FXL2SD106BQX Allicdata Electronics
Allicdata Part #:

FXL2SD106BQXTR-ND

Manufacturer Part#:

FXL2SD106BQX

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC TRNSLTR BIDIRECTIONAL 16DQFN
More Detail: Voltage Level Translator Bidirectional 1 Circuit 6...
DataSheet: FXL2SD106BQX datasheetFXL2SD106BQX Datasheet/PDF
Quantity: 6000
Stock 6000Can Ship Immediately
Specifications
Input Signal: --
Base Part Number: FXL2SD106
Supplier Device Package: 16-DQFN (2.5x3.5)
Package / Case: 16-WFQFN Exposed Pad
Mounting Type: Surface Mount
Features: Power-Off Protection
Operating Temperature: -40°C ~ 85°C (TA)
Data Rate: 100Mbps
Output Type: Tri-State, Non-Inverted
Output Signal: --
Series: --
Voltage - VCCB: 1.1V ~ 3.6V
Voltage - VCCA: 1.1V ~ 3.6V
Channels per Circuit: 6
Number of Circuits: 1
Channel Type: Bidirectional
Translator Type: Voltage Level
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Logic translators and level shifters are important components used in many electronic applications. The FXL2SD106BQX is a voltage and logic translator designed to convert low voltage logic signals from one logic family to another. The device is capable of translating up to five different logic families and provides a wide range of voltage levels. In this article, we will explore the applications of the FXL2SD106BQX device and the working principle behind it.

Applications of FXL2SD106BQX

The FXL2SD106BQX is a versatile device that can be used in a variety of applications. It is often used as a level-shifter in battery applications, as it can easily be used to convert a 3.3V battery voltage supply to a 5V logic level. It can also be used as a logic-level translator to convert from one logic family to another. For example, the FXL2SD106BQX can be used to translate a TTL signal to a CMOS signal.

The FXL2SD106BQX is also useful for interfacing a variety of digital and analog signals. It can be used to interface a wide range of I/O signals, and can even be used to interface a variety of interface standards. This makes the device useful in many applications, from consumer electronics to industrial control systems.

Working Principle of FXL2SD106BQX

The FXL2SD106BQX is a voltage level and logic translator. As it is a low-voltage, low-power device, it requires minimal current when in operation. The device is capable of translating up to five different logic families and provides a wide range of voltage levels. The device is fabricated using a high-speed switch-based architecture, which enables it to rapidly shift signals between level-shifts, translations, and power conversions.

The FXL2SD106BQX works by comparing the incoming signal voltage to the selected voltage threshold. If the incoming signal is above the determined threshold, the device will open up and the logic level on the output will be the same as the input. Otherwise, if the incoming signal is below the threshold, the device will close and the output logic level will be set to the desired level.

The device also has the ability to dynamically adjust the output logic levels as the input signal changes. This is useful for dynamic applications, when the threshold has to be adjusted to different voltages for optimal performance. In addition, the device also offers the flexibility of setting the delay time between the input and output signals, which is useful for ensuring that the desired logic levels are received.

Conclusion

The FXL2SD106BQX is a versatile device that can be used in a variety of applications. The device can be used as a level-shifter, a logic-level translator, and to interface between a variety of digital and analog signals. The device works by comparing the incoming signal voltage to the selected voltage threshold, and if the incoming signal is above the threshold, the device will open up and the logic level on the output will be the same as the input. The device also has the ability to dynamically adjust the output logic levels as the input signal changes, and offers the flexibility of setting the delay time between the input and output signals.

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

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