XC7Z014S-2CLG484E Overview
The XC7Z014S-2CLG484E is a versatile system-on-chip (SoC) solution designed for embedded applications. Offering a combination of programmable logic and processing capabilities, it is ideal for accelerating design cycles in a wide range of industries. This device supports advanced connectivity and processing performance, making it a preferred choice for engineers looking to enhance their designs with efficiency and flexibility. For more information, visit IC Manufacturer.
XC7Z014S-2CLG484E Key Features
- Dual-core ARM Cortex-A9: Provides high processing performance and efficient multitasking capabilities, enhancing the overall system responsiveness.
- Integrated programmable logic: This feature allows for custom hardware acceleration, enabling designers to tailor the device for specific applications, thus saving time and costs.
- Low power consumption: Designed for energy efficiency, the device minimizes operational costs while delivering reliable performance, essential for battery-operated applications.
- Flexible I/O options: Supports various interfaces, facilitating easy integration into existing systems and adaptability for diverse applications.
XC7Z014S-2CLG484E Technical Specifications
| Parameter | Value |
|---|---|
| Architecture | Dual-core ARM Cortex-A9 |
| Logic Cells | Approximately 28,000 |
| Package Type | CLG484 |
| Operating Voltage | 0.95V to 1.15V |
| Temperature Range | -40??C to 100??C |
| Flash Memory | 128 MB |
| RAM | 512 MB |
| Speed Grade | -2 |
XC7Z014S-2CLG484E Advantages vs Typical Alternatives
This SoC stands out against typical alternatives due to its superior integration of processing and programmable logic capabilities. It provides enhanced performance with low power consumption, making it an ideal choice for applications requiring both efficiency and reliability.
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Typical Applications
- Industrial Automation: Ideal for controlling machinery and processes, this device enhances operational efficiency through real-time data processing and analysis.
- Medical Devices: Used in portable and stationary medical equipment, providing the necessary processing power while maintaining stringent safety standards.
- Robotics: Supports advanced robotic systems by enabling complex algorithms and control systems that improve functionality and responsiveness.
- Telecommunications: Employed in networking equipment, this SoC facilitates high-speed data processing and routing capabilities, crucial for modern communication systems.
XC7Z014S-2CLG484E Brand Info
The XC7Z014S-2CLG484E is manufactured by a leading provider of semiconductor solutions, known for delivering cutting-edge technology that meets the evolving demands of the electronics industry. This device represents a commitment to innovation and quality, ensuring that engineers have access to the tools needed for successful product development.
FAQ
What is the maximum operating temperature for the XC7Z014S-2CLG484E?
The maximum operating temperature for this device is 100??C, making it suitable for applications in harsh environments and ensuring reliable performance under challenging conditions.
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How does the dual-core architecture benefit applications?
The dual-core architecture allows for efficient multitasking and improved processing speeds, enabling applications to handle complex tasks simultaneously, which is critical for performance-intensive projects.
Can this device be used in battery-operated systems?
Yes, the XC7Z014S-2CLG484E is designed with low power consumption features, making it an excellent choice for battery-operated systems that require efficient energy management.
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What types of interfaces does the XC7Z014S-2CLG484E support?
This device supports a variety of flexible I/O options, including standard interfaces, which facilitate seamless integration into diverse applications and systems.
Is the XC7Z014S-2CLG484E suitable for high-speed data applications?
Absolutely, its integrated processing capabilities and superior architecture make it particularly well-suited for high-speed data applications, enhancing performance and efficiency.





