XCZU2CG-1SFVC784I Overview
The XCZU2CG-1SFVC784I is a highly advanced System on Chip (SoC) designed for high-performance applications. It integrates a powerful processing unit with multiple programmable logic elements, ensuring exceptional flexibility and efficiency. This device is particularly suited for applications demanding real-time processing and low power consumption, making it an ideal choice for engineers and sourcing specialists seeking cutting-edge solutions in industrial technology. For more information, visit IC Manufacturer.
XCZU2CG-1SFVC784I Key Features
- High-performance processing: Equipped with a robust processing unit that delivers superior computational power, allowing for complex algorithms and data-intensive tasks to be executed with ease.
- Versatile programmable logic: The integration of programmable logic elements provides engineers with the ability to customize functionalities, enhancing design flexibility and enabling tailored solutions for specific applications.
- Low power consumption: Designed with energy efficiency in mind, this SoC allows for reduced operational costs and longer battery life in portable applications, making it ideal for energy-sensitive environments.
- Advanced connectivity options: The XCZU2CG-1SFVC784I offers multiple interfaces for seamless communication with various peripherals and components, ensuring compatibility and ease of integration into existing systems.
XCZU2CG-1SFVC784I Technical Specifications
| Parameter | Description |
|---|---|
| Core Architecture | ARM Cortex-A53 |
| Logic Cells | Up to 100K |
| Memory | 4GB DDR4 |
| Operating Voltage | 0.85V – 1.0V |
| Package Type | 784-ball FCBGA |
| Max Clock Frequency | 1.2 GHz |
| Power Consumption | Low Power Mode: < 0.5W |
| Temperature Range | -40??C to +100??C |
XCZU2CG-1SFVC784I Advantages vs Typical Alternatives
This device offers significant advantages over typical alternatives in terms of processing speed, power efficiency, and integration capabilities. Its combination of high-performance processing and low power consumption makes it suitable for demanding applications while maintaining operational cost-effectiveness and reliability.
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Typical Applications
- Embedded systems in industrial automation, where rapid data processing and control are essential for operational efficiency and safety.
- Telecommunications infrastructure, leveraging the device??s advanced connectivity options for seamless data transmission.
- Medical devices that require precise and reliable data processing for diagnostics and monitoring.
- Automotive applications, enhancing vehicle safety and performance through real-time processing of sensor data.
XCZU2CG-1SFVC784I Brand Info
The XCZU2CG-1SFVC784I is manufactured by a leader in semiconductor technology, known for delivering innovative solutions that meet the evolving needs of engineers and designers. This product exemplifies the commitment to quality and performance, providing a reliable option for high-demand applications across various industries.
FAQ
What are the main applications for the XCZU2CG-1SFVC784I?
The XCZU2CG-1SFVC784I is suitable for applications in embedded systems, telecommunications, medical devices, and automotive technology. Its versatility allows it to excel in various demanding environments.
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How does the XCZU2CG-1SFVC784I compare to other SoCs?
This device stands out due to its combination of high-performance processing, low power consumption, and flexibility in design. It offers advantages in speed and efficiency compared to many alternative SoCs.
What is the operating temperature range of this device?
The XCZU2CG-1SFVC784I operates effectively within a temperature range of -40??C to +100??C, ensuring reliability in challenging environmental conditions.
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What type of packaging does the XCZU2CG-1SFVC784I use?
This model utilizes a 784-ball FCBGA package, which provides a compact form factor while ensuring robust electrical performance and thermal management.
Can the XCZU2CG-1SFVC784I be used in battery-operated devices?
Yes, its low power consumption characteristics make it particularly well-suited for battery-operated and portable devices, enhancing overall energy efficiency and operational lifespan.





