NLU1G04AMX1TCG Allicdata Electronics
Allicdata Part #:

NLU1G04AMX1TCG-ND

Manufacturer Part#:

NLU1G04AMX1TCG

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC INVERTER 1CH 1-INP 6ULLGA
More Detail: Inverter IC 1 Channel 6-ULLGA (1.45x1)
DataSheet: NLU1G04AMX1TCG datasheetNLU1G04AMX1TCG Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Output High, Low: 8mA, 8mA
Base Part Number: NLU1G04
Package / Case: 6-XFLGA
Supplier Device Package: 6-ULLGA (1.45x1)
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 125°C
Max Propagation Delay @ V, Max CL: 7.5ns @ 5V, 50pF
Logic Level - High: --
Logic Level - Low: --
Series: MiniGate™
Current - Quiescent (Max): 1µA
Voltage - Supply: 1.65 V ~ 5.5 V
Features: --
Number of Inputs: 1
Number of Circuits: 1
Logic Type: Inverter
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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NLU1G04AMX1TCG Application Field and Working Principle

NLU1G04AMX1TCG is a type of logic gate used as part of an integrated circuit(IC). It is also known as a NAND gate, a AND-OR-Invert (AOI) gate and a complementary metal-oxide-semiconductor (CMOS) gate. The NLU1G04AMX1TCG logic gate is found in almost all modern digital logic circuits. It is one of the most useful logic gates in the field of electronics engineering, due to its relatively simple structure and wide range of applications.

The NLU1G04AMX1TCG gate is a single-input NAND gate that functions as a logic inverter. Its output will be the opposite of its input state. That is, if the input is in the "ON" state, then the output will be in the "OFF" state, and vice versa. If the input is "ON" the output will be "OFF" and if the input is "OFF" the output will be "ON." In addition, this type of logic gate can be used to connect two or more discrete signals and produce an output based on their states.

The NLU1G04AMX1TCG gate is typically composed of two input transistors, which, in turn, are connected to two output transistors. This type of logic gate, like all logic gates, is designed to perform the basic logic operations of AND, OR, and NOT. In the case of the NLU1G04AMX1TCG, the two output transistors are wired in such a way that their states will be the opposite of the input state, hence the name inverter. In essence, the NLU1G04AMX1TCG is an inverter, and its output will always be the opposite of its input.

The NLU1G04AMX1TCG gate is typically used in various types of digital circuits and applications. In digital circuit design, it can be used to connect discrete signals and ensure that they are mutually exclusive. The gate can also be used to ensure that signals remain in the same state after a particular event. In computer architecture and processor design, the NLU1G04AMX1TCG gate is used to implement Boolean logic operations.

The NLU1G04AMX1TCG gate is also used in other areas of electronics engineering, such as radio frequency (RF) switching, analog/hybrid circuits, cellular telephone designs, and power management. In general, this type of logic gate is used in any application that requires a digital logic gate with inverter characteristics. It is also suitable for digital circuit designs where a single input is needed and space is limited.

The NLU1G04AMX1TCG logic gate is usually used for digital logic operations with the help of the NAND function. These include functions such as OR, AND, and NOT operations, as well as other advanced digital operations. It is also used to help control the direction of flow of data between devices in digital circuit designs. Furthermore, it can be used to generate different states in a digital circuit in response to a specific input signal.

In conclusion, the NLU1G04AMX1TCG logic gate is one of the most useful logic gates in the field of electronics engineering. Its relatively simple structure makes it useful for a wide range of applications. Because it is a single-input NAND gate, its output is always the opposite of its input state. The NLU1G04AMX1TCG is used in almost all modern digital logic circuits and is commonly used to help control the direction of flow of data between devices in digital circuit designs. It is also used in various other areas of electronics engineering, such as RF switching, analog/hybrid circuits, cellular telephone designs, and power management.

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

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