• Title/Summary/Keyword: DDFS-Driven PLL

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Applications of Triple Controlled Type DDFS-driven PLL Frequency Synthesizer to Broadband Wireless Systems (3중조절 DDFS 구동 PLL 주파수 합성기의 광대역 무선 통신시스템에 응용)

  • Heung-Gyoon Ryu;Byeong-Rok An
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.13 no.6
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    • pp.546-551
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    • 2002
  • In this paper, a triple controlled type DDFS-driven PLL frequency synthesizer with reduced complexity is used to show its applications for broadband wireless communication systems by frequency synthesis control. Since the proposed DDFS-driven PLL synthesizer is very simplified to use only phase accumulator in DDFS, it improves the switching speed and power consumption than the conventional DDFS-driven PLL frequency synthesizer. It is appropriate for applications with requirements of broadband, low-power consumption and high switching speed, since the proposed synthesizer can cover a wide range of frequency bands by the triple frequency control parameters. Method and results of frequency control parameters assignment are shown for the several frequency bands applications such as GSM, IMT-2000, Bluetooth and PCS system.

The Performance Analysis of the DDFS to drive PLL (PLL을 구동하기 위한 DDFS의 성능분석)

  • 손종원;박창규;김수욱
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.6 no.8
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    • pp.1283-1291
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    • 2002
  • In this paper, the PLL driven by the DDFS is designed on the schematic using the Q-logic cell based library and is implemented using FPGA QL32 x16B. The measurement results of the frequency synthesizer switching speed were agreement with a register. The simulated results show that the clock delay was generated after eleven clock and if input is random, It has influence on output DA converter has to be very extensive. Therefore, the DDFS used noise shaper to drive PLL by regular interval for input state. Also the bandwidth of DA converter very extensive, the simulation shows that the variation of small input control word is better than the switching speed of PLL.