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2N3906 PNP Transistor: Pinout, Datasheet, Equivalent [Video]

  • Contents

The 2N3906 is a widely used PNP bipolar junction transistor meant for general-purpose low-power amplifying or switching applications. It's designed for low current and power and medium voltage, and can be operated at moderately high speeds.

 

This blog mostly introduces the PNP transistor 2N3906 's pinout, equivalents, application circuits, etc.

 

 2N3906 PNP BJT breadbard switch circuit build step by step

Catalog

2N3906 Pin Configuration

2N3906 Features

2N3906 Applications

2N3906 Package

2N3906 Circuits

How Does 2N3906 Work in the PNP Circuit

Where to Use PNP Transistor 2N3906

How to Use PNP Transistor 2N3906

2N3906 Functional Equivalents

2N3906 Popularity by Region

2N3906 Market Price Analysis

2N3906 Manufacturer

Component Datasheet

FAQ


2N3906 Pin Configuration

PNP Transistor 2N3906 Pinout

Pin Number

Pin Name

Description

1

Emitter

Current Drains out through emitter

2

Base

Controls the biasing of transistor

3

Collector

Current flows in through collector


2N3906 Features

  • Bi-Polar PNP Transistor
  • DC Current Gain (hFE) is 300 maximum
  • Continuous Collector current  (IC) is 200mA
  • Emitter Base Voltage (VBE) is 5V
  • Base Current(IB) is 5mA maximum
  • Collector Emitter Voltage (VCE) is 40V
  • Collector Base Voltage (VCB) is 40V
  • Available in  To-92  Package

2N3906 Applications

  • Used to switch high voltage low current loads
  • Optimal for loads with high peak voltage upto 40V
  • It is used in the various switching applications
  • Used in inverter and converter circuits
  • Used for making siren or dual Led or Lamp flasher
  • Can be used in Darlington Pair

2N3906 Package

2N3906 Package [Straight lead]

2N3906 Package [Bent lead]


2N3906 Circuits

  • Delay and Rise Time Equivalent Test Circuit

2N3906 Delay and Rise Time Equivalent Test Circuit

  •  Storage and Fall Time Equivalent Test Circuit

 2N3906 Storage and Fall Time Equivalent Test Circuit


How Does 2N3906 Work in the PNP Circuit

 

Below it's the circuit for connecting a PNP transistor, which 2N3906 functions as a switch or an amplifier.

 

So +3V is connected to the emitter of the transistor. And a normally open pushbutton is connected to the base of the transistor. Unless it is pressed, normally no current flows into the base of the transistor. Thus, it is fully on when not pressed. Therefore, the LED connected to the collector of the PNP transistor will be on. However, if the push button is pressed, the transistor will turn off and the LED will shut off. This is because the base voltage will be greater than the emitter voltage, which blocks current flow.

 

2N3906 PNP CircuitAnd this is how a basic PNP transistor circuit works.


Where to Use PNP Transistor 2N3906

 

The 2N3906 is a commonly used PNP transistor. It is very much similar to the bc557 transistor except that it has a high collector to emitter voltage and hence high voltage loads can be toggled. This transistor has only a gain value of 300, hence not suitable for amplifier circuits.

 

So if you looking for a PNP transistor that could switch high voltage loads within 0.2A then this 2N3906 transistor might be the right choice for you.


How to Use PNP Transistor 2N3906

 

The 2N3906 transistor is commonly used as a switching device. When used as a switch, it can be operated in the saturation region and cut-off region. In the PNP transistor, by default, it’s in ON state, but not to be said perfectly ON until the base pin is not grounded. If we provide ground to the base pin then the transistor will be in reverse biased and said to be turned ON. If supply is provided to the base pin it stops conducting current between emitter and collector and is said to be in an OFF state. For the protection of the transistor, a resistance was added in series with it. For finding the value of that resistor you can use the formula: RB = VBE / IB

 

Where, the value of VBE will be 5v for this transistor. The maximum value of providing base current is 200mA. So, from that you can find the value of resistance to be added in series with it. In the below circuit the base emitter voltage  (VBE) is 0V (Grounded) hence the PNP transistor conducts and the motor rotates. If made high (5V) the motor will stop rotation. Note that for PNP transistors the loads should be connected in the collector side as shown below. Also, note that the load current should be less than 200mA (here 140ma).

 

2N3906 Application Circuit


2N3906 Functional Equivalents

2N3906 Functional Equivalents


2N3906 Popularity by Region

2N3906 Popularity by Region


2N3906 Market Price Analysis

2N3906 Market Price Analysis


2N3906 Manufacturer

ON Semiconductor (Nasdaq: ON) is driving energy efficient innovations, empowering customers to reduce global energy use. The company offers a comprehensive portfolio of energy efficient power and signal management, logic, discrete and custom solutions to help design engineers solve their unique design challenges in automotive, communications, computing, consumer, industrial, LED lighting, medical, military/aerospace and power supply applications.  ON Semiconductor operates a responsive, reliable, world-class supply chain and quality program, and a network of manufacturing facilities, sales offices and design centers in key markets throughout North America, Europe, and the Asia Pacific regions.


Component Datasheet

PNP Transistor 2N3906 Datasheet


FAQ

What type of transistor is the 2N3906?

PNP bipolar junction transistor

 

At what speeds can the 2N3906 be operated?

Moderately high speeds

 

What does 2N3906 function as?

Switch or an amplifier

 

What does the 2N3906 transistor have?

High collector to emitter voltage

 

What is the value of VBE for the 2N3906 transistor?

5v

 

Where can the 2N3906 transistor be operated?

Saturation region and cut-off region

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