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Pulse-width modulation based fully-digital transmitter with wide CF and high resolution

机译:具有宽CF和高分辨率的基于脉宽调制的全数字发射机

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The overview and design of fully-digital transmitters based on pulse-width modulation (PWM) are clarified. By employing the parallel architecture with quadrature intermediate-frequency (IF) PWM and pre-corrected polar carrier-frequency (CF) PWM, a fully-digital transmitter is proposed and designed in 180 nm CMOS, with wide CF and high modulation resolution. The presented PWMs are based on delay lines and multiplexers with the unit delay automatically calibrated. Inductive differential power combination with 2-level quadrature operation is proposed to accomplish the equivalent 3-level up-conversion for IF PWM. Piecewise-linearization correction technique is presented to ensure the envelope-modulation fidelity for CF PWM. For 8PSK based EDGE baseband signals, the proposed transmitter achieves a wide CF range of 2 M–1.5 GHz and a low error vector magnitude less than 3 %, with 20 dB spectrum optimized and higher modulation resolution in comparison to the existing designs. Excluding the power amplifiers, the presented implementation dissipates 120 μW from a 1.8 V power supply under the data rate of 270.833 kS/s or 812.5 kb/s, thus achieves the figure of merit of 0.44 nJ/S or 0.15 nJ/bit.
机译:阐明了基于脉宽调制(PWM)的全数字发射机的概述和设计。通过采用具有正交中频(IF)PWM和预校正极性载波频率(CF)PWM的并行架构,提出并设计了一种全数字发送器,采用180nm CMOS,具有宽CF和高调制分辨率。提出的PWM基于延迟线和多路复用器,并且单位延迟会自动校准。为了实现中频PWM的等效3级上变频,提出了具有2级正交运算的电感差分功率组合。提出了分段线性化校正技术,以确保CF PWM的包络调制保真度。对于基于8PSK的EDGE基带信号,与现有设计相比,拟议的发射机实现了2M-1.5GHz的宽CF范围和小于3%的低误差矢量幅度,并优化了20dB频谱和更高的调制分辨率。除功率放大器外,本文提出的实施方案在数据速率为270.833 kS / s或812.5 kb / s的情况下从1.8 V电源消耗120μW功率,因此品质因数为0.44 nJ / S或0.15 nJ / bit。

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