NLSV4T244MUTAG Allicdata Electronics
Allicdata Part #:

NLSV4T244MUTAGOSTR-ND

Manufacturer Part#:

NLSV4T244MUTAG

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC TRNSLTR UNIDIRECTIONAL 12UQFN
More Detail: Voltage Level Translator Unidirectional 1 Circuit ...
DataSheet: NLSV4T244MUTAG datasheetNLSV4T244MUTAG Datasheet/PDF
Quantity: 51000
Stock 51000Can Ship Immediately
Specifications
Input Signal: --
Base Part Number: NLSV4T244
Supplier Device Package: 12-UQFN (1.7x2)
Package / Case: 12-UFQFN
Mounting Type: Surface Mount
Features: Over Voltage Protection, Power-Off Protection
Operating Temperature: -40°C ~ 85°C (TA)
Data Rate: --
Output Type: Tri-State, Non-Inverted
Output Signal: --
Series: --
Voltage - VCCB: 0.9V ~ 4.5V
Voltage - VCCA: 0.9V ~ 4.5V
Channels per Circuit: 4
Number of Circuits: 1
Channel Type: Unidirectional
Translator Type: Voltage Level
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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NLSV4T244MUTAG is a logic-translator-level shifter that provides an innovative solution for analog and digital design engineers who need to shift voltage levels or translate logic signals. It contains a low-power LVTTL/LVCMOS-compatible input stage that is used to shift and convert signals from the relatively low-voltage LVTTL or LVCMOS to the higher voltage VHSTL. The output is used to drive an HSTL compatible device and it can also be interfaced with a variety of other low-voltage logic gates. The device operates with a supply voltage of 3.3 V and is capable of efficiently translating signals between two different logic domains.

The NLSV4T244MUTAG features a wide supply voltage range and can be used in low-power applications, including cellular mobile phones and other wireless communications systems. It is not affected by the temperature variations due to its low-power consumption and has a low propagation delay and very low jitter. It also features support of de-assertion features, allowing an excess of current that is produced when a signal is de-asserted to be safely dissipated. Additionally, it provides enhanced noise immunity and short-circuit protection.

The NLSV4T244MUTAG is a highly effective logic-translator-level shifter for analog and digital design engineers. Its high-speed performance and wide supply voltage range help to improve the overall efficiency of the design. Its low-power consumption and noise immunity help to increase the reliability of the applications. Furthermore, it provides a safety mechanism to prevent short circuits and to ensure flawless operation in a variety of different applications. This makes the NLSV4T244MUTAG an ideal choice for designs that require high-speed, low-power and low-noise performance.

The working principle of the NLSV4T244MUTAG is based on two internal logic blocks, the input logic block and the output logic block. The input logic block is a logic level-shifting circuit that converts the relatively low-voltage input signals to a higher voltage VHSTL level. The output logic block generates the output matching the input logic level and provides support of de-assertion features. The two logic blocks are separated by a level shifter which acts as a buffer between them.

The output logic block can detect the logic level of the input and then adjust the output level accordingly. It also provides a safety mechanism that can detect short-circuits and ensure that an excess of current is not generated when the input signal is de-asserted. This helps to increase the reliability of the overall design and to ensure flawless operation.

To conclude, the NLSV4T244MUTAG is a very efficient logic-translator-level shifter for analog and digital design engineers. It is well suited for low-power applications and its wide supply voltage range and noise immunity make it highly reliable. It provides a safety mechanism to prevent short circuits, as well as enhanced noise immunity and low propagation delay. The NLSV4T244MUTAG is therefore an ideal choice for designs that require high-speed, low-power and low-noise performance.

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

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