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NBSG86AMNG
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NBSG86AMNG Description
NBSG86AMNG Description
The NBSG86AMNG from onsemi is a high-performance, differential-configurable multiple-function logic gate designed for precision signal processing in demanding applications. Packaged in a compact 16-QFN surface-mount format, this IC operates within a 2.375V to 3.465V supply range, making it suitable for low-power, high-speed systems. With two differential inputs and two circuits, it offers flexibility in logic configuration while maintaining robust performance. The device is RoHS3 compliant and adheres to REACH Unaffected standards, ensuring environmental and regulatory compliance.
NBSG86AMNG Features
- Differential Output Type: Ensures noise immunity and signal integrity in high-speed data transmission.
- Configurable Multiple-Function Logic: Adaptable to various logic operations (AND, OR, XOR, etc.), providing design versatility.
- Low-Voltage Operation (2.375V–3.465V): Ideal for portable and battery-powered applications.
- Surface-Mount 16-QFN Package: Saves board space and enhances thermal performance.
- Robust Compliance: Meets ROHS3, EAR99, and REACH Unaffected standards.
- High Reliability: Moisture Sensitivity Level (MSL) 1 ensures durability in humid environments.
NBSG86AMNG Applications
- High-Speed Communication Systems: Differential signaling makes it ideal for SerDes interfaces, clock distribution, and backplane drivers.
- Test and Measurement Equipment: Precision timing and signal conditioning in oscilloscopes and logic analyzers.
- Data Centers and Networking: Used in FPGA/ASIC interfacing and high-speed data routing.
- Aerospace and Defense: Reliable performance in harsh environments due to robust construction.
Conclusion of NBSG86AMNG
The NBSG86AMNG stands out for its configurable logic, differential signaling, and low-voltage operation, making it a versatile solution for high-speed digital systems. While marked as obsolete, its performance in noise-sensitive applications remains unmatched. Engineers designing for communications, test equipment, or high-reliability systems should consider this IC for its precision and adaptability. For modern alternatives, consult onsemi’s latest offerings while leveraging this device’s proven legacy in critical designs.



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