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A Gain Programmable Analog Divider Circuit Based on a Data Converter

机译:基于数据转换器的增益可编程模拟分频器电路

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Analog dividers are widely used in analog systems. Analog realization of such circuits suffer from limited dynamic range and non-linearity issues, therefore, extra circuitry should be required to compensate these types of shortcomings. In this paper a gain controllable, analog divider is proposed based on data converters. Our circuit can be implemented both in current and voltage mode by selecting proper architectures. The resolution, power consumption and operation speed can be controlled by proper selecting of components. Another advantage of our circuit is its gain programmability. Moreover, the gain can be adjusted independently based on the relationship between input signals. Our proposed method offers two different gain control abilities, one for situation that the numerator signal is bigger than the denominator, and another gain is applied when the denominator is larger than the numerator. As a result, no extra amplifier is required for signal amplification. Moreover, the input and output signal nature can be chosen arbitrarily in this circuit, i.e. input signal may be a voltage signal while the output signal is current. Simulation results from SPICE confirm the proper operation of the circuit.
机译:模拟分频器广泛用于模拟系统。这种电路的模拟实现存在受限的动态范围和非线性问题,因此,应该需要额外的电路来弥补这些类型的缺点。本文提出了一种基于数据转换器的增益可控模拟分频器。通过选择适当的架构,我们的电路可以在电流和电压模式下实现。分辨率,功耗和操作速度可以通过部件的适当选择被控制。我们电路的另一个优点是其增益可编程性。而且,可以基于输入信号之间的关系独立地调节增益。我们提出的方法提供了两种不同的增益控制能力,一种用于分子信号大于分母的情况,另一种用于当分母大于分子时的增益。结果,不需要额外的放大器来进行信号放大。此外,在该电路中可以任意选择输入和输出信号的性质,即,输入信号可以是电压信号,而输出信号是电流。 SPICE的仿真结果证实了电路的正确运行。

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