SN74LVC1G125DRYR Allicdata Electronics
Allicdata Part #:

296-21816-2-ND

Manufacturer Part#:

SN74LVC1G125DRYR

Price: $ 0.08
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC BUFFER NON-INVERT 5.5V 6SON
More Detail: Buffer, Non-Inverting 1 Element 1 Bit per Element ...
DataSheet: SN74LVC1G125DRYR datasheetSN74LVC1G125DRYR Datasheet/PDF
Quantity: 5000
1 +: $ 0.08000
10 +: $ 0.07760
100 +: $ 0.07600
1000 +: $ 0.07440
10000 +: $ 0.07200
Stock 5000Can Ship Immediately
$ 0.08
Specifications
Series: 74LVC
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: 32mA, 32mA
Voltage - Supply: 1.65 V ~ 5.5 V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 6-UFDFN
Supplier Device Package: 6-SON (1.45x1)
Base Part Number: 74LVC1G125
Description

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Logic has a wide range of applications in different fields, from everyday life to industrial production and so on. With the development of the logic technology, more and more logic components have been manufactured and applied. The SN74LVC1G125DRYR is a fundamental 3-state buffer gate which incorporated into the 74LVC1G family of logic and analog products for the purpose of making them easy to use and integrate in various projects. This device is also available in either a 0.177-inch/4.5-millimeter SOT-553 surface-mount or 16-pin SOIC package. This article will discuss the application field and working principle of SN74LVC1G125DRYR.

The SN74LVC1G125DRYR is a logic->buffers, drivers, receivers and transceivers device that is deployed in various applications due to its power efficiency, fast response, wide operating voltage range and low-power consumption. These devices are suitable for applications that need low power and high performance. Its low ground leakage is suitable for switching applications as well. These devices also have a built-in green overload protection, which makes them suitable for applications involving high power dissipation.

The SN74LVC1G125DRYR is used in a variety of applications including digital signal processing, multiplexers, shift registers, data converters, analog to digital converters, storage modules, micro-controllers, signal processing and logic circuits. Its wide operating voltage range from 1.14V to 3.6V make it highly suitable for harsh environments and extreme temperatures. Additionally, it can operate at 0°C to 85°C and is rated to withstand an output current of up to 5mA.

The working principle of the SN74LVC1G125DRYR is as follows. It is a 3-state differential buffer gate that can be used to drive various loads. It can be used to drive a wide range of digital signals, including high frequency, low frequency and mixed frequency signals. This device has two differential inputs, IN0 and IN1, and an output. It can be configured as either a single-ended or differential buffer. When input signals at the IN0 and IN1 are both high or low, the device will output the same logic level as the inputs. When one input signal is high and the other is low, the output will remain in a high-impedance state.

The SN74LVC1G125DRYR is also highly reliable and robust enough for the most demanding applications. It has in-built ESD protection so that it can withstand up to 8kV of electrostatic discharge. It also has a wide range of features such as an enable/disable control pin, Schmitt trigger input buffers and inhibit output pins.

In conclusion, SN74LVC1G125DRYR is a reliable and powerful board-level logic chip that is suitable for various applications, such as digital signal processing, multiplexers, shift registers, data converters, analog to digital converters, storage modules, micro-controllers, signal processing and logic circuits. It is highly efficient and low-power consuming, with a wide operating voltage range and robust ESD protection. It has a built-in green overload protection, which makes it suitable for applications involving high power dissipation.

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

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