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An Integrated Divide-by-Two Direct Injection-Locking Frequency Divider for Bands Through

机译:集成的二分频直接注入锁定分频器,用于频带直通

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In this work, direct injection locking is applied to a ring oscillator topology to design a wideband divide-by-two frequency divider circuit with a locking range covering bands $S$ through $K_{u}$ , namely input frequencies from 2 to 16 GHz. A thorough analysis is carried out: a behavioral model is developed that allows us to capture the operation of the two-stage differential ring oscillator. The mixing operation inherent in the direct injection scheme is deeply investigated and compared with tail injection locking. The design guidelines leading to a wide locking range are derived and exploited. Prototypes implemented in a digital 65-nm CMOS technology draw 1.6 mA from a 1.2-V supply. Since the design is inductorless, the divider area is as low as 130 $mu{hbox {m}}^{2}$. The output phase noise tracks the reference's one with the expected 6-dB difference over the entire range of operation frequencies.
机译:在这项工作中,将直接注入锁定应用于环形振荡器拓扑,以设计一个宽带二分频分频器电路,其锁定范围覆盖从$ S $到$ K_ {u} $的频带,即输入频率从2到16 GHz。进行了彻底的分析:开发了一个行为模型,使我们能够捕获两级差分环形振荡器的操作。深入研究了直接喷射方案固有的混合操作,并将其与尾部喷射锁定进行了比较。得出并利用了导致广泛锁定范围的设计准则。采用数字65纳米CMOS技术实现的原型从1.2 V电源汲取1.6 mA电流。由于该设计是无电感器的,所以分压器面积低至130 $ mu {hbox {m}} ^ {2} $。输出相位噪声在整个工作频率范围内以预期的6 dB差异跟踪参考基准。

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