2008Proceedings - IEEE International Parallel and Distributed Processing SymposiumRequires access

A rapid prototyping environment for high-speed reconfigurable analog signal processing

Joachim Becker, Fabian Henrici, Stanis Trendelenburg, Yiannos Manoli

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Abstract

This paper reports on a rapid-prototyping platform for high-frequency continuous-time analog filters to be used in communication front-ends. A field programmable analog array (FPAA) is presented, which implements a unique hexagonal topology of 55 tunable OTAs for reconfigurable instantiation of Gm-C filters in a 0.13 mum CMOS technology. It is the first analog array to achieve a bandwidth, which allows processing of intermediate frequencies used in communication systems. In addition to the intuitive manual mapping of analog filters to the chip structure, a genetic algorithm with hardware in the loop is used for automated synthesis of transfer functions.

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What this paper is about

This paper reports on a rapid-prototyping platform for high-frequency continuous-time analog filters to be used in communication front-ends. A field programmable analog array (FPAA) is presented, which implements a unique hexagonal topology of 55 tunable OTAs for reconfigurable instantiation of Gm-C filters in a 0.13 mum CMOS technology. It is the first analog array to achieve a bandwidth, which allows processing of intermediate frequencies used in communication systems. In addition to the intuitive manual mapping of analog filters to the chip structure, a genetic algorithm with hardware in the loop is used for automated synthesis of transfer functions.

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Available abstract

This paper reports on a rapid-prototyping platform for high-frequency continuous-time analog filters to be used in communication front-ends. A field programmable analog array (FPAA) is presented, which implements a unique hexagonal topology of 55 tunable OTAs for reconfigurable instantiation of Gm-C filters in a 0.13 mum CMOS technology. It is the first analog array to achieve a bandwidth, which allows processing of intermediate frequencies used in communication systems. In addition to the intuitive manual mapping of analog filters to the chip structure, a genetic algorithm with hardware in the loop is used for automated synthesis of transfer functions.

Key concepts: Field-programmable analog array, Analog signal processing, Computer science, CMOS, Signal processing, Bandwidth (computing), Analog front-end, Analog signal

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