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Disease Diagnoser and Pill Dispenser Using Embedded Network

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Disease Diagnoser and Pill Dispenser Using Embedded Network
DISEASE DIAGNOSER AND PILL DISPENSER USING EMBEDDED NETWORK INDEX
NO. TOPIC PAGE NO.
1. INTRODUCTION
1.1 Existing System-Website Diagnosis
1.2 Drawbacks
1.3 Proposed System
2. BLOCK DIAGRAM
2.1 Transmitter
2.2 Receiver
2.3 Block diagram explanation
3. CIRCUIT DIAGRAM
4. FLOW CHART
4.1 Transmitter
4.2 Receiver
5. HARDWARE COMPONENTS
5.1 Power supply
5.1.1 Introduction
5.1.2 Power supply types
5.1.2.1 DC power supply
5.1.2.2 AC power supply
5.1.2.3 Linear regulated power supply
5.1.3 Power supply applications
5.1.3.1 AC adapter
5.1.3.2 over load protection
5.1.4 Current limiting
5.1.5 Power conversion
5.1.6 Mechanical power conversion
5.1.7 Terminology
5.2 PIC Microcontroller
5.3 Heartbeat sensor
5.3.1 Feature
5.3.2 Application
5.3.3 Using the sensor
5.3.4 Internal block diagram 5.3.5 Working 5.4 Temperature sensor 5.4.1 Description 5.4.2 Internal block diagram 5.4.3 Features 5.4.4 Applications 5.5 LCD 5.5.1 LCD module 2 X 16 5.5.1.1 Overview 5.5.1.2 Features 5.5.2 Application 5.6 RF Transmitter and Receiver 5.6.1 RF transmitter 5.6.1.1 Pin diagram 5.6.1.2 Pin description of RF transmitter 5.6.2 RF Receiver 5.6.2.1 Pin diagram 5.6.2.2 Pin description 5.6.3 RF transmitter and receiver working 5.6.4 Frequency synthesis 5.6.4.1 Fixed frequency system 5.6.4.2 Variable frequency systems 5.6.5 Frequency multiplication 5.6.5.1 Frequency doubler 5.6.5.2 Frequency tripler 5.6.6 Direct digital synthesis 5.6.7 Frequency mixing and modulation 5.6.8 AM modes 5.6.8.1 Low level 5.6.8.2 Advantages 5.6.8.3 Disadvantages 5.6.8.4 High level 5.6.8.5 Advantages 5.6.8.6 Disadvantages 5.6.9 FM modes 5.6.9.1 Direct FM 5.6.9.2 Indirect FM 5.6.10 Linking the transmitter to the aerial 5.6.11 RF leakage

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