为了减小氮化镓驱动电路高频工作时的损耗,针对共栅共源氮化镓高电子迁移率晶体管(Cascode GaN HEMT)提出一种高频谐振驱动电路,采用储能元件替代传统驱动电路中的耗能元件,电感电流为GaN器件栅极电容充/放电,有源密勒钳位电路抑制桥臂...为了减小氮化镓驱动电路高频工作时的损耗,针对共栅共源氮化镓高电子迁移率晶体管(Cascode GaN HEMT)提出一种高频谐振驱动电路,采用储能元件替代传统驱动电路中的耗能元件,电感电流为GaN器件栅极电容充/放电,有源密勒钳位电路抑制桥臂串扰。该文重点研究高频谐振驱动电路的工作模态,对电路损耗进行详细分析,给出电感取值的选取原则,并利用PSIM软件对电路进行仿真。最终搭建实验平台对电路的性能进行测试。结果表明,电感为电容充/放电提供低阻抗通路,能有效减小GaN器件驱动电路的电压振荡,明显降低驱动电路的损耗。仿真和实验同时证明了所提出的电路具有较好的性能。展开更多
近年来随着氮化镓器件制造工艺的迅速发展,氮化镓高电子迁移率晶体管(Ga N HEMT)已经开始应用在电力电子领域。高压共源共栅(Cascode)Ga N HEMT的出现使得Ga N器件可以在高压场合进行应用。本文首先研究了耗尽型Ga N HEMT及Cascode Ga N...近年来随着氮化镓器件制造工艺的迅速发展,氮化镓高电子迁移率晶体管(Ga N HEMT)已经开始应用在电力电子领域。高压共源共栅(Cascode)Ga N HEMT的出现使得Ga N器件可以在高压场合进行应用。本文首先研究了耗尽型Ga N HEMT及Cascode Ga N HEMT全范围输出伏安特性及其特点。结合Si MOSFET和耗尽型Ga N HEMT的特性,本文重点研究了Cascode Ga N HEMT的工作模态及其条件。最后,给出了500W基于600V Cascode Ga N HEMT单相全桥逆变器的实验验证。实验结果和仿真验证证明了理论分析的正确性。展开更多
Based on the minimum settling time (MST) theory and step-response analysis of the second order system in active switched capacitor (SC) networks, a novel clock feedthrough frequency compensation (CFFC) method fo...Based on the minimum settling time (MST) theory and step-response analysis of the second order system in active switched capacitor (SC) networks, a novel clock feedthrough frequency compensation (CFFC) method for a folded-cascode OTA is proposed. The damping factor r/is adjusted by using MOS capacitors to introduce clock feedthrough so that the OTA can obtain the MST state and thus achieve fast settling. Research results indicate that the settling time of the compensated OTA is reduced by 22.7% ;as the capacitor load varies from 0.5 to 2.5pF,the improved settling time increases approximately linearly from 3.62 to 4.46ns: for VGA application, fast settling can also be achieved by modifying the MOS capacitor value accordingly when the closed loop gain of the compensated OTA varies.展开更多
A differential cross-coupled regulated cascode(RGC)transimpedance amplifier(TIA)is proposed. The theory of multi-stage common-source(CS) configuration as an auxiliary amplifier to enhance the bandwidth and output impe...A differential cross-coupled regulated cascode(RGC)transimpedance amplifier(TIA)is proposed. The theory of multi-stage common-source(CS) configuration as an auxiliary amplifier to enhance the bandwidth and output impedance of RGC topology is analyzed. Additionally, negative Miller capacitance and shunt active inductor compensation are exploited to further expand the bandwidth. The proposed RGC TIA is simulated based on UMC 0.18 μm standard CMOS process. The simulation results demonstrate that the proposed TIA has a high transimpedance of 60.5 d B?, and a-3 d B bandwidth of 5.4 GHz is achieved for 0.5 p F input capacitance. The average equivalent input noise current spectral density is about 20 p A/Hz^(1/2) in the interested frequency, and the TIA consumes 20 m W DC power under 1.8 V supply voltage. The voltage swing is 460 m V pp, and the saturation input current is 500 μA.展开更多
This work presents a high-gain broadband inverter-based cascode transimpedance amplifier fabricated in a 65-nm CMOS process.Multiple bandwidth enhancement techniques,including input bonding wire,input series on-chip i...This work presents a high-gain broadband inverter-based cascode transimpedance amplifier fabricated in a 65-nm CMOS process.Multiple bandwidth enhancement techniques,including input bonding wire,input series on-chip inductive peak-ing and negative capacitance compensation,are adopted to overcome the large off-chip photodiode capacitive loading and the miller capacitance of the input device,achieving an overall bandwidth enhancement ratio of 8.5.The electrical measure-ment shows TIA achieves 58 dBΩup to 12.7 GHz with a 180-fF off-chip photodetector.The optical measurement demonstrates a clear open eye of 20 Gb/s.The TIA dissipates 4 mW from a 1.2-V supply voltage.展开更多
