Product Overview: SNJ54LS174W
The SNJ54LS174W is a high-performance integrated circuit from Texas Instruments, renowned for its reliability and precision. This device is a member of the 54LS series, which is characterized by its low power consumption and high-speed capabilities. The SNJ54LS174W is specifically designed to meet the stringent requirements of military and aerospace applications, ensuring operation under extreme environmental conditions.
Key Features
- Hex/Quadruple D-Type Flip-Flops: The SNJ54LS174W contains six D-type flip-flops with a direct clear input, providing synchronous state changes for digital systems.
- Edge-Triggered Design: It features an edge-triggered design, ensuring that the flip-flops change state on the rising edge of the clock input, which enhances the precision of data handling.
- Low Power Schottky Technology: Utilizing Low Power Schottky (LPS) technology, the device offers a perfect balance between speed and power consumption, making it ideal for power-sensitive applications.
- Wide Operating Temperature Range: With an operational temperature range of -55°C to +125°C, the SNJ54LS174W is built to withstand harsh environments and maintain performance stability.
- High-Reliability Ceramic Packaging: The device comes in a durable ceramic package, which provides excellent thermal and mechanical protection.
Applications
The SNJ54LS174W is suitable for a variety of applications that require high-speed and reliable data storage or transfer. It is commonly used in:
- Control systems for military and aerospace industries.
- Communication equipment requiring robust data handling.
- Industrial process control systems where reliability is paramount.
- Complex computing systems with stringent performance requirements.
Product Specifications
| Parameter |
Value |
| Logic Family |
54LS |
| Number of Flip-Flops |
6 |
| Package / Case |
Ceramic |
| Operating Temperature |
-55°C to +125°C |
| Mounting Type |
Through-Hole |
Overall, the SNJ54LS174W from Texas Instruments stands out for its exceptional performance and resilience, making it a trusted component for mission-critical systems where failure is not an option.