


Analog Devices Inc./Maxim Integrated
MAX9381ESA
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MAX9381ESA Description
MAX9381ESA Description
The MAX9381ESA from Analog Devices Inc./Maxim Integrated is a high-performance D flip-flop designed for precision data and clock synchronization in high-speed digital systems. Operating at an impressive clock frequency of 3 GHz, this single-element (1-bit) flip-flop features complementary outputs and is triggered on the negative edge, making it ideal for low-jitter applications. Packaged in a surface-mount form factor, the device is REACH compliant and classified under ECCN EAR99, ensuring broad usability in global markets. Its moisture sensitivity level (MSL 1) guarantees reliability even in demanding environments.
MAX9381ESA Features
- Ultra-High Speed: Supports clock frequencies up to 3 GHz, enabling use in cutting-edge communication and computing systems.
- Complementary Outputs: Provides both true and inverted outputs for flexible signal routing.
- Negative-Edge Triggering: Ensures precise timing alignment in synchronous circuits.
- Low Power Consumption: Optimized for efficiency without sacrificing performance.
- Robust Packaging: Available in bulk packaging with MSL 1 (Unlimited) rating for extended shelf life.
- Wide Operating Range: Suitable for industrial and commercial applications with stringent timing requirements.
MAX9381ESA Applications
The MAX9381ESA excels in applications requiring high-speed data latching and clock distribution, such as:
- Optical Networking: Synchronization in 10G/40G/100G transceivers.
- Test & Measurement Equipment: Precision timing in oscilloscopes and logic analyzers.
- Data Centers: Clock recovery and retiming in high-speed interconnects.
- Military/Aerospace: Reliable operation in mission-critical systems due to its rugged design.
Conclusion of MAX9381ESA
The MAX9381ESA stands out as a high-speed, low-jitter D flip-flop with superior performance for timing-critical applications. Its 3 GHz capability, complementary outputs, and negative-edge triggering make it a preferred choice over slower or less flexible alternatives. Whether in telecom infrastructure, high-performance computing, or advanced instrumentation, this device delivers precision, reliability, and efficiency, solidifying its role in next-generation digital designs.



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