Skip to main content

Transistors


Transistor is a semiconductor device used to amplify and switch electronic signals and electrical power. It is composed of semiconductor material with at least three terminals. Transistors are the building blocks of the digital revolution.

They consist of three terminals namely Emitter(E), Base(B) and Collector(C). An arrow in the transistor is commonly used to represent the direction of the current towards the ground and is always on the emitter leg.

The two basic types of transistors are
  • NPN
  • PNP

 

Figure 1: NPN and PNP Transistor Symbols


Arrow on the emitter leg facing outwards represents NPN transistor and facing inwards represents PNP transistor.

NPN Transistor:
NPN Transistor acts like a normally open push button but has no moving parts.Only when the base of the transistor is provided with the necessary voltage and current it turns ON the transistor else it remains in OFF state. The base acts like a control valve to control the flow. It behaves as a electronic switch.

PNP Transistor:
PNP Transistor acts like a normally closed push button. Only when the base of the transistor is provided with the necessary voltage and current it turns OFF the transistor else it remains in ON state. Its just the opposite of the NPN transistor

Comments

Popular posts from this blog

NE566 Function Generator Circuit Diagram

The NE566 Function Generator is a Voltage-Controlled Oscillator of exceptional linearity with buf fered square wave and triangle wave outputs. The frequency of oscillation is determined by an external resistor and capacitor and the voltage applied to the control terminal. The Oscillator CAN be programmed over a ten-to-one frequency range by proper selection of an external resistance and modulated over a ten-to-one range by the control voltage, with exceptional linearity.  FMAX = 1 MHz     WIDE 1000:1 Continuous Sweep Possible  NE566 Function Generator Circuit Diagram Pdf Datasheet  Sourced by : Circuitsstream

TDA2030 complete tone control

At this time I present a series of amplifiers that use IC TDA2030, but this series is equipped with a tone control. Tone controls include Bass, Treebel, and Volume. Power amplifier and tone control has been put together in a single PCB. As well as its power supply circuit was also used as one with the power amp, and tone control. Making it easier in the installation and will look neat. Schematics Layout PCB PCB design This amplifier is a mono amplifier type, can be modif for guitar amplifiers. If not coupled amplifier (mic preamp) then you must deactivated potensio treble and bass, why? because if not using a mic preamp and still maintain potensio treble and bass sound input (input) from the guitar will not or the maximum discharge is not tight on the speakers. So you must deactivated a way to decide which directly connected capacitor with the tone control circuit, and capacitor were connected directly to potensio volume and input jack.

Simple Preamplifier and High to Low impedance Converter Circuit Diagram

This is the Simple Preamplifier and High to Low impedance Converter Circuit Diagram. This circuit matches the very high impedance of ceramic cartridges, unity gain, and low impedance output.  Simple Preamplifier and High to Low impedance Converter Circuit Diagram By `loading` the cartridge with a 2M2 input resistance, the cartridge characteristics are such as to quite closely compensate for the RIAA recording curve. The output from this preamp may be fed to a level pot for mixing. Sourced By: Circuitsproject