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In order to download the Project Files of BC547: Datasheet, Pinout, Working, Applications and Simulation, please follow the below instructions:

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Project Files of BC547: Datasheet, Pinout, Working, Applications and Simulation

<img src="https://images.theengineeringprojects.com/image/main/2017/06/BC547-Pinout.png" alt="Introduction to BC547, getting started with BC547, how to start with BC547, How to use BC547, BC547 Proteus simulation, Proteus BC547, BC547 Proteus" class="alignCenter" width="300" height="193" srcset="https://images.theengineeringprojects.com/image/300/2017/06/BC547-Pinout.png 300w, https://images.theengineeringprojects.com/image/600/2017/06/BC547-Pinout.png 600w" sizes="(max-width: 300px) 100vw, 300px" decoding="async" loading="lazy" onclick="o ...

Introduction to BC547, getting started with BC547, how to start with BC547, How to use BC547, BC547 Proteus simulation, Proteus BC547, BC547 Proteus
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TEP , The Engineering Projects , TagsIntroduction to BC547
getting started with BC547
how to start with BC547
How to use BC547
BC547 Proteus simulation
Proteus BC547
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Comments Comments on ‘’ Project Files of BC547: Datasheet, Pinout, Working, Applications and Simulation ‘’ (12)
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Hi. How’s everyone. I need to know that is the leg notation for base, emitter and collector for BC547 transistor are always same whether these are manufactured by different manufacturer? I have another question that can I use BC547 in replacement of BC548? Mention the main purpose of both transistors also which one can tolerate higher voltages.
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Good article. I’m having a problem in building a circuit as BC547 is getting very hot. And after one day the circuit completely burned. I measured the voltages and currents around it. These are following. Vce = 10.3V, Vbe = 0.7V, Vcb = 9.4V Ve to gnd = 12.2 V, Vc to gnd = 22.0V, Vb to gnd = 12.8V, Ie = 20mA, Ic = 20mA, Ib = 6.4uA. These values are below the max values. Then please help me to find the reason why is the transistor heating up. What should i need to check? Thanks
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I tried a similar setup with a BC547 transistor (45V, and 0.1A) but I'm not getting desired results. The emitter & collector are opposite but I tried both setup. Neither one is working. They are both seemed exact same. Is there any correct way in this setup. Where I am wrong? Or either it works if the transistor is not bipolar? I will wait for your valuable suggestions.
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Hello! Hope you are good. I want to drive a relay with 5v relay using bc547. And I’m using resistor 1K at base, but relay is not working. I tried replacing relay with led then it is working absolutely fine. The resistance of relay is 70ohms. So tell me the problem here.
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I am new in the feild of electronics. And i am working on a very basic water detection sensor by using a BC547 to switch on LED when there is current between two electrodes. The space between electrodes is 1cm. As I’m trying to understand more about working of transistors so I have some questions. When I replaced the 4.7k resistor with 1M ohm, the LED burns very dim. Explain why it is happening? According to the BC547 specifications, the max emitter-base voltage is 6 V. So is it meaning that i need to drop the voltage here? Or should I plug in couple of diodes?
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I’m using a reed switch having 2 pin. This acts as a switch when goes near to magnet. I want to keep it on even when theme get is not near. As the BC547 also use as a switch as well thus how can BC547 help me to perform this task. Thanks
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Hi. I had i-Snail-VC-50 sensor that has an output of 0-5V. I would like to link this output with the base of transistor BC547 that provide power an LED with an external power source of 5V. What actually I want to do is, the LED will light up when the voltage rise above 0V automatically. As the most of time voltage range is between 0-1V. So help me how could I achieve this task? And also mention that no components will get damaged if sensor output goes up to max 6.5V?
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I’m using a transistor as a switch, and the voltage providing is approximately 0.7 to the base of the transistor from the mid-point of the resistors. I know that silicon breakdown voltage is 0.7 that means it is going to forward-biasing above this voltage. The midpoint value is calculated that is 0.757V and observed is also around 0.7V. Though, the LED does not turn on in this setup. Please tell me where I am wrong here?
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I am working on a project of controlling RGB led Strip (5050) 5m by using arduino. In this process, the tutorial I am following is suggesting me to use TIP31 mosfets along with resistors. But I switched them with the transistor BC547. Now if I am using a10k resistor, it is decreasing the light of the LED strip too much. And by using low value resistor then I am getting the desired brightness, but in this situation the resistors become very hot and started blackening. I need to know the reasons. Is this because I replace TIP31 with BC547? Or any other reason is there?
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Hello! I am new in learning electronics. And currently working on a project. The task is I have to switch on and off the power going to SD card. So what should I do here? Should I use BC547 as a switch? Is that goi9ng to help me in this regard?
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