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MC10E016FNG Description
MC10E016FNG Description
The MC10E016FNG from onsemi is a high-performance 8-bit binary counter designed for demanding digital applications. Operating within a 4.2V to 5.7V supply range, this synchronous counter features a 900 MHz count rate, making it suitable for high-speed data processing and clock distribution systems. Housed in a 28PLCC package, it supports surface-mount technology (SMT) and is rated for 0°C to 85°C operating temperatures. The device offers positive and negative edge triggering, along with asynchronous reset functionality, ensuring flexible timing control. Although marked as obsolete, its ROHS3 compliance and REACH unaffected status make it a reliable choice for legacy systems.
MC10E016FNG Features
- High-Speed Operation: 900 MHz count rate for rapid data handling.
- Synchronous Timing: Ensures precise clock-aligned counting.
- Dual-Edge Triggering: Supports both positive and negative edge triggers for versatile timing.
- Asynchronous Reset: Immediate counter reset independent of the clock.
- Wide Voltage Range: 4.2V–5.7V supply compatibility for robust performance.
- Surface-Mount Design: 28PLCC package ideal for compact PCB layouts.
- Environmental Compliance: ROHS3 and REACH compliant for eco-friendly applications.
MC10E016FNG Applications
The MC10E016FNG excels in high-frequency digital systems, including:
- Telecommunications: Clock division and frequency synthesis in networking equipment.
- Test & Measurement: High-speed counting in oscilloscopes and logic analyzers.
- Military/Aerospace: Legacy systems requiring reliable, high-speed counters.
- Data Acquisition: Time-stamping and event counting in precision instruments.
Conclusion of MC10E016FNG
The MC10E016FNG remains a robust 8-bit binary counter for high-speed applications, despite its obsolete status. Its 900 MHz performance, dual-edge triggering, and asynchronous reset make it a standout choice for legacy designs requiring precision and reliability. While newer alternatives exist, this device is ideal for maintaining or upgrading older systems where compatibility and proven performance are critical.



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