Title :
An LC CMOS injection-locked frequency divider for divide-by-two and divide-by-three operation
Author :
Asghar, M.S. ; Awan, M.A. ; Huang, Z. ; Li, Wenyuan ; Kennedy, Michael Peter ; Buonomo, A. ; Schaivo, A. Lo
Author_Institution :
Circuit Theor. Group, Tyndall Nat. Inst., Cork, Ireland
Abstract :
Numerous circuit topologies have been proposed for divide-by-m injection-locked frequency dividers (ILFDs), 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 describes a CMOS injection locked frequency divider (ILFD) that can operate equally well in both divide-by-two and divide-by-three modes. The ILFD is based on a cross-coupled CMOS LC-tank oscillator having capacitive and direct injection via both NMOS and PMOS transistors connected across the LC tank. The circuit is similar to a conventional CMOS ILFD for divide-by-two operation with direct injection, but it combines the effects of two independent injection techniques to maximize the width of its divide-by-three locking range. The paper presents the circuit architecture, SPICE simulations, and experimental measurements.
Keywords :
CMOS integrated circuits; LC circuits; MOSFET; circuit simulation; frequency dividers; injection locked oscillators; ILFD; LC CMOS injection-locked frequency divider; NMOS transistor; PMOS transistor; SPICE simulation; capacitive injection; circuit topology; cross-coupled CMOS LC-tank oscillator; direct injection; divide-by-three operation; divide-by-two operation; CMOS integrated circuits; Frequency conversion; Inductors; Integrated circuit modeling; Mathematical model; Oscillators; Resonant frequency; Oscillator; injection-locked frequency divider; synchronization;
Conference_Titel :
Circuit Theory and Design (ECCTD), 2013 European Conference on
Conference_Location :
Dresden
DOI :
10.1109/ECCTD.2013.6662295