DocumentCode :
185883
Title :
Integrated MEMS oscillator for cellular transceivers
Author :
Chance, Greg ; Meyer, Timmy ; Stoeckl, Stephan ; Neurauter, B. ; Patane, Giuseppe ; Neubauer, B. ; Minichshofer, Gerald ; Kuypers, Jan H. ; Schoepf, Juergen ; Rebel, Reimund ; Weninger, Darren ; Kim Chung ; Tung Shen Chew ; Mendoza, Olivia
Author_Institution :
Intel Mobile Commun., Munich, Germany
fYear :
2014
fDate :
19-22 May 2014
Firstpage :
1
Lastpage :
3
Abstract :
This is the first work to demonstrate a System in Package (SiP) cellular transceiver with integrated frequency reference. The presented transceiver does not require additional quartz crystal (Xtal) based frequency references and hence this allows for the realization of the first modem to rely solely on a MEMS resonator as the frequency source. The transceiver IC designed in a 65 nm CMOS process was initially designed to support a 26 MHz Xtal resonator. In this work the oscillator design was modified to support the use of a 76.8 MHz chip-scale packaged (CSP) MEMS resonator. This paper compares the key performance metrics of a cellular transceiver using a state of the art digitally compensated crystal oscillator (DCXO) versus a MEMS solution (DCMO). First, the results of a side-by-side evaluation for both the DCXO and DCMO are shown. Then we compare these results to the co-packaged fully integrated SiP solution. Based on measurements of the phase noise, start-up time, and error vector magnitude (EVM), we demonstrate the readiness of MEMS resonators to be deployed in integrated cellular transceivers.
Keywords :
CMOS analogue integrated circuits; cellular radio; chip scale packaging; crystal oscillators; integrated circuit design; integrated circuit noise; micromechanical resonators; modems; phase noise; radio transceivers; radiofrequency integrated circuits; system-in-package; CMOS process; CSP; DCMO; DCXO; EVM; MEMS resonator; SiP cellular transceiver; Xtal based frequency reference; Xtal resonator; chip-scale packaged MEMS resonator; digitally compensated crystal oscillator; error vector magnitude; frequency 26 MHz; frequency 76.8 MHz; integrated MEMS oscillator; modem; phase noise measurement; quartz crystal based frequency reference; size 65 nm; start-up time; system in package cellular transceiver; transceiver IC design; Micromechanical devices; Phase noise; Resonant frequency; Temperature measurement; Temperature sensors; Transceivers; DCXO; Integrated timing; MEMS resonator; SCXO; SiP transceiver; TSX; cellular transceiver;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Frequency Control Symposium (FCS), 2014 IEEE International
Conference_Location :
Taipei
Type :
conf
DOI :
10.1109/FCS.2014.6859910
Filename :
6859910
Link To Document :
بازگشت