The N74F112D from NXP Semiconductors is a high-performance, dual J-K flip-flop integrated circuit that features individual J, K, set, reset, and clock inputs for each flip-flop. This versatile component is designed for applications requiring the highest speed performance operating in the very high-speed Si-gate CMOS technology.
Key Features
- High-Speed Performance: The N74F112D is capable of operating at high clock frequencies, making it suitable for fast data processing and high-speed computing applications.
- Edge-Triggered: This flip-flop is edge-triggered, capturing data on the rising or falling edge of the clock signal, which enhances its ability to synchronize with system operations.
- Master-Slave Configuration: The master-slave setup of the flip-flops ensures that the state changes only on the clock's transition, providing stability and preventing glitches.
- Independent Direct Set and Reset: Each flip-flop offers independent set and reset inputs for direct clearing or presetting, making it highly flexible for various logic applications.
- Standard Output Capability: The device provides both true and complemented outputs for each flip-flop, offering standard output driving capabilities.
- Multiple Package Options: The N74F112D is available in a variety of packages, including the space-saving SOIC package, which is suitable for compact circuit designs.
Applications
The N74F112D is ideal for a range of applications where high-speed and reliable flip-flop operations are required. Some common use cases include:
- High-speed computing systems
- Communication systems
- Data storage devices
- Counters and dividers
- Pulse shaping
- Control systems
Technical Specifications
| Parameter |
Value |
| Logic Type |
Dual J-K Flip-Flop |
| Operating Voltage |
4.5V to 5.5V |
| Operating Temperature |
-40°C to +85°C |
| Package Type |
SOIC |
| Propagation Delay |
Typically 6.5ns at 5V |
With its robust design and high-speed capabilities, the N74F112D is a reliable choice for designers looking to implement flip-flop logic in their digital systems.