SN74LVC574APWR Allicdata Electronics

SN74LVC574APWR Integrated Circuits (ICs)

Allicdata Part #:

296-8532-2-ND

Manufacturer Part#:

SN74LVC574APWR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC FF D-TYPE SNGL 8BIT 20TSSOP
More Detail: N/A
DataSheet: SN74LVC574APWR datasheetSN74LVC574APWR Datasheet/PDF
Quantity: 12000
Stock 12000Can Ship Immediately
Specifications
Max Propagation Delay @ V, Max CL: 6.8ns @ 3.3V, 50pF
Base Part Number: 74LVC574
Package / Case: 20-TSSOP (0.173", 4.40mm Width)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C (TA)
Input Capacitance: 4pF
Current - Quiescent (Iq): 10µA
Voltage - Supply: 1.65 V ~ 3.6 V
Current - Output High, Low: 24mA, 24mA
Trigger Type: Positive Edge
Series: 74LVC
Clock Frequency: 150MHz
Number of Bits per Element: 8
Number of Elements: 1
Output Type: Tri-State, Non-Inverted
Type: D-Type
Function: Standard
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Logic is a critical aspect of many modern electronic circuits, and without it, the complexity and accuracy of these components would be significantly mismatched. Flip-flops are compressed logic circuits which store information in its current state, typically with two stable states called “0” and “1”, or “low” and “high”. The SN74LVC574APWR is a 7-pin logic-level shift flip-flop that is designed for making high-speed data communication between integrated circuits. It enables low-voltage operation down to 0.8 volts. The device is housed in the very popular SOIC package, which makes it highly suitable for applications that require miniaturization.

SN74LVC574APWR device is an advanced type of flip-flop, as it is designed to transfer data between two integrated circuits at a high speed. Its 6-bit ESD-protection devices have a latch-up performance of 250mA in the presence of a live differential signal. The logic circuit is built using six NMOS transistors and four NAND gate elements. The gate configuration is an SR latch, which is a type of flip-flop used to store a single bit of data for transfer between two integrated circuits. An SR latch consists of two inputs (S and R) and two outputs (Q and Q’), with the outputs also serving as inputs of the logic circuit.

The SN74LVC574APWR logic level shift flip-flop has the ability to detect whether the signals are high or low. When the S or R inputs are high, the outputs take the relative values of the inputs. When both S and R are low, the content of the flip-flop will remain unchanged. The logic circuit is designed to shift the logic level (either high or low) of the input signal to the output level of the output signal at a high speed. This is done by using the logic gates and transistors in the circuit and is the result of the internal transfer of data through the flip-flop.

The SN74LVC574APWR flip-flop has a wide variety of applications, including memory devices and digital communication systems, as well as the ability to interface with multiple voltages. It is also extensively used in the digital circuitry of electronic devices such as televisions, DVD players, and computers. Its ability to detect high and low levels makes it particularly useful as a logic level shifter, enabling two integrated circuits to communicate at different logic levels.

The SN74LVC574APWR can also be used for asynchronous data transfer, allowing multiple chips to exchange data without being synchronized. This type of data transfer is used in many memory and logic devices, where quick transfer of data is required. Asynchronous data transfer is a common application field for the SN74LVC574APWR flip-flop.

To sum it up, the SN74LVC574APWR flip-flop is an extremely useful device for many types of digital applications. Its ability to detect high and low levels of input signals, as well as its asynchronous data transfer capability makes it suitable for many data-intensive applications. Additionally, its small scale, low power consumption, and low voltage operation make it a popular choice for electronic designs where miniaturization is a key factor.

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

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