模拟分频器的相位噪声性能

M. Driscoll
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引用次数: 16

摘要

测量了两种类型的模拟分频器的频谱性能:使用变容二极管的参数分频器和在振荡器反馈电路中结合双平衡混频器的再生型分频器。两个分频器都配置为在甚高频下进行二除运算。参数分压器通常需要一个中等高的输入驱动电平,并且由于在输出频率=f/ subin2 /处产生负电阻的电路约束的性质,在相对较窄的带宽上工作。原型分压器是利用突变结变容二极管构建的,设计时不需要临界调谐或通常使用的输入和输出陷阱电路。在指定的20dbm驱动下,得到6db的转换损耗。在偏置变容器的情况下,获得了最低的1/f噪声,以确保在RF波形的整个周期内不传导。与参数分频器不同,再生型分频器可以在宽范围的驱动电平和更宽的带宽上操作。使用再生型分压器显得特别有吸引力,因为它提供低1/f噪声和噪声底性能。
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Phase noise performance of analog frequency dividers
Measurements are reported of the spectral performance of two types of analog dividers: a parametric divider using varactor diodes, and a regenerative-type divider incorporating a double balanced mixer in the oscillator feedback circuit. Both dividers were configured for divide-by-two operation at VHF. The parametric divider typically requires a moderately high input drive level and operates over relatively narrow bandwidth owing to the nature of the circuit constraints for generation of negative resistance at the output frequency =f/sub in2/. Prototype dividers were constructed utilizing abrupt junction varactor diodes and were designed without the need for the critical tuning or the input and output trap circuits normally used. At the specified 20 dBm drive, 6 dB conversion loss was obtained. Lowest 1/f noise was obtained with the varactor biased to insure nonconduction over the entire cycle of the RF waveform. Unlike the parametric divider, a regenerative-type divider can be operated over a wide range of drive levels and over a much wider bandwidth. The use of the regenerative-type divider appears especially attractive because it provides low 1/f noise and noise floor performance.<>
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