High performance two-stage charge-pump for spur reduction in CMOS PLL

Jung-Woong Park, Nam-Soo Kim, Hye-Im Jeong, Da-Sol Won, Ho-Yong Choi
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引用次数: 4

Abstract

This paper proposes a charge pump that minimizes the current mismatch and keeps the constant current across a wide range of output voltage. The charge pump is a two-stage circuit which is composed of the conventional push-pull charge pump and the compensation circuit. The compensation circuit has a feedback biasing circuit and an op-amp to act as a voltage follower. The features of feedback circuit and voltage follower are the important elements to reduce the current mismatch. The proposed charge pump is applied in 2 GHz PLL to check out the noise spectrum of the spur and phase offset which are occurred from the current mismatch. The proposed charge pump indicates that the current mismatch is less than 5 % over the voltage range of 0.30 ~ 1.45 V which covers almost 63 % of the 1.8 V supply voltage. The spur in PLL is obtained to be -63.7 dBc, while the conventional charge pump provides the spur of -36.2 dBc in the same PLL.
用于抑制CMOS锁相环杂散的高性能两级电荷泵
本文提出了一种电荷泵,可以最大限度地减少电流失配,并在较大的输出电压范围内保持恒定电流。电荷泵是由传统的推挽式电荷泵和补偿电路组成的两级电路。补偿电路有一个反馈偏置电路和一个作为电压跟随器的运算放大器。反馈电路和电压跟随器的特性是减小电流失配的重要因素。将所提出的电荷泵应用于2ghz锁相环中,检测由电流失配引起的杂散和相位偏移的噪声谱。所提出的电荷泵表明,在0.30 ~ 1.45 V电压范围内,电流失配小于5%,几乎覆盖了1.8 V电源电压的63%。得到锁相环内的杂散为-63.7 dBc,而传统电荷泵在相同锁相环内的杂散为-36.2 dBc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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