2. The critical fields calculated from the activation energy of these physical processes accord well with the experimental results. Moreover, agreement between the fitting curve and experimental data of J(E), further confirms that the dark-state characteristics are related to these field-dependent processes. The effects of voltage on SI-Ga As PCSS may give us an insight into its physical mechanism. 展开更多
关键词 photoconductive semiconductor switch leakage current dark resistance nonlinear characteristics
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A High Power Semiconductor Switch RSD for Pulsed Power Applications
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作者 周郁明 余岳辉 +1 位作者 陈海刚 梁琳 《Plasma Science and Technology》 SCIE EI CAS CSCD 2007年第5期622-625,共4页
High power switch is one of the most important components in pulsed power technology. The RSD (Reversely Switched Dynistor), turned on by a thin layer of an electron-hole plasma, is a high power semiconductor switch... High power switch is one of the most important components in pulsed power technology. The RSD (Reversely Switched Dynistor), turned on by a thin layer of an electron-hole plasma, is a high power semiconductor switch. In this study, the RSD turn-on conditions were investigated by numerical analysis and device simulation as well as the experiments conducted to validate the turn-on conditions. A design of a triggering high-voltage RSD is presented based on a saturable transformer. 展开更多
关键词 pulsed power semiconductor switch RSD trigger charge saturable transformer
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Experimental Study of Surface Flashover Field of SI-GaAs Photoconductive Semiconductor Switch
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作者 JI Weili SHI Wei 《高电压技术》 EI CAS CSCD 北大核心 2013年第8期1919-1924,共6页
With its unique features, photoconductive semiconductor switch (PCSS) is generally recognized today as a promising power electronic device. However, a major limitation of PCSS is its surprisingly low voltage threshold... With its unique features, photoconductive semiconductor switch (PCSS) is generally recognized today as a promising power electronic device. However, a major limitation of PCSS is its surprisingly low voltage threshold of surface flashover (SF). In this paper, an experimental study of surface flashover of a back-triggered PCSS is presented. The PCSSs with electrode gap of 18 mm are fabricated from liquid encapsulated czochralski (LEC) semi-insulating gallium arsenide (SI-GaAs), and they are either un-coated, or partly coated, or en- tirely coated PCSSs with high-strength transparent insulation. The SF fields of the PCSSs are measured and discussed. According to the experimental results, the high-dielectric-strength coating is efficient in both reducing the gas desorption from semiconductor and increasing the SF field: a well-designed PCSS can resist a voltage up to 20 kV under the repetition frequency of 30 Hz. The physical mechanism of the PCSS SF is analyzed, and the conclusion is made that having a channel structure, the SF is the breakdown of the contaminated dielectric layer at the semiconductor-ambient dielectric interface. The non-uniform distribution of the surface field and the gas desorption due to thermal effects of semiconductor surface currents are key factors causing the SF field reduction. 展开更多
关键词 光导半导体开关 SI-GAAS 沿面闪络 实验 光电 电力电子装置 光导开关 半绝缘砷化镓
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A Tri-Salt Composite Electrolyte with Temperature Switch Function for Intelligently Temperature-Controlled Lithium Batteries
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作者 Ende Fu Huimin Wang +4 位作者 Yating Zhang Zhenxue Xiao Xiu Zheng Shuai Hao Xueping Gao 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第6期84-93,共10页
