electronic labs at home. It is meant as a learning tool to generate a comprehensive‚ hands-on guide for students to use on their own time‚ while still being cost effective. Our project will utilize the 68HC12 Axiom board‚ custom built variable power supply and function generator‚ LCD‚ and keypad‚ interfaced with a PC using custom built oscilloscope software and a Graphical User Interface (GUI). Our project will employ a high level programming language using C++ for the development of the oscilloscope
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01 1.4 Theory: 1.4.1 Gunn Power Supply MXG 1. Gunn Power Supply : Gunn Power Supply comprises of an electronically regulated DC Power Supply and a square wave generator designed to operate Gunn oscillator and PIN modulator simultaneously. The DC voltage is variable from 0 to 10 volts. The frequency of square wave can be continuously varied from 800 to 1200 Hz. The front panel meter can read the Gunn voltage and the current drawn by the Gunn diode. The Power Supply is designed to protect Gunn diode
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PRESENTED BY MOHAMMAD ABID ABSTRACT BLOCK DIAGRAM POWER SUPPLY LM324 Relay AC MOTOR ADVANTAGES APPLICATIONS WORKING PROCEDURE CONCLUSION Irrigation is the key to a successful garden. Long gone are the days of manual watering or relying on a friend to water when you are on vacation or away on business. The Project presented here waters your plants regularly when you are out for vocation. The circuit comprises sensor parts built using op-amp IC LM324. Opamp is configured
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workload of the targeted application‚ razor flip-flops together with a dithering voltage unit then configure the multiplier to achieve the lowest power consumption. The single-switch dithering voltage unit and razor flip-flops help to reduce the voltage safety margins and overhead typically associated to DVS to the lowest level. The large silicon area and power overhead typically associated to reconfigurability features are removed. Finally‚ the proposed novel MP multiplier can further benefit from an
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Abstract: Phase absence is a very common and severe problem in any industry‚ home or office. Many times one or two phases may not be live in three phase supply. Because of this‚ many times‚ some electrical appliances will be on in one room and OFF in another room. This creates a big disturbance to our routine work. This project is designed to check the availability of any live phase‚ and the load will be connected to the particular live phase only. Even a single phase is available‚ and then also
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voltage is dependent on the method of rectification‚ the values of capacitance and load resistance; describe‚ by drawing graphs‚ the effect of loading on the output waveform of a smoothed rectifier. Capacitive smoothing. In our work on power supplies so far we have determined how to calculate the peak value of the output voltage from an rms value‚ and how to use half-wave and full-wave rectification methods to change a.c. into variable value d.c. The next stage is to smooth out the pulses
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SENSOR Regulated Power Supply TRAIN SIDE: RX Module Driver circuit Voice Informer 810 Amplifiers Speaker Regulated Power Supply Block Diagram for Power Supply: AC Step Down Transformer Bridge Rectifier Filter Regulator Regulated Output DC Block Diagram Description for Power Supply: Definitions: It is an electronics unit‚ which is used to give regulated power to any electronics
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CHAPTER 1 INTRODUCTION This project is mainly used to save power automatically instead of doing manual by using IR sensors The main consideration in the present field technologies are Automation‚ Power consumption and cost effectiveness. Automation is intended to reduce man power with the help of intelligent systems. Power saving is the main consideration forever as the source of the power(Thermal‚ Hydro etc.‚)are getting diminished due to various reasons. Wireless communication
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stage (40dB) and 10 times (20dB) at the next stage. As for the dB (decibel)‚ refer to "Logarithm Table". Generally‚ the positive and the negative power supply are used for the operational amplifier. The circuit this time works with the single power supply of +9 V. Therefore‚ for the positive input of the operational amplifiers‚ the half of the power supply voltage is appied as the bias voltage. Then the alternating current signal can be amplified on 4.5V central voltage. When using the operational
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each year in a myriad of products from toys to appliances to automobiles. For example‚ a single vehicle can use 70 or more microcontrollers. The following picture describes a general block diagram of microcontroller. AT89S52: The AT89S52 is a low-power‚ high-performance CMOS 8-bit
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