74AXP1G125GNH Allicdata Electronics

74AXP1G125GNH Integrated Circuits (ICs)

Allicdata Part #:

1727-1841-2-ND

Manufacturer Part#:

74AXP1G125GNH

Price: $ 0.16
Product Category:

Integrated Circuits (ICs)

Manufacturer: Nexperia USA Inc.
Short Description: IC BUF NON-INVERT 2.75V 6XSON
More Detail: Buffer, Non-Inverting 1 Element 1 Bit per Element ...
DataSheet: 74AXP1G125GNH datasheet74AXP1G125GNH Datasheet/PDF
Quantity: 5000
5000 +: $ 0.14629
10000 +: $ 0.14087
25000 +: $ 0.13545
Stock 5000Can Ship Immediately
$ 0.16
Specifications
Series: 74AXP
Packaging: Tape & Reel (TR) 
Part Status: Active
Logic Type: Buffer, Non-Inverting
Number of Elements: 1
Number of Bits per Element: 1
Input Type: --
Output Type: 3-State
Current - Output High, Low: 8mA, 8mA
Voltage - Supply: 0.7 V ~ 2.75 V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 6-XFDFN
Supplier Device Package: 6-XSON, SOT1115 (0.9x1)
Base Part Number: 74AXP1G125
Description

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74AXP1G125GNH is a low-power, single-channel logic buffer, designed by NEXPERIA. This type of logic buffer is used in various devices, usually as a combination of inputs and outputs, data flow and reception, and other tasks that require manual or automatic control. It is also classified as a logic device, and is primarily used to control and drive signals between different systems and subsystems. In addition, it can be used as an interconnect between two distinct and different logic systems, resulting in a combination of two structures, and in doing so, provide improved data handling and lower power consumption.

The 74AXP1G125GNH is primarily used in high-speed systems where power consumption and data throughput matter, as well as in environments with strict requirements for noise, temperature and humidity control. In these systems, 74AXP1G125GNH can provide high-speed interconnect solutions, created especially for various application requirements. One solution is EMI Shielding, which is a combination of high-frequency shielding and low-frequency filtering.

The core logic device that is part of the 74AXP1G125GNH is a single-channel, voltage- and temperature-controlled logic buffer with two inputs, two outputs, and an enable/disable control signal. This logic buffer is an integrated circuit that amplifies and sends out digital signals from the input gate to the output gate. Depending on the voltage level and the temperature of the device, the output gate changes from high to low and vice versa.

The 74AXP1G125GNH buffer is also designed to provide a higher speed than other logic buffers on the market. This device is designed to operate with a maximum input frequency of 200 MHz, and has a total propagation delay of 11 ns (based on a 3.3 V power supply). Without the need of external components, this device can manage data transfer rates of up to 1.25 Gbps, allowing this single-channel buffer to be used in high-speed applications.

The working principle of the 74AXP1G125GNH is to pass the initial digital, high or low voltage signal from the input gate to the output gate, with the help of a pull-up or pull-down resistor. This logic buffer also has an internal circuitry to manage the voltage and temperature fluctuations of the device. This internal circuitry performs a complementary action that leads the output signal from low-low to high-low.

The application field of 74AXP1G125GNH includes high-speed communication interfaces, Ethernet switches and bridges, digital processors, and storage systems. This logic buffer can be used in many data transfer and signal transmission applications, providing improved signal characteristics and performance.

In conclusion, 74AXP1G125GNH is a highly efficient and high-speed single-channel logic buffer. This device is integrated with a voltage- and temperature-controlled logic buffer, and is designed to give increased signal integrity and stability, while ensuring low power requirements. Its application field includes high-speed communication interfaces, Ethernet switches, bridges, digital processors and storage systems, and its working principle relies on a pull-up or pull-down resistor to pass the signal from the input to the output.

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

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