TLC339IDG4 Allicdata Electronics
Allicdata Part #:

TLC339IDG4-ND

Manufacturer Part#:

TLC339IDG4

Price: $ 0.78
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC DIFF COMPARATOR QUAD 14-SOIC
More Detail: Comparator General Purpose CMOS, Open-Drain 14-SOI...
DataSheet: TLC339IDG4 datasheetTLC339IDG4 Datasheet/PDF
Quantity: 1000
450 +: $ 0.70812
Stock 1000Can Ship Immediately
$ 0.78
Specifications
Current - Output (Typ): 20mA
Base Part Number: TLC339
Supplier Device Package: 14-SOIC
Mounting Type: Surface Mount
Package / Case: 14-SOIC (0.154", 3.90mm Width)
Operating Temperature: -40°C ~ 85°C
Hysteresis: --
Propagation Delay (Max): 4.5µs
CMRR, PSRR (Typ): 84dB CMRR
Current - Quiescent (Max): 125µA
Series: LinCMOS™
Current - Input Bias (Max): 5pA @ 5V
Voltage - Input Offset (Max): 5mV @ 10V
Voltage - Supply, Single/Dual (±): 3 V ~ 16 V
Output Type: CMOS, Open-Drain
Number of Elements: 4
Type: General Purpose
Part Status: Active
Packaging: Tube 
Description

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Linear - ComparatorsTLC339IDG4 is a specific type of comparator designed to measure one voltage relative to another to determine which is the higher or lower voltage. It is commonly used in the field of linear circuits, allowing the user to measure the input and output signals and compare the differences in voltages. This can be used for such purposes as sawtooth waveform generation and active filters, as well as a number of other applications.The name TLC339IDG4 stands for “triple line comparator” and it is made up of three chips, each with its own comparator, to provide for better accuracy and reliability. It works by having three separate pairs of inputs, so the chip can measure three different voltages and make a comparison to determine the higher or lower one.The first input is called the reference input, which is fed from a stable voltage source and serves as the reference point for all other measurements. The second and third inputs are called the comparison inputs, which are fed from the voltages being compared to the reference. When both comparison inputs exceed the voltage of the reference input, the output of the comparator is said to be “HIGH” indicating that the comparison inputs were higher than the reference input. Conversely, when both comparison inputs are lower than the reference input, the output of the comparator is said to be “LOW” indicating that the comparison inputs were lower than the reference input. TLC339IDG4 comparators are typically used in two different types of applications:First, they are used to measure analog signals, such as a continuous voltage, and compare them to a known reference voltage. This is often done for such purposes as accurately measuring the voltage across a load, or for tracking changes in the incoming signal from a digital source, such as a microphone.The second type of application involves trigger detection and timed pulse counting. In this case, the chip is configured to measure the voltage of an incoming signal and compare it to a pre-determined voltage or signal level. When the incoming signals exceeds the threshold, the output of the comparator is triggered and the processor takes appropriate action.TLC339IDG4 comparators also offer advantages in applications involving noise cancellation, signal stabilization and signal discrimination. This is achieved by using two separate inputs to compare and identify the signal most accurately. The comparator then determines which signal is the “true” one and relays the information back to the processor.In addition to these applications, TLC339IDG4 comparators are also widely used in the field of analog-to-digital conversion. This is because the chip is able to accurately and quickly measure analog signals and convert them into digital signals for use in digital applications. This can be used to improve the accuracy of an analog-to-digital converter, or to create special effects such as audio noise reduction.TLC339IDG4 comparators are widely used due to their wide range of applications and relative low cost. They are available in a variety of packages and pin configurations, making them easy to fit into any design. Their accuracy and stability are generally considered to be good, making them a reliable component for use in many different types of circuit designs.

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