Industrial Battery Charger by Thyristor Firing Angle Control - Documents [PDF]

Nov 8, 2014 - This project is designed for charging batteries by DC from AC power supply. DC power for a battery charger

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INDUSTRIAL BATTERY CHARGER BY THYRISTOR FIRING

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ANGLE CONTROL

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The project is designed for charging batteries by DC from AC power supply. DC

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power for a battery charger is derived from a thyristor controlled rectifier system. AC

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power is applied to a bridge rectifier comprising of diodes and a triac getting desired

1. THYRISTOR POWER CONTROL BY IR REMOTE ABSTRACT The project is designed to control the speed of an induction motor such (/education/thyristor-power-control-by-iras fans, by using a standard TV remote. In remote.html) home automation…

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Article Firing Delay Angle

The project uses zero crossing point of the waveform which is detected by a

A published article regarding the precise formula for firing delay angle. (/documents/article-firing-delay-angle.html)

comparator whose output is then fed to the microcontroller. The microcontroller provides

BEMF-Recoil Recovery Battery Charger- By KoneheadX Invalid document format

required delayed triggering control to a triac through opto isolator interface. Finally the

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power is applied to the load through the triac in series with the bridge rectifier. The

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rectified and controlled DC output is given to the load i.e., a resistor used in our project in

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place of a battery. The output DC voltage is measured using a multimeter. This project uses

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a microcontroller from 8051 family which is interfaced through push button switches used

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for increasing or decreasing the DC voltage for proper charging purposes.

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The project can be further enhanced by using direct 230 volt supply instead of 12

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    8051 series Microcontroller, Op-amp, Opto-Isolator, (/document/report/industrial-battery-charger-by-thyristor-firing-angle-control) us to resolve them. We are Triac, Voltage Regulator, Transformer, Diodes, always happy to assist you. Crystal, LED, Push Button, Resistors, Capacitor, Load.

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    INDUSTRIAL BATTERY CHARGER BY THYRISTOR FIRING ANGLE CONTROL

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    U-104 APPLICATION NOTE IMPROVED CHARGING METHODS FOR LEAD-ACID BATTERIES USING THE UC3906 ABSTRACT (/documents/uc3906-battery-charger.html) This paper describes the operation and application of the UC3906 Sealed… Battery Charger Owner Manual

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    Description This project is designed for charging batteries by DC from AC power supply. DC power for a battery charger is derived from a thyristor controlled rectifier system. For more information about this project, kindly check the page http://www.edgefxkits.com/industrial-battery-charger-bythyristor-firing-angle-control Download Industrial Battery Charger by Thyristor Firing Angle Control Const Ct Battery Charger

    Transcript INDUSTRIAL BATTERY CHARGER BY THYRISTOR FIRING ANGLE CONTROL The project is designed for charging batteries by DC from AC power supply. DC power for a battery charger is derived from a thyristor controlled rectifier system. AC power is applied to a bridge rectifier comprising of diodes and a triac getting desired control from

    circuit ideas 114 • August 2009 • electroni cs for you www. e f y mA g . c o m T here are many ways of battery charging but constant-current charging, in particular,… (/documents/const-ct-battery-charger.html)

    microcontroller. The project uses zero crossing point of the waveform which is detected by a comparator whose output is then fed to the microcontroller. The microcontroller provides required delayed triggering control to a triac through opto isolator interface. Finally the power is applied to the load through the triac in series with the bridge rectifier. The rectified and controlled DC output is given to the load i.e., a resistor used in our project in place of a battery. The output DC voltage is measured using a multimeter. This project uses a microcontroller from 8051 family which is interfaced through push button switches used for increasing or decreasing the DC voltage for proper charging purposes. The project can be further enhanced by using direct 230 volt supply instead of 12 volt AC to the bridge rectifier for achieving higher voltage control for charging number of batteries in series. BLOCK DIAGRAM HARDWARE REQUIREMENTS: 8051 series Microcontroller, Opamp, Opto-Isolator, Triac, Voltage Regulator, Transformer, Diodes, Crystal, LED, Push Button, Resistors, Capacitor, Load. SOFTWARE REQUIREMENTS: Keil compiler Language: Embedded C or Assembly

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