Actions

BC108 Transistor: Difference between revisions

From DT Online

mNo edit summary
(Added Template)
Line 1: Line 1:
[[File:BC108.jpg|250px|right]]
[[File:BC108.jpg|250px|right]]
The [https://en.wikipedia.org/wiki/BC548 '''BC108'''] Collector is connected to the positive (+ve) supply via the load. NB: If the load is inductive i.e. has coil windings such as a relay, solenoid or motor, then it is usual to connect a diode across it to prevent the Back EMF from damaging the transistor. (Cathode to supply).
__TOC__




The input is connected to the Base via a limiting resistor (typically 1K). The Emitter is connected to the negative (-ve) supply (0V).
=====Description=====
 
The [https://en.wikipedia.org/wiki/BC548 '''BC108'''] Collector is connected to the positive ''(+ve)'' supply via the load. NB: If the load is inductive i.e. has coil windings such as a relay, solenoid or motor, then it is usual to connect a diode across it to prevent the Back EMF from damaging the transistor. ''(Cathode to supply)''.
 
 
=====Features and Applications=====
 
The input is connected to the Base via a limiting resistor ''(typically 1K)''. The Emitter is connected to the negative ''(-ve)'' supply ''(0V)''.




Line 13: Line 20:
* bCurrent handling capacity 300 mAmps max.
* bCurrent handling capacity 300 mAmps max.
* Amplification (gain) greater than 125.
* Amplification (gain) greater than 125.
{{Transistor & IC Buyers Guide}}




[[Category:Secondary]]
[[Category:Secondary]]
[[Category:Electronics Components]]
[[Category:Electronics Components]]

Revision as of 11:24, 3 July 2016


Description

The BC108 Collector is connected to the positive (+ve) supply via the load. NB: If the load is inductive i.e. has coil windings such as a relay, solenoid or motor, then it is usual to connect a diode across it to prevent the Back EMF from damaging the transistor. (Cathode to supply).


Features and Applications

The input is connected to the Base via a limiting resistor (typically 1K). The Emitter is connected to the negative (-ve) supply (0V).


Uses: As current amplifiers and electronic switches, for example LED Drive Amplifiers, Relay Drive Amplifiers, Audio Amplifiers.


Data: Voltage between Collector and Emitter 3 - 20Volts max.

  • Power handling capacity 100 mWatts max.
  • bCurrent handling capacity 300 mAmps max.
  • Amplification (gain) greater than 125.


DT Online Buyers' Guide
Transistor selection NPN and PNP BC108 Transistor BC547B Transistor BFY51 Transistor Darlington Transistors 555 IC Timer 741 Operational Amplifier Quad 2-input NOR Gate 14 Pin Logic IC Quad 2-input NAND Gate 14-DIP Logic IC
Transistor selection NPN and PNP BC108 Transistor BC547B Transistor BFY51 Transistor Darlington Transistors 555 IC Timer 741 Operational Amplifier Quad 2-input NOR Gate 14 Pin Logic IC Quad 2-input NAND Gate 14-DIP Logic IC