Professional IC Distribution & Technical Solutions

Global leader in semiconductor components distribution and technical support services, empowering your product innovation and industry advancement

SN74LS299N Specifications

Detailed technical information and Application Scenarios

Product Details

PartNumberManufactorQuantityAvailability
SN74LS299NMOT/TI250Yes

SN74LS299N** is a **8-bit universal shift/storage register** manufactured by **MOT/TI (Motorola/Texas Instruments)**.

The SN74LS299N is a 8-bit universal shift/storage register manufactured by MOT/TI (Motorola/Texas Instruments).

Key Specifications:

  • Logic Family: 74LS
  • Function: 8-bit Universal Shift/Storage Register with 3-State Outputs
  • Package Type: PDIP (Plastic Dual In-Line Package)
  • Pin Count: 20
  • Operating Voltage: 4.75V to 5.25V
  • Operating Temperature Range: 0°C to 70°C
  • Output Type: Tri-State (High-Impedance, High, Low)
  • Clock Frequency: Up to 35 MHz (typical)
  • Propagation Delay: 15 ns (typical)
  • Power Dissipation: 100 mW (typical)

Features:

  • Parallel and Serial Data Modes (Shift Left, Shift Right, Parallel Load)
  • Asynchronous Master Reset (Clear)
  • Tri-State Outputs for bus-oriented applications
  • Wide Operating Voltage Range (compatible with TTL levels)
  • Common I/O Pins for reduced pin count

Applications:

  • Data storage and shifting
  • Serial-to-parallel and parallel-to-serial conversion
  • Arithmetic operations
  • Bus interfacing

This IC is commonly used in digital systems for temporary data storage and shifting operations.

# SN74LS299N: Practical Applications, Design Pitfalls, and Implementation Considerations

## Practical Application Scenarios

The SN74LS299N, a 8-bit universal shift/storage register manufactured by Texas Instruments (TI), is widely used in digital systems for data manipulation and temporary storage. Its versatility makes it suitable for several key applications:

1. Serial-to-Parallel and Parallel-to-Serial Conversion

The IC efficiently converts serial data streams (e.g., from UART or SPI) into parallel outputs for processing by microcontrollers or FPGAs. Conversely, it can parallel-load data and shift it out serially, making it useful in communication interfaces.

2. Data Buffering and Temporary Storage

In microprocessor-based systems, the SN74LS299N acts as a buffer between slow peripherals and high-speed processors, preventing data bottlenecks. Its bidirectional capability allows flexible read/write operations.

3. Arithmetic Operations

The device supports shift-left/shift-right operations, enabling binary multiplication/division in ALU designs. Its cascading feature allows wider data word handling (e.g., 16- or 32-bit operations).

4. Display Driving

It can drive LED or LCD displays by storing segment data and shifting it sequentially, reducing microcontroller I/O requirements.

## Common Design Pitfalls and Avoidance Strategies

1. Incorrect Clock Signal Management

*Pitfall:* Asynchronous or poorly timed clock signals cause metastability or data corruption.

*Solution:* Use synchronized clock sources and adhere to setup/hold times (e.g., 20 ns setup time for parallel load).

2. Power Supply Noise

*Pitfall:* The LS series is sensitive to voltage fluctuations, leading to erratic behavior.

*Solution:* Decouple VCC with a 0.1 µF ceramic capacitor near the IC and ensure stable 5V (±5%) supply.

3. Unterminated High-Frequency Lines

*Pitfall:* Ringing or reflections in shift operations at high speeds (>25 MHz).

*Solution:* Terminate signal lines with 50–100 Ω resistors if trace lengths exceed 1/10th of the signal wavelength.

4. Overlooking Mode Control States

*Pitfall:* Incorrect S0/S1 mode select inputs (e.g., left vs. right shift) lead to unintended operations.

*Solution:* Double-check control line sequencing in the design phase and verify with truth tables.

## Key Technical Considerations for Implementation

1. Fan-Out and Loading

The SN74LS299N has a fan-out of 10 LS-type loads. Exceeding this limit degrades signal integrity—use buffers (e.g., 74LS244) for higher loads.

2. Thermal Management

Power dissipation (typically 80 mW) requires attention in high-density layouts. Ensure adequate airflow or heatsinking for multi-device configurations.

3. Cascading Multiple Devices

For extended bit-width applications, connect QH’ (serial output) to the SER input of the next IC. Synchronize clocks and mode controls across all units.

4. Signal Integrity

Minimize trace lengths for clock and control signals to reduce skew. Use matched-length routing for parallel

Request Quotation

Part Number:
Quantity:
Target Price($USD):
Email:
Contact Person:
Additional Part Number
Quantity (Additional)
Special Requirements
Verification: =

Recommended Products

  • BCM2050KML ,250,QFN

    Manufacturer:** Broadcom **Part Number:** BCM2050KML ### **Specifications:** - **Type:** RF Transceiver - **Frequency Range:** 2.

  • CC0805FPNPO9BN470 ,4000,

    Manufacturer:** YAGEO **Part Number:** CC0805FPNPO9BN470 **Specifications:** - **Capacitance:** 47pF - **Tolerance:** ±1% - **Voltage Rating:** 50V - **Dielectric Material:** NP0 (C0G) - **Temperature Coefficient:** 0±30ppm/°C (NP0/C0G)

  • ED-9 ,130,DIP

    ED-9** is a high-performance electronic component commonly used in industrial and commercial applications.

  • HT4851,NXP,20,QFN

    LM336M5.0,NS,20,SOP8


Sales Support

Our sales team is ready to assist with:

  • Fast quotation
  • Price Discount
  • Technical specifications
Contact sales