文摘为了减小氮化镓驱动电路高频工作时的损耗,针对共栅共源氮化镓高电子迁移率晶体管(Cascode GaN HEMT)提出一种高频谐振驱动电路,采用储能元件替代传统驱动电路中的耗能元件,电感电流为GaN器件栅极电容充/放电,有源密勒钳位电路抑制桥臂串扰。该文重点研究高频谐振驱动电路的工作模态,对电路损耗进行详细分析,给出电感取值的选取原则,并利用PSIM软件对电路进行仿真。最终搭建实验平台对电路的性能进行测试。结果表明,电感为电容充/放电提供低阻抗通路,能有效减小GaN器件驱动电路的电压振荡,明显降低驱动电路的损耗。仿真和实验同时证明了所提出的电路具有较好的性能。
文摘近年来随着氮化镓器件制造工艺的迅速发展,氮化镓高电子迁移率晶体管(Ga N HEMT)已经开始应用在电力电子领域。高压共源共栅(Cascode)Ga N HEMT的出现使得Ga N器件可以在高压场合进行应用。本文首先研究了耗尽型Ga N HEMT及Cascode Ga N HEMT全范围输出伏安特性及其特点。结合Si MOSFET和耗尽型Ga N HEMT的特性,本文重点研究了Cascode Ga N HEMT的工作模态及其条件。最后,给出了500W基于600V Cascode Ga N HEMT单相全桥逆变器的实验验证。实验结果和仿真验证证明了理论分析的正确性。
文摘Based on the minimum settling time (MST) theory and step-response analysis of the second order system in active switched capacitor (SC) networks, a novel clock feedthrough frequency compensation (CFFC) method for a folded-cascode OTA is proposed. The damping factor r/is adjusted by using MOS capacitors to introduce clock feedthrough so that the OTA can obtain the MST state and thus achieve fast settling. Research results indicate that the settling time of the compensated OTA is reduced by 22.7% ;as the capacitor load varies from 0.5 to 2.5pF,the improved settling time increases approximately linearly from 3.62 to 4.46ns: for VGA application, fast settling can also be achieved by modifying the MOS capacitor value accordingly when the closed loop gain of the compensated OTA varies.
基金Supported by the National Natural Science Foundation of China(No.61474081)
文摘A differential cross-coupled regulated cascode(RGC)transimpedance amplifier(TIA)is proposed. The theory of multi-stage common-source(CS) configuration as an auxiliary amplifier to enhance the bandwidth and output impedance of RGC topology is analyzed. Additionally, negative Miller capacitance and shunt active inductor compensation are exploited to further expand the bandwidth. The proposed RGC TIA is simulated based on UMC 0.18 μm standard CMOS process. The simulation results demonstrate that the proposed TIA has a high transimpedance of 60.5 d B?, and a-3 d B bandwidth of 5.4 GHz is achieved for 0.5 p F input capacitance. The average equivalent input noise current spectral density is about 20 p A/Hz^(1/2) in the interested frequency, and the TIA consumes 20 m W DC power under 1.8 V supply voltage. The voltage swing is 460 m V pp, and the saturation input current is 500 μA.
基金supported in part by the National NaturalScience Foundation of China under Grant 62074074in part by Natural Science Foundation of Guangdong Province under Grant 2021A1515011266in part by the Science and Technology Plan of Shenzhen under Grants JCYJ20190809142017428 and JCYJ20200109141225025。
文摘This work presents a high-gain broadband inverter-based cascode transimpedance amplifier fabricated in a 65-nm CMOS process.Multiple bandwidth enhancement techniques,including input bonding wire,input series on-chip inductive peak-ing and negative capacitance compensation,are adopted to overcome the large off-chip photodiode capacitive loading and the miller capacitance of the input device,achieving an overall bandwidth enhancement ratio of 8.5.The electrical measure-ment shows TIA achieves 58 dBΩup to 12.7 GHz with a 180-fF off-chip photodetector.The optical measurement demonstrates a clear open eye of 20 Gb/s.The TIA dissipates 4 mW from a 1.2-V supply voltage.