The diode representation is a good place to start, but it's far from accurate. The diode connecting base to emitter is the important one here it matches the direction of the arrow on the schematic symbol, and shows you which way current is intended to flow through the transistor. By narrowing our focus down - getting a solid understanding of the NPN - it'll be easier to understand the PNP (or MOSFETS, even) by comparing how it differs from the NPN. We'll turn our focus even sharper by limiting our early discussion to the NPN. Digging even deeper into transistor types, there are actually two versions of the BJT: NPN and PNP. In this tutorial we'll focus on the BJT, because it's slightly easier to understand. ![]() There are two types of basic transistor out there: bi-polar junction (BJT) and metal-oxide field-effect (MOSFET). Applications II: Amplifiers - More application circuits, this time showing how transistors are used to amplify voltage or current.Applications I: Switches - Application circuits showing how transistors are used as electronically controlled switches.Operation Modes - An overview of the four possible operating modes of a transistor. ![]()
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