Texas Instruments_CD74HCT273M96

Texas Instruments
CD74HCT273M96  
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Texas Instruments
CD74HCT273M96
706-CD74HCT273M96
Ersa
Texas Instruments-CD74HCT273M96-datasheets-2800583.pdf
IC FF D-TYPE SNGL 8BIT 20SOIC
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CD74HCT273M96 Description

CD74HCT273M96 Description

The CD74HCT273M96 is a high-performance, 8-bit D-type flip-flop logic IC chip manufactured by Texas Instruments. This device is designed to provide reliable and efficient data storage and transfer in various electronic systems. It operates within a supply voltage range of 4.5V to 5.5V and features a maximum clock frequency of 50 MHz, ensuring high-speed performance. The CD74HCT273M96 is equipped with a positive edge trigger type, which means it captures data on the rising edge of the clock signal, providing precise timing control. Additionally, it includes a master reset function, allowing for easy initialization and synchronization of the flip-flops.

CD74HCT273M96 Features

  • High-Speed Operation: With a maximum clock frequency of 50 MHz, the CD74HCT273M96 is capable of handling high-speed data processing and transfer, making it suitable for demanding applications.
  • Edge-Triggered Functionality: The positive edge trigger ensures that data is captured precisely on the rising edge of the clock signal, providing accurate timing and synchronization.
  • Master Reset Capability: The master reset function allows for easy initialization and synchronization of the flip-flops, ensuring reliable operation and data integrity.
  • Low Power Consumption: The device features a low quiescent current of 8 µA, making it energy-efficient and suitable for battery-powered or low-power applications.
  • Robust Design: The CD74HCT273M96 is designed to operate within a supply voltage range of 4.5V to 5.5V, providing flexibility and reliability in various power supply conditions.
  • Compliance and Safety: The device is REACH unaffected and RoHS3 compliant, ensuring it meets environmental and safety standards.
  • Moisture Sensitivity Level: With an MSL of 1 (unlimited), the CD74HCT273M96 is suitable for a wide range of manufacturing environments without the need for special handling or storage conditions.
  • Low Propagation Delay: The maximum propagation delay of 30ns at 4.5V and 50pF ensures fast signal processing and minimal latency.
  • Surface Mount Packaging: The device is available in a surface mount package (Tape & Reel), making it easy to integrate into modern printed circuit board (PCB) designs.

CD74HCT273M96 Applications

The CD74HCT273M96 is ideal for a variety of applications where reliable data storage and transfer are required. Some specific use cases include:

  • Digital Systems: The device is well-suited for digital systems that require high-speed data processing and storage, such as microcontrollers, digital signal processors, and communication systems.
  • Memory and Storage: The 8-bit D-type flip-flops make it an excellent choice for memory and storage applications, providing reliable data retention and transfer.
  • Timing and Control Circuits: The positive edge trigger and master reset functions make the CD74HCT273M96 ideal for timing and control circuits, ensuring precise synchronization and control of electronic systems.
  • Consumer Electronics: The low power consumption and robust design make it suitable for consumer electronics, where energy efficiency and reliability are critical.
  • Industrial Automation: The device's high-speed operation and reliability make it ideal for industrial automation applications, where precise timing and data integrity are essential.

Conclusion of CD74HCT273M96

The CD74HCT273M96 is a versatile and high-performance logic IC chip that offers a range of features and benefits for various electronic applications. Its high-speed operation, edge-triggered functionality, and master reset capability make it an excellent choice for digital systems, memory and storage applications, and timing and control circuits. The low power consumption and robust design further enhance its suitability for consumer electronics and industrial automation. With its compliance to environmental and safety standards, the CD74HCT273M96 is a reliable and efficient solution for modern electronic designs.

Tech Specifications

Number of Channels per Chip
Clock Frequency
Maximum Propagation Delay Time @ Maximum CL (ns)
PPAP
Product Status
Automotive
Supplier Package
Maximum High Level Output Current (mA)
Package / Case
Absolute Propagation Delay Time (ns)
Voltage - Supply
Logic Function
REACH Status
Triggering Type
Number of Element Outputs
Maximum Operating Supply Voltage (V)
Number of Elements
EU RoHS
Input Capacitance
Moisture Sensitivity Level (MSL)
Operating Temperature
Max Propagation Delay @ V, Max CL
ECCN
Supplier Temperature Grade
Mounting Type
Standard Package Name
Pin Count
Mounting
Input Signal Type
Lead Shape
Typical Operating Supply Voltage (V)
HTSUS
Package
Maximum Quiescent Current (mA)
Current - Output High, Low
PCB changed
Output Type
HTS
Number of Elements per Chip
ECCN (US)
Trigger Type
Supplier Device Package
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Function
Process Technology
Propagation Delay Test Condition (pF)
Package Height
Mfr
Polarity
RoHS Status
Set/Reset
Current - Quiescent (Iq)
Number of Bits per Element
Number of Element Inputs
Package Length
Maximum Low Level Output Current (mA)
Series
Type
Bus Hold
Part Status
Logic Family
Package Width
Base Product Number
Minimum Operating Supply Voltage (V)
Unit Weight
RoHS
Supply Voltage - Min
Number of Channels
Height
Maximum Operating Temperature
Supply Voltage - Max
Width
Mounting Style
Input Type
Logic Type
Number of Input Lines
Minimum Operating Temperature
High Level Output Current
Number of Output Lines
Reset Type
Length
Operating Supply Voltage
Quiescent Current
Low Level Output Current
Number of Circuits
USHTS
Propagation Delay Time

CD74HCT273M96 Documents

Download datasheets and manufacturer documentation for CD74HCT273M96

Ersa CD74HC/SN74HC 30/Mar/2022      
Ersa CD54,74HC(T)273      
Ersa 20-SOIC      
Ersa CD54,74HC(T)273      
Ersa Material Set 21/Jun/2016      

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