XC7Z015-L1CLG485I Overview
The XC7Z015-L1CLG485I is a high-performance System on Chip (SoC) designed for a variety of applications. This device integrates both programmable logic and processing capabilities, enabling efficient data handling and processing tasks. With its flexible architecture, it allows engineers to implement custom solutions while maintaining high performance. The XC7Z015-L1CLG485I is ideal for applications requiring low power consumption without compromising on processing power. For more detailed specifications, visit IC Manufacturer.
XC7Z015-L1CLG485I Key Features
- Dual-core ARM Cortex-A9 processor allows for efficient multitasking, significantly enhancing processing power for complex applications.
- Integrated FPGA fabric offers flexibility in design, enabling customized hardware acceleration tailored to specific industrial tasks.
- Low power consumption ensures extended operational life for battery-powered devices, enhancing reliability in remote applications.
- Built-in security features protect sensitive data and applications, providing peace of mind for users developing secure systems.
XC7Z015-L1CLG485I Technical Specifications
| Parameter | Specification |
|---|---|
| Core Architecture | Dual-core ARM Cortex-A9 |
| FPGA Logic Cells | 15,000 |
| Operating Voltage | 1.0V to 1.2V |
| Maximum Clock Frequency | 1.0 GHz |
| Package Type | CLG485 |
| Number of I/O Pins | 85 |
| Temperature Range | -40??C to +100??C |
| Memory Interface | DDR3/DDR3L |
XC7Z015-L1CLG485I Advantages vs Typical Alternatives
The XC7Z015-L1CLG485I stands out against typical alternatives due to its unique combination of processing power and integrated FPGA capabilities. This allows for enhanced flexibility in design, greater integration options, and lower overall system costs. Its low power consumption and robust security features further provide significant advantages in energy efficiency and data protection.
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Typical Applications
- Industrial automation systems benefit from the device’s processing power and flexibility, enabling real-time data analysis and control in manufacturing environments.
- Automotive applications utilize the XC7Z015-L1CLG485I for advanced driver assistance systems (ADAS), enhancing vehicle safety and performance.
- Medical devices leverage the SoC’s reliability and low power consumption, ensuring consistent operation in critical healthcare settings.
- Communication systems can harness the integrated processing and FPGA capabilities for efficient data handling and signal processing.
XC7Z015-L1CLG485I Brand Info
The XC7Z015-L1CLG485I is produced by a leading manufacturer recognized for its innovation in semiconductor technology. This product is part of a series designed to meet the evolving demands of various industrial sectors, emphasizing performance, efficiency, and security. The brand is committed to delivering high-quality solutions that empower engineers to develop cutting-edge applications.
FAQ
What are the primary use cases for the XC7Z015-L1CLG485I?
This device is primarily used in industrial automation, automotive systems, medical devices, and communication applications, benefiting from its high performance and flexibility.
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How does the power consumption of the XC7Z015-L1CLG485I compare to similar products?
The XC7Z015-L1CLG485I features low power consumption, making it an efficient choice for battery-operated devices compared to many competing products that may consume more energy.
What security features are integrated into the XC7Z015-L1CLG485I?
This SoC includes built-in security technologies designed to protect sensitive data and applications, ensuring system integrity and user safety in various applications.
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Can the XC7Z015-L1CLG485I be used in outdoor applications?
Yes, with an operating temperature range of -40??C to +100??C, the device is suitable for various outdoor applications, ensuring reliable performance in harsh conditions.
What are the memory interface options available with the XC7Z015-L1CLG485I?
The device supports DDR3 and DDR3L memory interfaces, allowing for high-speed data transfers essential for demanding applications.





