DocumentCode :
2391715
Title :
System-level analog simulation of a mixed-signal continuous-time field programmable analog array
Author :
Becker, Joachim ; Henrici, Fabian ; Manoli, Yiannos
Author_Institution :
IMTEK, Freiburg Univ., Germany
fYear :
2005
fDate :
20-24 July 2005
Firstpage :
434
Lastpage :
438
Abstract :
Field programmable analog arrays (FPAAs) represent analog signal transfer functions, which depend on alterable digital configuration data. They are indispensable if reconfigurable analog signal processing has to be included in a system-on-chip. For system-level design of filter structures as well as accurate transistor-level simulations of the analog transfer function, it is necessary to enter the respective configuration data before phase/magnitude analyses are run. This paper introduces a graphical design-entry tool for an FPAA consisting of 17 gm-C blocks for instantiation of high-frequency filters. It also reports on first simulation results confirming the feasibility up to corner frequencies of hundreds of MHz. Transfer function simulations of basic building-blocks are compared with theory and lead to an exemplary instantiation of a fourth-order Butterworth-filter.
Keywords :
Butterworth filters; circuit simulation; field programmable analogue arrays; transfer functions; Butterworth filter; analog signal transfer functions; analog simulation; digital configuration data; field programmable analog array; graphical design-entry tool; high-frequency filters; phase/magnitude analysis; reconfigurable analog signal processing; system-level design; system-on-chip; transfer function simulations; transistor-level simulations; Active filters; Array signal processing; Circuit simulation; Field programmable analog arrays; Frequency; Microelectronics; Parasitic capacitance; Reconfigurable logic; Transfer functions; Tunable circuits and devices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
System-on-Chip for Real-Time Applications, 2005. Proceedings. Fifth International Workshop on
Print_ISBN :
0-7695-2403-6
Type :
conf
DOI :
10.1109/IWSOC.2005.102
Filename :
1530986
Link To Document :
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