=======
Posters
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.. meta::
    :description: Posters for courses on 'Structured Electronic Design'

.. image:: /img/colorCode.svg
    :alt: color coded resistors

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Structured Electronics Design
=============================

#. `Structured Electronics Design overview </posters/SED-Intro.pdf>`_
#. `Hierarchically structured product design process </posters/PosterIntroSystemsEngineering.pdf>`_
#. `Structured design of electronic information processing systems </posters/PosterInformationSystemsEngineering.pdf>`_ 
#. `Object Performance Specification </posters/OPS.pdf>`_
#. `Design techniques application-specific CMOS amplifiers </posters/SED-CMOS.pdf>`_
#. `Design sequence application-specific CMOS amplifiers </posters/SED-CMOS-order.pdf>`_
#. `Structured Design Guest lecture 2016 </posters/posterStructuredDesign2016.pdf>`_

Amplifier Design
================

#. `Amplifiers: Modeling ideal behavior </posters/AmplifiersIdealBehavior.pdf>`_
#. `Modeling and characterization of amplifiers </posters/PosterAmplifierModelingCharacterization.pdf>`_
#. `Principle of amplification and biasing </posters/Biasing.pdf>`_
#. `MOS noise design </posters/MOSnoisePoster.pdf>`_
#. `Design of amplifier types </posters/SED-AmpTypes.pdf>`_
#. `Application of balancing techniques </posters/posterBalancing.pdf>`_
#. `Aplication of negative feedback </posters/posterFeedbackConfigurations.pdf>`_
#. `Design of negative feedback amplifiers </posters/DesignFeedbackAmplifiers.pdf>`_
#. `Noise design feedback amplifiers <NoiseFeedBackAmps.pdf>`_
#. `The asymptotic-gain feedback model </posters/feedbackModelPoster.pdf>`_ 
#. `Derive controller requirements from amplifier specifications </posters/controllerRequirementsPoster.pdf>`_
#. `Summary Negative feedback  </posters/feedbackSummary.pdf>`_
#. `Amplifier stages with discrete transistors </posters/AmpStagesPoster.pdf>`_
#. `Transistor stages for CMOS Controller Design </posters/CMOScontrollerDesignPosterPalette.pdf>`_ 
#. `Common Drain Stage </posters/CDstage.pdf>`_
#. `Frequency compensation techniques-1 </posters/frequencyCompensationPoster.pdf>`_
#. `Frequency compensation techniques-2 </posters/frequencyCompensation.pdf>`_

Filter Design
=============

#. `Design of active and passive filters </posters/Filters.pdf>`_

EMC
===

#. `Electromagnetic compatibility </posters/EMC.pdf>`_
#. `Electromagnetic Fields and Waves </posters/physics.pdf>`_

Passive Components
==================

#. `Components </posters/components.pdf>`_

MOS Modeling
============

#. `CMOS Modeling and Characterization </posters/MOStransistorModelingAndDesignPoster.pdf>`_ 

Noise
=====

#. `Random signal modeling and noise </posters/NoisePoster.pdf>`_

Network Theory
==============

#. `Estimation of poles and zeros of networks without feedback </posters/PolesZerosPoster.pdf>`_

Design examples
===============

#. `My First Voltage Amplifier </posters/myFirstVampPoster.pdf>`_
#. `Hearing Loop system EE3C11 </posters/PosterHearingLoopA2.pdf>`_
#. `Summary EE4109, active antenna </posters/SED_EE4109_recap.pdf>`_
#. `CMOS active antenna </posters/AntennaAmpPoster.pdf>`_
#. `CMOS active antenna controller design </posters/ActiveAntennaPosterController.pdf>`_
#. `CMOS active antenna bandwidth </posters/ActiveAntennaPosterBWlimit.pdf>`_
#. `CMOS active antenna biasing </posters/ActiveAntennaPosterBiasing.pdf>`_
#. `Class AB amplifiers with OpAmps and discrete transistors </posters/classABamps.pdf>`_
#. `Class D amplifiers </posters/classDposter.pdf>`_
#. `Hearing aid signal processing <PosterHearingAid.pdf>`_

Courses
=======

#. `Course design of application-specific amplifiers with OpAmps </posters/posterAE1.pdf>`_ 
#. `EE3C11 design active antenna </posters/posterEE3C11.pdf>`_

