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Analog circuit design 2007 : sensors, actuators and power by H. Casier, et al.,

By H. Casier, et al.,

Analog Circuit layout relies at the every year Advances in Analog Circuit layout workshop. the purpose of the workshop is to collect designers of complicated analogue and RF circuits for the aim of learning and discussing new chances and destiny advancements during this box. chosen themes for AACD 2007 are: (1) Sensors, Actuators and gear Drivers for the car and commercial setting (Tue 27 March) - Chaired via Herman Casier, AMI Semiconductor Fellow, Belgium (2) built-in PAs from Wireline to RF (Wed 28 March) - Chaired through Prof. Michiel Steyaert, Catholic college, Leuven (3) Very excessive Frequency entrance Ends (Thu 29 March) - Chaired by means of Prof. Arthur van Roermund, Eindhoven collage of Technology.
Contents
Preface vii
Part I: Sensors, Actuators and gear Drivers for the Automotive
and business setting 1
Heterogeneous Integration of Passive elements for the Realization
of RF-System-in-Packages 3
Eric Beyne, Walter De Raedt, Geert Carchon, and Philippe Soussan
The Eye-RIS CMOS imaginative and prescient method 15
Ángel Rodríguez-Vázquez, Rafael Domínguez-Castro,
Francisco Jiménez-Garrido, Sergio Morillas, Juan Listán,
Luis Alba, Cayetana Utrera, Servando Espejo and Rafael Romay
An Inductive place Sensor ASIC 33
Petr Kamenicky, Pavel Horsky
CMOS Single-Chip digital Compass with Microcontroller 55
Christian Schott, Robert Racz, Samuel Huber, Angelo Manco,
Markus Gloor, Nicolas Simonne
Protection and analysis of clever strength High-Side Switches
in car functions 71
Andreas Kucher
Integrated CMOS strength Amplifiers for hugely Linear
Broadband communique 93
K. Mertens, M. Unterweissacher, M. Tiebout, C. Sandner
Power Combining thoughts for RF and mm-Wave
CMOS energy Amplifiers 115
Patrick Reynaert, M. Bohsali, D. Chowdhury and A. M. Niknejad
Switched RF Transmitters 145
Willem Laflere, Michiel Steyaert and Jan Craninckx
High-Speed Serial stressed Interface for cellular purposes 163
Gerrit W. den Besten
High Voltage xDSL Line Drivers in Nanometer applied sciences 179
Bert Serneels, Michiel Steyaert, Wim Dehaene
VoIP SLIC Open Platform: The Wideband Subscriber Line Interface
Luc D’Haeze, Jan Sevenhans, Herman Casier, Damien Macq,
Stefan van Roeyen, Stef Servaes, Geert De Pril, Koen Geirnaert,
Hedi Hakim
Part III: Very excessive Frequency entrance Ends 235
Systems and Architectures for extraordinarily excessive Frequency Radio hyperlinks 237
Peter Baltus, Peter Smulders, Yikun Yu
Key development Blocks for Millimeter-Wave IC Design
in Baseline CMOS 259
Mihai A.T. Sanduleanu, Eduardo Alarcon, Hammad M. Cheema,
Maja Vidojkovic, Reza Mahmoudi and Arthur van Roermund
Analog/RF layout options for High-Power Silicon
Based mmWave and THz purposes 283
Ullrich R. Pfeiffer
SiGe BiCMOS and CMOS Transceiver Blocks for Automotive
Radar and Imaging purposes within the 80-160 GHz variety 303
S.P. Voinigescu, S. Nicolson, E. Laskin, ok. Tang and P. Chevalier
A comparability of CMOS and BiCMOS mm-Wave Receiver
Circuits for functions at 60GHz and past 327
Sharon Malevsky and John R. Long
Integrated Frontends for Millimeterwave Applications
Using III-V applied sciences 343
Herbert Zirath, Sten E. Gunnarsson, Camilla Kärnfelt, Toru Masuda,
Mattias Ferndahl, Rumen Kozhuharov, Arne Alping

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Extra info for Analog circuit design 2007 : sensors, actuators and power drivers ; integrated power amplifiers from wireline to RF ; very high frequency front ends

Sample text

24 CIPOS-Sensors in Throttle-Flap and a Headlamp Swivelling Module Fig. 25 CIPOS-Sensor in an Actuator 6. Conclusions The presented inductive position sensor provides a powerful solution, compared to other concepts, suitable for the harsh automotive environment. The sensor is very precise, with no contact between the moving part and the stator, it is especially well suited for use in applications with frequent sensor movements even if an exceptional accuracy is required. An Inductive Position Sensor ASIC 53 The system is based on the sensors planar coils, one ASIC and few external components.

The gain is adjusted by resistor divider (R1a, R1b, R2). Common mode feedback circuitry (M24-25 , RF and A1) is only symbolically included. The measured DC gain as a function of input signal amplitude for selected gain 1, 2, 4 and temperature -40°C to 160°C is shown in Fig. 21. 4. Sensor accuracy measurement results For the evaluation of the full system a configuration with analog output driver ratio-metric to the supply was used. The performance evaluation suffers from the fact that it is difficult to distinguish between errors caused by the ASIC and errors caused by the sensor itself.

Accelerator pedal sensors, turbocharger actuator systems, steering angle sensors, throttle body position sensors, gear box control position sensors, head lamp position sensors, etc. ). In the 33 H. Casier et al. ), Analog Circuit Design: Sensors, Actuators and Power Drivers; Integrated Power Amplifiers from Wireline to RF; Very High Frequency Front Ends, 33–53. V. 34 P. Kamenicky and P. Horsky modern cars these potentiometers are replaced by electronic contact-less sensors which are based on different principles: Hall sensors, magneto-resistive sensors or inductive sensors.

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