XC6SLX75-2FGG676C Overview
The XC6SLX75-2FGG676C is a highly versatile and efficient FPGA solution designed for industrial and commercial applications. Offering a balance of performance and power consumption, this device supports various configurations tailored for complex logic tasks. With its advanced architecture, it enables rapid prototyping and efficient deployment for embedded systems. The integration of multiple I/O options enhances flexibility, making it suitable for a wide range of applications. For more details, visit IC Manufacturer.
XC6SLX75-2FGG676C Key Features
- High Logic Density: With a significant number of logic cells, this device allows for the implementation of complex algorithms and functions, enhancing overall system capability.
- Low Power Consumption: Designed with power efficiency in mind, it reduces operational costs and extends system longevity, essential for mobile and portable applications.
- Scalable Architecture: The flexible architecture supports various design needs, enabling easy upgrades and modifications without extensive redesign efforts.
- Multiple I/O Standards: Supports diverse I/O configurations, ensuring compatibility with various peripherals and enhancing integration capabilities across platforms.
XC6SLX75-2FGG676C Technical Specifications
| Parameter | Value |
|---|---|
| Logic Cells | 75,000 |
| Max I/O Pins | 676 |
| RAM (kbits) | 4,680 |
| DSP Slices | 90 |
| Package Type | FG676 |
| Operating Voltage | 1.2V |
| Temperature Range | -40 to +100??C |
| Maximum Clock Frequency | 550 MHz |
XC6SLX75-2FGG676C Advantages vs Typical Alternatives
This model stands out due to its superior logic density and low power consumption, providing enhanced performance while minimizing heat generation. Compared to typical alternatives, it offers greater scalability and flexibility, making it an ideal choice for demanding applications in various industries.
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Typical Applications
- Advanced Robotics: The XC6SLX75-2FGG676C is utilized in robotics for processing complex algorithms, enabling real-time decision-making and precise control in dynamic environments.
- Industrial Automation: Ideal for automation systems, it enhances the efficiency and accuracy of manufacturing processes through programmable logic.
- Telecommunications: Supports high-speed data processing requirements, making it suitable for telecommunications infrastructure and equipment.
- Medical Devices: Employed in medical imaging equipment, it allows for advanced data processing and analysis, improving diagnostic capabilities.
XC6SLX75-2FGG676C Brand Info
The XC6SLX75-2FGG676C is produced by a leading semiconductor manufacturer known for its commitment to innovation and quality in the FPGA market. This brand is recognized for delivering reliable and efficient solutions that cater to the evolving needs of engineers and industries worldwide. With a focus on performance and flexibility, the product aligns with the brand’s vision of enhancing design capabilities across multiple sectors.
FAQ
What is the primary function of the XC6SLX75-2FGG676C?
The primary function of this device is to provide a flexible and efficient logic processing platform suitable for a variety of applications, including industrial automation and telecommunications.
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How does the power consumption of the XC6SLX75-2FGG676C compare to other FPGAs?
This model is designed to operate with low power consumption, making it more efficient than many other FPGAs in its class, thereby reducing operational costs and extending system lifespan.
What types of applications benefit most from this FPGA?
Applications in advanced robotics, industrial automation, telecommunications, and medical devices benefit significantly from the high logic density and flexibility of the XC6SLX75-2FGG676C.
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Is the XC6SLX75-2FGG676C suitable for harsh environments?
Yes, this model is rated for a temperature range of -40 to +100??C, making it suitable for deployment in harsh industrial environments where temperature fluctuations are common.
What are the key advantages of using this FPGA over traditional logic solutions?
Key advantages include higher logic density, lower power consumption, scalability, and the ability to reconfigure the logic, providing greater flexibility compared to traditional fixed-function logic solutions.





