The ON Semiconductor MC10H174M is a high-performance quad D-type flip-flop, designed for use in systems that demand the utmost in speed and power efficiency. This advanced integrated circuit is part of ON Semiconductor's 10H series, built on a robust MECL 10K technology platform, ensuring reliable operation even under stringent conditions.
Key Features
- High-Speed Operation: The MC10H174M is capable of toggling at speeds up to 1 GHz, making it an ideal choice for high-speed data processing and communication systems.
- MECL 10K Series: Manufactured with the proven MECL 10K technology, this device offers excellent noise immunity and stable performance, a necessity for critical applications.
- Quad Configuration: This component features four D-type flip-flops in a single package, providing compact and efficient data storage and signal synchronization solutions.
- Master Reset: An integrated master reset function allows for the synchronous clearing of all flip-flops, ensuring system reliability and ease of control.
- Differential Outputs: The MC10H174M offers true and complement outputs, providing design flexibility and the ability to implement non-inverting or inverting logic without additional components.
- Power Supply: It operates with a power supply voltage of -5.2V, typical for ECL (Emitter Coupled Logic) based designs, ensuring compatibility with existing systems and standard power rails.
Applications
The MC10H174M is suitable for a wide range of applications, particularly where speed and reliability are paramount. These include:
- High-speed computing and data processing
- Telecommunications and networking equipment
- Instrumentation and test equipment
- Precision timing circuits
- Professional audio and video equipment
Product Specifications
| Parameter |
Value |
| Technology |
MECL 10K |
| Toggle Frequency (max) |
1 GHz |
| Supply Voltage |
-5.2V |
| Number of Flip-Flops |
4 |
| Package |
SOIC-16 |
For designers and engineers seeking high-speed logic solutions, the ON Semiconductor MC10H174M offers a reliable and efficient choice, blending speed with the robustness of ECL technology.