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LM339 – Step by step tutorial on Introduction to LM339

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Introduction to LM339

For upon |Hello everyone! I hope you all will be fine and having fun. Today, I am going to share my knowledge about Introduction to LM339. LM339 belongs to the family of devices having 4 independent voltage comparators. Each comparator is designed in such a way that it is capable of operating from a single power source over a wide range of power supplies. It can also operate for split power supplies. There is a unique characteristic of comparators, Input Common-Mode Voltage Range (ICMR) includes a ground even when it is operating from a single power supply voltage.

LM 339 is a comparator IC having four built-in comparators. The basic purpose of a comparator is to rotate the signal between analog and digital domains. At its input terminal, it compares the two different input voltages applied gives digital output, and indicates the larger input applied at the input terminal.

Note: You should also read about other ICs of the same family (LM3xx):

  • LM-311
  • LM-317
  • LM-318
  • LM-324
  • LM-324n
  • LM-335
  • LM-339
  • LM-348
  • LM-358
  • LM-380
  • LM-386
  • LM-393

Introduction to LM339

LM 339 is a comparator IC having 4 built-in comparators. A comparator rotates a signal between the digital and analog domains. First of all, it compares the 2 different inputs applied at the input terminal and then gives the output in digital form to indicate which of the inputs applied has a larger amplitude. It has a lot of real-life applications e.g. basic comparator, driving CMOS, driving TTL, low-frequency op-amp, Transducer amplifier, etc. Further details about the particular IC will be given later in this tutorial.

1. LM339 Pinout
  • LM 339 has fourteen (14) pins in total including four inverting input pins, four non-inverting pins, four output pins, voltage, and ground pins.
  • All of the pins along with their sequence number are shown in the table given below.

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2. LM339 Pins Configuration
  • The properly labeled LM 339 pin configuration diagram is shown in the figure below, for a better understanding of the reader (especially the students).

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3. LM339 Packages
  • LM 339 has different packages including LM-339DG, LM-339NG, etc.
  • A few of the packages are given in the table shown below.

Introduction to LM339, getting started with LM339, how to use LM339 for the first time, how to start with L339, LM339 proteus, Proteus LM339, LM339 Proteus diagram

4. LM339 Features
  • There are several different features associated with LM 339.
  • A few of the major features including low supply current, low input bias current, low input offset current, low output saturation voltage, etc. are taken into account.
  • The major features along with their values and System International (SI) units are provided in the table shown below.

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5. LM339 Ratings
  • The current, voltage, and power ratings associated with LM 339 are given along with their typical values and SI units, in the table shown below.

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LM339 Applications

There is a wide range of applications associated with the LM 339 comparator IC. A few of the major applications along with their designed circuits are explained below.

Basic comparator
  • The circuit designed for the Basic Comparator is shown in the figure below.
  • Introduction to LM339, getting started with LM339, how to use LM339 for the first time, how to start with L339, LM339 proteus, Proteus LM339, LM339 Proteus diagramYou can see from the above figure that the basic comparator consists of LM 339 with two different reference input voltages and a 15 K resistor.
Driving CMOS
  • The circuit designed for Driving CMOS is in the figure below.

Introduction to LM339, getting started with LM339, how to use LM339 for the first time, how to start with L339, LM339 proteus, Proteus LM339, LM339 Proteus diagram

  • You can see from the above figure that the driving CMOS consists of LM 339 with two different reference input voltages and a 100K resistor.
Low-frequency op-amp
  • The circuit designed for the Low-Frequency Op-amp is in the figure below.

Introduction to LM339, getting started with LM339, how to use LM339 for the first time, how to start with L339, LM339 proteus, Proteus LM339, LM339 Proteus diagram

  • You can see from the above figure that the Low-Frequency Op-amp consists of LM 339 with two different reference input voltages, a 15K resistor and a 100K resistor having a voltage gain of around 100.
Transducer Amplifier

Introduction to LM339, getting started with LM339, how to use LM339 for the first time, how to start with L339, LM339 proteus, Proteus LM339, LM339 Proteus diagram

  • You can see from the above figure that the Transducer amplifier consists of LM 339 with two different reference input voltages, a 3K resistor, a 20M resistor, and two 10K resistors.
Zero crossing detector
  • The circuit designed for the Zero Crossing Detector is in the figure below.

Introduction to LM339, getting started with LM339, how to use LM339 for the first time, how to start with L339, LM339 proteus, Proteus LM339, LM339 Proteus diagram

  • You can see from the above figure that the Transducer amplifier consists of LM 339 with two different reference input voltages, a 10K resistor, a 20M resistor, three 5.1K resistors, two 100K resistors, and a 1N4148 diode.
  • Limit comparator.
  • Crystal-controlled oscillator.
  • Negative reference comparator.
  • Driving TTL

So, that is all from the tutorial Introduction to LM339. I hope you enjoyed this tutorial. If you are facing any kind of problem, you can freely ask me in the comments anytime you want without even feeling any sort of hesitation. I will try my level best to solve your issues properly, if possible. Moreover, our team is also available 24/7 for your guidance. I will explore different IC’s and transistors in my upcoming tutorial and will surely share them with you as well. So, till then Take Care 🙂

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