The intense research of lithium-ion batteries has been motivated by their successful applications in mobile devices and electronic vehicles.The emerging of intelligent control in kinds of devices brings new requiremen... The intense research of lithium-ion batteries has been motivated by their successful applications in mobile devices and electronic vehicles.The emerging of intelligent control in kinds of devices brings new requirements for battery systems.The high-energy lithium batteries are expected to respond or react under different environmental conditions.In this work,a tri-salt composite electrolyte is designed with a temperature switch function for intelligently temperature-controlled lithium batteries.Specifically,the halide Li_(3)YBr_(6)together with LiTFSI and LiNO_(3)works as active fillers in a low-melting-point polymer matrix(polyethyleneglycol dimethyl ether(PEGDME)and polyethylene oxide(PEO)),which is further filled into the pre-lithiated alumina fiber skeleton.Above 60°C,the composite electrolyte exists in the liquid state and fully contacts with the working electrodes on the liquid–solid interface,effectively minimizing the interfacial resistance and leading to high discharge capacity in the cell.The electrolyte is changed into a solid state below 30°C so that the ionic conductivity is significantly reduced and the interface resistance is increased dramatically on the solid–solid interface.Therefore,by simply adjusting the temperature,the cell can be turned“ON”or“OFF”intentionally.This novel function of the composite electrolyte has enlightening significance in developing intelligently temperature-controlled lithium batteries. 展开更多
关键词 composite electrolyte halide electrolyte low melting point solid-state battery temperature switch function
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LTT switch unit for capacitive energy storages 被引量:2
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作者 N.E.Nechaev B.E.Fridman +2 位作者 A.A.Khapugin V.A.Martynenko R.A.Serebrov 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第5期616-621,共6页
When the capacitor cell is discharged in the short-circuit mode, the current pulse amplitude and duration are maximal. Therefore, this mode is the most severe for discharge switches of capacitive energy storage. The c... When the capacitor cell is discharged in the short-circuit mode, the current pulse amplitude and duration are maximal. Therefore, this mode is the most severe for discharge switches of capacitive energy storage. The characteristics of the transient process of the discharge capacitive energy storage and the current loads acting in the facility discharge circuit have been defined for this mode. The test bench for definition of the LTT(Light Triggered Thyristors) loading capacity is described. The limiting characteristics have been experimentally obtained for LTT, at which there emerges the thermo-generation peak.The process of OFF-ON switching of LTTs has been investigated, the necessity is shown to use the speedup R-C circuits to ensure fast and stable transition of LTT into the conducting state. The design of the switch unit for the capacitive energy storage comprising LTTs and crowbar diodes is described, and the transient processes of current switching in crowbar diodes are considered. The tests carried out during switching of pul se current up to 100 kA at a voltage of 6 kV have confirmed the workability of the switch unit. 展开更多
关键词 Energy STORAGE POWER semiconductor switches Photothyristors PULSE POWER systems
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Application of an Al-doped zinc oxide subcontact layer on vanadium-compensated 6H–SiC photoconductive switches 被引量:1
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作者 周天宇 刘学超 +3 位作者 黄维 代冲冲 郑燕青 施尔畏 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第4期241-245,共5页
Al-doped ZnO thin film (AZO) is used as a subcontact layer in 6H-SiC photoconductive semiconductor switches (PCSSs) to reduce the on-state resistance and optimize the device structure. Our photoconductive test sho... Al-doped ZnO thin film (AZO) is used as a subcontact layer in 6H-SiC photoconductive semiconductor switches (PCSSs) to reduce the on-state resistance and optimize the device structure. Our photoconductive test shows that the onstate resistance of lateral PCSS with an n+-AZO subcontact layer is 14.7% lower than that of PCSS without an n+-AZO subcontact layer. This occurs because a heavy-doped AZO thin film can improve Ohmic contact properties, reduce contact resistance, and alleviate Joule heating. Combined with the high transparance characteristic at 532 nm of AZO film, vertical structural PCSS devices are designed and their structural superiority is discussed. This paper provides a feasible route for fabricating high performance SiC PCSS by using conductive and transparent ZnO-based materials. 展开更多
关键词 photoconductive semiconductor switch SIC n+-AZO subcontact layer on-state resistance
