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Dive into the research topics where Christian Fraisse is active.

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Featured researches published by Christian Fraisse.


international solid-state circuits conference | 1992

A second-generation modem analog front-end

Michel Combe; L. Tallaron; S. Ramet; Christian Fraisse; Francois Druilhe

The echo-cancelling voice-grade modems used on PSTN are projected to increase in bit rate from the present 14.4 kb/s (V.32bis) to 19.2 kb/s and even 24 kb/s in the near future. This will be facilitated by increasing the symbol rate from 2400 baud to maximum of 3200 baud, but will cost a 3-dB increase in dynamic range for every 2.4 kb/s increment. Improvement of 12 to 18 dB in dynamic range and linearity is required for the modem analog front-end (MAFE) described. The modem block diagram presented gives the worst-case magnitudes of the signals in the duplexer performing two-wire/four-wire conversion. The demodulator receives a signal between -3 dBm and -43/-48 dBm corrupted by a -9 dBm local echo. After echo removal, the signal-to-noise ratio must reach 25 dB to 35 dB for good performance at 19.2 kb/s, 30 dB to 40 dB at 24 kb/s, depending on the line quality. It is demonstrated that the second-order sigma-delta analog-to-digital converter used in the MAFE is consistent with this goal, taking into account the 12-dB peak factor of the quadrature amplitude modulation used in high-speed single-carrier modems.<<ETX>>


european solid state circuits conference | 2016

A ΣΔ sense chain using chopped integrators for ultra-low-noise MEMS system

Christian Fraisse; Angelo Nagari

The sense path design for new MEMS applications requires up to 20-Bit dynamic range in small low-frequency bandwidth removing the offset and 1/f noise. In this paper a new sense chain design, aimed to reach 19-Bit dynamic range in 150Hz bandwidth has been presented implementing a new full-chopper system using chopped integrators. The proposed sense path has been successfully inserted into a new gyroscope MEMS based device with a target of 1.5mdps/sqrt(Hz) noise. The circuit has been implemented in 0.13μm CMOS technology.


Archive | 1996

Signal processing system and method for digitally mixing a plurality of analog input signals

Christian Fraisse


Archive | 1998

Method and device of information transfer between circuits that exchange data via converters

Michel Combe; Christian Fraisse


Archive | 2000

Transmission of a clock by a capacitive isolating barrier

Christian Fraisse; Claude Renous


Archive | 2016

SYSTEM AND METHOD FOR PROTECTING AN AUDIO SPEAKER

Christian Fraisse; Angelo Nagari


Archive | 2015

Audio speaker protection system and method

Christian Fraisse; Angelo Nagari


Archive | 1998

Method and device for communication over delta-sigma converters

Michel Combe; Christian Fraisse


Archive | 1998

Method and apparatus for achrichtenübertragung via delta-sigma converters

Michel Combe; Christian Fraisse


Archive | 1992

FA 14.3: A Second-Generation Modem Analog Front-End

Michel Combe; Louis Tallaron; Serge Ramet; Christian Fraisse; Franqois Druilhe

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