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BC557 PNP Transistor -50V -100mA
₹15.00 Original price was: ₹15.00.₹10.00Current price is: ₹10.00. inc. GST
MOQ : 10 nos
- Collector-base Voltage:Â -50V
- Collector Current:Â -100mA
- Transistor Polarity:Â PNP
- Total Power Dissipation:Â 0.5W
- Transition Frequency:Â 150MHz
- Current Gain Min. :Â 110
- Package:Â T0-92
The BC557 designed as a small single NPN Transistor manufactured in TO-92 metal can package. The BC557 comes as a low signal PNPÂ known for its low noise operations making it famously used in signal processing circuits and television receivers.
BC557 defined as a semiconductor device used to amplify or switch electronic signals and electrical power. This semiconductor material made up of at least three terminals for connection to an external circuit. A voltage or current applied to one pair of the transistor’s terminals controls the current through another pair of terminals. Because the controlled (output) power can be higher than the controlling (input) power, a transistor can amplify a signal.
Transistors defined as the most critical device in an electronics circuits. A PNP transistor consists of N-type silicon (the base) material sandwiched between two pieces of P-type (collector and emitter). These transistors used specifically to pass holes from the emitter to the collector (so conventional current flows from collector to emitter). The emitter “emits” holes into the base, which controls the number of holes the emitter emits. In the base, these holes combine with the electrones and is fed to the collector. Most of the electrons emitted “collected” by the collector, which sends them along to the next part of the circuit.
The PNPÂ transistor function to amplify weak signal enters into base and produces strong amplify signals at collector end. In PNP transistor, the direction of movement of an holes is from the emitter to collector region due to which the current constitutes in the transistor. Such type of transistor widely used in circuit because their majority charge carriers are holes. Thus offers high mobility compared to electrones.

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