Texas Instruments_CD74AC04M96

Texas Instruments
CD74AC04M96  
Gates and Inverters

Texas Instruments
CD74AC04M96
705-CD74AC04M96
Ersa
Texas Instruments-CD74AC04M96-datasheets-8675339.pdf
IC INVERTER 6CH 1IN 14SOIC
In Stock : 4242

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CD74AC04M96 Description

CD74AC04M96 Description

The CD74AC04M96 from Texas Instruments is a high-performance hex inverter integrated circuit (IC) belonging to the 74AC series, designed for surface-mount applications. Packaged in a 14-pin SOIC and supplied in Tape & Reel (TR), this IC features six independent inverters with a single input per channel. Operating across a wide voltage range (1.5V to 5.5V), it delivers low-power consumption with a quiescent current of just 4 µA (max). The device is RoHS3 compliant and REACH unaffected, making it suitable for environmentally conscious designs.

CD74AC04M96 Features

  • High-Speed Performance: Achieves a max propagation delay of 6.5ns at 5V with 50pF load, ensuring rapid signal processing.
  • Wide Voltage Compatibility: Supports 1.5V to 5.5V operation, ideal for mixed-voltage systems.
  • Balanced Output Drive: Delivers 24mA output current (sink/source), enabling robust signal integrity.
  • Low Power Consumption: 4 µA max quiescent current enhances energy efficiency.
  • Noise Immunity: Optimized input thresholds (0.3V–1.65V for LOW, 1.2V–3.85V for HIGH) improve noise margin.
  • Reliable Packaging: MSL 1 (Unlimited) moisture sensitivity ensures long shelf life and ease of handling.

CD74AC04M96 Applications

  • Digital Signal Processing: Ideal for clock inversion, buffering, and logic level shifting in microcontrollers and FPGAs.
  • Power Management Systems: Used in voltage translators for interfacing between low-voltage and 5V logic.
  • Consumer Electronics: Suitable for smartphones, IoT devices, and portable gadgets due to low power consumption.
  • Industrial Automation: Enhances noise immunity in motor control and sensor interfaces.
  • Automotive Electronics: Reliable performance in ECUs and infotainment systems under varying voltage conditions.

Conclusion of CD74AC04M96

The CD74AC04M96 stands out for its high-speed operation, wide voltage range, and robust output drive, making it a versatile choice for modern digital designs. Its low power consumption and noise-resistant inputs cater to energy-sensitive and high-reliability applications. Whether in consumer, industrial, or automotive systems, this hex inverter delivers superior performance and flexibility, backed by Texas Instruments' quality assurance.

Tech Specifications

Maximum Propagation Delay Time @ Maximum CL (ns)
Maximum Quiescent Current (uA)
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
Number of Inputs
Maximum Operating Supply Voltage (V)
EU RoHS
Moisture Sensitivity Level (MSL)
Operating Temperature
Max Propagation Delay @ V, Max CL
Logic Type
ECCN
Supplier Temperature Grade
Mounting Type
Standard Package Name
Pin Count
Mounting
Input Logic Level - High
Lead Shape
Typical Operating Supply Voltage (V)
HTSUS
Package
Current - Output High, Low
PCB changed
HTS
Output Type
Number of Elements per Chip
ECCN (US)
Supplier Device Package
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Process Technology
Propagation Delay Test Condition (pF)
Package Height
Mfr
Features
RoHS Status
Current - Quiescent (Max)
Package Length
Input Logic Level - Low
Maximum Low Level Output Current (mA)
Series
Part Status
Number of Circuits
Logic Family
Package Width
Base Product Number
Minimum Operating Supply Voltage (V)
Output Level
Mounting Style
Unit Weight
Input Type
Input Level
RoHS
Supply Voltage - Min
Minimum Operating Temperature
High Level Output Current
Function
Operating Supply Voltage
Low Level Output Current
Maximum Operating Temperature
Supply Voltage - Max
USHTS
Propagation Delay Time

CD74AC04M96 Documents

Download datasheets and manufacturer documentation for CD74AC04M96

Ersa CD54,74AC04      
Ersa CD54,74AC04      
Ersa Design 25/Feb/2022      

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