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A 4-Gb/s CMOS clock and data recovery circuit using 1/8-rate clock technique

机译:采用1/8速率时钟技术的4Gb / s CMOS时钟和数据恢复电路

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A 4-Gb/s clock and data recovery (CDR) circuit is realized in a 0.25-/spl mu/m standard CMOS technology. The CDR circuit exploits 1/8-rate clock technique to facilitate the design of a voltage-controlled oscillator (VCO) and to eliminate the need of 1:4 demultiplexer, thereby achieving low power consumption. The VCO incorporates the ring oscillator configuration with active inductor loads, generating four half-quadrature clocks. The VCO control line comprises both a programmable 6-bit digital coarse control and a folded differential fine control through a charge-pump and a low pass filter. Duty-cycle correction of clock signals is obtained by exploiting a high common-mode rejection ratio differential amplifier at the ring oscillator output. A 1/8-rate linear phase detector accomplishes the phase error detection with no systematic phase offset and inherently performs the 1:4 demultiplexing. Test chips demonstrate the jitter of the recovered clock to be 5.2 ps rms and 47 ps pk-pk for 2/sup 31/-1 pseudorandom bit sequence (PRBS) input data. The phase noise is measured to be -112 dBc/Hz at 1-MHz offset. The measured bit error rate is less than 10/sup -6/ for 2/sup 31/-1 PRBS. The chip excluding output buffers dissipates 70 mW from a single 2.5-V supply.
机译:采用0.25- / spl mu / m标准CMOS技术实现4 Gb / s时钟和数据恢复(CDR)电路。 CDR电路利用1/8速率时钟技术来简化压控振荡器(VCO)的设计,并消除了对1:4解复用器的需求,从而实现了低功耗。 VCO结合了具有有源电感负载的环形振荡器配置,可产生四个半正交时钟。 VCO控制线既包括可编程的6位数字粗调控制,也包括通过电荷泵和低通滤波器进行的折叠微分精细控制。通过在环形振荡器输出端利用高共模抑制比差分放大器来获得时钟信号的占空比校正。 1/8速率线性相位检测器可在没有系统相位偏移的情况下完成相位误差检测,并固有地执行1:4解复用。测试芯片显示,对于2 / sup 31 / -1伪随机位序列(PRBS)输入数据,恢复时钟的抖动为5.2 ps rms和47 ps pk-pk。在1MHz偏移处测得的相位噪声为-112 dBc / Hz。对于2 / sup 31 / -1 PRBS,测得的误码率小于10 / sup -6 /。不包括输出缓冲器的芯片从2.5V单电源消耗的功率为70mW。

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