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Showing posts with the label 9

Automatic 9 volt Battery Charger Circuit Diagram

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Good care given to your NiCad batteries will ensure a long life. However, they do need to be handled and charged with special care. It is therefore important to first discharge the NiCad to 1 Volt per cell, ensure that the battery is discharged, and then start the charge cycle. recommend a charge current of 1/10th the capacity for a duration of about 15 hours uninterrupted. In reality, we learn some hard lessons when we forget to switch the charger off after the 15 hours and find that one or more cells inside the battery no longer accept a charge. That is the very reason that the circuit above is fully automated. The only thing to do is connect the battery and press the 'Start' button. When the discharge cycle is finished the circuit switches over to charge for 15 hours. After the 15 hours the circuits maintains a trickle charge to keep the battery 'topped-up Automatic 9-volt Battery Charger Circuit Diagram Before I go into the schematic details I like to explain some of th...

Simple 3 volt to 9 volt with LMC555 Circuit Diagram

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Simple 3 volt to 9 volt with LMC555 Circuit Diagram . This is a Build a 3 volt to 9 volt with LMC555 Circuit Diagram. This dc converter is built with the CMOS version of 555 timer. You can get 12V too if you change the zener diode to a 12V version. 3 volt to 9 volt with LMC555 Circuit Diagram

TL496 3 to 9 volt converter Circuit Diagram

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This is simple Simple TL496 3 to 9 volt converter Circuit Diagram . it uses the TL496 power supply controller, a coil and a electrolytic capacitor. The maximum output voltage is actually 8.6V and current is around 80mA.The input current (the current drawn from the batteries) is 405mA at the maximum output current. Without load the current consumption is 125µA and the batteries life is around 166 days. TL496 3 to 9 volt converter Circuit Diagram