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Home > english-chinese > "offset voltage" in Chinese

Chinese translation for "offset voltage"

偏移电压, 补偿电压
失调电压


Related Translations:
offset heading:  偏离的航向
corrected offsets:  修正型值
offset harrow:  偏置耙
offset blanket:  橡皮滚筒
moderate offset:  适度的炮检距
offset time:  补偿时差
marginal offset:  边缘断错
prism offset:  棱镜补
offset cone:  移轴牙轮
tangent offset:  垂直支距切线垂距切线支距
Example Sentences:
1.Input offset voltage
输入失调电压
2.Second , since input bias currents are not always small and can exhibit different polarities , source impedance levels should be carefully matched to minimize additional input bias current - induced offset voltages and increased distortion
其次,因为输入偏置电流不一定都小,且可能体现不同的极性,而且源阻抗水平应该仔细地进行匹配,以将输入偏置电流引起额外失调电压和增加的畸变减到最小。
3.3 . 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 。
4.In order to do the research works above better , we must can precisely control the width of the quasi - 1d channel and the cut off point , and also must precisely inspire current in the 2deg , so we designed the 2 channel high precision and high stability voltage source , one channel can supply the minus voltage to the split - gate , and the other one can supply the offset voltage between the source and drain pole
为了进行上述研究,必须能够精确的控制准一维电子通道的宽度和钳断,以及精确的在2deg上激励电流,由此我们设计研发了给分裂门加负偏压和给准一维电子通道加源漏偏压的两路高精度高稳定性馈源。
5.Second , the results of theory analysis and simulation research show that the output of one cycle controlled bridge switching power amplifier have dc offset because of the nonideal characteristic of reset signal . the magnitude of output dc offset voltage is proportional to width of reset pulse . a voltage compensation technique is used to solve this question , and the computation formula of compensation voltage is gived . the circuit compensated and not are researched through simulation and experiment , which results show that compensated circuit solve the output dc offset effectively
其次,理论分析和仿真研究结果表明,由于复位脉冲的非理想特性,单周控制的全桥开关功率放大器输出端存在直流偏置问题,其大小与复位脉冲的宽度成正比。针对输出直流偏置问题,提出了电压补偿的改进方案,给出了补偿电压的具体计算公式。对补偿前和补偿后的方案进行了对比仿真研究和实验研究。
6.The main work can be summed up as follows : firstly , we studied the thermal - field properties of vcsels , and analyzed the influences of current spreading , material parameters and operating conditions on the temperature distributions . secondly , we began with the electrode voltage and calculated the equipotential s distributions , compared the distributions of voltages and current densities in different depths of vcsels , and then studied the influences of the oxide - confining region with different position or thickness , and the different sizes of the gain - guided aperture and emitting window on the distributions of the injected current density , carrier concentration and temperature in the active region . thirdly , we realized the coupling of electricity , optical and thermal - fields , worked out the threshold voltage , calculated the distributions of the injected current density , carrier concentration and temperature under different offset voltages , and analyzed the impacts of temperature profile and carrier density on the refractive index , fermi levels and optical - field
具体工作可以概括如下:首先,研究了vcsel的热场特性,分析了电流扩展,材料参数和工作条件对于温度分布的影响;其次,从电极电压入手,计算出激光器中的等势线分布,并对不同深度处的电压和电流分布进行比较,研究了高阻区的不同位置和不同厚度、限制层和出射窗口半径的大小对电流密度、载流子浓度和温度分布的影响;再次,实现了电、光、热耦合,求出了阈值电压,计算了不同偏置电压下的电流密度分布、载流子浓度分布和热场分布,分析了温度和载流子浓度变化对折射率、费米能级和光场的影响;最后,给出了考虑n - dbr和双氧化限制层时激光器中的等势线分布,分析了n - dbr和双氧化限制层对vcsel电流密度、载流子浓度、温度和光场分布的影响。
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