20 - pin SSOP clock buffer ICs
Manufacturer: ['cypress-semiconductor', 'rochester', 'cypress']
The CY2CC910OXC Series is an advanced line of high-performance CMOS analog switches designed to meet the demanding requirements of modern electronic applications. Renowned for their low power consumption, high speed, and exceptional signal integrity, these switches are ideal for a variety of signal routing applications, including audio, video, and data signals. With a typical on-resistance of just a few ohms, the CY2CC910OXC Series ensures minimal signal loss and distortion, making them perfect for high-frequency applications where maintaining signal quality is critical.
One of the standout features of the CY2CC910OXC Series is its wide voltage supply range, accommodating both low-voltage and higher voltage applications. This versatility allows engineers to integrate these switches into a diverse range of systems, from battery-powered devices to robust industrial equipment. The series operates seamlessly within a temperature range of -40°C to +125°C, ensuring reliable performance even in challenging environmental conditions.
The design of the CY2CC910OXC Series incorporates a low-leakage technology that minimizes power consumption while maintaining high switching speeds. This is particularly beneficial in battery-operated devices where energy efficiency is paramount. Additionally, the series is housed in compact packages, which facilitate easy integration into space-constrained designs, making them suitable for applications in smartphones, tablets, and other portable electronics.
Typical applications for the CY2CC910OXC Series include audio and video switching, data line multiplexing, and signal routing in communication devices. They are widely used in consumer electronics, telecommunications, automotive systems, and medical devices, where reliability and performance are critical. Overall, the CY2CC910OXC Series stands out as an exceptional solution for designers seeking high-quality analog switches that deliver both performance and efficiency in their electronic designs.
20-SSOP
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