SN74AUC2G00DCTRE4 Allicdata Electronics
Allicdata Part #:

SN74AUC2G00DCTRE4-ND

Manufacturer Part#:

SN74AUC2G00DCTRE4

Price: $ 0.18
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC GATE NAND 2CH 2-INP SM8
More Detail: NAND Gate IC 2 Channel SM8 (SSOP)
DataSheet: SN74AUC2G00DCTRE4 datasheetSN74AUC2G00DCTRE4 Datasheet/PDF
Quantity: 1000
3000 +: $ 0.16169
Stock 1000Can Ship Immediately
$ 0.18
Specifications
Current - Output High, Low: 9mA, 9mA
Base Part Number: 74AUC2G00
Package / Case: 8-LSSOP, 8-MSOP (0.110", 2.80mm Width)
Supplier Device Package: SM8 (SSOP)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C
Max Propagation Delay @ V, Max CL: 1.7ns @ 2.5V, 30pF
Logic Level - High: 1.7V
Logic Level - Low: 0 V ~ 0.7 V
Series: 74AUC
Current - Quiescent (Max): 10µA
Voltage - Supply: 0.8 V ~ 2.7 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 have been in use for many years, with their basic principles of binary logic being the same for decades. The SN74AUC2G00DCTRE4 is a new member of the logic-gates and inverters family, and one that is gaining more popularity due its versatile design, small size and excellent performance. In this article, we will discuss the SN74AUC2G00DCTRE4\'s applications and working principle, as well as its advantages over traditional logic-gates and inverters.

SN74AUC2G00DCTRE4 logic gate is a fast, high-performance, 2-channel inverter with both dual-level and CMOS outputs. It can be used to interface two different voltage levels, and can be used as a multiplexer for inter-signal selection. The device is capable of switching between two different logic levels (high and low) at a speed of over 600MHz, and is suitable for use with various logic systems, from TTL to CMOS. The device is also designed to minimise any cross-talk between the two channels, a common problem with traditional logic-gates and inverters. The device also has a few operating temperature ranges and is available in standard package sizes, making it suitable for a wide range of applications.

The SN74AUC2G00DCTRE4\'s working principle is simple: when a high logic level is applied to the input, the output will be low. Conversely, when a low logic level is applied to the input, the output will be high. This type of logic-gate can be used in bidirectional applications, where a high logic level is used to drive the output either high or low, depending on the input. It can also be used as an optically isolated driver, enabling the transfer of signals across optical barriers.

The SN74AUC2G00DCTRE4\'s inherent advantages over traditional logic-gates and inverters include its small size and high speed. The device requires less area (~2.5mm2) than many other logic gates and inverters, making it ideal for use in space constrained applications. The device also has low power consumption, typically only up to 21mA@3V, and is available in a wide array of package sizes and formats, making it well suited for use on multiple boards and other high-speed systems.

In addition to its small size and high-speed, the SN74AUC2G00DCTRE4 has several other advantages. For example, it has a high input impedance of typically 80MΩ and output impedance of typically 200Ω, allowing it to be used in a variety of digital circuits. The device also has a wide operating temperature range (-40 to +85℃) and is fully compatible with both TTL and CMOS devices, making it ideal for use in a wide range of systems. In addition, the device\'s low voltage drops and low propagation delay time (under 1ns typically) make it suitable for carrying out fast logic operations.

The SN74AUC2G00DCTRE4 logic gate and inverter is a versatile device with excellent performance, small size, low power consumption, and wide operating temperature range. This makes it well suited for use in a wide range of digital circuits and systems, such as CPU, memory and microprocessor systems; embedded systems; and digital switches. As such, it can be used for a variety of applications, including isolating signals across optical barriers, interfacing between two voltage levels, and driving multiple signals at high speed.

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

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