A novel flash fast-locking digital phase-locked loop: design and simulations

A flash digital phase-locked loop (DPLL) is designed using 0.18 μm CMOS process and a 3.3 V power supply. It operates in the frequency range 200 MHz-2 GHz. The DPLL operation includes two stages: a novel coarse-tuning stage based on a flash algorithm similar to the algorithm employed in flash A/D co...

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Published inIET circuits, devices & systems Vol. 3; no. 5; pp. 280 - 290
Main Authors Wagdy, M.F., Cabrales, B.C.
Format Journal Article
LanguageEnglish
Published Stevenage Institution of Engineering and Technology 01.10.2009
John Wiley & Sons, Inc
Subjects
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ISSN1751-858X
1751-8598
DOI10.1049/iet-cds.2008.0342

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Abstract A flash digital phase-locked loop (DPLL) is designed using 0.18 μm CMOS process and a 3.3 V power supply. It operates in the frequency range 200 MHz-2 GHz. The DPLL operation includes two stages: a novel coarse-tuning stage based on a flash algorithm similar to the algorithm employed in flash A/D converters, and a fine-tuning stage similar to conventional DPLLs. The flash portion of the DPLL is made up of frequency comparators, an encoder and a decoder which drives a multiple charge pump/lowpass filter combination. Design considerations of the flash DPLL circuit components as well as implementation using Cadence design tools are presented. Spectre simulations were also performed and demonstrated a significant improvement in the lock time of the flash DPLL as compared to the conventional DPLL. By increasing the number of frequency comparators, the lock time is expected to be always less than 100 ns in the above-mentioned frequency range.
AbstractList A flash digital phase-locked loop (DPLL) is designed using 0.18 mu m CMOS process and a 3.3 V power supply. It operates in the frequency range 200 MHz-2 GHz. The DPLL operation includes two stages: a novel coarse-tuning stage based on a flash algorithm similar to the algorithm employed in flash A/D converters, and a fine-tuning stage similar to conventional DPLLs. The flash portion of the DPLL is made up of frequency comparators, an encoder and a decoder which drives a multiple charge pump/lowpass filter combination. Design considerations of the flash DPLL circuit components as well as implementation using Cadence design tools are presented. Spectre simulations were also performed and demonstrated a significant improvement in the lock time of the flash DPLL as compared to the conventional DPLL. By increasing the number of frequency comparators, the lock time is expected to be always less than 100 ns in the above-mentioned frequency range.
A flash digital phase-locked loop (DPLL) is designed using 0.18 μm CMOS process and a 3.3 V power supply. It operates in the frequency range 200 MHz-2 GHz. The DPLL operation includes two stages: a novel coarse-tuning stage based on a flash algorithm similar to the algorithm employed in flash A/D converters, and a fine-tuning stage similar to conventional DPLLs. The flash portion of the DPLL is made up of frequency comparators, an encoder and a decoder which drives a multiple charge pump/lowpass filter combination. Design considerations of the flash DPLL circuit components as well as implementation using Cadence design tools are presented. Spectre simulations were also performed and demonstrated a significant improvement in the lock time of the flash DPLL as compared to the conventional DPLL. By increasing the number of frequency comparators, the lock time is expected to be always less than 100 ns in the above-mentioned frequency range.
Author Cabrales, B.C.
Wagdy, M.F.
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  organization: Department of Electrical Engineering, California State University, Long Beach, CA, 90840, USA
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Issue 5
Keywords Frequency locking
Circuit design
Power supply
Power electronics
Algorithm
Implementation
Flash converter
Codec
AD converter
Complementary MOS technology
Digital phase locked loops
Low pass filter
Comparator circuit
Charge pumping
Multistage circuit
Computer aided design
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Snippet A flash digital phase-locked loop (DPLL) is designed using 0.18 μm CMOS process and a 3.3 V power supply. It operates in the frequency range 200 MHz-2 GHz. The...
A flash digital phase-locked loop (DPLL) is designed using 0.18 mu m CMOS process and a 3.3 V power supply. It operates in the frequency range 200 MHz-2 GHz....
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StartPage 280
SubjectTerms Algorithms
Applied sciences
Circuit properties
Circuits
Circuits of signal characteristics conditioning (including delay circuits)
Comparators
Computer simulation
Design engineering
Design. Technologies. Operation analysis. Testing
Digital
Electric, optical and optoelectronic circuits
Electronic circuits
Electronic equipment and fabrication. Passive components, printed wiring boards, connectics
Electronics
Exact sciences and technology
Frequency ranges
Integrated circuits
Phase locked loops
Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
Signal convertors
Title A novel flash fast-locking digital phase-locked loop: design and simulations
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