The NL3S588MUTBG is a high-performance, low-voltage single 2-input XOR (exclusive OR) gate from ON Semiconductor, designed to meet the demanding requirements of today's advanced digital electronics. This device is part of ON Semiconductor's extensive logic gate portfolio, which is known for its reliability, efficiency, and state-of-the-art performance.
Constructed with advanced silicon gate CMOS technology, the NL3S588MUTBG ensures minimal power consumption while maintaining high-speed operation. This makes it an ideal choice for battery-powered and portable applications where energy efficiency is paramount. The XOR gate operates over a voltage range of 1.65V to 5.5V, providing flexible compatibility with various logic levels and enabling it to interface seamlessly with both high-voltage and low-voltage circuits.
The NL3S588MUTBG is characterized by its fast propagation delay and balanced rise and fall times, which contribute to its excellent performance in high-speed signal processing applications. These features, combined with its wide operating temperature range, allow the device to perform reliably in a variety of challenging environments and applications, including consumer electronics, automotive systems, and industrial controls.
This device is offered in an ultra-small μDFN package, which is optimized for minimal space usage on the PCB, making it especially suitable for compact electronic assemblies. The NL3S588MUTBG's space-saving design does not compromise on its robustness or functionality, providing designers with a versatile solution that can be incorporated into a wide range of products without the need for significant board real estate.
ON Semiconductor's commitment to environmental sustainability is reflected in the NL3S588MUTBG, which is fully compliant with RoHS and Pb-Free standards, ensuring that it meets the global requirements for eco-friendly electronic components. With its combination of performance, power efficiency, and environmental consciousness, the NL3S588MUTBG is an exemplary component for modern digital systems looking to achieve high-speed logical operations with minimal power draw.