Title :
A low jitter 110MHz 16-phase delay locked loop based on a simple and sensitive phase detector
Author :
Kazeminia, Sarang ; Hadidi, Khayrollah ; Khoei, Abdollah
Author_Institution :
Microelectron. Res. Lab., Urmia Univ., Urmia, Iran
Abstract :
A 16-phases low jitter delay locked loop, DLL, based on a simple phase detector is proposed in 0.35μm CMOS process. Moreover, a sensitive phase detector is introduced which detects small phase differences of input and generated clock signals. High sensitivity, besides the simplicity reduces the dead zone of the phase detector and yields a better clock jitter, consequently. A new strategy of common mode level setting is proposed for differential delay elements which no longer introduce extra parasitics on output nodes. Also, the input differential clock is carefully transferred inside the chip to considerably reduce the noise effect of power supply. Post-Layout simulation results confirm the RMS jitter of about 6.7ps at 20MHz and 2ps at 100MHz input clock frequency when the 3.3v power supply is subject to 75mv peak-to-peak noise. Total power consumption reaches from 7.5mW to 16.5mW when the operating frequency increases from 20MHz to 100MHz.
Keywords :
CMOS integrated circuits; circuit noise; circuit simulation; clocks; delay lock loops; integrated circuit layout; jitter; phase detectors; phase locked loops; 16-phases low jitter delay locked loop; CMOS process; DLL; RMS jitter; clock frequency; clock jitter; common mode level setting; differential delay elements; frequency 100 MHz; frequency 110 MHz; frequency 20 MHz; generated clock signals; input differential clock; noise effect reduction; peak-to-peak noise; phase detector dead zone; phase differences; post-layout simulation; power supply; sensitive phase detector; sensitivity; size 0.035 mum; voltage 3.3 V; Clocks; Delays; Detectors; Inverters; Jitter; Noise; Voltage control;
Conference_Titel :
Electrical Engineering (ICEE), 2013 21st Iranian Conference on
Conference_Location :
Mashhad
DOI :
10.1109/IranianCEE.2013.6599743