NL17SZ86DFT2G Allicdata Electronics
Allicdata Part #:

NL17SZ86DFT2GOSTR-ND

Manufacturer Part#:

NL17SZ86DFT2G

Price: $ 0.04
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC GATE XOR 1CH 2-INP SC88A
More Detail: XOR (Exclusive OR) IC 1 Channel SC-88A (SC-70-5/S...
DataSheet: NL17SZ86DFT2G datasheetNL17SZ86DFT2G Datasheet/PDF
Quantity: 1000
1 +: $ 0.04000
10 +: $ 0.03880
100 +: $ 0.03800
1000 +: $ 0.03720
10000 +: $ 0.03600
Stock 1000Can Ship Immediately
$ 0.04
Specifications
Current - Output High, Low: 32mA, 32mA
Base Part Number: 17SZ86
Package / Case: 5-TSSOP, SC-70-5, SOT-353
Supplier Device Package: SC-88A (SC-70-5/SOT-353)
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 125°C
Max Propagation Delay @ V, Max CL: 4.2ns @ 5V, 50pF
Logic Level - High: --
Logic Level - Low: --
Series: 17SZ
Current - Quiescent (Max): 1µA
Voltage - Supply: 1.65 V ~ 5.5 V
Features: --
Number of Inputs: 2
Number of Circuits: 1
Logic Type: XOR (Exclusive OR)
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Logic gates and inverters are used to simplify complex operations into a set number of simple operations. A particularly powerful example of this type of technology is the NL17SZ86DFT2G, an integrated circuit designed to perform functions such as Boolean logic, address decoding, and memory-mapping. In this article, we’ll look at the applications and working principles of the NL17SZ86DFT2G.

The NL17SZ86DFT2G is a static, inverting, quad two-input gate, meaning that it has four separate signal paths, each of which has two input and one output. The signal paths are typically used for Boolean algebra and other computing tasks, allowing for complex operations to be simplified into single operation. The gate also features a power reduction mode, which turns it off when it’s not being used, to reduce power consumption.

The NL17SZ86DFT2G is widely used in applications that require the logic gate and inverters. These include digital logic circuits, analog and digital systems, computer and embedded systems, and telecommunications systems. In the telecommunications field, the NL17SZ86DFT2G is used to integrate components, simplify wiring complexity, and reduce space and power requirements.

The NL17SZ86DFT2G also excels at memory-mapping and address decoding. Memory mapping is a process of assigning logical values to physical addresses, allowing easier access, while address decoding is the process of taking an address and “decoding” it into a logical value. The NL17SZ86DFT2G enables the user to quickly and accurately determine what a specific address is associated with, making it a valuable tool in digital logic design.

The NL17SZ86DFT2G also comes with a robust set of libraries and tools designed to make it easier to program and use. The NL17SZ86DFT2G supports dynamic reconfiguration and compiler directives, which enable the user to rapidly change the design or replace chunks of code. Additionally, the gate comes with comprehensive user documentation and support, making it easy to learn how to use the NL17SZ86DFT2G.

The working principle of the NL17SZ86DFT2G is relatively simple. It takes two inputs and provides one output, based on the logic that is programmed into the device. For example, if the inputs are A and B, the output will be 0 (false) if A is 0 and B is 1, and it will be 1 (true) if A is 1 and B is 0. The output is also inverted, meaning that if the two inputs are both 0, the output will be 1. This type of device is useful for simplifying complex logical operations into simple ones.

In conclusion, the NL17SZ86DFT2G is a powerful and versatile integrated circuit designed to simplify logic operations, address decoding, and memory-mapping tasks. Its applications span a variety of fields, including digital logic circuits, analog and digital systems, computer and embedded systems, and telecommunications systems. Its easy-to-use operations and robust programming capabilities make it a popular choice among engineers and designers.

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

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