Families: 1. Diode Logic (DL) 2. Resistor Transistor Logic (RTL) 3. Diode Transistor Logic (DTL) 4. Transistor- Transistor Logic (TTL) 5. Emitter Coupled Logic (ECL) or Current Mode Logic (CML) 6. Integrated Injection Logic (IIL) MOS Families: 1. P-MOS Family 2. N-MOS Family 3. Complementary-MOS Family 1. Standard C-MOS 2. Clocked C-MOS 3. Bi-CMOS 4. Pseudo N-MOS 5. C-MOS Domino Logic 6. Pass Transistor Logic Hybrid Family: 1. Bi-CMOS Family Diode Logic In DL (diode logic)‚
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INDEX |S.NO |TITLE |PAGE NO | |1 |Introduction |1 | |2 |Solar Energy |4 | |3 |Photovoltaics |24 | |4 |Solar Cell |28 | |5 |Solar Roadway |51 | |6 |Component description
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rectification they are classified into two:- The single staged & multi staged. In the multi staged rectifiers‚ more than two diodes are used and these are used in the above-mentioned devices. The singled staged rectifier has only 2 diodes‚ the one we are to discuss in this project. The multi diode rectifier has only 2 diodes‚ the one we are to discuss in this project. The multi diode rectifiers has an efficiency ~ 94.6% while that of the single is only 81.2%. THEORY INVOLVED :- The input transformer
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SENIOR SECONDARY EXAMINATION Scheme of Physics Practical Examination Duration: 3 hours Maximum Marks: 20 There will be a practical examination of 20 marks apart from the theory examination. The distribution of 20 marks is as follows: (i) (ii) (iii) Viva Record Book Two Experiments 4 Marks 2 Marks 14 Marks Note: There are 30 experiments in three Groups A‚ B and C. In the practical; examination candidates has To do two experiments which should not be from the same group and each experiment carries
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paper by d.visalatchi Wireless Charging of Mobile Phones Using Microwaves contents: 1. abstract 2. introduction 3. transmitter design 4. receiver design 5.process of rectification 6. sensor circuitry 7. conclusion 8. references ABSTRACT : With mobile phones becoming a basic part of life‚ the recharging of mobile phone batteries has always been a problem. The mobile phones vary in their talk time and battery stand by according to their manufacturer and batteries. All these
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Assignment 1 : Transmitters. Exercise 1 : Light Sources and Companents LAB 1 : New Building – Optical – Network Amir R. Ghattas The differences between LED and Laser Transmitters LED LED (Light-Emitting Diode) is a two-lead semiconductor light source. It resembles a basic p-n junction diode (is a boundary or interface between two types of semiconductor material‚ p-type and n-type‚ inside a single crystal of semiconductor.‚ which emits light when activated. When a fitting voltage is applied to
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THYRISTOR RAM Muktesh Waghmare‚ Raman Gaikwad 1: Principle: Thyristor is well-known for its high-current drive capability and its bi-stable characteristics. It has been widely used in power electronics applications. With the exponential advances in CMOS technology tiny thyristor devices can now be easily embedded into conventional nano-scale CMOS. This enables the creation of a memory cell technology with features that include small cell size‚ high performance‚ reliable device operation‚ and
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OPTICAL FIBRE TRANSMISSION A SEMINAR PAPER SUBMITTED TO THE INSTITUTE OF SCIENCE LABORATORY TECHNOLOGY FACULTY OF SCIENCE EKITI STATE UNIVERSITY BY AKINLEMIBOLA DAMILOLA JOE MATRIC NO: 050230 IN PARTIAL FUFILLMENT OF THE B.SC HONOURS DEGREE IN PHYSICS ELETRONICS NOV 2011 1 CERTIFICATION This is to certify that this seminar work was carried out by Akinlemibola Damilola Joe‚ Matriculation Number 050230‚ in the Department of Physics Electronics‚ Institute of Science Laboratory
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Endless Talk time…. By J.SIVASHANKAR CONTENTS ➢ ABSTRACT ➢ INTRODUCTION ➢ CONCEPT OF SELF CHARGING ➢ ACTUAL SETUP FOR WIRELESS CHARGING SAMPLE CIRCUITS WITH TWO STAGES IMPORTANT POINTS CONCLUSION ABSTRACT T he Cellular revolution has spread to every nook and corner of the world and connected distant parts of the globe
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A Zener diode is a diode which allows current to flow in the forward direction in the same manner as an ideal diode‚ but will also permit it to flow in the reverse direction when the voltage is above a certain value known as the breakdown voltage‚ "zener knee voltage"‚ "zener voltage" or "avalanche point". The device was named after Clarence Zener‚ who discovered this electrical property. Many diodes described as "zener" diodes rely instead on avalanche breakdown as the mechanism. Both types are
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