74AUP3G14GTX Allicdata Electronics
Allicdata Part #:

1727-7908-2-ND

Manufacturer Part#:

74AUP3G14GTX

Price: $ 0.13
Product Category:

Integrated Circuits (ICs)

Manufacturer: Nexperia USA Inc.
Short Description: IC BUFFER INVERT 3.6V 8XSON
More Detail: Inverter IC 3 Channel Schmitt Trigger 8-XSON, SOT8...
DataSheet: 74AUP3G14GTX datasheet74AUP3G14GTX Datasheet/PDF
Quantity: 5000
5000 +: $ 0.12058
10000 +: $ 0.11227
25000 +: $ 0.10645
50000 +: $ 0.10395
Stock 5000Can Ship Immediately
$ 0.13
Specifications
Current - Quiescent (Max): 500nA
Package / Case: 8-XFDFN
Supplier Device Package: 8-XSON, SOT833-1 (1.95x1)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C (TA)
Max Propagation Delay @ V, Max CL: 6.1ns @ 3.3V, 30pF
Logic Level - High: 0.6 V ~ 2.29 V
Logic Level - Low: 0.1 V ~ 0.88 V
Current - Output High, Low: 4mA, 4mA
Series: 74AUP
Voltage - Supply: 0.8 V ~ 3.6 V
Features: Schmitt Trigger
Number of Inputs: 3
Number of Circuits: 3
Logic Type: Inverter
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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The 74AUP3G14GTX is a type of logic gate, more specifically a three-stage, low power, high-speed CMOS logic buffer inverter designed for use in modern computing systems. It features a high-speed input to output skew of less than 10.5ns and an output rise and fall time of less than 15.5ns under normal operating conditions, making it one of the fastest in the family of AUP3G14GTX logic gates. Additionally, it consumes extremely low-power due to its CMOS (complementary metal-oxide semiconductor) construction and is optimized for use in integrated digital systems, making it one of the most cost- and energy-conscious solutions for logic buffer needs.

The 74AUP3G14GTX is primarily used in digital systems for logic level conversion, buffering, and signal synchronization, owing to its fast switching speeds and low power consumption. It is most often found in embedded digital controllers and microcontrollers, where low power usage and fast switching times are essential for highly efficient operation. Additionally, with its low-power CMOS construction design, it is ideal for pulse-width modulation (PWM) applications where fast input-output responses are required.

The 74AUP3G14GTX has a low-level operating voltage of 0.6V and a high-level operating voltage of 2.6V, with a typical power consumption of only 1.1 microamperes per gate. This makes it ideal for use in low-voltage signal applications, such as smart cards and portable electronic devices, as it can operate with a wide range of supply voltages. Additionally, its low-level static threshold voltage (Vt) ensures fast operating speeds and makes it an ideal choice for high-performance logic applications.

The working principle of the 74AUP3G14GTX is simple; when the input signal is low or false, the output is high, and when the input signal is high or true, the output is low. The exact complementary signal result is due to the fact that the 74AUP3G14GTX is a buffer inverter, i.e. the output signal is always the opposite of the input signal. It is also worth noting that the 74AUP3G14GTX features a three-stage logic buffer, meaning that the signal flows through three gates before arriving at the output.

The 74AUP3G14GTX also features built-in pull-up and pull-down resistors which help maintain signal integrity by ensuring that the signal speed is constant and that the output is held in a certain state when there is no external input voltage being applied. Additionally, it provides a VCC protection function, meaning that it can protect the VCC pin from being wrongly connected or driven with input voltages over 2.6V/3.6V. This ensures that the gate is not damaged when it is operated in adverse conditions.

In summary, the 74AUP3G14GTX is a three-stage, low power, high-speed CMOS logic buffer inverter designed for use in modern computing systems. Its high-speed input-output skew, low power consumption, wide range of operational voltage and built-in resistors make it ideal for low-voltage signal applications, such as smart cards and portable electronic devices, and as such is widely used in embedded digital controllers and microcontrollers. Its working principle is based on the fact that the output is always the opposite of the input signal, and its three-stage logic buffer ensures that the signal flows through three gates before arriving at the output.

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

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