NLVX2G16AMUTCG Allicdata Electronics
Allicdata Part #:

NLVX2G16AMUTCG-ND

Manufacturer Part#:

NLVX2G16AMUTCG

Price: $ 0.09
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC BUFFER NON-INVERT 5.5V 6UDFN
More Detail: Buffer, Non-Inverting 2 Element 1 Bit per Element ...
DataSheet: NLVX2G16AMUTCG datasheetNLVX2G16AMUTCG Datasheet/PDF
Quantity: 1000
3000 +: $ 0.07983
Stock 1000Can Ship Immediately
$ 0.09
Specifications
Series: Automotive, AEC-Q100
Packaging: Tape & Reel (TR) 
Part Status: Active
Logic Type: Buffer, Non-Inverting
Number of Elements: 2
Number of Bits per Element: 1
Input Type: --
Output Type: Push-Pull
Current - Output High, Low: 32mA, 32mA
Voltage - Supply: 1.65 V ~ 5.5 V
Operating Temperature: -55°C ~ 125°C (TA)
Mounting Type: Surface Mount
Package / Case: 6-UFDFN
Supplier Device Package: 6-UDFN (1.45x1)
Description

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NLVX2G16AMUTCG is an integrated logic buffer device with a multiplexing feature. It isused to increase the speed or improve the timing margins of logic circuits. It has two common seven-bit input paths and two separate five-bit output paths. It is also used to reduce power- and interconnections between chips. The device has two 8-bit ports, one for normal and one for ultra-long-paths.

The NLVX2G16AMUTCG is a logic buffer device that includes logic functions, such as multiplexing, buffering, and receiving. It is typically used in applications that require high speed and low power. The device is primarily used to multiplex and buffer digital signals, such as digital video. It enables the design engineer to move data quickly between multiple hardware devices. It also can be used in applications such as digital cross-point switches, memory interfacing, and serializers.

The NLVX2G16AMUTCG\'s most distinguishing feature is its architecture, which allows it to split data into two independent five-bit signals as well as combine two independent seven-bit signals. Its two input ports and two output ports enable it to multiplex and demultiplex data between high speed data streams. The device can be used to multiplex the data, allowing for a simplified interconnect between the chips. The device also has a data input register, which allows for data buffering to reduce interconnections.

NLVX2G16AMUTCG can be used in a number of applications, such as video digital-to-analog converters, digital display controllers, video processors, digital video broadcast systems, video and audio switching systems, video encoding devices, and digital video links. Additionally, the device is ideal for applications needing high-speed, low-power logic. Its two inputs and two outputs allow for high-speed data transmission with low power requirements and reduces interconnections between the chips.

NLVX2G16AMUTCG is based on a CMOS process and has low-power switching and drivers. It provides high levels of noise rejection, input and output protection, and low power dissipation. The device has a rated power supply voltage range from 2.2V to 3.6V, and a range of operating temperature from 0 to 90 degrees Celsius. It is also available with an optional high-impedance bus-hold option.

The basic operating principle of the NLVX2G16AMUTCG is the multiplexing and buffering of digital signals between its two input ports, two output ports and its on-chip data input register. When a logic 1 is detected on one of its two common seven-bit input ports, the data is stored in the on-chip data input register. Then the multiplexing circuitry of NLVX2G16AMUTCG is used to read out the stored data to both the five-bit output ports. The output port which received the input data at the same time is activated and the data is transmitted to the other output port. The other output port will stay at logic 0 until the next data transfer.

Being able to multiplex the data securely, the NLVX2G16AMUTCG provides high-speed data transferring to two separate five-bit output ports with low power consumption. It is a perfect device for applications needing high-speed, low-power logic. The device also features high noise rejection, input protection and low power dissipation.

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

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