Title :
Phase-hit Immunity Methods for High Speed Communication Systems
Author :
Qin, Youming ; Matsumoto, Frank ; Pham, David ; Easaw, Chacko
Author_Institution :
Harris Stratex Networks Inc., San Jose
Abstract :
Phase-hits can cause burst error and synchronization problems in high speed communication systems. The root cause of phase-hits results from the material´s thermal expansion mismatch. The coefficient of thermal expansion (CTE) is an important material characteristic to consider. To reduce the CTE effect, an oven-controlled synthesizer is presented in this paper. By adding a proportionally controlled heater onto the synthesizer module, the temperature variation of the synthesizer module is reduced by warming up the module only at cold temperatures. Since phase-hits usually happen during the temperature transition from room to cold, this method is especially attractive when the available DC power supply is limited. It is also emphasized in this paper that a clean PCB assembly process, high quality capacitors and other techniques, such as a PCB cut-out under the VCO, are also essential for phase-hit immunity. Test results show that by applying the methods presented in this paper, the phase-hit problem can be well controlled.
Keywords :
digital radio; jitter; phase noise; quadrature amplitude modulation; thermal expansion; voltage-controlled oscillators; PCB assembly process; burst error problems; coefficient of thermal expansion; digital wireless transmission systems; high speed communication systems; material thermal expansion mismatch; oven-controlled synthesizer; phase-hit immunity methods; proportionally controlled heater; synchronization problems; temperature transition; temperature variation; Assembly; Capacitors; Communication system control; Power supplies; Proportional control; Synthesizers; Temperature control; Testing; Thermal expansion; Voltage-controlled oscillators; Phase jitter; digital communication; phase locked oscillators; phase noise; quadrature amplitude modulation; voltage controlled oscillator;
Conference_Titel :
Microwave Symposium, 2007. IEEE/MTT-S International
Conference_Location :
Honolulu, HI
Print_ISBN :
1-4244-0688-9
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2007.380567