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增益带宽的英文

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"增益带宽"怎么读用"增益带宽"造句

英文翻译手机手机版

  • gain band width
  • gain-bandwidth
  • gain-bandwithd
  • gb gain bandwidth
  • gbgainbandwidth
  • gpc gain bandwidth
  • gpcgainbandwidth

例句与用法

  • Bandwith , mid - band gain
    中带宽增益带宽
  • By formula about effective bandwidth , he get the bandwidth near 1540 nm wavelength , which is 64 . 54nm . the bandwidth is more bigger than the gain bandwidth of er - doped silica fiber and fluoride fiber amplifier ( 20nm - 30nm ) . it is useful to improve transmitted capacity of information in fiber
    对1540nm处光谱有效带宽的计算,得到结果为64 . 54nm ,这个带宽已远高于目前常用掺er硅光纤和氟化物光纤放大器的20 - 30nm增益带宽,于扩大光纤信息传输容量有很大益处。
  • 3 . a good result is gotten under the star - hspice simulation . the dc gain is 90 db , the offset voltage is 40 u v while driving 10k , the unity - gain frequency is 10mhz with phase margin 67 , the slew rate is 10w us while driving 10pf
    用star - hspice仿真软件对电路仿真,在1 . 5v电源电压、直流10k负载、交流10pf负载的情况下,整个共模电压范围内跨导基本保持恒定,只有18的变化,直流增益90db ,单位增益带宽10mhz ,相位裕度80度,压摆率10v s 。
  • With the rapid growth of all - optical and high - speed networks , the gain bandwidth of a conventional c - band edfa cannot satisfy the requirement of a dwdm system . furthermore , the gain of each channel will change dynamically with the network reconfiguration for a uniformly broadened edfa , which will finally influence the stability of the communication system
    随着光纤通信向全光高速网络系统的深入发展,传统的c - bandedfa的增益带宽已经不能满足dwdm系统的要求,而且这种以均匀展宽为主的edfa会随网络的动态重构引起进入edfa的信道的增益不断变化从而影响系统的工作稳定性。
  • Firstly , a two - stage structure for the ota is presented after comprehensive considerations on characteristics like open - loop gain , unity - gain bandwidth , phase margin and settling time . then the input and output topologies have been decided by comparing different structure available for this purpose
    首先,通过对ota开环增益、单位增益带宽、相位裕度和建立时间等性能指标的分析,并对比了几种典型运放结构,设计开发了一种cmos全差分共源共栅两级运算放大器框架。
  • Firstly , the system has a good snr and high accuracy , which is owed to wideband operational amplifier being used , accurate adjustment by da , 12 - bit high sampling ad converter being applied . secondly , data transmission becomes less by using forecasting code technology and dictionary compress technology , which are run by dsp on board
    本采集系统采用400mhz增益带宽积的运算放大器,运用da高精度校准技术,并选用高采样率低噪声的12位ad转换芯片进行模拟电路和ad转换电路设计,既保证了数据采集系统的信噪比,又提高了系统测量精度。
  • Usually the low power operational amplifier is designed with rail to rail output stage , whose signal dynamirange is small , its output driving force is not strong , here it is designed with voltage displacement stage , and the strong driving force and the low power consumption in this circuit are achieved . with 5v single power , this amplifier consumes only several a , 100khz unity - gain frequency , achieves 80db dc open gain and 55 phase margin for a 100pf load capacitance and a 1m load resistance and other advantages
    通常设计的低功耗轨对轨输出运算放大器中,由于信号的动态范围比较小,它的输出驱动能力不强,这里设计的是采用电平位移电路同时实现了电路的强驱动能力与低功耗,它具有在单电源电压5v的条件下,静态工作电流只有几微安,单位增益带宽达100k ,开环增益能达80db以上,相位裕度也能达55度,输出源沉电流达500微安以上等优点。
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