74AUP1T97UKAZ
Manufacturer No:
74AUP1T97UKAZ
Manufacturer:
Description:
NEXPERIA 74AUP1T97 - LOGIC CIRCU
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In Stock : 475660
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74AUP1T97UKAZ Specifications
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The MC100EPT23MNR4G is a high-speed differential receiver integrated circuit chip. It is part of the ECLinPS MAX family of devices and offers several advantages and application scenarios:Advantages: 1. High-speed operation: The MC100EPT23MNR4G is designed to operate at very high speeds, making it suitable for applications that require fast data transmission and processing. 2. Low jitter: It provides low jitter performance, ensuring accurate and reliable data transmission. 3. Differential signaling: The chip uses differential signaling, which helps in reducing noise and improving signal integrity. 4. Wide operating voltage range: It operates over a wide voltage range, allowing flexibility in different power supply configurations. 5. ECL compatibility: The chip is compatible with ECL (Emitter-Coupled Logic) logic levels, making it suitable for integration with other ECL devices.Application scenarios: 1. High-speed data communication: The MC100EPT23MNR4G can be used in applications such as high-speed data communication systems, where fast and reliable transmission of data is crucial. 2. Networking equipment: It can be employed in networking equipment like routers, switches, and network interface cards, where high-speed data processing and transmission are required. 3. Test and measurement instruments: The chip can be used in high-speed test and measurement instruments, such as oscilloscopes and logic analyzers, to accurately capture and analyze fast signals. 4. Data storage systems: It can be utilized in data storage systems, including RAID controllers and storage area networks (SANs), to handle high-speed data transfer between storage devices. 5. High-performance computing: The MC100EPT23MNR4G can be integrated into high-performance computing systems, such as supercomputers and data centers, to enable fast and reliable data processing.It is important to note that the specific application scenarios may vary depending on the requirements and design considerations of the overall system.
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