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All-digital encoders for RF switch-mode power amplifier applications

机译:用于射频开关模式功率放大器应用的全数字编码器

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A new class of all-digital encoders for radio frequency switch-mode power amplifiers (SMPA) is introduced. The introduction of new signaling is motivated by practical limitations in SMPAs which restrict bandwidth. Harmonic frequency components or dither are synthesized at baseband and then upconverted to create a RF carrier. The resultant spectrum is band limited and the out-of-band spectrum is concentrated near the carrier frequency. The time domain waveform has quasi-constant envelope signal properties and power amplifier efficiency remains high as the signals do not create significant back-off in the PA. Because the architecture employs up-conversion, this significantly reduces the high frequency clock requirements that are typically required for other pulse encoding methods such as delta-sigma modulation. Two all-digital encoders and experimental results with WCDMA and LTE carriers at 990 MHz are shown to demonstrate the concepts. Results are also shown to evaluate efficiency enhancement assuming out-of-band energy is recycled in the SMPA.
机译:推出了一种用于射频开关模式功率放大器(SMPA)的新型全数字编码器。 SMPA中的实际限制限制了带宽,因此引入了新的信令。谐波频率分量或抖动在基带处合成,然后上变频以创建RF载波。所得频谱受到频带限制,带外频谱集中在载波频率附近。时域波形具有准恒定的包络信号特性,并且由于信号不会在功率放大器中产生明显的后退,因此功率放大器的效率仍然很高。因为该体系结构采用上变频,所以这大大降低了其他时钟编码方法(如delta-sigma调制)通常需要的高频时钟要求。展示了两个全数字编码器以及在990 MHz下使用WCDMA和LTE载波的实验结果,以演示这一概念。假设SMPA中回收了带外能量,则结果也显示了评估效率的提高。

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