74SSTV16857PAG8 Allicdata Electronics
Allicdata Part #:

74SSTV16857PAG8-ND

Manufacturer Part#:

74SSTV16857PAG8

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: IDT, Integrated Device Technology Inc
Short Description: IC BUFFER 14BIT SSTL I/O 48TSSOP
More Detail: Registered Buffer with SSTL_2 Compatible I/O for D...
DataSheet: 74SSTV16857PAG8 datasheet74SSTV16857PAG8 Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: 74SSTV
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Logic Type: Registered Buffer with SSTL_2 Compatible I/O for DDR
Supply Voltage: 2.3 V ~ 2.7 V
Number of Bits: 14
Operating Temperature: 0°C ~ 70°C
Mounting Type: Surface Mount
Package / Case: 48-TFSOP (0.240", 6.10mm Width)
Supplier Device Package: 48-TSSOP
Base Part Number: 74SSTV16857
Description

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74SSTV16857PAG8 logic chips are a type of specialty logic component which provides a number of distinct advantages over conventional logic circuits. They are primarily used in applications which require the highest speed possible, as well as in applications where power consumption is a major concern due to the small amount of power required to operate them. 74SSTV16857PAG8 logic chips are designed for applications where a constant low power supply with minimal power fluctuations is needed, typically in systems involving very high speed switching operations or clock synchronization.

The main advantage of 74SSTV16857PAG8 logic chips is their ability to provide very low propagation delays (tPD) when compared to conventional logic components. Traditional logic devices require a clock signal to toggle its output which can result in large delays when multiple logic components need to be synchronized together. 74SSTV16857PAG8 logic chips do not require a clock signal, thus providing a much faster propagation delay. This provides the designer with greater flexibility and allows them to construct high speed logic designs with greater accuracy and less power consumption.

In addition to the fast propagation delay, 74SSTV16857PAG8 logic chips are also capable of providing a high degree of reliability. The chips are constructed using a high precision process which ensures that all the logic inputs and outputs stay within specified tolerances. This provides designers with confidence that the performance of their system will remain consistent, even under extreme operating conditions.

The applications for 74SSTV16857PAG8 logic chips are vast, ranging from communications networks and industrial equipment, to medical equipment and state-of-the-art digital-signal processing (DSP) systems. In each of these applications, the ability of the logic chips to provide low-power fast switching operations is of utmost importance. Furthermore, the chips provide a fast propagation delay which can be crucial for DSP applications or for applications where one must synchronize multiple components.

In terms of working principle, 74SSTV16857PAG8 logic chips contain two types of logic elements known as threshold logic and static CMOS logic. In static CMOS logic, the chip contains two logic levels; one higher logic level (HLL), and one lower logic level (LLL). These logic levels can be controlled by applying different levels of voltage to the logic gates, allowing multiple logic functions to be performed. On the other hand, threshold logic allows for a certain amount of transition between the two logic levels, providing the designer with a greater degree of flexibility when designing complex logic systems.

Overall, 74SSTV16857PAG8 logic chips provide designers with an attractive array of features and benefits. The chips offer a fast propagation delay while keeping power consumption low, as well as providing a high degree of reliability. The vast array of application possibilities show that these chips are suited to a wide range of markets and that they can be extremely useful in many different applications. Therefore, designers who are looking for a fast, reliable, low power logic component should seriously consider using the 74SSTV16857PAG8.

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

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