XCZU3EG-1SFVC784I Overview
The XCZU3EG-1SFVC784I is a versatile and powerful device tailored for high-performance applications in industrial settings. Designed with advanced processing capabilities, it supports a wide range of functionalities essential for modern electronic systems. This component is ideal for engineers and sourcing specialists seeking reliable solutions that enhance efficiency and integration in their projects. Explore more at IC-fabrikant.
XCZU3EG-1SFVC784I Key Features
- High-performance processing: The XCZU3EG-1SFVC784I features robust processing capabilities that optimize workload management, ensuring minimal latency and improved operational efficiency.
- Flexible I/O support: With extensive I/O options, this device allows seamless integration into existing systems, making it easier to adapt to various application requirements.
- Enhanced power efficiency: Designed to operate with lower power consumption, this model helps reduce operational costs while maintaining high performance, contributing to a greener technology footprint.
- Scalable architecture: Its architecture supports scalability, enabling users to easily upgrade or expand their systems without significant redesign, thus extending the lifecycle of their projects.
XCZU3EG-1SFVC784I Technical Specifications
Parameter | Waarde |
---|---|
Architecture | UltraScale+ |
Logic Cells | 85,000 |
DSP Slices | 220 |
Memory (RAM) | 1.5 MB |
Transceivers | 16 |
Type verpakking | 784-FBGA |
Temperatuurbereik | -40??C to +100??C |
Voedingsspanning | 0.85V to 1.0V |
XCZU3EG-1SFVC784I Advantages vs Typical Alternatives
The XCZU3EG-1SFVC784I offers superior processing power and flexibility compared to typical alternatives. Its advanced architecture ensures higher sensitivity and accuracy in data processing, while lower power requirements enhance energy efficiency, making it a reliable choice for demanding industrial applications.
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Typische toepassingen
- Machine vision systems utilize the XCZU3EG-1SFVC784I for real-time image processing and analysis, enhancing quality control in manufacturing processes.
- Embedded systems benefit from its integrated features, enabling more compact designs without sacrificing performance.
- Automated test equipment leverages its capabilities for precise measurement and control, improving overall testing efficiencies.
- Data acquisition systems utilize the device for fast sampling rates, ensuring timely and accurate data collection in various research and industrial applications.
XCZU3EG-1SFVC784I Brand Info
The XCZU3EG-1SFVC784I is part of the cutting-edge UltraScale+ family, renowned for delivering exceptional performance and versatility in complex applications. This product exemplifies the commitment to innovation and quality, making it a trusted choice for engineers looking to enhance their design capabilities.
FAQ
What are the primary applications for the XCZU3EG-1SFVC784I?
The XCZU3EG-1SFVC784I is ideal for applications such as machine vision, embedded systems, automated test equipment, and data acquisition systems, making it versatile across various sectors.
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How does the power efficiency of the XCZU3EG-1SFVC784I compare to competitors?
Its design focuses on lower power consumption while maintaining high performance, providing a significant advantage over many competing devices that require higher power levels for similar functionalities.
Is the XCZU3EG-1SFVC784I suitable for extreme temperature environments?
Yes, this device operates effectively within a temperature range of -40??C to +100??C, making it suitable for harsh industrial environments where temperature fluctuations are common.
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What type of memory does the XCZU3EG-1SFVC784I contain?
The device includes 1.5 MB of RAM, which supports its high-performance processing capabilities, allowing for efficient management of tasks and data.
Can the XCZU3EG-1SFVC784I be easily integrated into existing systems?
Yes, its flexible I/O support allows for seamless integration into existing systems, facilitating adaptability to various application requirements without significant redesign efforts.