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A New Automatic Compensation Network for System-on-Chip Transceivers

机译:片上系统收发器的新型自动补偿网络

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This paper proposes a new automatic compensation network (ACN) for a system-on-chip (SoC) transceiver. We built a 5 GHz low noise amplifier (LNA) with an on-chip ACN using 0.18 ?m SiGe technology. This network is extremely useful for today’s radio frequency (RF) integrated circuit devices in a complete RF transceiver environment. The network comprises an RF design-for-testability (DFT) circuit, capacitor mirror banks, and a digital signal processor. The RF DFT circuit consists of a test amplifier and RF peak detectors. The RF DFT circuit helps the network to provide DC output voltages, which makes the compensation network automatic. The proposed technique utilizes output DC voltage measurements and these measured values are translated into the LNA specifications such as input impedance, gain, and noise figure using the developed mathematical equations. The ACN automatically adjusts the performance of the 5 GHz LNA with the processor in the SoC transceiver when the LNA goes out of the normal range of operation. The ACN compensates abnormal operation due to unusual thermal variation or unusual process variation. The ACN is simple, inexpensive and suitable for a complete RF transceiver environment.
机译:本文为片上系统(SoC)收发器提出了一种新的自动补偿网络(ACN)。我们使用0.18 µm SiGe技术构建了带有片上ACN的5 GHz低噪声放大器(LNA)。在完整的RF收发器环境中,该网络对于当今的射频(RF)集成电路设备非常有用。该网络包括一个可测试的RF设计(DFT)电路,电容器镜库和一个数字信号处理器。 RF DFT电路由测试放大器和RF峰值检测器组成。 RF DFT电路可帮助网络提供直流输出电压,从而使补偿网络自动运行。所提出的技术利用输出直流电压测量值,并使用开发的数学方程将这些测量值转换为LNA规范,例如输入阻抗,增益和噪声系数。当LNA超出正常工作范围时,ACN会使用SoC收发器中的处理器自动调整5 GHz LNA的性能。 ACN可以补偿由于异常的热变化或异常的过程变化引起的异常运行。 ACN简单,便宜且适合完整的RF收发器环境。

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