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A 5GHz to 6GHz CMOS transmitter for full-duplex wireless with wideband digital cancellation

机译:用于全双工无线的5GHz至6GHz CMOS发射器,具有宽带数字消除功能

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This paper presents a quadrature balanced transmitter, assisted by a digital equalization and predistortion self-interference cancellation technique for Full-Duplex wireless applications. An analysis of design trade-offs between low receiver (Rx) loss and high transmitter (Tx) efficiency is laid out and demonstrated on a 5GHz to 6GHz class AB power amplifier implemented in 180nm CMOS. Wideband cancellation of >48dB and >57dB at 20dBm and 10dBm Tx output power, respectively, is measured in CW. Cancellation of >30dB for an actual 160MHz 802.11ac OFDM packet around a carrier frequency of 5.2GHz together with EVM of -33dB is demonstrated. Measured Tx power added efficiency (PAE) for concurrent Tx-SIC operation is 35% and 6.4% at peak and RMS (10dB backoff) power, respectively. Rx loss is lower than 1.6dB at RMS Tx power within the signal frequency band.
机译:本文提出了一种正交均衡发射机,辅之以用于全双工无线应用的数字均衡和预失真自干扰消除技术。对在180nm CMOS上实现的5GHz至6GHz AB类功率放大器上的低接收器(Rx)损耗与高发射器(Tx)效率之间的设计折衷进行了分析,并进行了演示。以CW测量分别在20dBm和10dBm Tx输出功率下> 48dB和> 57dB的宽带消除。对于在5.2GHz载波频率附近的实际160MHz 802.11ac OFDM数据包,以及-33dB的EVM,抵消了> 30dB。并发Tx-SIC运行时,测得的Tx功率附加效率(PAE)在峰值和RMS(10dB补偿)功率下分别为35%和6.4%。在信号频带内的RMS Tx功率下,Rx损耗低于1.6dB。

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