XCZU2EG-L1SBVA484I Overview
The XCZU2EG-L1SBVA484I is a highly integrated system-on-chip (SoC) designed for high-performance applications. This device combines exceptional processing power with advanced programmable logic, making it suitable for a variety of industrial and commercial applications. With its energy-efficient architecture and robust connectivity options, the XCZU2EG-L1SBVA484I stands out as a reliable solution for engineers and sourcing specialists looking for versatile and powerful semiconductor components. Explore more about this product at IC Manufacturer.
XCZU2EG-L1SBVA484I Key Features
- High-performance processing: The device offers multiple processing cores, providing enhanced computational capabilities that improve overall system performance.
- Versatile programmable logic: This feature allows for custom hardware configurations, enabling users to tailor functionality according to specific application needs.
- Energy efficiency: Designed for low power consumption, the device ensures that systems remain cost-effective and environmentally friendly.
- Robust connectivity options: The XCZU2EG-L1SBVA484I supports various communication protocols, enhancing its integration with existing systems and expanding its application scope.
XCZU2EG-L1SBVA484I Technical Specifications
| Parameter | Value |
|---|---|
| Architecture | ARM Cortex-A53 |
| Logic Cells | Up to 2,000 |
| Memory Size | 1 GB DDR4 |
| Power Supply Voltage | 0.85V – 1.0V |
| Package Type | 484-pin FFG |
| Operating Temperature Range | -40??C to +100??C |
| Maximum I/O Pins | 250 |
| Clock Frequency | Up to 1.2 GHz |
XCZU2EG-L1SBVA484I Advantages vs Typical Alternatives
The XCZU2EG-L1SBVA484I offers notable advantages over typical alternatives, including superior processing capability and enhanced energy efficiency. Its integrated architecture reduces the need for additional components, leading to lower system costs and improved reliability in demanding applications.
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Typical Applications
- Industrial automation systems benefit from the device’s high processing power and flexibility, enabling complex control tasks and real-time data processing.
- Video processing and analytics applications utilize its robust computational resources to handle high-resolution image data efficiently.
- Telecommunications infrastructure can leverage the device for improved performance in data transmission and management.
- Medical devices require reliability and accuracy, both of which are supported by the XCZU2EG-L1SBVA484I’s advanced features and specifications.
XCZU2EG-L1SBVA484I Brand Info
The XCZU2EG-L1SBVA484I is part of a renowned brand known for its commitment to innovation and quality in semiconductor solutions. This brand consistently develops products that meet the highest standards, ensuring that the XCZU2EG-L1SBVA484I is a trusted choice for engineers and sourcing specialists across various industries.
FAQ
What makes the XCZU2EG-L1SBVA484I suitable for industrial applications?
The design of the XCZU2EG-L1SBVA484I includes features such as high reliability, low power consumption, and robust connectivity options, making it highly suitable for industrial environments that demand efficiency and durability.
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Can the XCZU2EG-L1SBVA484I be integrated with existing systems?
Yes, the device supports various communication protocols, facilitating seamless integration with existing systems and enhancing overall system functionality.
What is the maximum operating temperature for the XCZU2EG-L1SBVA484I?
The XCZU2EG-L1SBVA484I can operate within a temperature range of -40??C to +100??C, making it versatile for various environmental conditions.
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How does the XCZU2EG-L1SBVA484I compare in terms of power efficiency?
This device is designed for low power consumption, providing significant advantages in energy efficiency compared to many typical alternatives, which can lead to reduced operational costs.
What types of memory does the XCZU2EG-L1SBVA484I support?
The XCZU2EG-L1SBVA484I supports 1 GB DDR4 memory, which enhances its processing capabilities and allows for efficient handling of data-intensive applications.






