Design and noise analysis of a fully-differential charge pump for phase-locked loops
A fully-differential charge pump(FDCP)with perfect current matching and low output current noise is realized for phase-locked loops(PLLs).An easily stable common-mode feedback(CMFB)circuit which can handle high input voltage swing is proposed.Current mismatch and current noise contribution from the...
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Published in | Journal of semiconductors Vol. 30; no. 10; pp. 126 - 131 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
IOP Publishing
01.10.2009
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Subjects | |
Online Access | Get full text |
ISSN | 1674-4926 |
DOI | 10.1088/1674-4926/30/10/105013 |
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Abstract | A fully-differential charge pump(FDCP)with perfect current matching and low output current noise is realized for phase-locked loops(PLLs).An easily stable common-mode feedback(CMFB)circuit which can handle high input voltage swing is proposed.Current mismatch and current noise contribution from the CMFB circuit is minimized.In order to optimize PLL phase noise,the output current noise of the FDCP is analyzed in detail and calculated with the sampling principle.The calculation result agrees well with the simulation.Based on the noise analysis,many methods to lower output current noise of the FDCP are discussed.The fully-differential charge pump is integrated into a 1–2 GHz frequency synthesizer and fabricated in an SMIC CMOS 0.18μm process.The measured output reference spur is–64 dBc to–69 dBc.The in-band and out-band phase noise is–95 dBc/Hz at 3 kHz frequency offset and–123 dBc/Hz at 1 MHz frequency offset respectively. |
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AbstractList | A fully-differential charge pump(FDCP)with perfect current matching and low output current noise is realized for phase-locked loops(PLLs).An easily stable common-mode feedback(CMFB)circuit which can handle high input voltage swing is proposed.Current mismatch and current noise contribution from the CMFB circuit is minimized.In order to optimize PLL phase noise,the output current noise of the FDCP is analyzed in detail and calculated with the sampling principle.The calculation result agrees well with the simulation.Based on the noise analysis,many methods to lower output current noise of the FDCP are discussed.The fully-differential charge pump is integrated into a 1–2 GHz frequency synthesizer and fabricated in an SMIC CMOS 0.18μm process.The measured output reference spur is–64 dBc to–69 dBc.The in-band and out-band phase noise is–95 dBc/Hz at 3 kHz frequency offset and–123 dBc/Hz at 1 MHz frequency offset respectively. |
Author | 宫志超 卢磊 廖友春 唐长文 |
AuthorAffiliation | ASIC & System State Key Laboratory, Fudan University, Shanghai 201203, China Ratio Microelectronics Technology Co, Ltd, Shanghai 200433, China |
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Cites_doi | 10.1049/el:20001358 10.1109/JSSC.2003.821784 10.1109/TCSII.2006.879100 10.1002/0471732699 10.1109/JSSC.2003.817601 |
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Notes | TN74 TN722.71 phase-locked loop fully-differential charge pump mismatch noise fully-differential charge pump; mismatch; noise; common-mode feedback; phase-locked loop 11-5781/TN common-mode feedback |
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References | Yang Zhenyu (6) 2007; 28 2 3 4 Razavi B (1) 1997 5 Gardner F M (7) 2005 |
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Snippet | A fully-differential charge pump(FDCP)with perfect current matching and low output current noise is realized for phase-locked loops(PLLs).An easily stable... |
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StartPage | 126 |
SubjectTerms | 低噪声 共模反馈 电流噪声 电荷泵锁相环 设计 输出电流 阶段分析 频率合成器 |
Title | Design and noise analysis of a fully-differential charge pump for phase-locked loops |
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