SN74ABTE16246DGGR Allicdata Electronics

SN74ABTE16246DGGR Integrated Circuits (ICs)

Allicdata Part #:

296-4119-2-ND

Manufacturer Part#:

SN74ABTE16246DGGR

Price: $ 4.82
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC INCIDENT-WAVE XCVR 48-TSSOP
More Detail: Incident-Wave Switching Bus Transceivers IC 48-TSS...
DataSheet: SN74ABTE16246DGGR datasheetSN74ABTE16246DGGR Datasheet/PDF
Quantity: 1000
2000 +: $ 4.38278
Stock 1000Can Ship Immediately
$ 4.82
Specifications
Series: 74ABTE
Packaging: Tape & Reel (TR) 
Part Status: Active
Logic Type: Incident-Wave Switching Bus Transceivers
Supply Voltage: 4.5 V ~ 5.5 V
Number of Bits: 11
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 48-TFSOP (0.240", 6.10mm Width)
Supplier Device Package: 48-TSSOP
Base Part Number: 74ABTE16246
Description

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Logic - Specialty Logic is a field of the Logic family that has been constructed to serve for specific tasks. One example is the SN74ABTE16246DGGR, an octal buffer/line driver that is used to provide electrical signals for applications such as communication devices, where data signals and voltages require to be transferred among devices as quickly and precisely as possible. This article will explain the SN74ABTE16246DGGR\'s application field and working principle in greater detail.

The SN74ABTE16246DGGR is primarily used in large data or communication networks where voltage-level synchronization and signal capability is required. The device\'s octal buffer/line driver feature allows control signals to be sent on the same line with data signals, allowing the line to be switched in either direction while making sure the signals are sent at the correct voltage. The device also utilizes synchronous circuit technology that is designed to minimize switching noise, enabling the driver to avoid being affected by interference caused by other signals on the same line.

As far as its application field is concerned, the SN74ABTE16246DGGR is used for various communication-related uses such as circuit control, digital memory, and optical communication. It can also be used for digital-to-analog and analog-to-digital conversion. It is also capable of multiplexing, ensuring that multiple devices can be connected on the same line and still maintain signal accuracy.

The SN74ABTE16246DGGR is also capable of providing multiple levels of protection against electric overcurrent and thermal overload, further protecting the devices using the line from damage. To ensure compatibility with other similar devices, the SN74ABTE16246DGGR is also designed to be compatible with TTL, CMOS, and ECL logic families.

As a logic device, the SN74ABTE16246DGGR applies logic circuit design to facilitate the transfer of signals between devices. This logic circuitry determines the flow of electrical signals and follows defined operations. They provide not only logic control but also transfer and receive capability.

The working principles of the SN74ABTE16246DGGR involve the use of multiplexing and data buffering architecture to provide reliable signal transmission. The Data-Buffer Gate-Driver (DBGD) architecture utilizes amplifying and inverting gates to transfer signals in both directions, while the data-mux architecture works as a multiplexer, enabling the device to route signals to different lines or devices. The synchronized switch driving blocks included in the device also provide signal transmission capability while helping avoid noise by ensuring the signal line is only active when the output current is high enough.

Lastly, the SN74ABTE16246DGGR features an integrated level shifter and power supply design, allowing the device to switch voltages as needed, subsequently providing signals in low-voltage and high-voltage protocols for high-speed communication applications. It also includes an integrated protection circuitry to ensure against overcurrent and thermal overload.

In conclusion, the SN74ABTE16246DGGR is an octal buffer/line driver used for applications such as communication devices, data-signal exchanges, and data-buffering. It utilizes advanced logic circuitry to ensure signal reliability and prevent signals from being distorted or interrupted due to interference. It supports various logic families, and its multiplexing capabilities enable it to connect multiple devices on the same line. The device also features synchronized switch driving blocks and an integrated level shifter and power supply, helping to facilitate the transfer of signals between devices. Lastly, integrated protection circuitry is included to ensure against overcurrent and thermal overload.

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

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