SN74LV00ARGYR Allicdata Electronics

SN74LV00ARGYR Integrated Circuits (ICs)

Allicdata Part #:

296-13927-2-ND

Manufacturer Part#:

SN74LV00ARGYR

Price: $ 0.10
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC GATE NAND 4CH 2-INP 14VQFN
More Detail: NAND Gate IC 4 Channel 14-VQFN (3.5x3.5)
DataSheet: SN74LV00ARGYR datasheetSN74LV00ARGYR Datasheet/PDF
Quantity: 1000
3000 +: $ 0.08836
6000 +: $ 0.08300
15000 +: $ 0.07765
Stock 1000Can Ship Immediately
$ 0.1
Specifications
Current - Output High, Low: 12mA, 12mA
Base Part Number: 74LV00
Package / Case: 14-VFQFN Exposed Pad
Supplier Device Package: 14-VQFN (3.5x3.5)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C
Max Propagation Delay @ V, Max CL: 7.5ns @ 5V, 50pF
Logic Level - High: 1.5V
Logic Level - Low: 0.5V
Series: 74LV
Current - Quiescent (Max): 20µA
Voltage - Supply: 2 V ~ 5.5 V
Features: --
Number of Inputs: 2
Number of Circuits: 4
Logic Type: NAND Gate
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Logic gates and inverters are computer components that perform logical and arithmetic operations on a limited number of inputs and produce a single output based on the input data. The SN74LV00ARGYR is one such logic gate and inverter that is used in a wide variety of applications, from simple logic functions to complex control systems. This article will explore the SN74LV00ARGYR\'s application field and working principle.

The SN74LV00ARGYR is a four-input quadruple 2-input NAND gate, which means that it has four inputs and one output. This device is suitable for a wide range of applications, especially in low power or high speed operation and electronic gaming systems. It is designed to operate with a supply voltage range of 2 V to 6 V, and can provide up to 20 mA of output current. By using the SN74LV00ARGYR, designers can reduce the number of components needed for a design.

The SN74LV00ARGYR can be used for various logic functions such as Boolean operations, multiplexing, and parity/bit modification. It is also ideal for generating clock signals, implementing multiple-input can latches, and creating down-counter logic. Moreover, the device can be used for generating complex control signals, such as interrupt enable/disable signals, programmable reset signals, and watchdog timer reset signals. Additionally, it is used for implementing time delay circuits, data selectors/multiplexers, signal conditioning, and single-bit calculation.

The SN74LV00ARGYR incorporates Schmitt trigger NAND gates, which offer low-threshold input levels. This improved input signal stability helps to reduce external signal conditioning circuitry. The device features built-in output protection circuits, which can protect connected devices from any voltage surge. It also has active-low inputs and outputs, which helps to reduce electrostatic discharge (ESD) susceptibility. In addition, the device is designed with a low-power, low-saturation, and low-leakage-current design, which helps to conserve energy.

In terms of its working principle, the SN74LV00ARGYR incorporates both NAND and NOR gates. A NAND gate operates on the principle of Boolean logic and performs the logical operation of AND on its inputs. When both its inputs are \'high\' it generates the output as \'low\'. In contrast, a NOR gate operates on the principle of Boolean logic and performs the logical operation of OR on its inputs. When both its inputs are \'low\' it generates the output as \'high\'. Therefore, when the inputs of a NAND gate and a NOR gate are connected, they perform the inverse of each other - NAND outputs \'low\' when NOR outputs \'high\' and vice versa. This is how the SN74LV00ARGYR behaves when it operates as a logic invertor gate.

The SN74LV00ARGYR is an efficient and powerful logic invertor gate and is used in a variety of applications, from simple logic to complex control systems. It is designed to operate on a wide range of input voltages, and its built-in output protection circuits offer protection against voltage surges. Additionally, its low-power, low-saturation, and low-leakage-current design make it an excellent choice for designers looking for efficient power conservation. Finally, its Schmitt trigger NAND Gates provide improved input signal stability and reduced external signal conditioning circuitry.

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

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