74HCT14N,652 Allicdata Electronics
Allicdata Part #:

568-1516-5-ND

Manufacturer Part#:

74HCT14N,652

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC INVERTER SCHMITT 6CH 14DIP
More Detail: Inverter IC 6 Channel Schmitt Trigger 14-DIP
DataSheet: 74HCT14N,652 datasheet74HCT14N,652 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Output High, Low: 4mA, 4mA
Base Part Number: 74HCT14
Package / Case: 14-DIP (0.300", 7.62mm)
Supplier Device Package: 14-DIP
Mounting Type: Through Hole
Operating Temperature: -40°C ~ 125°C
Max Propagation Delay @ V, Max CL: 34ns @ 4.5V, 50pF
Logic Level - High: 1.9 V ~ 2.1 V
Logic Level - Low: 0.5 V ~ 0.6 V
Series: 74HCT
Current - Quiescent (Max): 2µA
Voltage - Supply: 4.5 V ~ 5.5 V
Features: Schmitt Trigger
Number of Inputs: 6
Number of Circuits: 6
Logic Type: Inverter
Part Status: Obsolete
Packaging: Tube 
Description

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Logic gates and inverters are used to perform logical operations and control the flow of signals in electrical circuits. They are essential components in many electronic systems and can be used to control the flow of power, as well as the functioning of other components. In order to understand the functioning of logic gates and inverters, it is important to understand the application field and working principle of the 74HCT14N,652.

The 74HCT14N,652 is a small component that creates logic gates and inversions. It is a quad-input NAND gate, referred to as low-voltage transistor-transistor logic (LVTTL) NAND gate. It is designed to operate from one to six volts and it is organized in four pairs of two input NAND Gates with two separate output pins. It is mostly used for digital logic circuit applications including counters, encoders, multiplexers, logic networks, and data storage elements.

The 74HCT14N,652 has two modes of operation: high level logic (HL) and low level logic (LL). In HL mode, the inputs are high when both inputs are active and low when either the inputs are zero or one input is high and the other input is undefined. In LL mode, the inputs must both be low or one input high and the other input low in order to output a high signal. The output of the 74HCT14N,652 is determined by the combination of the two inputs, i.e. if both inputs are low then the output will be high, else if either either input is high then the output will be low.

The 74HCT14N,652 is used in a variety of applications, such as logic networks, memory controllers, and audio processing. It is also common in automotive electronics, such as airbags, wipers, and airbag control systems. Additionally, it is employed in digital logic circuits for data transmission, for which its two logic states (high and low) can be used to represent binary data bits. Furthermore, it is an essential component of many computer architectures where it is inserted in order to perform Boolean logic operations between two binary input signals.

It can also be used as a general purpose NAND gate. The 74HCT14N,652 has a performance similar to the 7400 series ICs and other TTL logic devices, but its power consumption is much lower than TTL logic chips. The two NAND gates have separate output pins, which makes them ideal for forming basic logic functions. Furthermore, each of the two input pins can be configured as either an open-drain or active-high input, allowing the user to select the desired function.

The 74HCT14N,652 is a versatile component that can be used to solve a variety of logic problems. It can be configured to provide a variety of logic operations, such as Boolean, XOR, AND, and OR. Furthermore, it can be used to implement basic arithmetic operations such as addition, subtraction and multiplication. With the low voltage operation and minimal power consumption, the 74HCT14N,652 is an ideal component for devices demanding low power consumption, such as mobile phones and laptops.

In conclusion, the 74HCT14N,652 is a low-voltage logic component that is used for creating digital logic circuits. It has two logic states (high and low) and it can be used for logic operations, data transmission and for creating general purpose logic functions. It is usually employed in automotive electronics, digital logic circuit applications and computer architectures. Its low power consumption, versatility and performance make it suitable for applications demanding minimal power consumption.

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

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