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In 2004 Joachim Becker picked up the [[parallel connection]] of OTAs (operational transconductance amplifiers) and proposed its use in a hexagonal local interconnection architecture.<ref name="8 Becker">{{cite journal|title=.,"A continuous-time field programmable analog array (FPAA) consisting of digitally reconfigurable GM-cells|citeseerx = 10.1.1.444.8748}}</ref> It did not require a routing network and eliminated switching the signal path that enhances the frequency response.
In 2005 Fabian Henrici worked with Joachim Becker to develop a switchable and invertible OTA which doubled the maximum FPAA bandwidth.<ref name="9 Becker">{{cite journal|title=A Continuous-Time Hexagonal Field-Programmable Analog Array in 0.13 µm CMOS with 186MHz GBW|citeseerx = 10.1.1.444.8748}}</ref> This collaboration resulted in the first manufactured FPAA in a [[130 nanometer|0.13 µm]] [[CMOS]] technology.
==See also==
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<references />
==External links==▼
▲* [https://ieeexplore.ieee.org/document/7374749/ "A Programmable and Configurable Mixed-Mode FPAA SoC"] Jennifer Hasler et al., [[Georgia Tech]], January 7, 2016.
* [http://www.eetimes.com/news/latest/showArticle.jhtml?articleID=205916545 "Analog's Answer to FPGA Opens Field to Masses"] Sunny Bains, ''EE Times'', February 21, 2008. Issue 1510.
* [http://opencircuitdesign.com/~tim/research/fpaa/fpaa.html "Field programmable analog arrays"] Tim Edwards, [[Johns Hopkins University]] project, 1999.
* [https://www.imtek.de/professuren/mikroelektronik/forschung/low-power-mixed "Field programmable analog arrays" ] Joachim Becker, et al., [[University of Freiburg]], Department of Microsystems Engineering. Hex FPAA Research Project.
* [http://
▲==External links==
▲* [http://users.ece.gatech.edu/phasler/ "Integrated Computational Electronics (ICE) Laboratory"] [[Georgia Institute of Technology]] Project
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