首页> 外文期刊>Proceedings of the IEE - Part B: Electronic and Communication Engineering >A low-drift transistor chopper-type d.c. amplifier with high gain and large dynamic range
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A low-drift transistor chopper-type d.c. amplifier with high gain and large dynamic range

机译:低漂移晶体管斩波型d.c.高增益和大动态范围的放大器

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The paper describes a transistor chopper-type d.c. amplifier which is intended for use in the field of process measurement and control. It has a voltage drift below ???????±10 ????????V and a current drift below ???????±4????????10????????9amp. The forward gain in the steady state is about 10kV/????????A and 15 volts/????????V, and, in consequence, the full output swing of 0 to 5 volts is provided by an input signal little greater than the drift. The application of sufficient overall negative d.c. feedback therefore enables input signals of 0????????10 mV or 0????????4 ????????A to provide full output with an accuracy of ???????±0.1%. The low drift is obtained by operating the transistor chopper 200 c/s, stabilizing its temperature within ???????±2???????°C, and providing suitably stable waveforms to drive the transistor and compensate for its voltage offset. The a.c. gain prior to the demodulator is only 50 volts/????????A, the remaining voltage gain, of about 200, being provided by a low-drift d.c. amplifier which is connected as a feedback integrator and used smooth the demodulated output. This arrangement enables the system to handle, with a minimum of saturation, the large error signals which occur during a rebalancing operation, and thus maintain a fast response to large changes of input signal. The system is first analysed in general terms, and expressions are derived which describe its performance and act as a guide to the design of this type of amplifier.
机译:该论文描述了一种晶体管斩波型d.c.旨在用于过程测量和控制领域的放大器。它的电压漂移低于???????±10 ??????? V,电流漂移低于???????±4 ??????????? 10 ????? 9amp。稳态时的正向增益约为10kV / A和15V / V,因此,提供了0至5V的全输出摆幅输入信号比漂移大一点。施加足够的总负直流电因此,反馈使输入信号为0≤≤10 mV或0≤≤4≤A可以提供精度为≤≤0的全输出。 Δ±0.1%。通过操作晶体管斩波器200 c / s,将其温度稳定在±2°C±2°C内,并提供适当稳定的波形来驱动晶体管并进行补偿,可获得低漂移。它的电压偏移。交流解调器之前的增益仅为50 V / A,其余的约200的电压增益由低漂移d.c提供。作为反馈积分器连接的放大器,用于平滑解调后的输出。这种安排使系统能够以最小的饱和度处理在重新平衡操作期间出现的大误差信号,从而保持对输入信号大变化的快速响应。首先对系统进行一般性分析,然后导出表达其性能的表达式,并作为设计此类放大器的指南。

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