SN74ALS165N Description
The SN74ALS165N is a high-performance 8-bit parallel-to-serial shift register designed for a wide range of digital applications. Manufactured by Texas Instruments, this device is part of the 74ALS series and is housed in a through-hole package, making it suitable for both prototyping and production environments. The SN74ALS165N operates within a voltage range of 4.5V to 5.5V and can function effectively in an operating temperature range of 0°C to 70°C. It features complementary outputs and is designed to convert parallel data into serial output, offering flexibility in data handling.
SN74ALS165N Features
- Operating Temperature: The SN74ALS165N is designed to operate within a temperature range of 0°C to 70°C, making it suitable for a variety of industrial and commercial applications.
- Number of Bits per Element: With 8 bits per element, this shift register can efficiently handle data in chunks of 8 bits, facilitating smooth data transfer and processing.
- Output Type: Complementary outputs ensure robust signal integrity and compatibility with a wide range of digital circuits.
- Logic Type: The shift register logic type allows for efficient parallel-to-serial data conversion, enhancing the versatility of the device.
- Voltage - Supply: The SN74ALS165N operates within a supply voltage range of 4.5V to 5.5V, ensuring compatibility with standard digital systems.
- Mounting Type: Through-hole mounting provides a secure and reliable connection, making it ideal for both prototyping and production.
- Product Status: The device is currently active, ensuring availability and support for ongoing projects.
- Series: As part of the 74ALS series, the SN74ALS165N inherits the robustness and reliability associated with this family of devices.
- Function: The ability to convert parallel data to serial data and vice versa makes it a versatile component for various digital systems.
- ECCN: Classified under EAR99, this device complies with export regulations, facilitating international use.
- HTSUS: The device is classified under HTSUS code 8542.39.0001, ensuring proper tariff classification.
- Package: Housed in a tube package, the SN74ALS165N is protected during storage and transportation.
- RoHS Status: Compliant with ROHS3, the SN74ALS165N meets environmental standards, making it suitable for eco-friendly applications.
- Base Product Number: The base product number 74ALS165 ensures easy identification and sourcing.
- Moisture Sensitivity Level (MSL): Not applicable, indicating that the device is not sensitive to moisture, reducing the risk of damage during handling and storage.
SN74ALS165N Applications
The SN74ALS165N is ideal for applications requiring efficient data conversion and handling. Its ability to convert parallel data to serial data and vice versa makes it suitable for:
- Data Communication Systems: Ideal for converting parallel data streams into serial format for transmission over communication lines.
- Microcontroller Interfaces: Enhances the functionality of microcontrollers by providing an efficient method for data input and output.
- Digital Signal Processing: Useful in systems where data needs to be processed in both parallel and serial formats.
- Industrial Control Systems: Provides reliable data handling in industrial environments, ensuring accurate and efficient operation.
- Consumer Electronics: Suitable for applications in consumer electronics where data conversion is necessary for device functionality.
Conclusion of SN74ALS165N
The SN74ALS165N stands out as a versatile and reliable shift register, offering a range of features that make it suitable for various digital applications. Its ability to handle parallel-to-serial data conversion, combined with its robust operating specifications, ensures that it can be effectively utilized in a wide range of systems. Whether used in data communication, microcontroller interfaces, or industrial control systems, the SN74ALS165N provides a reliable and efficient solution for data handling. Its compliance with environmental and export regulations further enhances its suitability for global applications.