Manufacturer Part Number
SN74LS165AD
Manufacturer
Texas Instruments
Introduction
The SN74LS165AD is a parallel-load 8-bit shift register designed for digital circuit applications.
Product Features and Performance
8-bit parallel-in or serial-in, serial-out shift register
Operates from a single 5V supply
Complementary outputs
Direct overriding clear function
Clock input has Schmitt-trigger action that enables enhanced pulse shaping
Gated serial inputs
Product Advantages
Simplifies circuit design with parallel or serial output capabilities
High-speed data transfer
Suitable for applications requiring a controlled clear function
Enhanced input sensitivity with Schmitt-trigger action
Compatibility with multiple logic families
Key Technical Parameters
Number of Elements: 1
Number of Bits per Element: 8
Function: Parallel or Serial to Serial
Voltage Supply Range: 4.75V to 5.25V
Operating Temperature Range: 0°C to 70°C
Mounting Type: Surface Mount
Package Type: 16-SOIC
Quality and Safety Features
Standardized 16-SOIC package ensuring reliability
Compliance with RoHS and industry-standard safety requirements
Compatibility
Compatible with standard SPI communication protocols
Interfacing with various microcontrollers and digital systems
Suitable for logic systems operating at 5V
Application Areas
Digital data processing
Serial data communication
Automation systems
Data acquisition systems
Instrumentation
Product Lifecycle
Discontinued at Digi-Key, suggesting nearing end of product lifecycle
Potential for limited availability from other suppliers
Alternatives or upgrades may need to be sought for new designs
Several Key Reasons to Choose This Product
Manufactured by Texas Instruments, a reputable brand in the semiconductor industry
Offers high-speed parallel or serial communication options
Direct clear input for easy data resetting
Schmitt-trigger action on clock inputs for reliable data capture
Compatible with 5V logic systems, offering broad device interoperability
Suitable for a wide range of applications due to versatile operation modes
Presence of complementary outputs for added design flexibility