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The Transfer Function of Amplitude Modulation Circuits Using Varactor Diode

机译:变容二极管的幅度调制电路的传递函数

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Amplitude modulation (AM) is widely used for not only wireless communications but also sensing and monitoring biomaterials as well as scientific data. Recently analog multipliers are attracting much attention to mitigate modulation distortion and insufficient dynamic range in the traditional way of AM. However, as the circuit of analog multiplier is complicated and contains many transistors, its use may encounter difficulty in IC implementation. Varactor diode is a capacitor of which capacitance varies according to the change of reverse bias voltage and has advantages of small size (easily integrated), high speed operation, low thermal noise, and low power consumption. Based on this property, varactor diode can work as multiplier so that it can be employed for AM in place of analog multiplier. This brief presents AM circuit using varactor diode of simple structure and shows for the first time a theoretical way to determine its transfer function. Theoretical analysis is validated by using hardware simulation on an example circuit.
机译:幅度调制(AM)广泛用于不仅是无线通信,还广泛用于感测和监测生物材料以及科学数据。最近的模拟乘法器正在吸引很大程度上,以减轻调制失真和动态范围,以传统的AM。但是,随着模拟乘法器的电路复杂并且包含许多晶体管,其使用可能遇到IC实现中的困难。变容二极管是电容器,电容器的电容器根据反向偏置电压的变化而变化,并且具有小尺寸(容易集成),高速操作,低热噪声和低功耗的优点。基于该特性,变容二极管可以用作乘法器,使得它可以用于替代模拟乘法器。本简要介绍了使用简单结构的变容二极管的AM电路,并显示第一次确定其传递函​​数的理论方法。通过在示例电路上使用硬件仿真来验证理论分析。

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