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A Carrier Aggregation Transmitter Front End for 5-GHz WLAN 802.11ax Application in 40-nm CMOS

机译:用于40 nm CMOS的5 GHz WLAN 802.11ax应用的载波聚合发送器前端

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Carrier aggregation will be a key feature of the emerging 802.11ax system to boost data rate. Voltage-controlled oscillator (VCO) pulling and crosstalk between RF channels are two main problems related to carrier aggregation, which introduce severe impacts on adjacent channel leakage ratio (ACLR) and error vector magnitude (EVM). To address these two problems, high isolation between transmitter channels is required, but may not be realizable in some practical cases due to the constraint of the layout. This article presents a transmitter front end that can support two-carrier aggregation for 802.11ax without high on-chip isolation. The proposed transmitter front end employs a parallel direct conversion and double conversion configuration, and two carriers are combined before the power amplifier (PA). In this way, the intrinsic problems of VCO pulling and crosstalk can be mitigated. The proposed transmitter front end was implemented in a 40-nm CMOS technology. For contiguous intraband carrier aggregation with VHT80, MCS9 signals [80-MHz bandwidth, 256-quadrature amplitude modulation (QAM), and 11.25-dB peak-to-average power ratio (PAPR)], the transmitter front end delivers an average output power of 5.3 4.8 dBm for two carriers with an EVM of <=-32 dB, and the EVM can reach -36.1 dB.
机译:载波聚合将成为新兴802.11ax系统提高数据速率的关键功能。射频控制通道之间的压控振荡器(VCO)拉动和串扰是与载波聚合相关的两个主要问题,它们对相邻通道的泄漏比(ACLR)和误差矢量幅度(EVM)产生了严重影响。为了解决这两个问题,需要在发射机通道之间实现高度隔离,但是由于布局的限制,在某些实际情况下可能无法实现。本文介绍了一种发射机前端,该前端可以支持802.11ax的两载波聚合,而无需高度的片上隔离。拟议的发射机前端采用并行直接转换和双转换配置,并且在功率放大器(PA)之前合并了两个载波。这样,可以减轻VCO拉动和串扰的内在问题。拟议的发射器前端采用40纳米CMOS技术实现。对于使用VHT80,MCS9信号[80 MHz带宽,256正交幅度调制(QAM)和11.25dB峰均功率比(PAPR)]的连续带内载波聚合,发射机前端可提供平均输出功率对于EVM <=-32 dB的两个载波,其5.3 4.8 dBm的EVM可以达到-36.1 dB。

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