(Department of electronics engineering) RIZVI COLLEGE OF ENGINEERING BANDRA (WEST)‚ MUMBAI-400050 UNIVERSITY OF MUMBAI ACADEMIC YEAR 2012-13 FOR THE FULFILLMENT OF THE PROJECT (TE) ELECTRONIC WORKSHOP (EWS) LCD BASED VOTING MACHINE USING 8051 AND VENDING MACHINE A project report Submitted by NIKITA MUDRAS TRUPTI LIMBAD SABERA YASMIN UNDER THE GUIDANCE OF PROF. PRASAD DHURI PROF. SOHAIL SIDDIQUI RIZVI COLLEGE OF ENGINEERING‚ RIZVI
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will be displayed on LCD display. Basic working and hardware required: The main components include microcontroller‚ GSM modem. These components are integrated with the display board and thus incorporate the wireless features. The GSM modem receives the SMS. The AT commands are serially transferred to the modem . In return the modem transmits the stored message through the COM port. The microcontroller validates the SMS and then displays the message in the LCD display board.SIM300 is used as a GSM
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Advanced Railway Gate Control & Track Switching system 2013 A THESIS SUBMITTED TO THE DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING Specialization in Industrial Control & Instrumentation Engineering In fulfillment for the award of the degree Of BACHELOR OF ENGINEERING In Department of Electrical & Computer Engineering ETHIOPIAN INSTITUTE OF TECHNOLOGY – MEKELLE EIT-M MEKELLE‚ ETHIOPIA JUNE‚ 2013 Mekelle University Page i Advanced Railway Gate Control & Track Switching
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minute of a rotating shaft) using a 8051 microcontroller and a proximity sensor. As the name implies‚ what makes this device special‚ is that it can very accurately measure the rotational speed of a shaft without even touching it. This is very interesting when making direct contact with the rotating shaft is not an option or will reduce the velocity of the shaft‚ giving faulty readings. This device is built on an AT89S52 (or AT89C52) microcontroller‚ an alpha-numeric LCD module and and a proximity
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programmed microcontroller would display the same in Kilo meters. The project is assembled with a set of resistors representing cable length in KMs and fault creation is made by a set of switches at every known KM to cross check the accuracy of the same. The fault occurring at what distance and which phase is displayed on a 16X2 LCD interfaced with the microcontroller. In this project we use a microcontroller from 8051 family which is of 8-bit. The program is burned into ROM of microcontroller written
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designed & developed system is installed in the vehicle. An interfacing mobile is also connected to the microcontroller‚ which is in turn‚ connected to the engine. Once‚ the vehicle is being stolen‚ the information is being used by the vehicle owner for further processing. The information is passed onto the central processing insurance system which is in the form of the SMS‚ the microcontroller unit reads the SMS and sends it to the Global Positioning System (GPS) module and using the triangulation
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user actions via two types of sensors: accelerometers and finger contact pads. After the glove’s microcontroller processes the input data‚ it forwards a message a transceiver mounted on the glove unit. The transceiver then transmits this message wireless to a transceiver on the base station. The receiving transceiver forwards the the message base station microcontroller. Finally‚ the microcontroller converts the message into a computer HID user friendly format and moves the computer cursor appropriately
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for Windows; iii] PROTEUS VSM.; About the software’s used: CodeVisionAVR (VERSION 1.23): CodeVisionAVR is a C cross-compiler‚ Integrated Development Environment and Automatic Program Generator designed for the Atmel AVR family of microcontrollers. The program is a native 32bit application that runs under the Windows 95‚ 98‚ NT 4‚ 2000 and XP operating systems. The C cross-compiler implements nearly all the elements of the ANSI C language‚ as allowed by the AVR architecture‚ with
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EMBEDDED SYSTEM A Seminar Report Submitted In partial fulfilment For the award of the Degree of Bachelor of Technology In Department of Electronic & Communication Engineering Submitted To : Submitted By: Dr. J.P.AGARWAL JAY NAGAR Enrol. No. – 11/33/I/129 ( Dept. of E.C.E. ) Department of Electronic & Communication Engineering JNIT‚ JAIPUR. Rajasthan Technical University October‚ 2014. Preface There is a large gap between theoretically and practical knowledge about
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file:///D:/PSoC/Material/PSoC%20Chapter/chapter1(PSoC).htm ← Previouos chapter | Table of Contents | Next chapter → Chapter 1: Introduction to PSoC From the free online book “Architecture and Programming of PSoC Microcontrollers” Introduction 1.1 System Overview 1.2 CPU 1.3 Frequency generator 1.4 Microcontroller power consumption 1.5 Reset 1.6 Digital inputs and outputs 1.7 Analog inputs and outputs 1.8 Accessing programmable digital blocks 1.9 Global input lines 1.10 Digital programmable blocks 1.11 Analog
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