期刊文献+

基于高速肖特基二极管的100 ps瞬态取样门设计与仿真(英文) 被引量:7

Design and simulation of 100 ps transient sampling gate based on high speed Schottky diode
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摘要 皮秒级瞬态取样门主要应用于激光聚变实验和高能物理实验中,对单次高速脉冲进行实时取样。提出了一种新颖的基于肖特基二极管桥的平衡取样门,给出其模型和具体电路设计。电路仿真结果表明,对称的选通设计保证了选通脉宽为100 ps时,取样间隔也为100 ps,取样门带宽为4.4 GHz,可应用于多路超短激光脉冲取样。 The picosecond transient sampling gate is mainly applied in laser fusion and high energy physics experiments for single high-speed pulse real-time sampling. A new balanced sampling gate based on moqolithic Schottky bridge quad diodes is put forward in this paper as well as its model and circuit design. The circuit simulation shows that the symmetric strobe design ensures that the sampling interval is 100 ps and the sampling gate bandwidth is 4.4 GHz when the strobe pulse width is 100 ps. The gate can be used in multi-beam ultrashort laser pulses sampling.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2006年第1期45-50,共6页 High Power Laser and Particle Beams
基金 SupportedbytheNationalNaturalScienceFoundationofChina
关键词 激光脉冲取样 肖特基二极管 平衡取样门 脉冲宽度 设计与仿真 Laser pulse sampling Schottky diodes Balanced sampling gate Pulse width Designand simulation
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参考文献9

  • 1陈宇晓,杨谟华,唐丹,邓君,陈敏德,陈惠连.ps脉冲传输线的多容性负载阻抗匹配模型和计算[J].强激光与粒子束,2004,16(8):1086-1088. 被引量:10
  • 2文国庆,张树葵,周丕璋,陈骥,邬玉婷,满永在.超短脉冲激光的脉宽测量[J].强激光与粒子束,1995,7(2):309-312. 被引量:5
  • 3Tam S C0 Neo W P, Chua H C. A novel technique for measuring the pulsewidth of nanosecond laser pulses[J]. IEEE Trans Instrum Meas,1998, 47(4):997-1000.
  • 4郭大浩,王声波,洪昕,吴鸿兴,戴宇生.高功率激光的时间、空间和频率特性的测量[J].强激光与粒子束,1997,9(3):433-436. 被引量:1
  • 5McEwan T E, Kilkenny J D, Dallum G. World's fastest solid-state digitizer[J]. Energy and Technology Review, 1994, 94(4):1-6.
  • 6Kane D J. Recent progress toward real-time measurement of ultrashort laser pulses[J]. IEEE Journal of Quantum Electronics, 1999, 35(4):421-431.
  • 7Ihlenfeld W, Mohns E, Bachmalr H, et al. Evaluation of the synchronous generation and sampling technique[J]. IEEE Trans Instrum Meas, 2003, 52(2):371-374.
  • 8Petrovic P, Marjanovic S, Stevanovic M. Measuring of slowly changing AC signals without sample-and-hold circuit[J]. IEEE Trans Instrum Meas, 2000, 49(6); 1245-1248.
  • 9Bosnjakovie P, Djokic B V, Dohcevic J M. Uniform sampling of periodic signals using successive conversions[J]. IEEE Trans Instrum Meas, 1998, 47(1):56-60.

二级参考文献14

  • 1陈宇晓,杨谟华,唐丹,邓君,陈敏德,陈惠连.ps脉冲传输线的多容性负载阻抗匹配模型和计算[J].强激光与粒子束,2004,16(8):1086-1088. 被引量:10
  • 2郭大浩,吴鸿兴,王声波,戴宇生.激光自锁模现象的消除[J].中国激光,1993,20(5):341-344. 被引量:2
  • 3吴鸿兴,中国科学.A,1991年,8期,883页
  • 4团体著者,激光参数测量,1976年,23,28,58页
  • 5McEwan T E, Kilkenny J D, Dallum G. World's fastest solid-state digitizer[J]. Energy and Technology Review, 1994, (4): 1-6.
  • 6Norris S N. Picosecond-domain waveform measurements[A]. Proceedings of the IEEE[C]. 1978, 66(4): 441-452.
  • 7Reinhold L, Pavel B. RF circuit design: theory and application[M]. New York: Prentice-Hall, 2000.
  • 8Paulter N G. An assessment on the accuracy of time-domain reflectometry for measuring the characteristic impedance of transmission lines[J]. IEEE Trans Instr Meas, 2001, 50(5): 1381-1388.
  • 9Rudolf S. New results of an experimental sampling system for recording fast single events[J]. Electr Lett, 1972, 8(4): 94-96.
  • 10Siu C T, Wah P N, Hock C C. A novel technique for measuring the pulsewidth of nanosecond laser pulses[J]. IEEE Trans Instr Meas, 1998, 47(4): 997-1000.

共引文献13

同被引文献36

  • 1高翔,程崇虎.一种新型微带/槽线混合结构的宽带魔T[J].微波学报,2005,21(4):12-15. 被引量:6
  • 2樊孝明,郑继禹,林基明.基于RF-BJT的超宽带极窄脉冲发生器的设计[J].电讯技术,2005,45(5):61-64. 被引量:11
  • 3CHEN Yuxiao,YANG Mohua,TANG Dan,DENG Jun,CHEN Minde.Picosecond Pulse Transmission Line for Multi-beam Ultrashort Laser Pulses Sampling[J].Chinese Journal of Electronics,2005,14(4):731-734. 被引量:3
  • 4程方,唐宗熙.一种用于UWB系统的高斯脉冲发生器[J].电讯技术,2007,47(4):159-161. 被引量:3
  • 5ABUASAKER S and KOMPA G. A high sensitive for baseband pulse microwave radar sensor using hybrid technology[C]//IEEE Radar Conference, 2002: 121- 124.
  • 6KIDA H. Measured and simulated results of impulse generator using step recovery diode[J]. IEICE Trans. Fundamentals, 2005, E88-A(9): 572-578.
  • 7周学松.地下目标检测技术[M].北京:国防工业出版社,2005.
  • 8HAN J W and NGUYEN C. Integrated balanced sampiing circuit for ultra-wideband communication and radar systems[J]. IEEE Microwave And Wireless Component Letters, 2004, 14(10): 460-462.
  • 9ZHANG C. FATHY A E, MAHFOUZ M. Performance enhancement of a sub-sampling circuit for ultra-wideband signal processing[J]. IEEE Microwave and Wireless Components Letters, 2007, 17(2): 873-875.
  • 10LEE J S, NGUYEN C, and SCULLION T. A novel compact. Low-cost impulse ground penetrating radar for nondestructive evaluation of pavements[J]. IEEE Trans. Instrument. Meas., 2004, 53(6): 1502- 1509.

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