介绍了一种X波段低相噪频率综合器的实现方法。采用混频环与模拟高次倍频相结合的技术,实现X波段跳频信号的产生。采用该技术实现的频率综合器杂散抑制可达-68 d Bc,相噪优于-99 d Bc/Hz@1 k Hz,-104 d Bc/Hz@10 k Hz,-106 d Bc/Hz@100 ...介绍了一种X波段低相噪频率综合器的实现方法。采用混频环与模拟高次倍频相结合的技术,实现X波段跳频信号的产生。采用该技术实现的频率综合器杂散抑制可达-68 d Bc,相噪优于-99 d Bc/Hz@1 k Hz,-104 d Bc/Hz@10 k Hz,-106 d Bc/Hz@100 k Hz。重点论述了所采用的低相噪阶跃倍频的关键技术,详细分析了重要指标及其实现方法,实测结果证明采用该方法可实现给定指标下的X波段低相噪频率综合器。展开更多
A novel efficient circuit for Ultra-WideBand(UWB) balanced sub-nanosecond monocycle pulse generation is presented.The pulse generator employs wideband bipolar transistor,step recovery diodes,Schottky diodes,and simple...A novel efficient circuit for Ultra-WideBand(UWB) balanced sub-nanosecond monocycle pulse generation is presented.The pulse generator employs wideband bipolar transistor,step recovery diodes,Schottky diodes,and simple charging and discharging circuitry.Simple transient analysis and design of the circuit are presented along with their operating principle.The pulse generator produces truly balanced monocycle pulse with 500 ps pulse-width and 800 mV peak voltage.The generated monocycle pulse also has very symmetrical positive and negative portions and low ringing level.The presented pulse generator can be used as both a transmitter feeding UWB balanced antennas without broadband baluns and a balanced switching pulse generator that used in UWB receiver.展开更多
Two new kinds of ultra-narrow trigger frequency alterable picosecond pulse generator are presented.One can produce positive pulses and the other can produce negative pulses.The two pulse generators are subdivided into...Two new kinds of ultra-narrow trigger frequency alterable picosecond pulse generator are presented.One can produce positive pulses and the other can produce negative pulses.The two pulse generators are subdivided into three parts:signal driving circuit,differentiator network and pulse shaping circuit.The pulse shaping circuit is made of step recovery diode(SRD) and short-circuit microstrip line.A positive pulse with width of 54 ps(50%-50%),rising time of 30 ps(10%-90%) and falling time of 32 ps(90%-10%),and a negative pulse with width of 54 ps(50%-50%),rising time of 30 ps(90%-10%) and falling time of 30 ps(10%-90%) are achieved in simulation.All of the components are ready-made and inexpensive.They can be applied in ultra-wideband(UWB) communication system,such as transmitters and receivers.展开更多
文摘介绍了一种X波段低相噪频率综合器的实现方法。采用混频环与模拟高次倍频相结合的技术,实现X波段跳频信号的产生。采用该技术实现的频率综合器杂散抑制可达-68 d Bc,相噪优于-99 d Bc/Hz@1 k Hz,-104 d Bc/Hz@10 k Hz,-106 d Bc/Hz@100 k Hz。重点论述了所采用的低相噪阶跃倍频的关键技术,详细分析了重要指标及其实现方法,实测结果证明采用该方法可实现给定指标下的X波段低相噪频率综合器。
文摘A novel efficient circuit for Ultra-WideBand(UWB) balanced sub-nanosecond monocycle pulse generation is presented.The pulse generator employs wideband bipolar transistor,step recovery diodes,Schottky diodes,and simple charging and discharging circuitry.Simple transient analysis and design of the circuit are presented along with their operating principle.The pulse generator produces truly balanced monocycle pulse with 500 ps pulse-width and 800 mV peak voltage.The generated monocycle pulse also has very symmetrical positive and negative portions and low ringing level.The presented pulse generator can be used as both a transmitter feeding UWB balanced antennas without broadband baluns and a balanced switching pulse generator that used in UWB receiver.
基金the National Natural Science Foundation of China (No.60970058)the Natural Science Foundation of Jiangsu Province (No.SBK200930425)+1 种基金the fund of the State Key Laboratory of Millimetre Waves of Southeast Universitythe Student Research Training Program (SRTP) of Southeast University
文摘Two new kinds of ultra-narrow trigger frequency alterable picosecond pulse generator are presented.One can produce positive pulses and the other can produce negative pulses.The two pulse generators are subdivided into three parts:signal driving circuit,differentiator network and pulse shaping circuit.The pulse shaping circuit is made of step recovery diode(SRD) and short-circuit microstrip line.A positive pulse with width of 54 ps(50%-50%),rising time of 30 ps(10%-90%) and falling time of 32 ps(90%-10%),and a negative pulse with width of 54 ps(50%-50%),rising time of 30 ps(90%-10%) and falling time of 30 ps(10%-90%) are achieved in simulation.All of the components are ready-made and inexpensive.They can be applied in ultra-wideband(UWB) communication system,such as transmitters and receivers.