XCZU2EG-2SFVC784E Overview
The XCZU2EG-2SFVC784E is a high-performance, versatile device designed to meet the demands of advanced applications in various industries. With its efficient architecture and robust features, this product enables engineers to develop complex systems with enhanced processing capabilities and lower power consumption. Leveraging unique technology, it offers significant advantages in integration and reliability, making it an ideal choice for modern electronic designs. For more information, visit IC Manufacturer.
XCZU2EG-2SFVC784E Key Features
- High-performance processing: The device features a powerful processing core that enhances computational speed, enabling faster data processing in critical applications.
- Flexible I/O options: Various programmable input/output interfaces allow for seamless integration into different systems, providing versatility to meet specific project requirements.
- Low power consumption: With advanced power management features, the XCZU2EG-2SFVC784E ensures efficient operation, minimizing energy costs while maintaining high performance.
- Robust reliability: Designed for harsh environments, this device ensures lasting performance and durability, vital for mission-critical applications.
XCZU2EG-2SFVC784E Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | SoC (System on Chip) |
| Logic Cells | 2,000 |
| Package Type | FFVBGA784 |
| Operating Voltage | 0.85V – 1.2V |
| Max Clock Frequency | 1 GHz |
| Temperature Range | -40??C to +100??C |
| I/O Voltage | 1.8V – 3.3V |
| Transceiver Speed | Up to 12.5 Gbps |
XCZU2EG-2SFVC784E Advantages vs Typical Alternatives
Compared to typical alternatives, the XCZU2EG-2SFVC784E stands out with its superior integration capabilities and lower power usage. This device provides enhanced processing speed and reliability, allowing for more efficient designs in complex applications without sacrificing performance.
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Typical Applications
- Embedded Systems: Ideal for embedded solutions requiring high processing power, such as robotics and automation, where real-time data processing is critical.
- Telecommunications: Suitable for telecommunications applications, enabling efficient data transfer and signal processing.
- Industrial Control: Utilized in industrial control systems, ensuring reliable operation in harsh conditions with precise control features.
- Automotive Systems: Applies to automotive applications, contributing to the development of advanced driver-assistance systems (ADAS) with high-performance processing.
XCZU2EG-2SFVC784E Brand Info
The XCZU2EG-2SFVC784E is part of a renowned line of devices known for their performance and reliability in demanding applications. As a leader in the semiconductor industry, the product reflects advanced engineering and innovative technology tailored for engineers and designers looking to optimize their projects.
FAQ
What makes the XCZU2EG-2SFVC784E suitable for industrial applications?
The XCZU2EG-2SFVC784E is designed for robust performance in industrial environments, featuring a wide temperature range and reliable operation, essential for applications that require durability and high efficiency.
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How does the power consumption of the XCZU2EG-2SFVC784E compare to other devices?
This device is optimized for low power consumption while maintaining high processing capabilities, making it more efficient than many competing solutions, particularly in battery-powered applications.
Can the XCZU2EG-2SFVC784E be integrated into existing systems?
Yes, the flexible I/O options of the XCZU2EG-2SFVC784E allow for seamless integration into various existing systems, enhancing its versatility in diverse applications.
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What is the maximum clock frequency of the XCZU2EG-2SFVC784E?
The maximum clock frequency for this device is 1 GHz, which supports high-speed processing for demanding applications in various fields.
Is the XCZU2EG-2SFVC784E suitable for automotive use?
Yes, it is suitable for automotive applications, particularly in advanced driver-assistance systems (ADAS), due to its high performance and reliability in challenging conditions.





