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A Dynamic Offset Control Technique for Comparator Design in Scaled CMOS Technology

机译:比例CMOS技术中用于比较器设计的动态失调控制技术

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The accuracy of the comparator, which is often determined by its offset, is essential for the resolution of the high performance mixed-signal system. Various design efforts have been made to cancel or calibrate the comparator offset due to many factors like process variations, device thermal noise and input-referred supply noise. However, effective and simple method for offset cancel by applying additional circuits without scarifying the power, speed and area is always challenging. This work explores a dynamic offset control technique that employs charge compensation by timing control. The charge injection and clock feed-through by the latch reset transistor are investigated. A simple method is proposed to generate offset compensation voltage by implementing two source-drain shorted transistors on each regenerative node with timing control signals on their gates. Further analysis for the principle of timing based charge compensation approach for comparator offset control is described. The analysis has been verified by fabricating a 65 nm CMOS 1.2 V 1 GHz comparator that occupies 25 x 65 μm~2 and consumes 380 μW. Circuits for offset control occupies 21 % of the areas and 12% of the power consumption of the whole comparator chip.
机译:通常由比较器的偏移量决定比较器的精度,这对于高性能混合信号系统的分辨率至关重要。由于诸如工艺变化,器件热噪声和以输入为参考的电源噪声等许多因素,已经做出了各种设计努力来抵消或校准比较器失调。然而,在不牺牲功率,速度和面积的情况下,通过应用附加电路来实现抵消偏移的有效而简单的方法始终是挑战。这项工作探索了一种动态失调控制技术,该技术通过时序控制采用电荷补偿。研究了锁存复位晶体管的电荷注入和时钟馈通。提出了一种简单的方法来产生偏移补偿电压,方法是在每个再生节点上实现两个源极-漏极短路晶体管,并在其栅极上提供时序控制信号。描述了对基于时序的电荷补偿方法进行比较器失调控制的原理的进一步分析。通过制造一个65 nm CMOS 1.2 V 1 GHz比较器可以验证分析结果,该比较器占25 x 65μm〜2,功耗380μW。失调控制电路占整个比较器芯片的21%的面积和12%的功耗。

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