SEMICONDUCTOR INTEGRATED CIRCUITS

A low power fast-settling frequency-presetting PLL frequency synthesizer

Geng Zhiqing, Yan Xiaozhou, Lou Wenfeng, Feng Peng and Wu Nanjian

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Abstract: This work presents the design and implementation of a 2.4 GHz low power fast-settling frequency-presetting PLL frequency synthesizer in the 0.18 μ m CMOS process. A low power mixed-signal LC VCO, a low power dual mode prescaler and a digital processor with non-volatile memory are developed to greatly reduce the power consumption and the setting time. The digital processor can automatically calibrate the presetting frequency and accurately preset the frequency of the VCO under process variations. The experimental results demonstrate that the power consumption of the synthesizer is about 4 mA @ 1.8 V and that the typical setting time of the synthesizer is less than 3 μs.

Key words: fast-settlingpresettinglow powerPLLsynthesizer

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    Received: 18 August 2015 Revised: 01 April 2010 Online: Published: 01 August 2010

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      Geng Zhiqing, Yan Xiaozhou, Lou Wenfeng, Feng Peng, Wu Nanjian. A low power fast-settling frequency-presetting PLL frequency synthesizer[J]. Journal of Semiconductors, 2010, 31(8): 085002. doi: 10.1088/1674-4926/31/8/085002 Geng Z Q, Yan X Z, Lou W F, Feng P, Wu N J. A low power fast-settling frequency-presetting PLL frequency synthesizer[J]. J. Semicond., 2010, 31(8): 085002. doi: 10.1088/1674-4926/31/8/085002.Export: BibTex EndNote
      Citation:
      Geng Zhiqing, Yan Xiaozhou, Lou Wenfeng, Feng Peng, Wu Nanjian. A low power fast-settling frequency-presetting PLL frequency synthesizer[J]. Journal of Semiconductors, 2010, 31(8): 085002. doi: 10.1088/1674-4926/31/8/085002

      Geng Z Q, Yan X Z, Lou W F, Feng P, Wu N J. A low power fast-settling frequency-presetting PLL frequency synthesizer[J]. J. Semicond., 2010, 31(8): 085002. doi: 10.1088/1674-4926/31/8/085002.
      Export: BibTex EndNote

      A low power fast-settling frequency-presetting PLL frequency synthesizer

      doi: 10.1088/1674-4926/31/8/085002
      • Received Date: 2015-08-18
      • Accepted Date: 2010-02-11
      • Revised Date: 2010-04-01
      • Published Date: 2010-07-31

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