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# Table des matières
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[1Introduction 2](#_Toc93790564)
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[1 Introduction](#1Introduction)
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[2Design général 2](#_Toc93790565)
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[2 Design général](#_Toc93790565)
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[2.1« PositionBlock » 3](#_Toc93790566)
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[2.1 "PositionBlock"](#_Toc93790566)
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[2.2« ButtonBlock » 6](#_Toc93790567)
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[2.2 "ButtonBlock"](#_Toc93790567)
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[2.3« Driver » 7](#_Toc93790568)
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[2.3 "Driver"](#_Toc93790568)
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[2.4« Main » 8](#_Toc93790569)
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[2.4 "Main"](#_Toc93790569)
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[3Vérification et validation 9](#_Toc93790570)
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[3 Vérification et validation](#_Toc93790570)
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[3.1Simulation Position 9](#_Toc93790571)
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[3.1 Simulation Position](#_Toc93790571)
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[3.2Simulation Boutons 9](#_Toc93790572)
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[3.2 Simulation Boutons](#_Toc93790572)
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[3.3Simulation Main 9](#_Toc93790573)
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[3.3 Simulation Main](#_Toc93790573)
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[3.4Simulation Driver 9](#_Toc93790574)
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[3.4 Simulation Driver](#_Toc93790574)
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[4Intégration 10](#_Toc93790575)
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[4 Intégration](#_Toc93790575)
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[4.1HDL-Designer 10](#_Toc93790576)
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[4.1 HDL-Designer](#_Toc93790576)
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[4.2Test Design 10](#_Toc93790577)
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[4.2 Test Design](#_Toc93790577)
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[4.3Préparation pour la synthèse 11](#_Toc93790578)
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[4.3 Préparation pour la synthèse](#_Toc93790578)
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[4.4Synthèse 11](#_Toc93790579)
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[4.4 Synthèse](#_Toc93790579)
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[4.5Configuration 12](#_Toc93790580)
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[4.5 Configuration](#_Toc93790580)
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[5Conclusion 13](#_Toc93790581)
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[5 Conclusion](#_Toc93790581)
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[Figure 1 Top level 2](#_Toc93790582)
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[Figure 2 Architecture « PositionBlock » 3](#_Toc93790583)
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[Figure 1 Top level](#_Toc93790582)
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[Figure 3 Signaux du codeur incrémental 3](#_Toc93790584)
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[Figure 2 Architecture "PositionBlock"](#_Toc93790583)
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[Figure 4 FSM encoder 4](#_Toc93790585)
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[Figure 3 Signaux du codeur incrémental](#_Toc93790584)
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[Figure 5 Counter 1 bit 4](#_Toc93790586)
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[Figure 4 FSM encoder](#_Toc93790585)
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[Figure 6 Counter 4 bits 5](#_Toc93790587)
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[Figure 5 Counter 1 bit](#_Toc93790586)
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[Figure 7 Counter 24 bits 5](#_Toc93790588)
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[Figure 6 Counter 4 bits](#_Toc93790587)
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[Figure 8 Blocage pour éviter le dépassement 5](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790589)
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[Figure 7 Counter 24 bits](#_Toc93790588)
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[Figure 9 Filtrage de 24 bit à 16 bit 6](#_Toc93790590)
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[Figure 8 Blocage pour éviter le dépassement](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790589)
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[Figure 10 Stand by des boutons 6](#_Toc93790591)
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[Figure 9 Filtrage de 24 bit à 16 bit](#_Toc93790590)
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[Figure 11 Bypass du button4 6](#_Toc93790592)
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[Figure 10 Stand by des boutons](#_Toc93790591)
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[Figure 12 Architecture « Driver » 7](#_Toc93790593)
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[Figure 11 Bypass du button4](#_Toc93790592)
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[Figure 13 Bloc « Counter\_Controller » 7](#_Toc93790594)
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[Figure 12 Architecture "Driver"](#_Toc93790593)
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[Figure 14 Architecture "Main" 8](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790595)
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[Figure 13 Bloc "Counter_Controller"](#_Toc93790594)
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[Figure 15 Root view pour la simulation 10](#_Toc93790596)
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[Figure 14 Architecture "Main""](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790595)
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[Figure 16 ModelSim Flow 11](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790597)
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[Figure 15 Root view pour la simulation](#_Toc93790596)
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[Figure 17 Prepare for Synthesis 11](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790598)
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[Figure 16 ModelSim Flow](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790597)
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[Figure 18 Xilinx Project Navigator 11](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790599)
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[Figure 17 Prepare for Synthesis](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790598)
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[Figure 19 Buttons on ucf file 11](#_Toc93790600)
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[Figure 18 Xilinx Project Navigator](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790599)
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[Figure 20 Hierarchy in ISE 11](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790601)
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[Figure 19 Buttons on ucf file](#_Toc93790600)
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[Figure 21 Processes ISE 12](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790602)
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[Figure 20 Hierarchy in ISE](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790601)
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[Figure 22 iMPACT 12](#_Toc93790603)
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[Figure 21 Processes ISE](https://hessoit-my.sharepoint.com/personal/remi_heredero_hes-so_ch/Documents/S1fb/electricity/1-EIN/project/cursor/Rapport.docx#_Toc93790602)
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[Figure 22 iMPACT](#_Toc93790603)
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#
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# 1Introduction
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# 1 Introduction
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Dans le cadre des cours d'électronique numérique nous devons en fin de semestre réaliser un projet. Ce projet consiste à réaliser le design d'un curseur. Celui-ci-doit se déplacer à une position pré-enregistré avec une certaine accélération et un certaine décélération. Nous devons réaliser le design de la partie logique de notre système. Pour ce faire, nous utilisons le logiciel « HDL Designer ». Les instructions et la documentation complète se trouve sur Cyberlearn dans la section « Cursor ».
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