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A CMOS Dual-RC frequency reference with ±250ppm inaccuracy from ?45°C to 85°C

机译:CMOS双RC频率参考,±250ppm不准确,来自Δ55°C至85°C

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To comply with wired communication standards such as USB, SATA and PCI/PCI-E, systems-on-chip require frequency references with better than 300ppm accuracy. LC-based references achieve 100ppm accuracy [1], but suffer from high power consumption (~20mW). Thermal diffusivity (TD) references require less power (~2mW), at the expense of less accuracy (1000ppm) [2]. RC-based references offer the lowest power consumption, but their accuracy is typically limited to ~0.1% [3]. In RC relaxation oscillators, comparator offset and delay are the major sources of inaccuracy [4,5]. References based on frequency-locked loops (FLLs) circumvent these by locking an oscillator's frequency to the time-constant of an RC filter, but their accuracy is then limited by the nonlinear temperature dependency of on-chip resistors [3,6].
机译:符合USB,SATA和PCI / PCI-E等有线通信标准,片上系统需要频率参考,精度优于300ppm。基于LC的参考资料达到100ppm精度[1],但遭受高功耗(〜20mW)。热扩散率(TD)参考值需要较少的功率(〜2mW),以较少的准确度(1000ppm)[2]。基于RC的参考值提供最低功耗,但它们的准确性通常限于〜0.1 %[3]。在RC弛豫振荡器中,比较器偏移和延迟是不准确的主要来源[4,5]。基于频率锁定环(FLLS)的参考资料通过将振荡器的频率锁定到RC滤波器的时间常数来绕过这些,但是它们的精度受到片上电阻器的非线性温度依赖性的限制[3,6]。

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