DocumentCode :
2493290
Title :
A 1 cm3Modular Autonomous Sensor Node for Physical Activity Monitoring
Author :
Bracke, Wouter ; Merken, Patrick ; Puers, Robert ; Van Hoof, Chris
Author_Institution :
IMEC, Leuven
fYear :
0
fDate :
0-0 0
Firstpage :
429
Lastpage :
432
Abstract :
Traditionally, most of the sensor interfaces must be tailored towards a specific application. This design approach is inflexible and requires several iteration steps for new sensor applications. It usually results in high costs for low and medium quantity market products. On the other hand, generic interface design reduces the costs and may provide a handy solution for multisensor applications. This paper presents a generic architecture for sensor front-ends. The modular design methodology provides a flexible way to build a complete sensor interface out of configurable blocks. The settings of these blocks can be optimized according to the varying needs of the application. Furthermore, the system can easily be expanded with new building blocks. The modular system is illustrated in a generic sensor interface chip (GSIC) for capacitive sensors. The GSIC combines a very low power design (120 muW in ON-state) with a smart optimization of the operation cycle. This results in an averaged power consumption of 48 muW in a physical activity monitoring system. Hence, the GSIC is a significant step towards low cost autonomous sensor nodes for the smart environment
Keywords :
capacitive sensors; condition monitoring; low-power electronics; 120 muW; 48 muW; capacitive sensors; generic architecture; generic sensor interface chip; modular autonomous sensor node; physical activity monitoring; sensor front ends; Capacitive sensors; Circuits; Costs; Design methodology; Design optimization; Energy consumption; Intelligent sensors; Monitoring; Sensor arrays; Sensor systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Research in Microelectronics and Electronics 2006, Ph. D.
Conference_Location :
Otranto
Print_ISBN :
1-4244-0157-7
Type :
conf
DOI :
10.1109/RME.2006.1689986
Filename :
1689986
Link To Document :
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