74LVC2G00HD4-7 Allicdata Electronics
Allicdata Part #:

74LVC2G00HD4-7DITR-ND

Manufacturer Part#:

74LVC2G00HD4-7

Price: $ 0.05
Product Category:

Integrated Circuits (ICs)

Manufacturer: Diodes Incorporated
Short Description: IC GATE NAND 2CH 2-INP DFN2010-8
More Detail: NAND Gate IC 2 Channel X2-DFN2010-8
DataSheet: 74LVC2G00HD4-7 datasheet74LVC2G00HD4-7 Datasheet/PDF
Quantity: 1000
5000 +: $ 0.04717
10000 +: $ 0.04193
25000 +: $ 0.03931
50000 +: $ 0.03486
125000 +: $ 0.03355
Stock 1000Can Ship Immediately
$ 0.05
Specifications
Current - Quiescent (Max): 40µA
Package / Case: 8-XFDFN
Supplier Device Package: X2-DFN2010-8
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C
Max Propagation Delay @ V, Max CL: 4.2ns @ 5V, 50pF
Logic Level - High: --
Logic Level - Low: --
Current - Output High, Low: 32mA, 32mA
Series: 74LVC
Voltage - Supply: 1.65 V ~ 5.5 V
Features: --
Number of Inputs: 2
Number of Circuits: 2
Logic Type: NAND Gate
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Logic gates and inverters are two of the most important and versatile components of any digital electronics system. 74LVC2G00HD4-7 are among the most useful types, and their application fields and working principles are essential to understand when selecting them for a system.

74LVC2G00HD4-7 are dual, low-voltage CMOS NOR gates. They are specifically designed for low-power, low-voltage applications, and are intended for use with a supply voltage from 2.3V to 5.5V. As such, they are a great choice for applications that require low power consumption, as well as those that utilize supplies connected to a wide variety of sources.

The 74LVC2G00HD4-7 gate is composed of two independent two-input NOR gates. Each gate has one active-low enable input and two active-high data inputs. This design allows for fast enable times, as well as the ability to easily configure the gate for three-state output or low-impedance output.

The main function of the 74LVC2G00HD4-7 gates is to perform logic operations on the data inputs and produce a single output. This output is determined by the logic of the inputs, which is typically simply set to 0 or 1, but can be a combination of both. The way the output is determined depends on the specific logic operation being performed, and is usually called a truth table.

The working principles of the 74LVC2G00HD4-7 gates are based on the concept of complementary metal oxide semiconductor (CMOS). This technology uses two types of transistors (PMOS and NMOS) that are connected in series. The output voltage is determined by the voltages of the inputs, and the difference between them. If the difference is small, then the output is low; if the difference is large, then the output is high.

The 74LVC2G00HD4-7 applications range from general digital logic in consumer electronics to more advanced digital design and embedded control solutions. They have been used in a variety of systems, from controlling digital clocks and calculators, to controlling the electrical circuits in cars and remote-controlled drones.

In addition to their ability to perform basic logic operations, 74LVC2G00HD4-7 gates are also often used for a variety of other tasks in digital circuits. They can be used as inverters, which allow logic signals to be inverted, changing a zero to a one or vice versa. They can also be used as logic buffers, which essentially act as a voltage level shifting device. They can also be used as logic shifters, which allow logic signals to be shifted between two logic levels.

In summary, the 74LVC2G00HD4-7 is a dual, low-voltage CMOS NOR gate. It is specifically designed for low-power, low-voltage applications, and is used in a variety of digital systems. The main functions of the 74LVC2G00HD4-7 are to perform logic operations and produce a single output. It can also be used as an inverter, logic buffer, or logic shifter. These capabilities make the 74LVC2G00HD4-7 an extremely versatile and useful component in any digital electronics system.

The specific data is subject to PDF, and the above content is for reference

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