Embedded system for milk analyzer and billing Submitted by Harshal Dhikale Sushil Kore Suhas Ugale Aim • The aim is to build an embedded system that analyzes milk‚ displays‚ saves & print the parameters of milk such as FAT‚ CLR‚ SNF‚ Proteins & calculate the prize as per these parameter. Introduction • We think engineering is the technical solution of the problem • look at common man‘s problem • We peek up adulteration problem of milk Introduction • A REVIEW OF LITERATURE – Conventional
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BECDEC709 / MCSDEC709 Embedded System Unit – II 2 Mark Questions and Answers 1. What is Code Space? The code space stores the instructions. It makes sense to make the system space and the code space contiguous because you would normally place them in the same physical ROM device. 2. What is Data Space? Above the code space‚ the ROM data space stores constant values‚ such as error messages or other string literals. 3. What are the three basic areas of read /write storage (RAM) need
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working model of 7 GHz (C band microwave) Dielectric Resonator oscillator. He has been an above average student all his life which is also well supported by his academic scores. I can stand guarantee for his aptitude and information in the field of embedded systems mentioned subjects. I strongly feel that he is worthy of graduate study at your esteemed university and is well worthy of student of his qualities deserve
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TFRH robot is based on embedded system. The TFRH has mainly two Atmel AT89S52 microcontrollers which communicate with each other via an RF module 434 Mhz. This will be explained in the forthcoming sections. The TFRH is based on 8-bit microcontroller The IC used was Atmel AT89S52 ICS. The hardware cost is reduced by removing various sub ICs used in the design. The design part had successfully removed the 8255 IC and had used multiplexer cd 4051 to support the 7 different motor for the various function
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Q 1. Draw the Pin diagram of 8051 micro-controller and give the functioning of following pins: (a) #PSEN (b) XTAL1 & XTAL2 (c) ALE (d) #EA Q 2. Draw the architecture of 8051 micro-controller .Also give the features of 8051 & description of registers (DPTR‚ PC‚ A‚ B). Q 3. Draw the PSW (Program Status Word) register of 8051 and describe all its bits .Also tell how register bank 3(RB3) can be selected. Q.4 Write PUSH instructions to push the contents of the registers on stack after the execution
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General Instruments (GI)‚ to be used with the new CPU‚ CP1600. • While generally a good CPU‚ the CP1600 had poor I/O performance. • In the late 1970s‚ GI introduced PIC® 1650 and 1655 – RISC with 30 instructions‚ to improve performance of the overall system. • General Instrument recognized the potential for the PIC and eventually spun off Microchip‚ headquartered in Chandler‚ AZ to fabricate and market the PICmicro.. • Features: low-cost‚ self-contained‚ 8-bit‚ Harvard structure‚ pipelined‚ RISC
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4.3 LAN-T is a trademark of Benchmark Electronic Systems (P) Ltd. This manual contains Benchmark proprietary material. All other trademarks and copyrights belong to the respective owners and are hereby acknowledged. All Rights reserved. This manual may not be copied in whole or in part‚ nor transferred to any other media or language without the express written permission of Benchmark Electronic Systems (P) Ltd. Benchmark Electronic Systems (P) Ltd. reserves the right to make changes to this
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Module 3 68HC11 Addressing Modes 68HC11 Addressing Modes o Aims To review 68HC11 data transfer instructions and applying the controller addressing modes o Learning Outcomes At the end of this module‚ students should be able to understand • Inherent Addressing Mode • Immediate Addressing Mode • Direct Addressing Mode • Extended Addressing Mode • Indexed Addressing Mode • Relative Addressing Mode 20132014-II 2/Module 3 Addressing Modes 20132014-II 3/Module 3 Addressing
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programming for embedded microcontroller systems. Assumes experience with assembly language programming. V. P. Nelson Spring 2013 ELEC 3040/3050 Embedded Systems Lab – V. P. Nelson Outline • Program organization and microcontroller memory • Data types‚ constants‚ variables • Microcontroller register/port addresses • Operators: arithmetic‚ logical‚ shift • Control structures: if‚ while‚ for • Functions • Interrupt routines Spring 2013 ELEC 3040/3050 Embedded Systems Lab – V.
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2.2 BLOCK DIAGRAM EXPLANATION: The project “GSM BASED VEHICLE THEFT CONTROL SYSTEM” deals with the design & development of a theft control system for automobiles which is being used to prevent / control the theft of a vehicle. The developed system makes use of an embedded system based on GSM technology. 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
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