XC7S75-1FGGA484I Overview
The XC7S75-1FGGA484I is a highly versatile System on Chip (SoC) designed for advanced applications that demand high performance and low power consumption. This device features a unique combination of programmable logic and integrated processing capabilities, making it suitable for various industrial and commercial applications. With its robust architecture and flexible configuration options, it empowers engineers to create efficient and reliable solutions tailored to their specific needs. For detailed information, visit IC Manufacturer.
XC7S75-1FGGA484I Key Features
- High Processing Performance: The XC7S75-1FGGA484I features a powerful architecture that supports complex computations, enhancing overall system performance.
- Low Power Consumption: Designed for energy efficiency, this device minimizes operational costs and supports battery-powered applications.
- Flexible I/O Configuration: The versatility in input/output options allows for seamless integration into various systems and applications, improving design flexibility.
- Integrated Memory: This SoC includes built-in memory resources that enable faster data processing and storage, enhancing overall device efficiency.
XC7S75-1FGGA484I Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | System on Chip (SoC) |
| Technology Node | 28 nm |
| Logic Cells | 75,000 |
| Max I/O Pins | 484 |
| Memory Type | Integrated SRAM |
| Power Supply Voltage | 1.0V – 1.2V |
| Operating Temperature | -40??C to 100??C |
| Package Type | FGGA484 |
XC7S75-1FGGA484I Advantages vs Typical Alternatives
Compared to typical alternatives, this device stands out with its superior integration of programmable logic and processing capabilities, allowing for enhanced sensitivity and accuracy. Its low power consumption and robust reliability make it ideal for demanding industrial applications where efficiency and performance are critical.
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Typical Applications
- Industrial Automation: This device is used in automation systems to control machinery, enhancing productivity and efficiency in manufacturing processes.
- Embedded Systems: Ideal for embedded applications, it provides the necessary processing power for complex tasks in compact designs.
- Telecommunications: Utilized in networking equipment, it supports data processing and transmission in high-speed communication systems.
- Consumer Electronics: Commonly found in smart devices, offering advanced functionalities while maintaining low power consumption.
XC7S75-1FGGA484I Brand Info
The XC7S75-1FGGA484I is a product of a leading manufacturer in the semiconductor industry, renowned for delivering innovative solutions that meet the evolving demands of technology. This device exemplifies the brand’s commitment to quality and performance, providing engineers with the tools needed for cutting-edge applications.
FAQ
What type of applications can benefit from the XC7S75-1FGGA484I?
The XC7S75-1FGGA484I is suitable for a variety of applications, including industrial automation, telecommunications, embedded systems, and consumer electronics. Its versatility makes it a popular choice across different sectors.
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How does the low power consumption of this device impact its applications?
Low power consumption significantly extends battery life in portable applications, reduces heat generation, and lowers operational costs, making this device ideal for energy-sensitive projects.
What is the significance of the 28 nm technology node?
The 28 nm technology node allows for higher transistor density, enhancing performance while maintaining energy efficiency. This results in improved processing capabilities without increasing power consumption.
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Can the XC7S75-1FGGA484I be used in harsh environments?
Yes, with an operating temperature range of -40??C to 100??C, this device is designed to perform reliably in harsh environments, making it suitable for industrial applications.
What are the integration capabilities of the XC7S75-1FGGA484I?
This device features flexible I/O configurations and integrated memory, allowing for seamless integration into various systems and enhancing overall design flexibility.




