XCZU3CG-1SBVA484E Overview
The XCZU3CG-1SBVA484E is a versatile system-on-chip (SoC) that offers significant performance capabilities for a wide range of applications. With its advanced processing architecture and integration options, this device is designed to meet the demanding requirements of modern industrial technology. It seamlessly combines programmable logic and processing power, making it ideal for engineers and sourcing specialists looking for efficient solutions in complex designs. Explore more at IC Manufacturer.
XCZU3CG-1SBVA484E Key Features
- High-performance processing: Delivers substantial computational power to enhance processing speed in complex applications.
- Programmable logic integration: Allows for customized hardware configurations, ensuring flexibility and adaptability in various projects.
- Energy efficiency: Designed to optimize power consumption while maintaining high performance, crucial for battery-powered and energy-sensitive applications.
- Robust reliability: Built with durability in mind to withstand harsh industrial environments, ensuring long-term operation and reduced downtime.
XCZU3CG-1SBVA484E Technical Specifications
| Parameter | Value |
|---|---|
| Core Architecture | ARM Cortex-A53 |
| Logic Cells | 3,000 |
| Maximum Clock Frequency | 1.0 GHz |
| Memory Type | DDR4 |
| Package Type | 484-pin BGA |
| Operating Temperature Range | -40??C to 100??C |
| Power Supply Voltage | 1.0 V |
| GPIO Pins | 80 |
XCZU3CG-1SBVA484E Advantages vs Typical Alternatives
This SoC offers distinct advantages over typical alternatives, including superior processing capabilities, enhanced configurability, and lower power consumption. Its combination of high efficiency and reliability positions it as a leading choice for engineers seeking robust solutions in demanding applications.
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Typical Applications
- Advanced robotics control systems leverage the device’s processing power for real-time data analysis and decision-making, enhancing operational efficiency and adaptability.
- Industrial automation solutions benefit from the integrated programmable logic, allowing for tailored implementations that meet specific process requirements.
- Telecommunications infrastructure applications utilize the high-speed processing capabilities to manage complex data routing and communication protocols effectively.
- Smart grid technology employs the flexibility of this SoC to optimize energy distribution and improve system reliability in challenging environments.
XCZU3CG-1SBVA484E Brand Info
The XCZU3CG-1SBVA484E is a product from a leading manufacturer known for its innovative solutions in the semiconductor industry. This device exemplifies the brand’s commitment to delivering cutting-edge technology that empowers engineers and designers in various sectors, including automotive, industrial, and telecommunications. Its blend of performance and flexibility is a testament to the brand’s dedication to quality and excellence.
FAQ
What types of applications can the XCZU3CG-1SBVA484E be used for?
This SoC is suitable for applications in robotics, industrial automation, telecommunications, and smart grid technology, providing versatility in handling complex tasks across various sectors.
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How does the XCZU3CG-1SBVA484E compare to other processors?
Compared to traditional processors, this device offers higher performance with integrated programmable logic, allowing for customized applications while maintaining energy efficiency.
What is the maximum operating temperature for the XCZU3CG-1SBVA484E?
The maximum operating temperature range for this device is -40??C to 100??C, making it suitable for harsh environmental conditions often found in industrial applications.
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Can the XCZU3CG-1SBVA484E be used in battery-powered devices?
Yes, its energy-efficient design makes it ideal for battery-powered applications where low power consumption is critical for prolonged operational life.
What type of memory is compatible with the XCZU3CG-1SBVA484E?
This SoC is compatible with DDR4 memory, providing high-speed data access essential for demanding computing tasks and applications.