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Impact of switching frequencies on the TID response of SiC power MOSFETs 被引量:2
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作者 Sheng Yang Xiaowen Liang +9 位作者 Jiangwei Cui Qiwen Zheng Jing Sun Mohan Liu Dang Zhang Haonan Feng Xuefeng Yu Chuanfeng Xiang Yudong Li Qi Guo 《Journal of Semiconductors》 EI CAS CSCD 2021年第8期73-76,共4页
Different switching frequencies are required when SiC metal-oxide-semiconductor field-effect transistors(MOSFETs)are switching in a space environment.In this study,the total ionizing dose(TID)responses of SiC power MO... Different switching frequencies are required when SiC metal-oxide-semiconductor field-effect transistors(MOSFETs)are switching in a space environment.In this study,the total ionizing dose(TID)responses of SiC power MOSFETs are investigated under different switching frequencies from 1 kHz to 10 MHz.A significant shift was observed in the threshold voltage as the frequency increased,which resulted in premature failure of the drain-source breakdown voltage and drain-source leakage current.The degradation is attributed to the high activation and low recovery rates of traps at high frequencies.The results of this study suggest that a targeted TID irradiation test evaluation method can be developed according to the actual switching frequency of SiC power MOSFETs. 展开更多
关键词 SiC power MOSFET switching frequency oxide trap total ionizing dose TRANSISTOR semiconductor theory
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Nordic Semiconductor低功耗蓝牙控制机械开关轻松实现家电远程操作 被引量:1
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《单片机与嵌入式系统应用》 2017年第7期87-87,共1页
Nordic Semiconductor宣布,智能家居机器人公司WonderLabs,Inc.推出无线控制家中开关和按钮的机械设备SwitchBot及实现SwitchBot远程操作的低功耗蓝牙“网关”Switch Link。
关键词 semiconductor 远程操作 机械开关 无线控制 低功耗 蓝牙 家电 switch
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Experimental Study of Reversely Switched Dynistor Discharge Based on Gap Breakdown Load
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作者 尚超 梁琳 +2 位作者 余岳辉 吴拥军 李海亮 《Plasma Science and Technology》 SCIE EI CAS CSCD 2011年第1期121-124,共4页
Breakdown characteristics of a gap breakdown load was investigated in this paper, and a reversely switched dynistor (RSD) discharge circuit was designed based on the load. Based on the characteristics of the load, t... Breakdown characteristics of a gap breakdown load was investigated in this paper, and a reversely switched dynistor (RSD) discharge circuit was designed based on the load. Based on the characteristics of the load, the RSD discharge circuit was improved and optimized. The volume of the magnetic switch was reduced. To protect the thyristor and RSD, a diode was anti- parallely connected with the thyristor, which reduced the time requirement when a power voltage was applied to RSD. Experimental results show the circuit designed in this paper can switch a high voltage and high current smoothly, and allows the power voltage to change in a wider range. 展开更多
关键词 RSD semiconductor switch pulsed power magnetic switch gap breakdown
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Zinc Oxide Surface Flashover Triggering of Pseudospark Switch
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作者 谢建民 邱毓昌 《Plasma Science and Technology》 SCIE EI CAS CSCD 2003年第3期1811-1814,共4页
Accurate and reliable triggering is one of the most important issues with high power pseudospark switch, because it not only has an impact on the design of discharge chamber of switch, but also has an influence on the... Accurate and reliable triggering is one of the most important issues with high power pseudospark switch, because it not only has an impact on the design of discharge chamber of switch, but also has an influence on the dynamic range of operation voltage, repetition frequencies and lifetime of switch. The unique feature of pseudospark switch is its hollow cathode geometry. The hollow cathode effect produced by the hollow cathode provides the protection of the switch for the triggering unit from erosion by high discharge plasma. In this paper, a zinc oxide (ZnO) surface flashover triggering is presented. This trigger unit possesses an excellent time delay (80 ns - 360 ns) and jitter (20 ns - 50 ns) at the switch voltage of 30 kV - 2 kV. The emitted plasma electron density is high enough to trigger switch reliably down to switch voltage of 440 V. 展开更多
关键词 pseudospark switch(PSS) pulsed power technology semiconductor (ZnO) surface flashover triggering hollow cathode effect
