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A “divide-by-odd number” direct injection CMOS LC injection-locked frequency divider

机译:“除数”直接注入CMOS LC注入锁定分频器

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The use of resonant CMOS frequency dividers with direct injection in frequency synthesizers has increased in recent years due to their lower power consumption compared to conventional digital prescalers. Numerous circuit topologies have been proposed, most of which have been optimized for division by even numbers, especially divide-by-2. It has been more difficult to realize division by odd numbers, such as divide-by-3. This paper proposes a simple modification to a CMOS injection locked frequency divider (ILFD) with direct injection, which gives it a wide locking range both in the “divide-by-odd number” mode and in the conventional “divide-by-even number” regime, thereby opening up applications which require frequency division by an odd number. The paper presents the circuit architecture, SPICE simulations and experimental validation.
机译:近年来,由于与常规数字预分频器相比功耗较低,因此在频率合成器中直接注入谐振CMOS分频器的情况有所增加。已经提出了许多电路拓扑,其中大多数已经针对偶数除法,尤其是二分频进行了优化。实现奇数除法(例如3分频)更加困难。本文提出了对具有直接注入的CMOS注入锁定分频器(ILFD)的简单修改,使其在“除数”模式和常规“除数”模式下均具有较宽的锁定范围体制,从而开放了要求将频率除以奇数的应用。本文介绍了电路架构,SPICE仿真和实验验证。

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