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MMBT3904LT1G Transistor: Equivalent, Pinout, Package [FAQ]

  • Contents

Description

The MMBT3904LT1G is a NPN silicon Bipolar Transistor, designed for use in linear, lower power surface mount and switching applications.

MMBT3904LT1G

MMBT3904LT1G

How does a transistor work?

Catalog

MMBT3904LT1G Description

MMBT3904LT1G Pinout

MMBT3904LT1G Features

MMBT3904LT1G Marking Diagram

MMBT3904LT1G CAD Models

MMBT3904LT1G Functional Equivalents

MMBT3904LT1G Package Outlines

MMBT3904LT1G Popularity by Region

MMBT3904LT1G Marketing Price Analysis

MMBT3904LT1G Manufacturer

Component Datasheet

FAQ

Ordering & Quantity


MMBT3904LT1G Pinout

MMBT3904LT1G Pinout


MMBT3904LT1G Features

  • These Devices are Pb−Free, Halogen Free/BFR Free and are RoHS Compliant
  • S Prefix for Automotive and Other Applications Requiring Unique Site and Control Change Requirements; AEC−Q101 Qualified and PPAP Capable

MMBT3904LT1G Marking Diagram

MMBT3904LT1G Marking Diagram


MMBT3904LT1G CAD Models

MMBT3904LT1G Part symbol

MMBT3904LT1G footprint

MMBT3904LT1G 3D model


MMBT3904LT1G Functional Equivalents

MMBT3904LT1G Functional Equivalents


MMBT3904LT1G Package Outlines

MMBT3904LT1G Package Outlines


MMBT3904LT1G Popularity by Region

MMBT3904LT1G Popularity by Region


MMBT3904LT1G Marketing Price Analysis

MMBT3904LT1G Marketing Price Analysis


MMBT3904LT1G 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

MMBT3904LT1G Datasheet


FAQ

  • What are Equivalents for MMBT3904LT1G transistor?

MMBT100, MMBT2222A, MMBT3904, MMBT3904L, MMBT3904LT1, MMBT3904LT3, MMBT3904LT3G, MMBT4401, MMBTA05, etc..

  • What is MMBT3904LT1G?

The MMBT3904LT1G is a NPN silicon Bipolar Transistor, designed for use in linear, lower power surface mount and switching applications.

  • What is a transistor?

A transistor is a semiconductor device used to amplify or switch electronic signals and electrical power. It is composed of semiconductor material usually with at least three terminals for connection to an external circuit.

  • What is PNP transistor?

A PNP transistor is a bipolar junction transistor constructed by sandwiching an N-type semiconductor between two P-type semiconductors. A PNP transistor has three terminals – a Collector (C), Emitter (E) and Base (B). The PNP transistor behaves like two PN junctions diodes connected back to back.

  • What does a transistor do?

A transistor, also known as a BJT (Bipolar Junction Transistor), is a current driven semiconductor device which can be used to control the flow of electric current in which a small amount of current in the Base lead controls a larger current between the Collector and Emitter.

  • How many types of transistor are there?

Transistors are basically classified into two types; they are Bipolar Junction Transistors (BJT) and Field Effect Transistors (FET). The BJTs are again classified into NPN and PNP transistors. The FET transistors are classified into JFET and MOSFET.

  • What is transistor diagram?

   

Diagram 'A' shows an NPN transistor which is often used as a type of switch. A small current or voltage at the base allows a larger voltage to flow through the other two leads (from the collector to the emitter).

The circuit shown in diagram B is based on an NPN transistor. When the switch is pressed a current passes through the resistor into the base of the transistor. The transistor then allows current to flow from the +9 volts to the 0vs, and the lamp comes on.

The transistor has to receive a voltage at its ‘base’ and until this happens the lamp does not light.

  • What are the two main appilcations of transistor?

Transistors are commonly used in digital circuits as electronic switches which can be either in an "on" or "off" state, both for high-power applications such as switched-mode power supplies and for low-power applications such as logic gates.


 

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