DIGITAL DESIGN FLOW OPTIONS A Thesis Presented in Partial Fulfillment of the Requirements for the Degree Master of Science in the Graduate School of The Ohio State University By Sagar Vidya Reddy‚ B.E. ***** The Ohio State University 2001 Master’s Examination Committee: Professor. Joanne E. DeGroat‚ Adviser Professor. Steven B. Bibyk Approved by Adviser Department of Electrical Engineering ABSTRACT VLSI (Very Large Scale Integration) IC design flow is a term used to describe
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References: ADCON1.F4 = 1 ; // Voltage reference is brought to the RA3 pin ( 1 volt) uart1_init(9600); temprature =(temp*100*5)/1023; //temprature = (temp / 1023) * 60+0*64+0*128; //convert adc reading to temprature
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Higher Physics: Mechanics and the properties of matter Summary Notes Vectors Page 2 Equations of motion Page 7 Newton’s Second Law‚ energy and Power Page 14 Momentum and Impulse Page 18 Density and pressure Page 26 Gas Laws Page 30 Vectors A physical quantity is a measurable quantity. Physics is about the relationships between physical quantities. There are two kinds of physical quantity. One consists of a number of units‚ the other consists of a number
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DIRECTIONAL PATCH ANTENNA ARRAY DESIGN FOR DESKTOP WIRELESS INTERNET by Noah Snyder Senior Project ELECTRICAL ENGINEERING DEPARTMENT California Polytechnic State University San Luis Obispo 2010 2 Table of Contents List of Figures ................................................................................................................................................ 3 List of Tables .............................................................................................
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Sixth Edition‚ last update July 25‚ 2007 2 Lessons In Electric Circuits‚ Volume II – AC By Tony R. Kuphaldt Sixth Edition‚ last update July 25‚ 2007 i c 2000-2010‚ Tony R. Kuphaldt This book is published under the terms and conditions of the Design Science License. These terms and conditions allow for free copying‚ distribution‚ and/or modification of this document by the general public. The full Design Science License text is included in the last chapter. As an open and collaboratively
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the shape of a room divider. However when one takes a closer look it is obvious that the separate panels are meant to represent an oversized cheese grater. The physical familiarity of the sculpture is not comforting to the viewer but instead unsettling. (Hatoum 1998) This sense of alienation that the viewer feels when looking at the object is most prevalent when looking at the holes in the panels where large metal shards are sticking out. The sense of privacy that the room divider would have created
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HBeonLabs Off. No. 46‚ 1st Floor‚ Kadamba Complex Gamma-I‚ Greater Noida (India) - 201308 Contact us: +91-120-4298000 +91-9212314779 info@hbeonlabs.com training@hbeonlabs.com www. hbeonlabs.com RFID BASED ATTENDANCE CUM SECURITY SYSTEM INTRODUCTION Our final year project is RFID based Attendance cum Security System. This idea came to my mind when I saw our lecturers taking the attendance of 100s of students very hardly. We thought we can integrate the RFID based Security System with
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INTRODUCTION Wouldn’t it be nice to have your home take care of your thing for you‚ automatically‚ without you having to lift a finger? You bet it would. This is the promise of Home Automation. There are many different systems‚ especially in larger homes‚ that can benefit from being integrated. Some of these systems include security alarm‚ HVAC‚ audio/video & lighting. Home automation integrates together‚ enabling them to function more efficiently‚ improve functionality‚ conserve resources & enhance
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……………………………………………………… 7 39.5 39.6 39.4.1 Problems of starting with full voltage. ………………………………… 7 39.4.2 A simple starter. ……………………………………………………….. 7 39.4.3 3-point starter. …………………………………………………………. 8 Speed control of shunt motor …………………………………………………… 10 39.5.1 Speed control by varying armature resistance. ………………………... 10 39.5.2 Speed control by varying field current. ………………………………... 12 39.5.3 Speed control by armature voltage variation. …………………………. 14 39.5.4 Ward Leonard method: combination
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8 2 Design 9 2.1 User Design Specification 9 2.2 High-Level Architecture 9 2.3 Formal Design Specification 10 2.3.1 Clock Divider 10 2.3.2 Keypad Driver 11 2.3.3 Sequence Detector Design 12 2.3.4 LED Driver 14 3 Implementation 15 3.1 Clock Divider 15 3.1.1 Port and Entity Declarations 15 3.1.2 Counter Implemented Clock Divider 16 3.2 Keypad Driver 16 3.2.1 Port and Entity Declaration 16 3.2.2 Keypad Button Translation 17 3.2.3 ‘Key Held Down’ Filter
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