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Photostructural Changes and Electrical Switching in Amorphous Chalcogenides: Bond Waves in Thin Films
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作者 Elena A. Chechetkina 《Natural Science》 2018年第2期70-80,共11页
Photostructural changes and electrical switching are the well-known features of amorphous chalcogenides, also known as glassy semiconductors. Although the both phenomena were intensively studied experimentally and hav... Photostructural changes and electrical switching are the well-known features of amorphous chalcogenides, also known as glassy semiconductors. Although the both phenomena were intensively studied experimentally and have a wide practical application, their nature is debated up to now. I propose a new approach that considers glass as a self-organizing system owing to characteristic instability of chemical bonding in the form of bond wave. The bond wave model is shown to be suitable for explanation of the observed effects in thin films under the action of light or electrical field, a result that opens a new way for understanding and managing the processes in glassy semiconductors. 展开更多
关键词 GLASSY semiconductorS SELF-ORGANIZATION Photostructural Changes Electrical switchING
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A DESIGN OF 0.25μm CMOS SWITCH
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作者 Han Lei Yang Tao +3 位作者 Xie Jun Wang Yong You Yu Zhang Bo 《Journal of Electronics(China)》 2006年第5期745-747,共3页
Single-Pole Double-Throw (SPDT) broadband switch has been designed in a 0.25gm Complementary Metal Oxide Semiconductor (CMOS) process. To optimize the performance of isolation and insertion loss, based on normal d... Single-Pole Double-Throw (SPDT) broadband switch has been designed in a 0.25gm Complementary Metal Oxide Semiconductor (CMOS) process. To optimize the performance of isolation and insertion loss, based on normal design, the effects of Gate Series Resistances (GSR) on insertion loss and switching time are analyzed for the first time. The compatible GSRs are chosen by the analyses. The fabricated chips were tested and the results show the switch isolation from DC (Direct Current) to 1GHz exhibits 55dB and insertion loss lower than 2.1 dB. 展开更多
关键词 RF (Radio-Frequency) CMOS (Complementary Metal Oxide semiconductor switch Insertion loss Gate Series Resistance (GSR) switch time
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激光触发多门极半导体开关初步研究
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作者 刘宏伟 王凌云 +6 位作者 栾崇彪 袁建强 谢卫平 杨杰 何泱 付佳斌 徐乐 《强激光与粒子束》 CAS CSCD 北大核心 2024年第11期25-31,共7页
固态脉冲功率源在脉冲功率技术领域应用广泛,已经成为新的研究热点,其中,高功率固态开关器件是固态脉冲功率源的核心。报道了一种新型光触发多门极半导体开关(LIMS),该开关具备光致线性模式和场致增益模式两种工作模式,解决了传统电控... 固态脉冲功率源在脉冲功率技术领域应用广泛,已经成为新的研究热点,其中,高功率固态开关器件是固态脉冲功率源的核心。报道了一种新型光触发多门极半导体开关(LIMS),该开关具备光致线性模式和场致增益模式两种工作模式,解决了传统电控器件电流上升率低的问题,实现了器件的高电流上升率,光致线性模式下实验测试得到了454 kA/μs的电流上升率,该开关在雷管起爆、电磁脉冲模拟等领域已得到初步应用。 展开更多
关键词 光触发多门极半导体开关 固态脉冲功率源 重复频率
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Application of GaN in Hard-switching Converters:Challenges and Potential Solutions
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作者 Bo LIU Zhe-yu ZHANG +1 位作者 Edward Jones Fei(Fred) WANG 《电力电子技术》 CSCD 北大核心 2017年第9期3-11,共9页
This paper overviews the benefits,challenges,research trends and potential solutions on the design and application of gallium nitride(GaN) technology in hard-switching power electronic converters from the device level... This paper overviews the benefits,challenges,research trends and potential solutions on the design and application of gallium nitride(GaN) technology in hard-switching power electronic converters from the device level up to converter level. 展开更多
关键词 氮化镓 功率 电子变换器 电子技术
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压控型脉冲功率半导体器件技术及应用
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作者 孙瑞泽 陈万军 +3 位作者 刘超 刘红华 姚洪梅 张波 《强激光与粒子束》 CAS CSCD 北大核心 2024年第9期94-102,共9页
近年来,采用新一代半导体开关替代传统气体或真空开关是脉冲功率系统的一种重要发展趋势。为了给脉冲功率半导体器件领域的技术发展提供参考,简要介绍了压控型脉冲功率半导体器件技术的发展历程,总结了MOS栅控晶闸管(MCT)在器件设计、... 近年来,采用新一代半导体开关替代传统气体或真空开关是脉冲功率系统的一种重要发展趋势。为了给脉冲功率半导体器件领域的技术发展提供参考,简要介绍了压控型脉冲功率半导体器件技术的发展历程,总结了MOS栅控晶闸管(MCT)在器件设计、工艺和可靠性等方面的研究进展,同时通过比较MCT与一般商业IGBT器件,阐述了MCT相比于其他功率脉冲半导体器件的优劣情况,并结合典型应用场景展示了MCT器件的优势,对压控型脉冲功率半导体器件的发展趋势进行了简要分析。 展开更多
关键词 脉冲功率技术 脉冲功率半导体开关 MOS栅控晶闸管 电压控制 重复脉冲
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