XC6SLX100-3FGG484I Overview
The XC6SLX100-3FGG484I is a highly efficient and versatile FPGA that caters to various industrial applications. With its enhanced processing capabilities, it is designed to meet the demands of modern electronic systems. This device offers a balance of performance, power efficiency, and flexibility, allowing engineers to optimize their designs effectively. For detailed specifications and data, visit IC Manufacturer.
XC6SLX100-3FGG484I Key Features
- High Logic Density: The XC6SLX100-3FGG484I features a large number of logic cells, enabling complex designs without compromising performance.
- Low Power Consumption: This device is optimized for low power operation, making it ideal for battery-powered and energy-sensitive applications.
- Integrated DSP Slices: With dedicated DSP slices, it enhances processing efficiency for applications involving signal processing, ensuring high performance.
- Flexible I/O Configuration: The FPGA supports various I/O standards, allowing for easy integration with different systems and improving design versatility.
XC6SLX100-3FGG484I Technical Specifications
| Parameter | Specification |
|---|---|
| Logic Cells | 100,000 |
| Max I/O Pins | 484 |
| RAM (kbits) | 4,896 |
| DSP Slices | 90 |
| Maximum Clock Frequency | 550 MHz |
| Power Supply Voltage | 1.2V |
| Package Type | FGG484 |
| Temperature Range | -40??C to +100??C |
XC6SLX100-3FGG484I Advantages vs Typical Alternatives
The XC6SLX100-3FGG484I stands out against typical alternatives, offering superior logic density and integrated DSP capabilities. Its low power consumption makes it ideal for energy-efficient designs, while its flexible I/O configuration enhances integration across various applications. This balance of performance and efficiency provides a distinct advantage in today’s competitive market.
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Typical Applications
- Industrial Automation: The XC6SLX100-3FGG484I is suitable for controlling machinery and processes, enhancing efficiency and reliability in automated systems, and enabling real-time data processing.
- Telecommunications: This FPGA can be used in telecom equipment for signal processing and data routing, ensuring high-speed communication.
- Medical Devices: The device is utilized in diagnostic equipment, providing the necessary processing power for accurate data analysis and imaging.
- Consumer Electronics: With its low power profile, it is ideal for smart devices, enabling complex functionalities without draining battery life.
XC6SLX100-3FGG484I Brand Info
The XC6SLX100-3FGG484I is manufactured by a leading provider in the FPGA market, known for delivering high-performance solutions tailored for various applications. This product exemplifies the brand’s commitment to innovation, reliability, and customer satisfaction, making it a trusted choice for engineers seeking advanced electronic components.
FAQ
What is the primary use of the XC6SLX100-3FGG484I?
The XC6SLX100-3FGG484I is primarily used in applications requiring high logic density and processing power, such as industrial automation and telecommunications, allowing engineers to implement complex designs efficiently.
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How does the power consumption of XC6SLX100-3FGG484I compare to other FPGAs?
This FPGA is designed for low power consumption, making it advantageous over many alternatives, particularly in energy-sensitive applications, helping to extend battery life and reduce operational costs.
What are the temperature ratings for the XC6SLX100-3FGG484I?
The device operates within a temperature range of -40??C to +100??C, ensuring reliability and performance in various environmental conditions, which is critical for industrial applications.
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Can the XC6SLX100-3FGG484I support various I/O standards?
Yes, this FPGA supports a flexible I/O configuration that accommodates multiple I/O standards, enhancing its compatibility with various systems and simplifying integration into existing designs.
What advantages does the integrated DSP offer?
The integrated DSP slices in the XC6SLX100-3FGG484I provide enhanced processing capabilities for signal processing tasks, allowing for efficient data handling and real-time performance in applications such as telecommunications and audio processing.





