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Self-Calibration of Output Match and Reverse Isolation in LNAs Based Switchable Resistor

机译:基于LNA的可开关电阻器中输出匹配和反向隔离的自校准

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With recent advances in CMOS process technology, the concept of system-on-a-chip (SoC) has been realized by integrating more and more digital and analog building blocks in a single chip [2, 9]. Additionally, these advances have brought several new types of processes faults (soft fault) and higher process variations to RF circuit resulting performances degradation. In order to compensate the RF circuit performance, a novel efficient self-calibration method for 865–870 MHz low noise amplifiers (LNAs), which constitute a RF mixed-signal circuit, is developed. This technique detects any deviation from the output match and from reverse isolation using built-in self test (BIST) methods, and then provides a corrective measure to recalibrate these LNA performances to the possible optimal value. This proposed self-calibration technique uses a switchable resistor which has been designed to investigate its ability to compensate for output match S22 and reverse isolation S12 without affecting other LNA performances. The use of this method saves space on chip and prevents adding switch resistor noise. In addition, the new calibration design shows the ability to calibrate S22 and S12 due to the catastrophic fault.
机译:随着CMOS工艺技术的最新发展,单芯片系统(SoC)的概念已经通过在单个芯片中集成越来越多的数字和模拟构建模块来实现[2,9]。此外,这些进步带来了几种新型的过程故障(软故障),并且给RF电路带来了更大的过程变化,从而导致性能下降。为了补偿RF电路的性能,开发了一种新的有效的自校准方法,用于865-870 MHz低噪声放大器(LNA),它构成了RF混合信号电路。该技术使用内置的自测(BIST)方法来检测与输出匹配和反向隔离之间的任何偏差,然后提供一种校正措施,将这些LNA性能重新校准为可能的最佳值。这项提议的自校准技术使用了可切换电阻器,该电阻器旨在研究其在不影响其他LNA性能的情况下补偿输出匹配S22和反向隔离S12的能力。使用这种方法可以节省芯片空间,并防止增加开关电阻噪声。此外,新的校准设计还显示了由于灾难性故障而校准S22和S12的能力。

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