A 14-nm Ultra-Low Jitter Fractional-N PLL Using a DTC Range Reduction Technique and a Reconfigurable Dual-Core VCO

Author(s):  
Wanghua Wu ◽  
Chih-Wei Yao ◽  
Chengkai Guo ◽  
Pei-Yuan Chiang ◽  
Lei Chen ◽  
...  
Author(s):  
Alessio Santiccioli

AbstractThe quest for ubiquitous wireless connectivity, drives an increasing demand for compact and efficient means of frequency generation. Conventional synthesizer options, however, generally trade one requirement for the other, achieving either excellent levels of efficiency by leveraging LC-oscillators, or a very compact area by relying on ring-oscillators. This chapter describes a recently introduced class of inductorless frequency synthesizers, based on the periodic realignment of a ring-oscillator, that have the potential to break this tradeoff. After analyzing their jitter-power product, the conditions that ensure optimum performance are derived and a novel digital-to-time converter range-reduction technique is introduced, to enable low-jitter and low-power fractional-N frequency synthesis. A prototype, which implements the proposed design guidelines and techniques, has been fabricated in 65 nm CMOS. It occupies a core area of 0:0275 mm$$^{2}$$ 2 and covers the 1:6-to-3:0 GHz range, achieving an absolute rms jitter (integrated from 30 kHz-to-30 MHz) of 397 fs at 2:5 mW power. With a corresponding jitter-power figure-of-merit of −244 dB in the fractional-N mode, the prototype outperforms prior state-of-the-art inductorless frequency synthesizers.


2019 ◽  
Vol 54 (11) ◽  
pp. 3149-3160 ◽  
Author(s):  
Alessio Santiccioli ◽  
Mario Mercandelli ◽  
Andrea L. Lacaita ◽  
Carlo Samori ◽  
Salvatore Levantino

2010 ◽  
Vol 130 (5) ◽  
pp. 479-480
Author(s):  
Takanori Uno ◽  
Kouji Ichikawa ◽  
Yuichi Mabuchi ◽  
Atushi Nakamura

2010 ◽  
Vol E93-B (7) ◽  
pp. 1788-1796 ◽  
Author(s):  
Takanori UNO ◽  
Kouji ICHIKAWA ◽  
Yuichi MABUCHI ◽  
Atsushi NAKAMURA ◽  
Yuji OKAZAKI ◽  
...  

2012 ◽  
Vol E95.C (7) ◽  
pp. 1272-1275
Author(s):  
Takanori SUZUKI ◽  
Hideo ARIMOTO ◽  
Takeshi KITATANI ◽  
Aki TAKEI ◽  
Takafumi TANIGUCHI ◽  
...  

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