13.4 All-digital RF transmitter in 28nm CMOS with programmable RX-band noise shaping

Enrico Roverato, M. Kosunen, Koen Cornelissens, S. Vatti, Paul Stynen, Kaoutar Bertrand, T. Korhonen, H. Samsom, P. Vandenameele, J. Ryynänen
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引用次数: 26

Abstract

The crowded radio spectrum allocated for 3G/4G mobile communication, together with the growing demand for higher data-rates, has led to the situation where transceivers need to support FDD operation in multiple frequency bands with different TX-RX duplex spacing. In order to reduce costs and enable SAW-less operation, many recent transmitter implementations have thus targeted stringent out-of-band (OOB) emission levels. Analog-intensive TX architectures achieve low OOB noise at the price of large area consumption, as complex reconstruction filters are used to suppress DAC quantization noise and image replicas [1,2]. On the other hand, due to the lack of analog filtering, digital-intensive TX architectures need 12–14b DAC resolution for low OOB noise, which complicates DAC design and typically requires DPD or calibration [3–5]. This work presents an RF transmitter implementing a fully digital solution to the aforementioned challenge. Instead of using bulky analog filtering or high resolution DAC, the disclosed TX employs digital ΔΣ modulation and mismatch shaping to attenuate the DAC noise at a programmable duplex distance. This solution enables −160dBc/Hz noise in the RX-band, by using only a 10b DAC without DPD, calibration or analog filtering.
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13.4全数字射频发射机,28nm CMOS,可编程rx波段噪声整形
分配给3G/4G移动通信的无线电频谱拥挤,加上对更高数据速率的需求不断增长,导致收发器需要在不同TX-RX双工间隔的多个频带中支持FDD操作。为了降低成本并实现无saw操作,许多最新的发射机实现都针对严格的带外(OOB)发射水平。模拟密集型TX架构以大面积消耗为代价实现了低OOB噪声,因为使用了复杂的重构滤波器来抑制DAC量化噪声和图像副本[1,2]。另一方面,由于缺乏模拟滤波,数字密集型TX架构需要12-14b DAC分辨率来降低OOB噪声,这使得DAC设计变得复杂,通常需要DPD或校准[3-5]。这项工作提出了一种射频发射机,实现了上述挑战的全数字解决方案。公开的TX采用数字ΔΣ调制和失配整形来衰减可编程双工距离的DAC噪声,而不是使用笨重的模拟滤波或高分辨率DAC。该解决方案通过仅使用10b DAC,不带DPD,校准或模拟滤波,在rx波段实现−160dBc/Hz噪声。
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