With a little modification we can use this circuit to measure other voltage ranges also. Connect D1 to D3 red LED’s which indicates shut down stage of your battery and use D8-D10 green color LED’s which indicates 80 to 100 percentage of the battery and use yellow color for remaining.ĭo you know about the concept – How a Wireless Power Transfer Circuit Works? We can also connect different color led’s to indicate the status. For dot display – leave the 9 th pin of IC.For bar graph display – connect 9 th pin of IC to the supply.It supports wide range of temperature from 0 to 70 degree Celsius.No multiplexing interaction between outputs.LED driver outputs are current regulated.Programmable output current 2mA to 30mA.Internal voltage reference from 1.2 to 12v DC. The IC contains adjustable reference and accurate 10-steps divider. Lm3914 drives led’s, LCDs and vacuum fluorescents. The operating voltage of this IC is 3v to 25v DC. The circuit will work even if the battery voltage is 3V. The circuit is designed to monitor 10V to 15V DC. There is no need of any external power supply to this circuit. Here resistor R3 and POT RV1 forms potential divider circuit. This resistor controls the brightness of LED’s. 6 th and 7 th pins of IC are connected to the ground through a resistor. This mode is selected by the external switch sw1 which is connected to 9 th pin of IC. In this circuit LED’s (D1-D10) displays the capacity of the battery in either dot mode or display mode. Get an idea about the related post – How Automatic Battery Charger Circuit Works using LM317? Battery Level Indicator Circuit Diagram Battery Level Indicator Circuit Diagram Circuit Components In this circuit, there is no need of resistors in series with LEDs because the current is regulated by the IC. This IC takes input analog voltage and drives 10 LED’s linearly according to the input analog voltage. The heart of this battery level indicator circuit is LM3914 IC. Battery Level Indicator Circuit Principle This circuit is designed based on lM3914 IC (Integrated chip). So by using this circuit, we can increase the lifetime of battery. You can use this circuit to check car battery or inverter. This article explains you how design battery level indicator. For example six LED’s are glowing means battery capacity 60% remains. In this project, I will show you how to design a simple Battery Level Indicator Circuit using easily available components. Battery level indicator indicates the status of the battery just by glowing LED’s. Battery Charge Level Indicator Circuit Applications.How to Operate Battery Level Indicator Circuit?.Battery Charge Indicator Circuit Design.Battery Level Indicator Circuit Diagram.Battery Level Indicator Circuit Principle.However, can there not also be small current that has passed through the green light which enters the base of emitter 2 (as the base voltage is 0.7V and there still exists a voltage differential across the 47k resistor) which will also allow current to flow from collector to emitter of transistor 2 and cause the red LED to glow. I also understand that when the battery voltage is less than 6.9V the first transistor will not allow current to flow through to its emitter, and due to the 47k resistor there will be only a very small current through the green LED into the base of emitter 2 - not enough for it to visibly be turned on - which in turn allows current to flow through from collector to emitter of transistor 2 and causes red LED to glow. This current must first pass through the green light, which turns it on. Can you please explain it to me? What I understand so far is that when the battery voltage exceeds the zener voltage + base emitter voltage of the BJT (6.2 + 0.7 = 6.9V) the zener will reverse breakdown and there will exist small current that is able to enter the base of the first transsitor, which allows current to flow from the collector to the emitter. Hi I haven't built the circuit but viewing the comments below and analysing the circuit myself by pen and paper I don't see how the red light will ever be switched off.
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