Title :
Partitioning analog and digital processing in a single-chip GPS receiver
Author :
Reader, Sydney ; Namgoong, Won ; Meng, Teresa
Author_Institution :
Center for Integrated Syst., Stanford Univ., CA, USA
Abstract :
In the near future, Global Positioning System (GPS) data will be used in a wide variety of portable, mobile electronic devices. Shrinking feature sizes, combined with the need for low-power, lightweight components, will drive an entire GPS receiver onto a single, mixed-signal die. A major design issue in mixed-signal systems is the effect of digital switching noise coupled to sensitive analog circuits through the substrate. A method is proposed for minimizing this effect by partitioning digital and analog processing into separate time blocks. The resulting trade-off between lost signal and increased energy consumption is explored. In particular, a GPS synchronizer design is analyzed with respect to modifications that can be made to increase performance, while minimizing any associated energy penalty
Keywords :
Global Positioning System; analogue processing circuits; integrated circuit design; integrated circuit noise; mixed analogue-digital integrated circuits; radio receivers; synchronisation; GPS receiver; GPS synchronizer design; Global Positioning System data; digital switching noise; energy consumption; energy penalty minimisation; feature size; lightweight components; lost signal trade-off; mixed-signal systems; partitioning analog processing; partitioning digital processing; portable mobile electronic devices; separate time block; single mixed-signal die; single-chip GPS receiver; substrate coupling; Analog circuits; Circuit noise; Coupling circuits; Energy consumption; Frequency synchronization; Global Positioning System; Performance analysis; Propagation delay; Satellites; Spread spectrum communication; Switching circuits;
Conference_Titel :
Signal Processing Systems, 1998. SIPS 98. 1998 IEEE Workshop on
Conference_Location :
Cambridge, MA
Print_ISBN :
0-7803-4997-0
DOI :
10.1109/SIPS.1998.715788