Design work has also built a system is very particular about the power divider, it has a lower frequency than traditional units in terms of series inductance values.
系统还内置一个设计做工都非常讲究的功率分频器,它有着相对传统而言更低的低频单元串联电感值。
A high frequency low power divide-by-2 Injection-Locked Frequency Divider is presented.
设计了一个高频低功耗的注入锁定二分频器。
A modulator reduces the quantization error of the frequency divider.
调制器减少该分频器的量化误差。
A programmable divider used in frequency synthesizer of Rb frequency standard is designed, and the improvement of programmable divider is introduced.
对铷频标中的频率合成器内的程序分频器进行了设计,并介绍了改进后的程序分频器。
A frequency low power divide - by - 2 Injection - Locked frequency Divider (ILFD) is presented.
设计了一个高频低功耗的注入锁定二分频器。
Finally, a brief introduction to the applications of the very high speed frequency divider is given.
最后简单介绍了超高速分频器的应用情况。
This paper describes a noise analysis method for a phase switching frequency divider.
介绍了一种相位开关型分频器电路的噪声分析方法。
A novel edge-triggered D-flip-flop based on a resonant tunneling diode (RTD) is proposed and used to construct a binary frequency divider.
提出了一种基于共振隧穿二极管的新型边沿触发d触发器并将之用于构成二进制分频器。
By theory analysis of divider transfer function of magnitude-frequency characteristics and phase-frequency characteristics, a new method equalizing stray capacitance could be conclude.
并且通过对分压器传递函数的相频和幅频特性进行理论分析,提出一种分布电容补偿的方法。
The logic and circuit design of a very high speed ECL programmable frequency divider is described.
介绍一种ECL高速程控分频器的逻辑设计、电路设计及研制结果。
This paper gives out a design of the equal duty ratio arbitrary integer frequency divider based on FPGA.
给出了一种基于FPGA的等占空比任意整数分频电路的设计方法。
Through analyzing its work principle, we find the method to raise the speed: use a novel CMOS dynamic D flip-flop and an improved synchronous frequency divider.
分析了双模前置分频器的工作原理,提出了提高其工作速度的方法,包括给出一种新型高速CMOS动态D触发器的设计以及同步分频器的改进。
Use a binary digital shifter replace the traditional divider in ADPLL, make the structure simple and keeps the loop gain constant when the frequency multiplication factor changes.
采用数字移位器替代传统的除法器,使得电路结构大大简化,而且在很大的倍频系数范围内都保持很好的稳定性。
Project 1 will be focused on the design and SPICE simulation of a high speed frequency divider for phase-locked loop applications.
专题1主要是讨论用于相锁迴路应用的高速分频器设计和SPICE模拟。
Project 1 will be focused on the design and SPICE simulation of a high speed frequency divider for phase-locked loop applications.
专题1主要是讨论用于相锁迴路应用的高速分频器设计和SPICE模拟。
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