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前段时间进行了AD8367俩级芯片的放大串联,控制电压减小增益增大,增益从-2.5至35dB均满足线性放大要求,但继续减小电压是却发现增益突然减小,之后突然又进行了放大,而且最大输出始终在2dBm.现在的设计俩级虽满足增益控制需要,可以是所要求的动态范围,但是希望能得到更大的动态范围。
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您好,您的问题已经提交给ADI相关专家,将邀请专家尽快回答您的问题。谢谢!
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您好!
您是使用AD8367级联用于VGA还是AGC呢?需要注意输出信号功率不要超过末级AD8367的线性动态范围。此外,下面是产品线工程师对于级联AD8367的一些建议,供您参考。 This is not the first time cascaded AD8367 have been used to extend the dynamic range. There are a few things one must keep in mind while cascading the VGAs to extend the dynamic range: 1) The input linearity of the cascade will be very low at high gain settings 2) The sensitivity will be poor at low gain settings 3) High max gain and high bandwidth devices like the AD8367 may be potentially unstable, and it may be necessary to apply some resistive padding between the stages to ensure a stable solution. Starting with the third point, it will likely be necessary to add ~10dB of padding between the two VGA's (or all three VGAs if you need it, right now, I’ll just speak to two cascaded VGAs). The AD8367 needs to be sourced and loaded in a 200-Ohm impedance environment to ensure stability. However, the output of the AD8367 presents a 50-Ohm impedance. If you directly cascade the devices the 2nd stage VGA will be presented by the 50-Ohm impedance of the first stages output, and may cause the 2nd stage to oscillate. As a result a 200-Ohm to 200-Ohm resistive pad will likely be needed between the two stages. A 10dB pad should be enough to isolate the 50-Ohm source impedance of the first stage VGA from the input of the second stage. If the cascade is properly stabilized, you should be able to achieve ~90dB of gain adjustment range. |
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