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Reconfigurable All-Band RF CMOS Transceiver for GPS/GLONASS/Galileo/Beidou With Digitally Assisted Calibration

机译:用于GPS / GLONASS /伽利略/北斗的可重构全频带RF CMOS收发器,具有数字辅助校准

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This paper presents a fully integrated reconfigurable all-band RF transceiver for GPS/GLONASS/ Galileo/Beidou in 55-nm CMOS. The transceiver incorporates three low-IF receivers (RXs) and one direct up-conversion BPSK transmitter (TX), which can be configured to receive any two global navigation satellite system (GNSS) signals or switched to process the Chinese Beidou(I) signals. A switching module is integrated to provide the connectivity between different RF front-end and IF channel (IFC), which will effectively simplify the design complexity of the IFC and save power consumption, while the GNSS signals are received. A flexible frequency plan with two frequency synthesizers is utilized to satisfy different local oscillator requirements of the transceiver. An optimized automatic frequency calibration scheme using an error compensation logic enables fast and high-precision calibration process for optimum phase-locked loop operation. Several digitally assisted calibration modules are integrated to ensure that the chip performance only shows a weak process, voltage and temperature (PVT) dependence. While drawing about 21.5–30.2 mA per RX channel from a 1.2-V supply, the RXs achieve an image rejection ratio more than 49 dB after I/Q mismatch calibration, an automatic gain control range of 88 dB, and an input-referred 1 dB compression point of better than −25 dBm with a minimum noise figure of about 2 dB. The output power of the TX is about 5 dBm with about 6% error vector magnitude (EVM) and 30-mA current from a 1.2-V supply. The whole transceiver consumes a die area of .
机译:本文提出了一种用于55nm CMOS的GPS / GLONASS / Galileo / Beidou的完全集成的可重新配置全波段RF收发器。该收发器包含三个低中频接收机(RX)和一个直接上变频BPSK发射机(TX),可以将其配置为接收任何两个全球导航卫星系统(GNSS)信号,或切换为处理中文北斗(I)信号。集成了一个交换模块,以提供不同RF前端和IF通道(IFC)之间的连接,这将有效地简化IFC的设计复杂性并节省功耗,同时接收GNSS信号。利用带有两个频率合成器的灵活频率计划来满足收发器的不同本地振荡器要求。使用误差补偿逻辑的优化自动频率校准方案可实现快速,高精度的校准过程,以实现最佳的锁相环操作。集成了多个数字辅助校准模块,以确保芯片性能仅表现出对工艺,电压和温度(PVT)的弱依赖性。当从1.2V电源为每个RX通道汲取约21.5–30.2 mA电流时,在I / Q失配校准后,RX的镜像抑制比超过49 dB,自动增益控制范围为88 dB,以输入为参考1 dB压缩点优于-25 dBm,最小噪声系数约为2 dB。 TX的输出功率约为5 dBm,误差矢量幅度(EVM)约为6%,来自1.2 V电源的电流为30 mA。整个收发器消耗的芯片面积为。

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