XC7Z030-1SB485I Overview
The XC7Z030-1SB485I is a versatile SoC that combines the power of a dual-core ARM Cortex-A9 processor with programmable logic. Designed for high-performance applications, this device enables efficient processing and seamless integration into various industrial and commercial systems. With its robust architecture, the XC7Z030-1SB485I is ideal for applications requiring extensive data processing and real-time control, delivering exceptional performance and reliability. For more information, visit IC Manufacturer.
XC7Z030-1SB485I Key Features
- Dual-core ARM Cortex-A9 architecture provides enhanced computational power, allowing for efficient multitasking and high-speed data processing.
- Integrated programmable logic facilitates custom hardware acceleration, improving flexibility and reducing overall system costs.
- Low power consumption ensures extended operational life in battery-powered devices, contributing to energy efficiency.
- Rich set of interfaces supports various connectivity options, enabling seamless integration with other components in the system.
XC7Z030-1SB485I Technical Specifications
| Parameter | Value |
|---|---|
| Processor Type | Dual-core ARM Cortex-A9 |
| Operating Frequency | Up to 1 GHz |
| Programmable Logic Cells | 28K Logic Cells |
| Memory Support | Up to 1 GB DDR3 |
| I/O Pins | 85 |
| Power Supply Voltage | 1.0V – 1.2V |
| Package Type | 484-ball FBG |
| Operating Temperature | -40??C to +100??C |
XC7Z030-1SB485I Advantages vs Typical Alternatives
This device offers significant advantages over typical alternatives due to its high-performance dual-core processing and integrated programmable logic. These features provide enhanced flexibility and efficiency, making it suitable for demanding applications that require both processing power and customization.
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Typical Applications
- Industrial Automation: The XC7Z030-1SB485I excels in industrial automation, where real-time control and processing speed are critical for optimizing production lines and machinery operations.
- Medical Devices: Its reliability and low power consumption make it suitable for various portable medical devices, facilitating efficient monitoring and diagnostics.
- Smart Grid Solutions: The device supports smart grid applications, allowing for enhanced management and distribution of electrical resources.
- Consumer Electronics: Utilized in high-end consumer electronics, it offers excellent performance for multimedia applications and connectivity solutions.
XC7Z030-1SB485I Brand Info
The XC7Z030-1SB485I is produced by a leading manufacturer specializing in advanced semiconductor solutions. This product represents a commitment to delivering high-quality and reliable components that meet the evolving needs of engineers and developers in various sectors. With a focus on innovation and performance, this device is designed to empower applications across multiple industries.
FAQ
What is the primary application of the XC7Z030-1SB485I?
The XC7Z030-1SB485I is primarily used in applications requiring high-performance processing and flexible hardware acceleration, making it ideal for industrial automation, medical devices, and consumer electronics.
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What are the power requirements for this device?
This device operates on a power supply voltage range of 1.0V to 1.2V, ensuring efficient power consumption while maintaining performance across various applications.
Can the XC7Z030-1SB485I handle real-time processing tasks?
Yes, the dual-core architecture of the XC7Z030-1SB485I is specifically designed to manage real-time processing tasks effectively, making it suitable for applications requiring immediate data handling and control.
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What type of memory does the XC7Z030-1SB485I support?
The device supports up to 1 GB of DDR3 memory, allowing for efficient data storage and retrieval in high-performance applications.
Is the XC7Z030-1SB485I suitable for outdoor applications?
Yes, with an operating temperature range of -40??C to +100??C, the XC7Z030-1SB485I is well-suited for outdoor and harsh environmental applications, ensuring reliability under extreme conditions.





