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A Miller N-Path Bandpass Filter with Improved Second Harmonic Rejection

机译:具有改进的二次谐波抑制的米勒N-PATH带通滤波器

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摘要

While a Miller N-path filter is capable of channel selection at RF, it cannot sufficiently reject harmonic responses before going through the baseband circuitry. To suppress the second harmonic at the LNA output, this paper adds a feedback path to the conventional Miller N-path filter. The added feedback path distinguishes between the first and the second harmonic and exhibits a relatively large loop gain for the latter. As a result, the design suppresses the second harmonic at RF nodes. This is achieved without losing the desired characteristics of a conventional Miller N-path at the fundamental harmonic. The design example is a 500-MHz four-path filter simulated with the 90 nm CMOS. It achieves 13 dB gain, 2.6 dB noise figure, and +9.6 dBm out-of-band IIP3 at 50 MHz offset from the center frequency and burns 16 mW of power.
机译:虽然米勒N路滤波器能够在RF处选择频道选择,但在通过基带电路之前不能充分地拒绝谐波响应。为了在LNA输出处抑制第二次谐波,本文将反馈路径添加到传统的米勒n路滤波器上。附加的反馈路径区分第一和第二谐波之间,并且为后者展示相对大的环路增益。结果,该设计抑制了RF节点的第二次谐波。这是实现的,而不会在基本谐波处失去传统米勒N-路径的所需特性。设计示例是500 MHz的四路径滤波器,用90nm CMOS模拟。它达到了13 dB增益,2.6 dB噪声系数,+9.6 dBm带外IIP3,从中心频率偏移50 MHz,烧伤了16兆瓦的电源。

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