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Home > english-chinese > "differential input" in Chinese

Chinese translation for "differential input"

辨差输入
差动输入
微分输入


Related Translations:
differential toxicity:  差分毒性,选择毒性
differential mapping:  差分映射
differential manometer:  差动式压力计差动压力表差示测压计,测压差计差示压力计差压计水差计微压计
differential deflection:  差动偏转
differential galvanometel:  差绕电疗
differential spectrophotometry:  差示分光光度测定法差示分光光度法差示分光光度分析法示差分光光度分析法示差分光光度计示差光度法微差光谱测定法
differential microphone:  差动传声器差动式传块器差动式传声器差动式话筒
differential files:  差分文件, 勘误文件
differential floatation:  分异浮选
differential measurement:  差动测量差值测量较差测量微差测量
Example Sentences:
1.Differential input voltage
差动输入电压
2.In the differential input , positive feedback circuit was used to increase the switching speed and attain low power
在差分输入端,采用正反馈电路结构,以提高开启和关断速度,并降低功耗。
3.A new novel fully - differential charge pump was designed in this paper , differential input and differential output was used in this circuit
摘要采用差分输入和差分输出方案,设计了一种新型的全差分电荷泵。
4.For this , i adopt the new differential input stage to make input common mode range enlarged , and as far as possible not reduce its gain
为此,采用了新的差分输入级,使共模范围增大,同时尽量不减少差分输入级的增益。
5.Ti ? a supply voltage used to terminate a bus ( most commonly used in open - drain devices ) and in generating a reference voltage for differential inputs
电源电压用于定位总线(的电压) (最常用的是开漏器件) ,为不同的输入端提供参考(初始)电压。
6.An instrumentation amplifier is a closed - loop gain block that has a differential input and an output that is single - ended with respect to a reference teminal . it must amplify the differential input acurately and suppress any unwanted common - mode signals
仪表放大器是一种能精确放大两输入端之间的差模信号而抑制任何共模信号,并将差分输入转换为单端输出的放大器。
7.Specifically analysed and presented the common - mode differential input stage , linear transconductance control circuit of input stage , current sum circuit , floating ab - class control output stage , the bias circuit of op amps and the bandgap reference current source circuit
具体对运放的共模差分输入级、输入级线性跨导控制电路、电流和电路、浮动ab类输出级电路、运放的偏置电路和带隙参考电流源电路进行分析设计。
8.However , since there are numerous and interlaced variables that drastically affect the si , here focus on reflection crosstalk and other si problems of differential input / output lines of sfp . based on the circuit analysis , through adjusting the board layout to optimize the signal transfer and ensure the signal integrity
由于影响信号完整性的因素是多方面的,是相互交错的,本文在理论分析基础上主要介绍了sfp光收发模块的差分输入输出线影响信号完整性的反射、串扰等几个方面的仿真分析项目。
9.The thesis has done the widespread investigation and study to the domestic and foreign ’ s technologies of analogy low voltage and low power , and analyzes the principles of work , merts and shortcomings of these technologies , based on the absorption of these technologies , it designs a 1 . 5v low power rail - to - rail cmos operational amplifier . when designing input stage , in order to enable the input common mode voltage range to achieve rail - to - rail , it does not use the traditional differential input pair , but use the nmos tube and the pmos tube parallel supplementary differential input pair to the structure , and uses the proportional current mirror technology to realize the constant transconductance of input stage . in the middle gain stage design , the current mirror load does not use the traditional standard cascode structure , but uses the low voltage , wide - swing casecode structure which is suitable to work in low voltage . when designing output stage , in order to enhance the efficiency , it uses the push - pull common source stage amplifier as the output stage , the output voltage swing basically reached rail - to - rail . the thesis changes the design of the traditional normal source based on the operational amplifier , uses the differential amplifier with current mirror load to design a normal current source . the normal current source provides the stable bias current and the bias voltage to the operational amplifier , so the stability of operational amplifier is guaranteed . the thesis uses the miller compensate technology with a adjusting zero resistance to compensate the operational amplifier
本论文对国内外的模拟低电压低功耗技术做了广泛的调查研究,分析了这些技术的工作原理和优缺点,在吸收这些技术成果基础上设计了一个1 . 5v低功耗轨至轨cmos运算放大器。在设计输入级时,为了使输入共模电压范围达到轨至轨,不是采用传统的差动输入结构,而是采用了nmos管和pmos管并联的互补差动输入对结构,并采用成比例的电流镜技术实现了输入级跨导的恒定;在中间增益级设计中,电流镜负载并不是采用传统的标准共源共栅结构,而是采用了适合在低压工作的低压宽摆幅共源共栅结构;在输出级设计时,为了提高效率,采用了推挽共源级放大器作为输出级,输出电压摆幅基本上达到了轨至轨;本论文改变传统基准源基于运放的设计,采用了带电流镜负载的差分放大器设计了一个基准电流源,给运放提供稳定的偏置电流和偏置电压,保证了运放的稳定性;并采用了带调零电阻的密勒补偿技术对运放进行频率补偿。
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